PERANCANGAN PABRIK & PRODUK KIMIA (CHS 41032) Capstone Course PREPARING FOR ENGINEERING PRACTICE...

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PERANCANGAN PABRIK & PRODUK KIMIA (CHS 41032) Capstone Course PREPARING FOR ENGINEERING PRACTICE Knowledge Skills

Transcript of PERANCANGAN PABRIK & PRODUK KIMIA (CHS 41032) Capstone Course PREPARING FOR ENGINEERING PRACTICE...

Page 1: PERANCANGAN PABRIK & PRODUK KIMIA (CHS 41032) Capstone Course PREPARING FOR ENGINEERING PRACTICE KnowledgeSkills.

PERANCANGAN PABRIK &PRODUK KIMIA

(CHS 41032)

Capstone Course

PREPARING FOR ENGINEERING PRACTICE

Knowledge Skills

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Instructors

Prof. Dr. Widodo W. Purwanto (WD)Dr. Setijo Bismo (SB)Dr.rar.nat. Yuswan Muharam (YM)Dosen Tamu dari IndustriAsisten: Mohamad Ibad ST, Akmad Adlan ST

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Course Content

SyllabusChemical Industry and design trendsProcess/plant DesignProblem Formulation, Synthesis, Analysis, EvaluationProduct DesignNeeds, Ideas, Selection, Manufacture

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Chemical Industry and Design Trends

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Role of Chem. Eng.

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Expanding the scope in ChE

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2008 © Partha S Ghosh

The Promise of Chemical Industry has to be applied in Multiple Scales

Sca

les

of

En

gag

emen

tHolistic /Tera Scale

Perspective

Microscopic Perspective

Three Scales of Knowledge Application

Large Scale Systems Dynamics Issues • Global Ecological Balance ?• Energy Balance ?• Social Structures ?

Raw materials

Cellular /Nano Level functionalities

Tera Scale

Current Scale

Micro Nano Scale

1. Efficiency 2. Conservation

3. Recycling

1

2

3

Socializatio

n Pro

cess of M

ultiple d

isciplin

es

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From “Bulk” to “Molecular” Processing

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Raw Materials to Consumer Products

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Natural Herbs to Healthcare Products

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Review Chemical Industry

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Scope of Chemical Product and Process industry

Design of chemical products beginswith the identification and creation ofpotential opportunities to satisfysocietal needs and to generate profit

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Process operation for 3 types of chemical products

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Chemical Product Tree

Source: Gani, 2004

Purity/composition

Performance

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Process-Centered Company to Product-Centered Company

Source: Stephanopoulos, 2004

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Source: Stephanopoulos, 2004

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Source: Stephanopoulos, 2004

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What is engineering design?

The process of applying various techniques and scientific principles for the purpose of defining a device, a process or a system in sufficient detail to permit physical realization.

The design engineer makes choices based on a thorough understanding of the engineering fundamental, feasibility constraint, reliability, cost, manufacturability, and human factors.

Good design requires experience, knowledge and a considerable amount of intuition.

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Product and Process Synthesis, Design, Analysis

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Design Objectives

determine the goal

determine all relevant factors

see the “big picture”

focus on critical issues

economic objective function ++ ecological,

social

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Characteristic of Design

Emphasis on synthesis, + analysis & evaluation Creative, Interactive and Iterative, Problem statement ill-posed and open-ended, Team-oriented and multi-disciplinary, More than one right answer, Retrofit or build new grass roots facilities, Always performed with an eye toward the ultimate

benefit, generally economic.

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Type and level of design

Preliminary or quick-estimate designs

Detailed-estimate designs

Firm process designs or detailed designs

Levels

order of magnitude estimate, ±40%

study estimate, ±25%

preliminary estimate, ±12%

definitive estimate, ±6%

contractor’s estimate, ±3%

Types

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New approach of design

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New approach of design

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Chemical Process/Plant Design

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Process Design Methodology & Innovation Cycle

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Design Innovation Cycle

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Design methodsProblem Definition

Quality Function Deployment (Sullivan, Reich)

Synthesis and AnalysisGreen Chemistry (Anastas)Hierarchical Method (Douglas)Task Integration (Siirola)Exergetical Heuristics (Hinderink)

