Green supply chain management: product life cycle approach
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York, NY [u.a.]
McGraw Hill
2011
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVII, 302 S. graph. Darst. |
ISBN: | 9780071622837 |
Internformat
MARC
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245 | 1 | 0 | |a Green supply chain management |b product life cycle approach |c Hsiao-Fan Wang ; Surendra M. Gupta |
264 | 1 | |a New York, NY [u.a.] |b McGraw Hill |c 2011 | |
300 | |a XVII, 302 S. |b graph. Darst. | ||
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Datensatz im Suchindex
DE-BY-862_location | 2000 |
---|---|
DE-BY-FWS_call_number | 2000/QP 530 W246 |
DE-BY-FWS_katkey | 415444 |
DE-BY-FWS_media_number | 083000504369 |
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adam_text | IMAGE 1
CONTENTS
PREFACE XVACKNOWLEDGMENTS XVII
PART 1 BASIC CONCEPTS AND BACKGROUND
1 INTRODUCTION 3
1.1 DEVELOPMENT OF GREEN SUPPLY CHAIN MANAGEMENT 3
1.2 EVOLUTION OF GSCM FROM SCM 4
1.3 IMPACT OF GSCM ON INDUSTRY 6
1.3.1 IMPACT OF GSCM ON INDUSTRY TACTICS . . .. 7 1.3.2 IMPACT OF THE
GREEN SUPPLY CHAIN ON INDUSTRIAL ADMINISTRATION 8
1.3.3 INTENSIFICATION OF COMPETITION BY GSCM 10
1.4 SUMMARY AND CONCLUSION 10
REFERENCES 12
2 MATHEMATICAL BACKGROUND 13
2.1 FUZZY NUMBERS AND ARITHMETIC 13
2.2 UTILITY THEORY 15
2.3 THE ANALYTIC HIERARCHY PROCESS (AHP) 17 2.3.1 BASIC CONCEPTS AND
PAIRWISE COMPARISON 18
2.3.2 THE PROCEDURE 23
2.3.3 AN EXAMPLE: DETERMINING CONSUMER PREFERENCE 24
2.4 OPTIMIZATION PROGRAMMING 30
2.4.1 MULTI-OBJECTIVE LINEAR PROGRAM (MOLP) 31
2.4.2 ILLUSTRATIVE EXAMPLE 32
REFERENCES 33
PART 2 GREEN ENGINEERING TECHNOLOGY
3 GREEN ENGINEERING 37
3.1 INTRODUCTION 37
VII
IMAGE 2
VIII C O N T E N TS
3.2 GREEN DESIGN 38
3.2.1 DESIGN FOR X 38
3.2.2 LIFE CYCLE ANALYSIS 39
3.2.3 MATERIAL SELECTION 39
3.3 SOME GREEN DESIGN GUIDELINES 40
3.3.1 MODULAR PRODUCT STRUCTURE 40
3.3.2 DESIGN OF FUNCTIONAL UNITS 40
3.3.3 MATERIAL SELECTION 41
3.3.4 MINIMIZE WASTE AND HARMFUL CONTAMINATING MATERIALS 41
3.3.5 EASE OF SEPARATION 41
3.3.6 STEPS FOR DESIGNING GREEN PRODUCTS . . .. 41
3.4 PRODUCT RECOVERY AT THE END-OF-LIFE 43
3.5 THE 12 PRINCIPLES OF GREEN ENGINEERING 45
3.5.1 INHERENT RATHER THAN CIRCUMSTANTIAL. . .. 45 3.5.2 PREVENTION
INSTEAD OF TREATMENT 45
3.5.3 DESIGN FOR SEPARATION 46
3.5.4 MAXIMIZE EFFICIENCY 46
3.5.5 OUTPUT-PULLED VERSUS INPUT-PUSHED . . .. 46 3.5.6 CONSERVE
COMPLEXITY 46
3.5.7 DURABILITY RATHER THAN IMMORTALITY . . .. 46 3.5.8 MEET NEED,
MINIMIZE EXCESS 46
3.5.9 MINIMIZE MATERIAL DIVERSITY 46
3.5.10 INTEGRATE MATERIAL AND ENERGY FLOWS . . .. 46 3.5.11 DESIGN FOR
COMMERCIAL AFTERLIFE 46
3.5.12 RENEWABLE RATHER THAN DEPLETING 46
REFERENCES 47
4 GREEN MATERIALS 51
4.1 INTRODUCTION 51
4.2 WEEE AND ROHS DIRECTIVES 51
4.3 SELECTION OF MATERIALS 52
4.3.1 METALS 52
4.3.2 CERAMICS 52
4.3.3 POLYMER THERMOPLASTICS 53
4.3.4 POLYMER THERMOSETS 53
