CONFIDENTIAL REPORT AIR EMISSIONS SURVEY(ELV), while uncertainty of measurement results are...
Transcript of CONFIDENTIAL REPORT AIR EMISSIONS SURVEY(ELV), while uncertainty of measurement results are...
CONFIDENTIAL REPORT
AIR EMISSIONS SURVEY
AT
THE RECYCLING VILLAGE
FOR
IVAN CALLAGHAN
Licence Reg. W0286-01
TMS Environment Ref. 26030
Commencement Date: 14 February 2019 Completion Date: 18 April 2019
Reporting Site Personnel Analysts
Graham Adams
Graham Adams
Approved by:
Date: 18 April 2019
Dr Imelda Shanahan
Technical Manager
Phone: +353-1-4626710
Fax: +353-1-4626714
Web: www.tmsenv.ie
TMS Environment Ltd
53 Broomhill Drive
Tallaght
Dublin 24
t m s environment ltd
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TMS Environment Ref. 26030, Page 2 of 37
EXECUTIVE SUMMARY
This Air Emissions report presents results of emissions monitoring from Vent A1 at The
Recycling Village Duleek, Co Meath to satisfy the requirements of Waste Licence Register
WO286-01. Monitoring has been conducted to satisfy the customer’s requirements in respect
of the following parameters:
Particulate Matter
Total Heavy Metals including Mercury (Including Al, As, Cd, Cr, Cu, Pb, Ni, Zn & Hg)
Velocity and Temperature
Measurements were completed by Air Scientific on the 14 February 2019. Details of the
monitoring methods employed, Standard Reference Methods used and Guidance Notes
consulted are presented in Section 4.0 of this report together with information on the
equipment used and the monitoring personnel.
The results for all of the measurement parameters reported are compared with the licence
Limit Values specified in the customer’s Waste Licence.
From the results presented in Section 3.0 it is clear that the results for particulate monitoring
comply with Waste Licence Reg. No: WO286-01. There are no emission limits specified for
Metals.
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TMS Environment Ref. 26030, Page 3 of 37
1.0 Scope....................................................................................................................... 4
2.0 Survey protocol ..................................................................................................... 4
2.1 Protocol .................................................................................................................. 4
3.0 Monitoring Results................................................................................................ 5
3.1 Results for Vent A1 14 February 2019, 12:30-13:00 Particulates .................... 5
3.2 Results for Vent A1 14 February 2019, 11:17-12:17 Heavy Metals ................. 5
3.3 Reference Conditions for Vent A1....................................................................... 5
4.0 Supporting Information ....................................................................................... 6
4.1 Monitoring team information .............................................................................. 6
4.2 Substance(s) monitored, SOP’s and Standard Methods ................................... 6
4.3 Reporting results ................................................................................................... 6
4.3.1 Expression of test results ...................................................................................... 6
4.3.2 Reporting results less than the detection limit ................................................... 6
4.3.3 Uncertainty calculation ........................................................................................ 7
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1.0 Scope
This report deals with a survey of emissions to atmosphere from Vent A1 at The
Recycling Village Duleek, Co Meath to satisfy the requirements of Waste Licence
Register No. W0386-01. The licence requirements satisfied are summarized as
follows:
Reporting period Quarter 1 & Bi-annual #1 - 2019
EMISSION
POINT PARAMETER
SAMPLING METHOD AND
MEDIUM & ANALYSIS
METHODOLOGY
STANDARD REFERENCE
METHOD
Vent A1
Temperature, Pressure,
Velocity, Flow
Pitot tube coupled with pressure
measurement device or
anemometer, and temperature
measurement device
EN/ISO 16911-1:2013
Particulate Matter
Isokinetic,
Filter & rinse /
Gravimetric analysis
EN 13284-1:2002
Metals & Mercury
Metals - Isokinetic
Nitric peroxide solution /
Analysis by ICP-MS, ICP-OES or
ICP-AAS
Mercury – Isokinetic/
Potassium dichromate or potassium
permanganate solution /Analysis by
CV-AAS, ICP-MS or CV-AFS
MID 14385:2013 Ver. 4
2.0 Survey protocol
2.1 Protocol
The monitoring survey was completed on the 14 February 2019. Emissions to
atmosphere from Vent A1 were monitored during the visit. The survey was completed
in order to meet the requirements of the company’s Waste Licence (Reg. No. W0386-
01)
Relevant Process conditions during the survey are summarized below.
Operational information during testing
Emission
monitoring
point
Date Time Details
A1
14 Feb
2019
12:30 – 13:00
11:17 – 12:17
Continuous Process, normal loading variable
loads. Fan extraction volts checked daily to
determine if filters are functional. If not filters
are changed to ensure the maximum amount of
dust and heavy metals are extracted.
Abatement System SARF Carbon filters and Pleated Panel filters
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A Site Specific Protocol was prepared in accordance with EPA Air Guidance Note
AG1 and CEN/TS 15675:2007 after a site review has been conducted with site
personnel. A site risk assessment was completed prior to commencement of any
monitoring to confirm that the monitoring could be carried out in a safe manner. All
necessary PPE was worn at all times on site.
3.0 Monitoring Results
The results of the air emission monitoring reported in this document are presented in
tables below.
3.1 Results for Vent A1 14 February 2019, 12:30-13:00 Particulates
Note: Air Scientific conducted monitoring
3.2 Results for Vent A1 14 February 2019, 11:17-12:17 Heavy Metals
Note: Air Scientific conducted monitoring
3.3 Reference Conditions for Vent A1
Reference Conditions for concentrations and volume flow as expressed as:
Parameter Emission
limit value
Emission
results Uncertainty Units
Mass
emission
kg/hr
Compliance
Particulates 10 7.28
± 0.77 mg/m3 N/S
Yes
Blank 10 < 0.79
± 0.79 mg/m3 N/S
Yes
Volume
Flow Rate 10,000 9,587 ±681 Nm
3/hr - Yes
Parameter Emission limit
value
Emission
results Uncertainty Units
Mass
emission
Total Heavy
Metals NS < 0.31 ± 0.01 mg/m
3 N/S
Blank NS < 0.01
± 0.01 mg/m3 N/S
Volume Flow
Rate 10,000 9,506 ±589 Nm
3/hr -
Temperature, K Pressure, kPa Oxygen % Moisture %
273 101.3 N/A N/A
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4.0 Supporting Information
4.1 Monitoring team information
Name Function Qualification
Graham Adams Environmental Engineer
Team Leader
Bachelor of Engineering (Hons.) in
Manufacturing Engineering.(2006) ITT Dublin
National Diploma in Mechanical Engineering
(2004), ITT Dublin
4.2 Substance(s) monitored, SOP’s and Standard Methods
Substance
Monitored SOP Standard Method Analysis by
Accreditation
Range mg/m3
ISO 17025 Accreditation
Status
Analysis
Date
Total
Particulate N/S
EN 13248-1 ISO 9096:2003
CLS 0.1-50
20-1,000 I
22 Feb -
07 Mar
2019 Total
Particulate
(Rinse) N/S
EN 13248-1 ISO 9096:2003
CLS 0.1-50
20-1,000 I
22 Feb -
07 Mar
2019
Heavy
Metals
QP-
SITE-
2017
EN 14358: 2014
CSL 0.005-50 I 22 Feb -
07 Mar
2019
Mercury QP-
SITE-
2023 EN 13211: 2001 CSL 0.001-50 I
22 Feb -
07 Mar
2019
Moisture N/S EN 14790:2005 Air
Scientific 2-40% J
14 Feb
2019
Velocity
& Temp N/S
EN 13284-1:2002/
EN/ISO 16911-
1:2013
Air
Scientific
2.8-25m/s 0.13-40m/s
0-1,200
oC
J 14 Feb
2019
Note 1: ISO 17025 Accreditation Status: I – Air Scientific accredited for Monitoring and Subcontract Lab accredited for
Analysis, J – Air Scientific accredited for Monitoring and Analysis.
