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基于企業(yè)社會責(zé)任的中國企業(yè)制造業(yè)能源效率研究

發(fā)布時間:2023-08-30 01:34
  為了實(shí)現(xiàn)低碳發(fā)展將全球氣候變暖限制在1.5攝氏度以內(nèi),低碳能源正在逐步取代化石燃料,全球范圍內(nèi)對節(jié)能產(chǎn)品和燃料的需求日趨迫切,如何對能源危機(jī)進(jìn)行管理已成為一個重要的學(xué)術(shù)問題。而在現(xiàn)實(shí)中全球?qū)Τ跫壞茉聪脑黾印厥覛怏w排放量增加以及資源供給不確定性的擔(dān)憂已將提高能源效率推到大多數(shù)國家政策議程的首位,節(jié)能減排被確定為與企業(yè)社會責(zé)任(CSR)舉措密切相關(guān)的要素。綜上所述,能源對經(jīng)濟(jì)社會增長、維護(hù)國家長期發(fā)展不可或缺,而提高能源效率是解決能源短缺的關(guān)鍵技術(shù)手段。能源效率概念可以幫助企業(yè)履行社會責(zé)任,而社會經(jīng)濟(jì)發(fā)展中的某些因素可能會限制或提高能源效率和企業(yè)社會責(zé)任。本文研究的目標(biāo)是確定影響可持續(xù)制造的障礙、驅(qū)動因素及方法,并構(gòu)建基于企業(yè)社會責(zé)任的能源效率提升整體框架。本文研究目標(biāo)是調(diào)查、評估和模擬基于能源效率的企業(yè)社會責(zé)任(EECSR)實(shí)施的障礙;其次,分析、評估和模擬EECSR實(shí)施的可能驅(qū)動因素;第三,探索克服EECSR障礙的方法。最終目標(biāo)是根據(jù)研究結(jié)果制定實(shí)施框架,幫助中國制造業(yè)實(shí)施EECSR。為了滿足研究目標(biāo),本文采用集成結(jié)構(gòu)建模(ISM),結(jié)合分類的交叉影響矩陣乘法(MICMAC)、模糊...

【文章頁數(shù)】:174 頁

【學(xué)位級別】:博士

【文章目錄】:
摘要
ABSTRACT
CHAPTER 1 INTRODUCTION
    1.1 Research Background and Significance
        1.1.1 Energy Efficiency
        1.1.2 Corporate Social Responsibility
        1.1.3 Energy Efficiency based CSR
        1.1.4 Research Scope and Problem
        1.1.5 Why study China?
        1.1.6 Research Aims and Objectives
        1.1.7 Research Questions
    1.2 Research Work and Innovation
        1.2.1 Research Work
        1.2.2 Research Innovation
    1.3 Dissertation Structure
CHAPTER 2 Literature Review and Theoretical Perspective
    2.1 Theoretical Foundation
        2.1.1 CSR and Stakeholders Theory
        2.1.2 Resource Based Theory
        2.1.3 Institutional Theory
    2.2 Literature Review on EECSR
        2.2.1 Literature related to Energy Efficiency
        2.2.2 Literature related to Corporate Social Responsibility
        2.2.3 Integration of CSR and Energy Efficiency
        2.2.4 Literature on EECSR Barriers
        2.2.5 Literature on EECSR Drivers
        2.2.6 Literature on EECSR Solutions
    2.3 Literature on Research Methods
        2.3.1 Comprehensive Literature Review
        2.3.2 Literature on Delphi Method
        2.3.3 Interpretive Structural Modeling Literature
        2.3.4 Fuzzy AHP/ Fuzzy TOPSIS Literature
    2.4 Chapter Summary
CHAPTER 3 Modeling and Classification of EECSR Barriers and Drivers
    3.1 Application of Delphi Method
    3.2 Modeling of EECSR Barriers and Drivers Using ISM
    3.3 Clustering of EECSR Barriers/Drivers using MICMAC
    3.4 Barriers Structure Analysis
    3.5 Drivers Structure Analysis
    3.6 Chapter Summary and Conclusions
CHAPTER 4 Prioritizing the Solutions to Overcome EECSR Implementation Barriers– FAHP/FTOPSIS Approach
    4.1 FAHP and FTOPSIS Research Methodology
        4.1.1 Phase1:Evaluation of EECSR Barriers and Strategies to Remove Barriers
        4.1.2 Phase2:Fuzzy Analytical Hierarchy Process(FAHP)
        4.1.3 Phase3:Fuzzy TOPSIS
    4.2 Implementation of the Suggested Method for EECSR Implementation in Manufacturing Sector
        4.2.1 Phase1:Identification of EECSR Barriers and Strategies to Mitigate Barriers
        4.2.2 Phase2:Fuzzy AHP to Compute the Weights of the EECSR Barriers
        4.2.3 Phase3:Fuzzy TOPSIS for ranking the Solutions for EECSR Implementation
    4.3 Results and Discussion
    4.4 Summary
CHAPTER 5 Conclusion and Recommendations
    5.1 Conclusion
    5.2 Implementation Recommendation
    5.3 Limitations of Study
    5.4 Recommendations for Future Research Directions
APPENDIXES
    Appendix A
    Appendix B
REFERENCES
ACKNOWLEDGEMENTS
PUBLICATIONS



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