4.3.5 ELASTOMERS 53
4.3.6 NATURAL ORGANIC MATERIALS 53
4.3.7 COMPOSITES 54
4.4 CONCLUSIONS 54
REFERENCES 54
5 ENVIRONMENTAL DESIGN 55
5.1 INTRODUCTION 55
IMAGE 3
C O N T E N TS
5.2 DESIGN FOR DISASSEMBLY INDEX 56
5.2.1 NOMENCLATURE 57
5.2.2 THE COST-BENEFIT FUNCTION 58
5.2.3 DFDI CALCULATION PROCEDURE 60
5.2A AN APPLICATION OF THE PROCEDURE 60
5.2.5 THE OPTIMIZATION MODEL 67
5.2.6 AN APPLICATION OF THE OPTIMIZATION PROCEDURE 69
5.3 USE OF SENSOR EMBEDDED PRODUCTS . . . . . . . .. 71
5.3.1 SENSOR-EMBEDDED PRODUCTS (SEPS) 71 5.3.2 REMOTE MONITORING CENTER
(RMC) 72 5.3.3 MAINTENANCE CENTER 73
5.3.4 DISASSEMBLY CENTER 73
5.3.5 RECYCLING CENTER . 74
5.3.6 REMANUFACTURING CENTER 74
5.3.7 DISPOSAL CENTER 74
5.3.8 SENSOR DATA MINING 74
5.4 BENEFITS FROM SEP AND PRODUCT MONITORING FRAMEWORK . . 74
REFERENCES 75
PART 3 GREEN VALUE CHAIN MANAGEMENT
6 GREEN PROCUREMENT: VENDOR SELECTION WITH RISK ANALYSIS 79
6.1 INTRODUCTION 79
6.2 RISK ANALYSIS OF GREEN VENDOR SELECTION . 80
6.2.1 CRITERIA OF SELECTION WITH THEIR HIERARCHICAL RELATIONS 81
6.2.2 WEIGHTING OF THE CRITERIA 81
6.2.3 MEASURES OF THE ATTRIBUTES 83
6.3 VENDOR EVALUATION AND SELECTION . . . . . . . . .. 89
6.3.1 RISK AGGREGATION METHOD 89
6.3.2 RANKING METHOD 90
6.4 SENSITIVITY ANALYSIS AND ALLIANCE DEVELOPMENT 91
6.4.1 ISSUES OF SENSITIVITY ANALYSIS . . 91
6.4.2 SENSITIVITY ANALYSIS ON AHP . 92
6.5 SUMMARY OF THE SELECTION PROCEDURE 92
6.6 NUMERICAL EXAMPLE 93
6.6.1 ESTIMATION OT RISKS AND RANKING OF TWO SUPPLIERS 93
IMAGE 4
X CONTENTS
6.6.2 SENSITIVITY ANALYSIS 99
6.6.3 CONCLUSION OF THE EXAMPLE . . . . . . . . .. 101
6.7 SUMMARY AND CONCLUSION 101
REFERENCES * 102
APPENDIX: PAIRWISE MATRICES GIVEN FOR AHP OF THE NUMERICAL EXAMPLE , , ,
, , . . , , . .. 102
GREEN PRODUCTION: MANUFACTURE AND REMANUF&CTURE IN CERTAIN AND UNCERTAIN
ENVIRONMENTS . . . . . . . .. 105
7.1 INTRODUCTION 105
7.2 CURRENT DEVELOPMENT. . * . 107
7.2.1 ELEMENTS OF THE LOT-SIZING MODEL 107
7.2.2 CURRENT LOT-SIZING MODELS 108
7.23 CONCLUSION 109
7.3 THE GREEN LOT-SIZING PRODUCTION MODEL I LL
7.3.1 FRAMEWORK OF THE PERIODIC CLOSED-LOOP PRODUCTION SYSTEM VCI
7.3.2 MODELING IN A CERTAIN ENVIRONMENT . . .. ILL 7.3.3 MODELING IN AN
UNCERTAIN ENVIRONMENT . . 115 7.4 NUMERICALLLLUSTRATION 120
7.5 SUMMARY AND CONCLUSION 123
REFERENCES , . . . . 124
8 GREEN LOGISTICS: RECYCLING WITH CERTAIN AND UNCERTAIN SITUATIONS , ,
125
8.1 INTRODUCTION 125
8.2 DETERMINISTIC MODELING OF CLOSED-LOOP LOGISTICS 127
8.2.1 THE DETERMINISTIC CLOSED-LOOP LOGISTICS MODEKDCLL) 128
8.2.2 THE TRANSFORMED INTEGER LINEAR PROGRAMMING MODEL 131
8.2.3 AN ILLUSTRATIVE EXAMPLE 134
8.3 CLOSED-LOOP MODELING FOR UNCERTAIN LOGISTIC 137
8.3.1 THE FUZZY PROGRAMMING MODEL 137 8.3.2 RESOLUTION OF UNCERTAINLY
140
8.3.3 NUMERICALLLLUSTRATION 155
8.4 CONCLUSIONS 164
REFERENCES . , . . . . . . .. 165
APPENDIX; COMPARISON OF THE EXPECTED OBJECTIVE VALUE BETWEEN Q AND 62 .