4.3 Reporting results
4.3.1 Expression of test results
All test results are expressed to one decimal place lower than the Emission Limit Value
(ELV), while uncertainty of measurement results are expressed to two decimal places lower
than the ELV, e.g. where an ELV of 50mg/m3 applies, the reported result shall be reported to
the first decimal place e.g. 6.6mg/m3
with the uncertainty of measurement reported to two
decimal places, e.g. ±0.12mg/m3.
4.3.2 Reporting results less than the detection limit
If a single result is reported as being less than the limit of detection, the measurement result is
expressed using a less than “<” sign, e.g. <0.005 mg/Nm3. Where a number of parameter
results, found to be less than the limit of detection, are expressed as an overall parameter,
these results are calculated as per Section 3.3, Method 3 (Half the Limit of Detection) of the
EPA BREF Guidance on the General Principles of Monitoring. This percentage method
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provides an estimation of the value of the measurement. It is reported without the less than
“<” sign, e.g. 0.05 mg/Nm3.
4.3.3 Uncertainty calculation
An estimation of the uncertainty of measurement is attached to all measurements.
Measurement uncertainties are based on calibration data and laboratory repeatability
experiments. All uncertainties are given at a 95% confidence, based on applying a coverage
factor of k=2 to the combined uncertainties for each measurement. The uncertainty of
measurement associated with emissions monitoring are provided in Air Scientific report in
Appendix II.
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AIR EMISSIONS SURVEY
THE RECYCLING VILLAGE
QUARTER 1 PARTICULATES &
BI-ANNUAL 1 HEAVY METALS
APPENDIX I
EMISSION POINT DETAILS
Licence Reg. WO 386-01
TMS Environment Ref. 26030
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TMS Environment Ref. 26030, Appendix I, Page 9 of 37
Appendix1:1 – Stack Diagram A1
Appendix1:2 - Stack Information
Emission Point A1 (Vent)
Stack Length [m] 0.9
Stack Length [m] 0.6
Stack Cross Sectional Area [m2] 0.54
Number of Ports 2
Number of sampling planes 2
Number of Sampling points per
line 4
Power supply available Yes
Shelter at platform Yes
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Appendix1:3 – Particulate Matter Stack Measurements Vent A1
Reference method EN 13284
Sampling date 14 February 2019
Sampling time 12:30-13:00
Sampling technique
Flue gas sampling system Isokinetic in stack filtration system
Oxygen measurement technique N/A
Material
Sampling probe material Titanium
Filter material GFF
Sampling conditions
Probe temperature [oC] 26.2
Average sampling flow rate [l/min] 14.8
Total sampling time [min] 30
Sampled volume of the dry gas at STP [m3] 0.44
Average flue gas velocity [m/s] 5.2
Nozzle diameter [mm] 8
Ratio of highest to lowest velocity < 1:3
Swirl test result Pass
Initial leak test result [% of expected sampling flow
rate] < 2
Final leak test result [% of average sampling flow
rate] <2
Average flue gas temp temperature [oC] 17.5
Reference conditions Actual conditions
Moisture [%] 0 Moisture [%] 0.0
Temperature [K] 273 Temperature [K] 290
Pressure [kPa] 101.3 Pressure [kPa] 102.2
Oxygen [%] N/A Oxygen [%] N/A
Deviation from isokinetic conditions [%] 0.2
Deviation from reference method
Monitoring Point does not conform to AG2
requirement of being at least 5 hydraulic stack
diameters upstream of the sampling plane and
2 hydraulic diameters downstream.
Appendix1:4 – Manual method results A1
Parameter Result mg/m3 Normalised Result mg/Nm
3
Particulates N/S 7.28
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Appendix1:5 –Heavy Metal Stack Measurements Vent A1
Reference method EN 14358 & EN 13211
Sampling date 14 February 2019
Sampling time 11:17-12:17
Sampling technique
Flue gas sampling system Isokinetic in stack filtration system
Oxygen measurement technique N/A
Material
Sampling probe material Titanium
Filter material Quartz
Trapping solution for metals 3.3%HNO3 @ 1.5%H2O2 @ DI H2O
Trapping solution for Mercury KMnO4@H2SO4@H2O
Sampling conditions
Probe temperature [oC] 181.8
Filtration temperature [oC] 181.3
Average sampling flow rate [l/min] 14.7
Total sampling time [min] 60
Sampled volume of the dry gas at STP [m3] 0.87
Average flue gas velocity [m/s] 5.28
Nozzle diameter [mm] 8
Ratio of highest to lowest velocity < 1:3
Swirl test result Pass
Initial leak test result [% of expected sampling flow
rate] < 2
Final leak test result [% of average sampling flow
rate] <2
Average flue gas temp temperature [oC] 24.6
Reference conditions Actual conditions
Moisture [%] 0 Moisture [%] 0
Temperature [K] 273 Temperature [K] 298
Pressure [kPa] 101.3 Pressure [kPa] 102.3
Oxygen [%] N/A Oxygen [%] N/A
Deviation from isokinetic conditions [%] -0.3
Deviation from reference method
Monitoring Point does not conform to AG2
requirement of being at least 5 hydraulic stack
diameters upstream of the sampling plane and 2
hydraulic diameters downstream.