EvaluationForum DiscussionLife Cycle Assessment (Goedkoop, Cornellissen)Sustainable Process Index (Narodoslawsky, Krotscheck)

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Problem Definition

Process or Products?Life Cycle

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Conceptual Process Design

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Process Design Considerations

Health and Safety HazardsEnvironmental ProtectionPlant LocationPlant LayoutPlant Operations and ControlUtilitiesStructural DesignStorageMaterials HandlingPatent Considerations

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Process Design Scope

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Process Selection

Technical factors

Raw materials

HSE

Equipments

Plants location

Costs (Capex, Opex)

Time factors

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Process Synthesis

Process Synthesis:

Reactor, separation, Heat exchanger, etc

Operating conditions, Heat & Mass balance

Flowsheeting using Software (BFD, PFD, P&ID)

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Process Synthesis via Hierarchical Process Design Methods

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Heuristic for Process SynthesisUnderstand the importance of selecting reaction paths that do not involve toxic or hazardous chemicals, and when unavoidable, to reduce their presence by shortening residence times in the process units and avoiding their storage in large quantities.Be able to distribute the chemicals in a process flowsheet, to account for the presence of inert species, to purge species that would otherwise build up to unacceptable concentrations, to achieve a high selectivity to the desired products.Be able to apply heuristics in selecting separation processes to separate liquids, vapors, and vapor-liquid mixtures.Be able to distribute the chemicals, by using excess reactants, inert diluents, and cold shots, to remove the exothermic heats of reaction.Understand the advantages of pumping a liquid rather than compressing a vapor.

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BFD & PFD – Core Process Synthesis

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Plant Site Selection

Raw material availabilityMarketsEnergy availabilityClimateTransportation facilitiesWater supplyLabor supplyGov. regulation: fiscal regime..Community factors

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ECO, Green, Sustainable - Design

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Chemical & Energy Route Selections

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Green Chemistry and Eng. Inherently Safer Design

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Equipment Sizing

Back to principle of unit operation (movers, mixing/separation, reaction)Process simulatorRule of thumbRational

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Time value of moneyEstimation of costs Quantitative measures of profitabilitySystematic comparison of alternatives

Engineering Economics

Page 45: PERANCANGAN PABRIK & PRODUK KIMIA (CHS 41032) Capstone Course PREPARING FOR ENGINEERING PRACTICE KnowledgeSkills.

Evaluation

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Chemical Product Design

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New specialty chemicals that provide a specific benefit, i.e. Pharmaceuticals

Microstructures of product, rather than molecular structures, creates value: processed foods, household products, personal care products i.e. Paint and Ice Cream, margarine, shampoo, toothpaste,

Devices that effect chemical changes, i.e. Blood Oxygenator in Open Heart Surgery

What is CPD?

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Why CPD Is Important

Changes in the Chemical Industry

Changes in Employment

Changes in Corporate Culture

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Preliminary Product Design

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Chemical Process vs. Product Design

PROCESS DESIGN PRODUCT DESIGN

•Batch vs. Continous Process

•Identify Customer Needs

•Inputs and Outputs •Generate Ideas to Meet Needs

•Reactors and Recycles •Select among Ideas

•Separation and Heat Integration

•Manufacture Products

Page 51: PERANCANGAN PABRIK & PRODUK KIMIA (CHS 41032) Capstone Course PREPARING FOR ENGINEERING PRACTICE KnowledgeSkills.

Needs What needs should the product

fulfill ?

Ideas What different products could

satisfy these needs ?

Selection Which idea are the most

promising ?

Manufacture How can we make the product in

commercial quantities ?

The Product Design Procedure

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The Industrial Design Process

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Product Development Process

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Customer Needs Process

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Product Specification

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Product Specification

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Idea/Concept Generation

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Concept Selection

• The goal of concept selection is not to select the best concept • The goal of concept selection is to develop the best concept.

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Manufacturing

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Time value of moneyQuantitative measures of profitabilityEstimation of costsSystematic comparison of alternatives

Engineering Economics

Page 61: PERANCANGAN PABRIK & PRODUK KIMIA (CHS 41032) Capstone Course PREPARING FOR ENGINEERING PRACTICE KnowledgeSkills.

Place of the Designers