. . . . .. 167
IMAGE 5
C O N T E N TS XI
9 GREEN CUSTOMERS: FEATURES AND IDENTIFICATION 169 9.1 INTRODUCTION 169
9.2 FEATURES OF THE GREEN CONSUMERS 169
9.2.1 DEMOGRAPHIC CHARACTERISTICS 170
9.2.2 PSYCHOGRAPHIC CHARACTERISTICS 171
9.3 QUESTIONNAIRE DESIGN 172
9.4 ANALYTICAL METHODS 172
9.4.1 SAMPLE SIZE DETERMINATION 172
9.4.2 DATA ANALYSIS . , 181
9.4.3 CLUSTER ANALYSIS 182
9.5 TARGET CONSUMER IDENTIFICATION: NUMERICAL ILLUSTRATION 187
9.5.1 SAMPLE SIZE DETERMINATION 187
9.5.2 QUANTIFICATION OF THE SURVEY DATA 189 9.5.3 DISTRIBUTIONS OF
SOCIODEMOGRAPHIC VARIABLES 189
9.5.4 FACTOR ANALYSIS 189
9.5.5 TARGET CUSTOMER IDENTIFICATION 190
9.5.6 CONCLUSION OF THE NUMERICAL EXAMPLE . . . 192 9.6 SUMMARY AND
CONCLUSION 194
REFERENCES 196
10 END-OF-LIFE MANAGEMENT: DISASSEMBLY AND REUSE 197
10.1 INTRODUCTION 197
10.2 CURRENT DEVELOPMENT * 198
10.2.1 ISSUES WITH A CLOSED-LOOP SUPPLY CHAIN 198
10.2.2 LIFE-CYCLE EFFECTS ON THE QUANTITY AND QUALITY OF RETURNED
PRODUCTS 199
10.2.3 EOL AND END-OF-USE RECOVERY SELECTION . 201
10.3 CONCEPT OF DISASSEMBLY 202
10.3.1 DESIGN FOR DISASSEMBLY REPRESENTATION 204
10.3.2 DEMAND-DRIVEN DISASSEMBLY PLANNING 208
10.4 DISASSEMBLY TO DEMAND (D2D): MODELING AND ANALYSIS 208
10.4.1 REPRESENTATION OF PRODUCT STRUCTURE . . .. 209 10.4.2 DISASSEMBLY
CONFIGURATIONS FOR MODULES 210
IMAGE 6
CONTENTS
10.4.3 RESTRICTIONS OF RECOVERY OPTIONS 211 10.4.4 MATHEMATICAL MODEL
211
10.5 AN ILLUSTRATIVE EXAMPLE. 220
10.6 CONCLUSION AND FUTURE RESEARCH DIRECTION . . .. 221 REFERENCES. . .
223
PART 4 GREEN INFORMATION MANAGEMENT SYSTEMS 11 DATABASE FOR LIFE CYCLE
ASSESSMENT; PROCEDURE WITH DATABASE 229
11.1 INTRODUCTION 229
11.1.1 APPLICABLE INTERNATIONAL STANDARDS ON PRODUCT CARBON FOOTPRINT
230
11.1.2 AVAILABLE SOFTWARE FOR LCA. 231
11.1.3 INVENTORY OF PRODUCT CARBON FOOTPRINT . . 235 11.1.4 SUMMARY AND
CONCLUSION . 236
11.2 PROCEDURE OF LCA 237
11.2.1 SETTING THE INVENTORY TARGET FOR THE SELECTED PRODUCT 237
11.2.2 SETTING THE BORDERLINE 237
11.2.3 IDENTIFICATION OF EMISSION SOURCE 238 11.3 DATA COLLECTION I . ;
239
11.4 QUANTIFICATION OF EMISSION 239
11.4.1 METHODS OF QUANTIFICATION 239
11.4.2 SELECTION OF THE EMISSION COEFFICIENT . . .. 241 11.4.3 SUMMARY
OF QUANTIFICATION RESULTS 241 11.4.4 CONSTRUCTION OF INVENTORY DATABASE
. . .. 241 11.5 IMPARTIAL THIRD-PARTY VERIFICATION. 241
11.5.1 GENERAL REQUIREMENTS 242
11.5.2 MONITORING MECHANISM OF IMPARTIALITY . . 244 11.6 AN ILLUSTRATIVE
EXAMPLE. , 244
11.6.1 SETTING THE BORDERLINE . . . . 244
11.6.2 IDENTIFICATION OF EMISSION SOURCE 245 11.6.3 APPLICATION
SIMULATION 245
11.6.4 QUANTIFICATION OF EMISSION FROM STORAGE AND TRANSPORT 248
11.6.5 SUMMARY AND DISCUSSION 250
11.7 CONCLUSION 251
REFERENCES 251
APPENDIX: EMISSION FACTORS AND COEFFICIENT CHARTS OF DIFFERENT
INDUSTRIES AND NATIONS . . 252
IMAGE 7
C O N T E N TS
12 WEB-BASED INFORMATION SUPPORT SYSTEMS 265
12.1 INTRODUCTION 265
12.1.1 INFRASTRUCTURE OF RECOMMENDER SYSTEMS 267