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The Recycling Village (WO386-01) Emissions Survey Emissions Survey, Quarter 3, 2018
Revision 1.0 Quarter 1 & Biannual #1, 2019 Ref. 25672
TMS Environment Ref. 26030, Appendix II, Page 12 of 37 Appendix II, Page 12 of 31
AIR EMISSIONS SURVEY
THE RECYCLING VILLAGE
QUARTER 1 PARTICULATES &
BI-ANNUAL 1 HEAVY METALS
APPENDIX II
AIR SCIENTIFIC REPORT
Licence Reg. WO 386-01
TMS Environment Ref. 26030
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Document No: REVITL8140219B Licence Number: W0286-01 Visit No: 1 Licence Holder: The Recycling Village Year: 2019 Facility Location: Duleek, County Meath Office: Limerick Version No: 2
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Report Title Air Emissions Compliance Monitoring Emissions Report
Company address Air Scientific Ltd., Unit 5, Caherdavin Business Centre, Caherdavin,
Park, Ennis Road, Limerick V94 NT63.
Stack Emissions Testing Report Commissioned by TMS Environment Limited
Facility Name The Recycling Village
Contact Person Graham Adams
EPA Licence Number W0286-01
Licence Holder The Recycling Village
Stack Reference Number A1
Dates of the Monitoring Campaign 14-02-2019
Job Reference Number REVITL814022919B
Report Written By Mr Jer Moore
Report Approved by Mark McGarry
Stack Testing Team Mr Jer Moore & Mr Mike Flood
Report Date 17-04-2019
Report Type Test Report Compliance Monitoring
Version 2
Signature of Approver
Operations Manager
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Contents
1.0 Executive Summary ................................................................................................................................................................................ 3 1.1 Overall aim of the monitoring campaign ................................................................................................................................................ 3 1.2 Summary of substances to be monitored at each emission point .......................................................................................................... 3 1.3 Special Requirements ............................................................................................................................................................................. 3 1.4 Summary of Results ................................................................................................................................................................................ 4 Emission Point Number: A1 ............................................................................................................................................................................... 4 1.5 Operating Information ........................................................................................................................................................................... 5 Please reference Process Details as per Appendix III attached. ........................................................................................................................ 5 1.6 Monitoring Deviations ............................................................................................................................................................................ 5 1.7 Reference Documents ............................................................................................................................................................................ 5 1.8 Revision History ...................................................................................................................................................................................... 5 Part 2: Supporting Information ........................................................................................................................................................................ 6 Appendix I ......................................................................................................................................................................................................... 7 1.1 Monitoring Personnel ............................................................................................................................................................................. 7 1.2 Equipment Inventory .............................................................................................................................................................................. 8 Appendix II ........................................................................................................................................................................................................ 9 2.1 Stack Emission Point Reference: A1 ....................................................................................................................................................... 9 2.1.1 Suitability of Sample Location: .......................................................................................................................................................... 9 2.1.2 Stack Diagram ................................................................................................................................................................................. 10 2.1.3 Stack Raw Data ............................................................................................................................................................................... 11 Appendix III: Certificates and Process Detail Form .................................................................................................................................... 19
Opinions and interpretations expressed herein will be outside the scope of Air Scientific Limited INAB accreditation. This test report shall not be reproduced, without the written approval of Air Scientific Limited.
All sampling and reporting is completed in accordance with Environmental Protection Agency Air Guidance Note 2 requirements.
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1.0 Executive Summary
1.1 Overall aim of the monitoring campaign
The aim of the monitoring campaign was to demonstrate compliance with a set of emission limit values as specified
in the site licence.
1.2 Summary of substances to be monitored at each emission point
Stack Name: A1
Total Particulate Matter
Metals (Al, As, Cd, Cr, Cu, Ni, Pb & Zn)
Mercury (Hg)
Volumetric Flow Rate (Ref)
1.3 Special Requirements
There were no special requirements
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1.4 Summary of Results
Emission Point Number: A1
Parameter Method Units Result MU +/- Limit O2 Ref.
(%)
Moisture
Ref.(%) Compliant Blanks Date Time on Time off
Accreditation
Sampling Analysis
Particulate Matter EN 13284-1 mg.m-3 7.28 0.77 10 N/a N/a Yes 0.79 14/02/2019 12:30 13:01 Yes Yes
Volumetric Flow Rate (Ref) EN 16911 m3.h-1 9587 681 10,000 N/a N/a Yes N/a 14/02/2019 12:30 13:01 Yes N/a
Total Metals EN 14385 mg.m-3 <0.3083 0.01115 N/a N/a N/a N/a 0.0111 14/02/2019 11:17 12:18 No Note 3 No
Aluminium EN 14385 mg.m-3 <0.2040 0.00738 N/a N/a N/a N/a 0.1882 14/02/2019 11:17 12:18 No Note 3 No
Arsenic EN 14385 mg.m-3 <0.0007 0.00002 N/a N/a N/a N/a 0.0006 14/02/2019 11:17 12:18 Yes Yes
Cadmium EN 14385 mg.m-3 <0.0015 0.00006 N/a N/a N/a N/a 0.0007 14/02/2019 11:17 12:18 Yes Yes
Chromium EN 14385 mg.m-3 <0.0175 0.00063 N/a N/a N/a N/a 0.0024 14/02/2019 11:17 12:18 Yes Yes
Copper EN 14385 mg.m-3 <0.0014 0.00005 N/a N/a N/a N/a 0.0008 14/02/2019 11:17 12:18 Yes Yes
Lead EN 14385 mg.m-3 0.0491 0.00177 N/a N/a N/a N/a 0.0022 14/02/2019 11:17 12:18 Yes Yes
Nickel EN 14385 mg.m-3 <0.0032 0.00011 N/a N/a N/a N/a 0.0028 14/02/2019 11:17 12:18 Yes Yes
Zinc EN 14385 mg.m-3 <0.0302 0.00109 N/a N/a N/a N/a 0.0241 14/02/2019 11:17 12:18 No Note 3 No
Mercury EN 13211 mg.m-3 <0.0008 0.00003 N/a N/a N/a N/a 0.0001 14/02/2019 11:17 12:18 Yes Yes
Note 1: All results are normalised to standard temperature and pressure (0OC and 101.3kPa)
Note 2: All results are reported in the format as defined by the EPA in guidance note AG2:2018.
Note 3: EN 14385 only covers As, Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Tl and V. There is no standard method for Al & Zn
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1.5 Operating Information
Please reference Process Details as per Appendix III attached.
