I-water Slide Presentation Etp Group 49

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    I-WaTER

    Integrated Wastewater Treatment

    Enhanced Reactor

    ENGINEERING TEAM PROJECT MAY 2012

    GROUP 49

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    MOHAMAD SHAMSURI BIN MAHUSSIN 13550

    NURUL SYAZA BINTI MD ANUAR 13697

    LIM CAMILLE 13931

    MUHAMMAD YUSRI BIN GAZALI 13752

    KANG CHUN HONG 13835

    MUHAMMAD ZULFADHLI BIN RUSLAN 13755

    SUPERVISOR: AP Dr. Shamsul Rahman B M Kutty

    GROUP MEMBERS

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    Introduction

    Problem Statements

    Objectives

    Literature Review

    Methodology Project Planning

    Technical Review

    Overall System & Components

    Cost Analysis

    Comparative Analysis

    Market Potential

    Recommendations

    Conclusions

    CONTENT PREVIEW

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    Wastewater treatment

    Implementation in household areas Integrates all different processes of water

    treatment

    Minimal space usage Affordable for household usage

    Energy saver

    INTRODUCTION

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    Space consuming

    Waste of energyFailure of Anoxic Tank

    Financial cost

    PROBLEM STATEMENT

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    To prevent energy wasting

    To reduce space usage To handle human waste efficiently

    To bring positive impact to the

    environment The product will require easy and low

    maintenance

    OBJECTIVES

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    Processes in Treatment Plant

    Primary Treatment

    Secondary Treatment

    Tertiary Treatment

    LITERATURE REVIEW

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    process for

    treating sewage and industrialwastewaters

    using air and a biological floc composed

    of bacteria and protozoans use pump

    Activated Sludge

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    Anoxic Chamber

    Aeration Tank

    Anoxic Chambers

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    DATA GATHERING

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    79%

    21%

    Do you know what wastewater treatment is?

    Yes

    No

    10%

    90%

    Do you know how does water treatment plant

    works?

    Yes

    No

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    88%

    12%

    Do you know the importance of

    wastewater treatment?

    Yes

    No

    70%

    30%

    Do you think I-WaTER

    project is feasible?

    Yes

    No65%

    35%

    Are you interested to

    use I-WaTER?

    Yes

    No

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    METHODOLOGY

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    Plan the design and the materials to be used

    Conducting research regarding chemical processes used

    Finalizing the design

    Fabrication of tank in factory

    Fabrication of baffle systems

    Assembling the I-WaTER

    Experimentation and improvement

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    PROJECT PLANNING

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    OVERALL SYSTEMS AND

    COMPONENTS

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    Proposed Design

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    Design of Baffles System

    20cm

    FRONT VIEW

    6 cm

    TOP VIEW

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    Design of Baffles System

    MaterialAluminiumSheet

    (Thickness:0.5mm)

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    Fabrication Process

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    Fabrication Process

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    Assembled Tank

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    Running Process

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    Project in UTP Sewage Treatment

    Plant

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    CHEMICAL REACTION

    Denitrification process

    Nitrification process

    Anoxic process

    Aerobic process

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    COST ANALYSIS

    NUMBER ITEM AMOUNT PRICE(RM) PER UNIT TOTAL(RM)

    1.

    PVC pipe

    (various length)

    - - 50.00

    2. Air Pump 1 15.00 15.00

    3. Water Pump 1 23.00 23.00

    4. Timer 1 13.00 13.00

    5. Hardware - 42.00 42.00

    6. Aluminum strip 1 roll 25.00 25.00

    7. Aeration tank 1 (Taken from previous students) -

    8. Anaerobic tank 1 (Taken from previous students) -

    9. Clarifier 1 2980.00 2980.00

    TOTAL 3148.00

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    COMPARATIVE ANALYSIS

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    Calculation of running cost of I-WaTER

    RM 330.59 100%

    95%

    5%

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    Rural/Sub-urban area

    Household, villages, small residential areas

    MARKET POTENTIAL

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    Reduce tank size

    Lower the flow rate

    Proper manufacturing of thebaffle

    FUTURE RECOMMENDATIONS

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    CONCLUSION

    High market

    potential

    Cheapercompared to

    existing systemsSpace-saving

    Energy-saving

    Cost-saving

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    Rural/Sub-urban area

    Household, villages, small residential areas

    MARKET POTENTIAL

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    MARKET POTENTIAL

    BCC Research: WWT Products Forecast in 2016 ($ Billions)

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    MARKET POTENTIAL

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    Reduce tank size

    Lower the flow rate

    Proper manufacturing of thebaffle

    FUTURE RECOMMENDATIONS

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    CONCLUSION

    High market

    potential

    Space-saving Energy-savingCost-saving