12.1.2 RECOMMENDATION METHODS 268
12.1.3 ROLES AND THEIR GOALS IN A RECOMMENDER SYSTEM 270
12.1.4 SUMMARY AND DISCUSSION 271
12.2 OPERATIONS IN THE SUBMODULES OF THE SYSTEM . . . 271 12.2.1 OFFLINE
OPERATIONS 271
12.2.2 ONLINE OPERATIONS 276
12.2.3 MEASURES OF RECOMMENDATION PERFORMANCE . 279
12.2.4 SUMMARY OF OFFLINE AND ONLINE OPERATION PROCEDURES 279
12.3 AN ILLUSTRATIVE CASE: LAPTOPS RS OF A 3C RETAILER 280
12.3.1 EXPERIMENTS OF STRATEGY IMPLEMENTATION 280
12.3.2 SUMMARY AND REMARKS OF EXPERIMENTS 284
12.4 CONCLUSION 288
REFERENCES 289
INDEX 291
|
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author | Wang, Hsiao-Fan Gupta, Surendra M. |
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ctrlnum | (OCoLC)748242487 (DE-599)BVBBV039673685 |
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dewey-sort | 3658.7 |
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discipline | Allgemeines Wirtschaftswissenschaften |
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id | DE-604.BV039673685 |
illustrated | Illustrated |
indexdate | 2024-08-01T11:17:08Z |
institution | BVB |
isbn | 9780071622837 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024522759 |
oclc_num | 748242487 |
open_access_boolean | |
owner | DE-1050 DE-862 DE-BY-FWS DE-20 DE-634 DE-92 |
owner_facet | DE-1050 DE-862 DE-BY-FWS DE-20 DE-634 DE-92 |
physical | XVII, 302 S. graph. Darst. |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | McGraw Hill |
record_format | marc |
spellingShingle | Wang, Hsiao-Fan Gupta, Surendra M. Green supply chain management product life cycle approach Supply Chain Management (DE-588)4684051-5 gnd Nachhaltigkeit (DE-588)4326464-5 gnd |
subject_GND | (DE-588)4684051-5 (DE-588)4326464-5 |
title | Green supply chain management product life cycle approach |
title_auth | Green supply chain management product life cycle approach |
title_exact_search | Green supply chain management product life cycle approach |
title_full | Green supply chain management product life cycle approach Hsiao-Fan Wang ; Surendra M. Gupta |
title_fullStr | Green supply chain management product life cycle approach Hsiao-Fan Wang ; Surendra M. Gupta |
title_full_unstemmed | Green supply chain management product life cycle approach Hsiao-Fan Wang ; Surendra M. Gupta |
title_short | Green supply chain management |
title_sort | green supply chain management product life cycle approach |
title_sub | product life cycle approach |
topic | Supply Chain Management (DE-588)4684051-5 gnd Nachhaltigkeit (DE-588)4326464-5 gnd |
topic_facet | Supply Chain Management Nachhaltigkeit |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024522759&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT wanghsiaofan greensupplychainmanagementproductlifecycleapproach AT guptasurendram greensupplychainmanagementproductlifecycleapproach |
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