1.6 Monitoring Deviations
Stack Name:A1
Parameter Deviation
Total Particulate Matter Port position Incorrect – 2 side divisions required for stacks with an area >0.1m2
Mercury and Metals Port position Incorrect – 2 side divisions required for stacks with an area >0.1m2
Volumetric Flow Rate (Ref) Port position not in agreement with EN 15259 EN 16911 - in accordance with MID 16911-1
1.7 Reference Documents
Risk Assessment (RA) SOP 1011
Site Review (SR) SOP 1015
Site Specific Protocol (SSP) SOP 1015
1.8 Revision History
Revision Number Changes to the report
1 Original version of the report
2 Incorrect area used in calculations amended
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Part 2: Supporting Information
Report Title Air Emissions Compliance Monitoring Emissions Report
Company address Air Scientific Ltd., Unit 5, Caherdavin Business Centre, Caherdavin,
Park, Ennis Road, Limerick V94 NT63.
Stack Emissions Testing Report Commissioned by TMS Environment Limited
Facility Name The Recycling Village
Contact Person Graham Adams
EPA Licence Number W0286-01
Licence Holder The Recycling Village
Stack Reference Number A1
Dates of the Monitoring Campaign 14-02-2019
Job Reference Number REVITL814022919B
Report Written By Mr Jer Moore
Report Approved by Mark McGarry
Stack Testing Team Mr Jer Moore & Mr Mike Flood
Report Date 17-04-2019
Report Type Test Report Compliance Monitoring
Version 2
Signature of Approver
Operations Manager
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Appendix I
1.1 Monitoring Personnel
Team Leader Name Jer Moore
System approval ASL Team Leader Approved
Technician Name Mike Flood
System approval ASL Technician Approved
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1.2 Equipment Inventory
ID Item of Equipment Used ID Item of Equipment Used ID Item of Equipment Used
ASLLK12EQ500 Pump ASLLK12EQ525 Horiba (PG-250) X ASLLK13EQ501 Vernier Calipers
ASLLK12EQ531 Pump ASLLK14EQ501 Horiba-PG 350 ASLLK14EQ503 Vernier Calipers
ASLLK12EQ532 Pump ASLLK14EQ512 Horiba PG250Y ASLLK14EQ507 Vernier Calipers
ASLLK12EQ533 Pump ASLLK16EQ508 Horiba- PG250z ASLLK17EQ533 Vernier Calipers
ASLLK12EQ534 Pump ASLLK17EQ515 Horiba 350 ASLLK18EQ506 Vernier Calipers
ASLLK12EQ535 Pump
ASLLK12EQ536 Pump
ASLLK12EQ537 Pump ASLLK12EQ526 Chiller ASLLK13EQ503 1kg weight
ASLLK12EQ538 Pump ASLLK14EQ513 Chiller ASLLK13EQ508 500g Hafner weight
ASLLK12EQ539 Pump ASLLK16EQ509 Chiller ASLLK13EQ509 500g Hafner weight
ASLLK12EQ540 Pump ASLLK18EQ505 Chiller ASLLK15EQ512 1kg weight
ASLLK12EQ541 Pump ASLLK16EQ511 1kg weight
ASLLK12EQ542 Pump ASLLK16EQ512 500g weight
ASLLK12EQ543 Pump ASLLK14EQ518 Velocity Meter ASLLK17EQ529 500g weight
ASLLK13EQ513 Pump ASLLK16EQ501 Velocity Meter ASLLK17EQ530 1kg weight
ASLLK13EQ514 Pump ASLLK17EQ508 Velocity Meter
ASLLK16EQ518 Pump ASLLK17EQ514 Velocity Meter
ASLLK16EQ519 Pump ASLLK18EQ504 Velocity Meter ASLLK13EQ504 G4
ASLLK17EQ509 Pump ASLLK13EQ515 G4
ASLLK17EQ510 Pump ASLLK15EQ501 G4
ASLLK17EQ525 Pump ASLLK14EQ500 FID ASLLK17EQ534 ST5
ASLLK17EQ526 Pump ASLLK16EQ502 FID ASLLK18EQ503 ST5
ASLLK17EQ522 Pump ASLLK17EQ517 FID
ASLLK17EQ523 Pump ASLLK17EQ535 Signal Cutter
ASLLK17EQ524 Pump ASLLK14EQ510 Digital Protractor
ASLLK14EQ511 Digital Protractor
ASLLK13EQ512 PCDD thermometer ASLLK15EQ505 Digital Protractor
ASLLK12EQ529 Calibrator ASLLK16EQ507 Digital Protractor
ASLLK14EQ502 Calibrator ASLLK17EQ528 Digital Protractor
ASLLK17EQ532 MF Meter ASLLK16EQ510 Measuring Tape ASLLK18EQ507 Digital Protractor
ASLLK17EQ540 MF Meter ASLLK16EQ513 Measuring Tape
ASLLK17EQ541 MF Meter ASLLK16EQ514 Measuring Tape
ASLLK17EQ542 MF Meter ASLLK17EQ527 Measuring tape ASLLK12EQ522 Balance
ASLLK18EQ511 MF Meter ASLLK18EQ508 Measuring tape ASLLK12EQ544 Balance
ASLLK15EQ509 Balance
ASLLK12EQ507 Heated Line ASLLK15EQ510 Balance
ASLLK12EQ527 Heated Line ASLLK16EQ515 Thermocouple K type ASLLK17EQ537 Balance
ASLLK14EQ509 Heated Line ASLLK16EQ516 Thermocouple K type ASLLK17EQ538 Balance
ASLLK14EQ514 Heated Line ASLLK17EQ531 K type Thermocouple
ASLLK17EQ502 Heated Line ASLLK18EQ500 K type Thermocouple
ASLLK17EQ503 Heated Line ASLLK18EQ501 K type Thermocouple
ASLLK17EQ539 Heated Line ASLLK18EQ502 K type Thermocouple
ASLLK18EQ510 K type Thermocouple
ASLLK12EQ518 S type Pitot Tube ASLLK17EQ518 Stopwatch
ASLLK12EQ520 L Type Pitot tube ASLLK17EQ519 Stopwatch
ASLLK13EQ506 S type Pitot Tube ASLLK17EQ520 Stopwatch
ASLLK14EQ506 Pitot + thermocouple ASLLK17EQ521 Stopwatch
ASLLK16EQ506 S type Pitot Tube ASLLK18EQ509 Stopwatch
ASLLK16EQ517 S type Pitot Tube
ASLLK17EQ536 S type Pitot
ASLLK17EQ507 1 m S type & K type
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Appendix II
2.1 Stack Emission Point Reference: A1
2.1.1 Suitability of Sample Location:
General Information A1
Permanent/Temporary Permanent
Inside/ Outside Inside
Platform Details
Irish EPA Technical Guidance Note AG1 / BS EN 15259 Platform Requirements
Value Comment
Sufficient Working area to manipulate probe and measuring instruments
Yes -
Platform has 2 handrails (approx. 0.5m & 1.0 m high) Yes
-
Platform has vertical base boards (approx. 0.25 m high) Yes
-
Platform has chains / self-closing gates at top of ladders Yes
-
There are no obstructions present which hamper insertion of sampling equipment
Yes -
Safe Access Available Yes
-
Easy Access Available Yes
-
Sampling Location / Platform Improvement Recommendations
None
EN 15259 Homogeneity Test Requirements
1.
Select Option: 1: There is no requirement to perform a BSEN15259 Homogeneity Test on this stack 2: Test results were obtained from previous Homogeneity test carried out by ASL 3: Test results were obtained from previous Homogeneity test carried out by Alternative contractor 4: Homogeneity Test is required on this stack and the client has been informed of this requirement
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2.1.2 Stack Diagram
Figure 1: A1
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2.1.3 Stack Raw Data
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EPA Export 25-06-2019:04:12:42
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Title: Determination of Total Particulates
Method: EN 13284-1
Client: Recycling Village
Test Date: 14/02/2019 Temperature at Pump 19.17 Deg C
Test Time 12:30 Pressure at Pump 92.94 kPa
Laboratory Used: CLS Air Volume at Pump 0.5141 m3
Stack Name A1 Humidity at Pumps 0 %
Run I.D. 1 Filter Weight 0.61 mg
Filter I.D. T42 Front End Weight 2.6 mg
Moisture Content 0 %
Stack Flow Rate 9587 Nm3/hr Flow Uncertainty 681 m3/hr
Volume of Air Sampled 0.4407 Nm3 Flow Uncertainty 7.1 %
Leak Check Results Result % Leak
Before Sample 1 0.2 l/min 1.4
Average Flow Rate 14.8 l/min 1.4
Standard Maximum 0.296 l/min 2%
Back Pressure 69 kPa
Standard Criteria to be Met Result Std. Requirement
Angle of Flow Pass <15 Degrees Probe material Stainless Steel
Negative Flow in the Stack Pass None Filter housing Stainless Steel
Pitot Pressure Difference Pass >5Pa Positioning of filter In Stack
Ratio of Flow Measurement Pass <3:1 Filter Size & Material 47mm Quartz
Stagnation Test Pass <10Pa
Pitot Tube Leak Check Result
Positive Pressure Pass -
Negative Pressure Pass -
Number of Ports 2 2
Straight length before sample point No > 5 Hydraulic Diameters
Straight length after sample point No > 5 Hydraulic Diameters to Stack Outlet or 2HD to Fan/ Bend
Sample Calculations
Blank (Filter and Front Wash Combined) 0.35 mg
Sample 1 (Filter and Front Combined) 3.21 mg
Volume of Air Sampled 0.4407 Nm3
Blank Result 0.79 mg/Nm3
Sample Result 7.28 mg/Nm3
Uncertainty of Measurement 0.77 mg/Nm3 Requirement <20% ELV
Emission Limit Value 10 mg/Nm3
Blank as Percentage of ELV 7.9 % Requirement <10% ELV or <0.5 mg/m3
Isokinetic Criterion Compliance
Isokinetic Variation 0.2 %
Allowable Isokinetic Range -5 to + 15% %
Isokinetic Acceptable Yes -
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Uncertainty calculation for EN 13284 Determination of low range mass concentration of dust, Manual Gravimetric Method Version 14
Stack Name: A1
Measurement Equation
Limit value (ELV) 10 mg.m -3Reference oxygen % by volume
Measured concentration 7.28 mg.m -3 (at reference conditions)
Measured Quantities Symbol Value Standard uncertainty Units Uncertainty as percentage Uncertainty at lv Requirement of std
Sampled Volume Vm 0.5141 uVm 0.001 m 30.19 <=5%
Sampled gas Temperature T m 292.17 uTm 2 k 0.68 <=2%
Sampled gas Pressure ρm 92.94 uρm 1 kPa 1.08 <=2%
Sampled gas Humidity Hm 0 uHm 1 % by volume 1.00 <=1%
Oxygen content O2,m uO2,m 0.1 % by volume #DIV/0! <=5%
Mass particulate m 3.21 um 0.16 mg 4.94 3.60 <5% of limit value
Note - Sampled gas humidity, temperature and pressure are values at the gas meter
Leak L 1.35 % 1.35 <=2%
Uncollected Mass UCM 0 mg 0 <=10%
(Instack filter - no rinse)
Intermediate calculations
Factor for std conds fs 0.86
uncertainty components symbol sensitivity coeff u (in units of fs)
ρm 0.009 0.009
Hm 0.009 0.009
T m 0.003 0.006
ufs 0.014 1.62
Corrected volume V 0.44 uV 0.007 m 31.64
Factor for O2 correction fc 1.00
uncertainty components symbol sensitivity coeff u
O2,m 0.05 0.005
Factor for O2 Correction ufc 1.00 0.005 0.48
Parameter Value Units Sensitivity coeff Uncertainty contribution Uncertainty as %
Corrected Volume (standard conditions) V 0.44 m3 16.53 0.12 mg.m-3 1.64 %
Mass m 3.21 mg 2.27 0.36 mg.m-3 4.94 %
Factor for O2 Correction fc 1.00 7.28 0.03 mg.m-3 0.48 %
Leak L 0.06 mg.m-3 1.00 0.06 mg.m-3 0.78 %
Uncollected mass UCM 0.00 mg 2.27 0.00 mg.m-30.00 %
Combined measurement uncertainty 0.38 mg.m-3
Expanded uncertainty as percentage of measured value 10.56 % measured of value expressed with a level of confidence of 95%
(Using a coverage factor k=2)
Expanded uncertainty in units of measurement 0.77 mg.m -3
Expanded uncertainty as percentage of limit value 7.69 % ELV
sm fVV
m
ref
cO
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,2
21
21
cfV
mc
3.101
273
100
)100( m
m
m
sT
Hf
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DUCT AND GAS SPECIFICATION
Name a2-1
Section Rectangular
Size [m]x[m] 0.60 x 0.90
Area [m2] 0.54
Ports B [#] 2
Points P [#] 2
Density ρn [kg/Nm3] 1.286
Carbon Dioxide CO2 [%] 0
Oxygen O2 [%] 21
Water Vapor Ratio rw [0;1] 0
Nozzle nz [mm] 8
Turbolence factor ft [sec] 1
Wall Adjustment Factor waf 1
PITOT DATA SPECIFICATION
Name p0.830
Velocity [m/sec] 5 0.83
Velocity [m/sec] 10 0.83
Velocity [m/sec] 20 0.83
Velocity [m/sec] 30 0.83
Velocity [m/sec] 40 0.83
NORMALIZATION FACTOR
Tnorm [K] 273
Pnorm [kPa] 101.3
DUCT FLOW RATE
Dry actual QVa [m3/h] 10109
Moist actual Q'Va [m3/h] 10109
Moist standard [Tnorm Pnorm] Q'Vn [Nm3/h] 9587
Dry standard [Tnorm Pnorm] QVn [Nm3/h] 9587
AVERAGE VALUES
Total Points [#] 2
Velocity v'a [m/sec] 5.2
Stack temperature tstack [°C] 17.49
Stack Pressure Pa [kPa] 102.23
Isokinetic Rate DI [%] 0.2
Velocity at nozzle v'N [m/sec] 5.211
Probe temperature tprobe [°C] 26.2
Filter temperature tfilter [°C] 28.3
Outlet temperature toutlet [°C] 25.4
Aux temperature taux [°C] 26.7
Ambient Pressure Pamb [kPa] 102.15
GAS METER SAMPLED VOLUMES
Elapsed time et [hh:mm:ss] 00:30:00
Standard Volume [Tnorm Pnorm] Vgn [Nm3] 0.4407
Moist Volume at stack conditions V'ga [m3] 0.4647
Volume at dgm conditions Vdgm [m3] 0.5141
Gas meter temperature tdgm [°C] 19.17
Gas Meter Pressure Pdgm [kPa] 92.94
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Velocity Profile 14/02/2019 09:31:47
POINT LIST
start ts port point Probe pos
Swirl angle
Swirl axis avg Elapsed
Time tstack avg Pa avg
dP pitot avg
velocity avg
[timestamp] [###] [###] [cm] [°] [°] [hh:mm:ss] [°C] [kPa] [Pa] [m/sec] 14/02/2019
1 1 15.3 0 0 00:01:00 12.55 102.16 25.4 5.31 09:32:33
00:01:00 12.54 102.16 25.47 5.32 14/02/2019
1 2 45.8 0 0 00:01:00 12.85 102.17 25.6 5.34 09:33:35
00:01:00 12.84 102.17 25.6 5.34 14/02/2019
2 1 15.3 0 0 00:01:00 13.18 102.17 25.98 5.38 09:34:38
00:01:00 13.17 102.17 25.94 5.37 14/02/2019
2 2 45.8 0 0 00:01:00 13.51 102.17 26 5.38 09:35:45
00:01:00 13.5 102.17 26.02 5.39
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Title: Determination of Total Metals and Mercury
Method: EN 14385 & EN 13211
Client: Recycling Village
Test Date: 14/02/2019 Temperature at Pump 18.62 Deg C
Test Time On: 11:17:52 Pressure at Pump 88.02 kPa
Test Time Off: 12:18 Air Volume at Pump 1.071 m3
Laboratory Used: CLS Humidity at Pumps 0 %
Stack Name a2-1
Filter I.D. T89 Flow Uncertainty 589 m3/hr
Stack Flow Rate 9506 m3.hr-1 Flow Uncertainty 6.2 %
Dry Volume of Air Sampled Metals 0.8711 Nm3
Dry Volume of Air Sampled Mercury 0.8711
Moisture Content 0 %
Wet Volume of Air Sampled Metals 0.8711 m3
Wet Volume of Air Sampled Mercury 0.8711 m3
Emission Limit Value N/a mg.m-3
Leak Check Results Result % Leak
Before Blank 0.132 cc/min 0.9
After Blank 0.132 cc/min 0.9
Before Sample 1 0.132 cc/min 0.9
After Sample 1 0.132 cc/min 0.9
Average Flow Rate 14.709 cc/min 0.9
Standard Maximum 0.29418 cc/min 2%
Back Pressure 69 bar or kPa
Standard Criteria to be Met Result Standard Requirement
Angle of Flow Pass <15 Degrees Probe material Titanium
Negative Flow in the Stack Pass None Filter housing Titanium
Pitot Pressure Difference Pass >5Pa Positioning of filter Out Stack
Ratio of Flow Measurement Pass <3:1 Filter Size & Material 47mm Quartz
Stagnation Check Pass <10 Pa
Pitot Tube Leak Check Result
Positive Pressure Pass -
Negative Pressure Pass -
Number of Ports 2 2
Straight length before sample point No > 5 Hydraulic Diameters
Straight length after sample point No > 5 HD from fan or bend / >2 from stack exit
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Sample Calculations
Filter Imp 1 & 2 Imp 3 Total Metal
ug / filter ug/L ug/L ug
Aluminium 140 100 100 177.7
Arsenic 0.5 0.2 0.2 0.6
Cadmium 0.5 3.2 0.5 1.3
Chromium 2 55 0.5 15.2
Copper 0.6 2 1 1.2
Lead 14 120 0.5 42.7
Nickel 2 2 2 2.8
Zinc 15 33 25 26.3
Mercury 0.01 2.7 0.5 0.7
Run 1 Run 2
Impinger 1 & 2 Total Volume (Incl Rinse) 239 220 mls
Impinger 3 Total Volume (Incl Rinse) 138 148 mls
Concentration Calculation
mg.m-3 Uncertainty
Aluminium 0.20399 0.007377
Arsenic 0.00066 0.000024
Cadmium 0.00153 0.000055
Chromium 0.01747 0.000632
Copper 0.00140 0.000050
Lead 0.04907 0.001775
Nickel 0.00316 0.000114
Zinc 0.03023 0.001093
Mercury 0.00078 0.000028
Blank Calculations
Filter Impingers Total Metals Concentration
ug / filter ug/L ug mg.m-3
Aluminium 140 100 163.900 0.18815
Arsenic 0.5 0.2 0.548 0.00063
Cadmium 0.5 0.5 0.620 0.00071
Chromium 2 0.5 2.120 0.00243
Copper 0.5 1 0.739 0.00085
Lead 1.8 0.3 1.872 0.00215
Nickel 2 2 2.478 0.00284
Zinc 15 25 20.975 0.02408
Mercury 0.01 0.5 0.120 0.00014
% of ELV
Total Metals 0.2220
Blank < 10% of the Emission Limit Values N/a Yes / No
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DUCT AND GAS SPECIFICATION Name a2-1
Section Rectangular
Size [m]x[m] 0.60 x 0.90
Area [m2] 0.54
Ports B [#] 2
Points P [#] 2
Density ρn [kg/Nm3] 1.286
Carbon Dioxide CO2 [%] 0
Oxygen O2 [%] 21
Water Vapor Ratio rw [0;1] 0
Nozzle nz [mm] 8
Turbolence factor ft [sec] 1
Wall Adjustment Factor waf 1
PITOT DATA SPECIFICATION Name p0.830
Velocity [m/sec] 5 0.83
Velocity [m/sec] 10 0.83
Velocity [m/sec] 20 0.83
Velocity [m/sec] 30 0.83
Velocity [m/sec] 40 0.83
NORMALIZATION FACTOR Tnorm [K] 273
Pnorm [kPa] 101.3
DUCT FLOW RATE Dry actual QVa [m3/h] 10264
Moist actual Q'Va [m3/h] 10264
Moist standard [Tnorm Pnorm] Q'Vn [Nm3/h] 9506
Dry standard [Tnorm Pnorm] QVn [Nm3/h] 9506
AVERAGE VALUES Total Points [#] 2
Velocity v'a [m/sec] 5.28
Stack temperature tstack [°C] 24.55
Stack Pressure Pa [kPa] 102.25
Isokinetic Rate DI [%] -0.3
Velocity at nozzle v'N [m/sec] 5.265
Probe temperature tprobe [°C] 181.8
Filter temperature tfilter [°C] 181.3
Outlet temperature toutlet [°C] 25.6
Aux temperature taux [°C] 26
Ambient Pressure Pamb [kPa] 102.15
GAS METER SAMPLED VOLUMES Elapsed time et [hh:mm:ss] 01:00:00
Standard Volume [Tnorm Pnorm] Vgn [Nm3] 0.8711
Moist Volume at stack conditions V'ga [m3] 0.9406
Volume at dgm conditions Vdgm [m3] 1.071
Gas meter temperature tdgm [°C] 18.62
Gas Meter Pressure Pdgm [kPa] 88.02
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Uncertainty calculation
Stack Name: A1
Measurement Equation
Limit value (ELV) N/a mg.m -3Reference oxygen % by volume
Measured concentration 0.31 mg.m -3 (at reference conditions)
Measured Quantities Symbol Value Standard uncertainty Units Uncertainty as percentage Uncertainty at lv Requirement of std
Sampled Volume Vm 1.0710 uVm 0.001 m 30.09 <=2%
Sampled gas Temperature T m 291.62 uTm 2 k 0.69 <=1%
Sampled gas Pressure ρm 88.02 uρm 1 kPa 1.14 <=1%
Sampled gas Humidity Hm 0 uHm 1 % by volume 1.00 <=1%
Oxygen content O2,m uO2,m 0.1 % by volume <=5%
Note - Sampled gas humidity, temperature and pressure are values at the gas meter
Leak L 0.90 % 0.90 <=2%
Intermediate calculations
Factor for std conds fs 0.81
uncertainty components symbol sensitivity coeff u (in units of fs)
ρm 0.009 0.009
Hm 0.008 0.008
T m 0.003 0.006
ufs 0.01352 1.66
Corrected volume V 0.87 uV 0.015 m 31.67
Factor for O2 correction fc 1.00
uncertainty components symbol sensitivity coeff u
O2,m 0.05 0.005
Factor for O2 Correction ufc 1.00 0.005 0.48
Parameter Value Units Sensitivity coeff Uncertainty contribution Uncertainty as %
Corrected Volume (standard conditions) V 0.87 m3 0.35 0.01 mg.m-3 1.67 %
Factor for O2 Correction fc 1.00 0.31 0.00 mg.m-3 0.48 %
Leak L 0.00 mg.m-31.00 0.00 mg.m-3
0.52 %
Combined measurement uncertainty 0.01 mg.m-3
Expanded uncertainty as percentage of measured value 3.62 % measured of value expressed with a level of confidence of 95%
(Using a coverage factor k=2)
Expanded uncertainty in units of measurement 0.01115 mg.m -3
sm fVV
m
ref
cO
Of
,2
,2
21
21
cfV
mc
3.101
273
100
)100( m
m
m
sT
Hf
V1.4 Oct-16Enter data in orange cells only <---- Complete (Don’t Touch)
ConstantsGas constant 8.314 J/(K.mol)
2500 Pa
10 Pa
Enter Data in yellow cells only (They should pull correctly) 0.01 % of value0.32 % of range between calibrations
0.25 % of range2.5 Pa
Water vapour measurement 2 % relative
Pitot coefficient, K 0.83 1 °C CO content measurement 2 % relativeExpanded uncertainty (95%, k=2) 0.03 160.5 Pa CO2 content measurement 2 % relative
1.0 % O2 content measurement 2 % relative
Duct dimensions Circular Rectangular
Diameter 0.90 m a 0.6 m
Area 0.6 m2 b 0.6 mArea 0.4 m2
All Pressures should be entered in Pascals, PaMeasurement Point Atmospheric Pressure, Pa Stack Pressure, Pa Static Pressure, Pa meas1, Pa meas2, Pa meas3, Pa meas4, Pa meas5, Pa Delta P, Pa Stack Temperature, C Water Vapour Content, % CO, ppm CO2, % N2, % O2, % dry molecular wt, g/mol stack molecular wt, g/mol
1 102150 204400 102250 29.47 29.47 24.55 0 0 0.1 79.0 20.9 28.85 28.85
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
Mean 102150 204400 102250.0 29.5 #DIV/0! #DIV/0! #DIV/0! #DIV/0! 29.5 24.6 0.0 0.0 0.1 79.0 20.9 28.85 28.85
Mean density 2.384 kg/m3
Mean velocity 4.13 m/sec
Standard uncertainty of velocity 0.11 m/sec 2.8 % of value
Expanded uncertainty in velocity 0.23 m/sec 5.5 % of value
Circular duct Rectangular ductFlow rate 9506 m3/hour 9506 m3/hour
Volume flow rate expanded uncertainty 568 m3/hour 589 m3/hour
Volume flow rate expanded uncertainty 6.0 % of value 6.2 % of value
Repeatability of Delta P transducerDrift of Delta P transducer
Lack of fit of measurement system
Uncertainty calculation for Velocity and Volume Flow Rate Measurement by Pitot tube EN ISO 16911-1
Characteristics of pressure sensor used for Delta PEnter uncertainties as (95%,k=2) where relevant
Range of Delta P transducer
Resolution of Delta P transducer
Uncertainty in duct area measurement
Dry gas basis
Uncertainty in stack gas compositionUncertainty in Delta P transducer Enter uncertainties as (95%,k=2) where relevant
Uncertainty in temperature readout system
Uncertainty in atmospheric pressure transducer
Enter uncertainties as (95%,k=2) where relevant
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Document No: REVITL8140219B Licence Number: W0286-01 Visit No: 1 Licence Holder: The Recycling Village Year: 2019 Facility Location: Duleek, County Meath Office: Limerick Version No: 2
20 of 20
Appendix III: Certificates and Process Detail Form
Attach Process Details.
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Concept Life Sciences
Certificate of Analysis
Hadfield HouseHadfield Street
CornbrookManchester
M16 9FETel : 0161 874 2400Fax : 0161 874 2404
Report Number: Supplement to 804180-1
Date of Report: 01-Apr-2019
Customer: Air ScientificUnit 5Cahirdavin Shopping CentreEnnis RoadLimerick
Customer Contact: Project Management
Customer Job Reference: REVITL8140219BDate Job Received at Concept: 20-Feb-2019
Date Analysis Started: 22-Feb-2019Date Analysis Completed: 07-Mar-2019
The results reported relate to samples received in the laboratory and may not be representative of a wholebatch.Opinions and interpretations expressed herein are outside the scope of UKAS accreditationThis report should not be reproduced except in full without the written approval of the laboratoryTests covered by this certificate were conducted in accordance with Concept Life Sciences SOPsAll results have been reviewed in accordance with Section 25 of the Concept Life Sciences, AnalyticalServices Quality Manual
This document has been printed from a digitally signed master copy
Concept Life Sciences is a trading name of
Concept Life Sciences Analytical & Development
Services Limited registered in England and
Wales (No 2514788)
1549
Report checkedand authorised by :Howard HandleySite Director
Issued by :Kathryn GleavesCustomer Service Advisor
Page 1 of 3
Supplement to804180-1
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Concept Reference: 804180
Customer Reference: REVITL8140219B
Combined (filter/rinse) Analysed as Combined (filter/rinse)
(Al, As, Cd, Cr, Cu, Hg, Ni, Pb, Zn)
Concept Reference 804180 001 804180 006
Customer Sample Reference 1. A1 Metals &Mercury
Filter+Rinse
6. Blank Metals &Mercury
Filter+Rinse
Test Sample AR AR
Date Sampled 14-FEB-2019 14-FEB-2019
Determinand Method LOD Units Symbol
Aluminium ICPMS (HF BS EN 14385) 5 µg N 140 140
Arsenic ICPMS (HF BS EN 14385) 0.5 µg U <0.5 <0.5
Cadmium ICPMS (HF BS EN 14385) 0.5 µg U <0.5 <0.5
Chromium ICPMS (HF BS EN 14385) 2 µg U <2 <2
Copper ICPMS (HF BS EN 14385) 0.5 µg U 0.6 <0.5
Lead ICPMS (HF BS EN 14385) 0.5 µg U 14 1.8
Mercury CVAFS (BS EN 13211) 0.01 µg U <0.01 <0.01
Nickel ICPMS (HF BS EN 14385) 2 µg U <2 <2
Zinc ICPMS (HF BS EN 14385) 15 µg N <15 <15
Concept Reference: 804180
Customer Reference: REVITL8140219B
Impinger(5%HNO3/5%H2O2)
Analysed as Impinger (3.3%HNO3/1.5%H2O2)
(Al, As, Cd, Cr, Cu, Ni, Pb, Zn)
Concept Reference 804180 002 804180 003 804180 007
Customer Sample Reference 2. A1 Metals Imp1+2
3. A1 Metals Imp 3 7. Blank Metals
Test Sample AR AR AR
Date Sampled 14-FEB-2019 14-FEB-2019 14-FEB-2019
Determinand Method LOD Units Symbol
Aluminium ICPMS (BS EN 14385) 100 µg/l N <100 <100 <100
Arsenic ICPMS (BS EN 14385) 0.2 µg/l U <0.2 <0.2 <0.2
Cadmium ICPMS (BS EN 14385) 0.5 µg/l U 3.2 <0.5 <0.5
Chromium ICPMS (BS EN 14385) 0.5 µg/l U 55 <0.5 <0.5
Copper ICPMS (BS EN 14385) 1 µg/l U 2 <1 <1
Lead ICPMS (BS EN 14385) 0.3 µg/l U 120 0.5 0.3
Nickel ICPMS (BS EN 14385) 2 µg/l U <2 <2 <2
Zinc ICPMS (BS EN 14385) 25 µg/l N 33 <25 <25
Concept Reference: 804180
Customer Reference: REVITL8140219B
Impinger(4%K2Cr2O7/20%HNO3)
Analysed as Impinger (4%K2Cr2O7/20%HNO3)
Mercury
Concept Reference 804180 004 804180 005 804180 008
Customer Sample Reference 4. A1 Mercury Imp1+2
5. A1 Mercury Imp3
8. Blank Mercury
Test Sample AR AR AR
Date Sampled 14-FEB-2019 14-FEB-2019 14-FEB-2019
Determinand Method LOD Units Symbol
Mercury CVAFS (BS EN 13211) 0.5 µg/l U 2.7 <0.5 <0.5
Concept Reference: 804180
Customer Reference: REVITL8140219B
Filter Quartz 47mm Analysed as Filter Quartz 47mm
Particulates (Total)
Concept Reference 804180 009 804180 011
Customer Sample Reference 9. A1 Dust Filter T-42
11. Blank Dust FilterT-82
Test Sample AR AR
Date Sampled 14-FEB-2019 14-FEB-2019
Determinand Method LOD Units Symbol
Particulates (Total) Grav (5 Dec) 0.05 mg U 0.61 <0.05
This document has been printed from a digitally signed master copy
Produced by Concept Life Sciences, Hadfield House, Hadfield Street, Cornbrook, Manchester, M16 9FE Page 2 of 3
Supplement to804180-1
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Index to symbols used in Supplement to 804180-1
Notes
Concept Reference: 804180
Customer Reference: REVITL8140219B
Wash(Acetone) Analysed as Wash(Acetone)
Particulates (Total)
Concept Reference 804180 010 804180 012
Customer Sample Reference 10. A1 Dust Rinse 12. Blank DustRinse
Test Sample AR AR
Date Sampled 14-FEB-2019 14-FEB-2019
Determinand Method LOD Units Symbol
Particulates (Total) Grav 0.3 mg U 2.6 <0.3
Value Description
AR As Received
U Analysis is UKAS accredited
N Analysis is not UKAS accredited
Supplement to 804180: report issued to amend the Copper results for samples 001 & 006, as they were incorrectly reported on the final report without blank correction.
This document has been printed from a digitally signed master copy
Produced by Concept Life Sciences, Hadfield House, Hadfield Street, Cornbrook, Manchester, M16 9FE Page 3 of 3
Supplement to804180-1
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