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1. Electricity Generation from Low and Medium Temperature Industrial Excess Heat in the Kraft Pulp and Paper Industry

2. Electricity Generation from Low and Medium Temperature Industrial Excess Heat in the Kraft Pulp and Paper Industry

3. Electricity Generation from Low and Medium Temperature Industrial Excess Heat in the Kraft Pulp and Paper Industry

4. Electricity Generation from Low and Medium Temperature Industrial Excess Heat in the Kraft Pulp and Paper Industry

5. Electricity Generation from Low and Medium Temperature Industrial Excess Heat in the Kraft Pulp and Paper Industry

6. Drivers, Barriers, and Success Factors for Improving Energy Management in the Pulp and Paper Industry

7. Drivers, Barriers, and Success Factors for Improving Energy Management in the Pulp and Paper Industry

8. Drivers, Barriers, and Success Factors for Improving Energy Management in the Pulp and Paper Industry

9. Drivers, Barriers, and Success Factors for Improving Energy Management in the Pulp and Paper Industry

10. Drivers, Barriers, and Success Factors for Improving Energy Management in the Pulp and Paper Industry

11. Drivers, Barriers, and Success Factors for Improving Energy Management in the Pulp and Paper Industry

12. Barriers to and Drivers of Energy Management in Swedish SMEs

13. Barriers to and Drivers of Energy Management in Swedish SMEs

14. Barriers to and Drivers of Energy Management in Swedish SMEs

15. Barriers to and Drivers of Energy Management in Swedish SMEs

16. Barriers to and Drivers of Energy Management in Swedish SMEs

17. Barriers to and Drivers of Energy Management in Swedish SMEs

18. Specific Energy Consumption/Use (SEC) in Energy Management for Improving Energy Efficiency in Industry: Meaning, Usage and Differences

19. Specific Energy Consumption/Use (SEC) in Energy Management for Improving Energy Efficiency in Industry: Meaning, Usage and Differences

20. Drivers and Barriers to Industrial Energy Efficiency in Textile Industries of Bangladesh

21. Specific Energy Consumption/Use (SEC) in Energy Management for Improving Energy Efficiency in Industry: Meaning, Usage and Differences

22. Specific Energy Consumption/Use (SEC) in Energy Management for Improving Energy Efficiency in Industry: Meaning, Usage and Differences

23. Drivers and Barriers to Industrial Energy Efficiency in Textile Industries of Bangladesh

24. Drivers and Barriers to Industrial Energy Efficiency in Textile Industries of Bangladesh

25. Specific Energy Consumption/Use (SEC) in Energy Management for Improving Energy Efficiency in Industry: Meaning, Usage and Differences

26. Drivers and Barriers to Industrial Energy Efficiency in Textile Industries of Bangladesh

27. Drivers and Barriers to Industrial Energy Efficiency in Textile Industries of Bangladesh

28. Specific Energy Consumption/Use (SEC) in Energy Management for Improving Energy Efficiency in Industry: Meaning, Usage and Differences

29. Investigating Energy Use in a City District in Nordic Climate Using Energy Signature

30. Investigating Energy Use in a City District in Nordic Climate Using Energy Signature

31. Investigating Energy Use in a City District in Nordic Climate Using Energy Signature

32. Investigating Energy Use in a City District in Nordic Climate Using Energy Signature

33. Investigating Energy Use in a City District in Nordic Climate Using Energy Signature

34. Taxonomy, Saving Potentials and Key Performance Indicators for Energy End-Use and Greenhouse Gas Emissions in the Aluminium Industry and Aluminium Casting Foundries

35. Taxonomy, Saving Potentials and Key Performance Indicators for Energy End-Use and Greenhouse Gas Emissions in the Aluminium Industry and Aluminium Casting Foundries

36. Taxonomy, Saving Potentials and Key Performance Indicators for Energy End-Use and Greenhouse Gas Emissions in the Aluminium Industry and Aluminium Casting Foundries

37. Taxonomy, Saving Potentials and Key Performance Indicators for Energy End-Use and Greenhouse Gas Emissions in the Aluminium Industry and Aluminium Casting Foundries

38. Taxonomy, Saving Potentials and Key Performance Indicators for Energy End-Use and Greenhouse Gas Emissions in the Aluminium Industry and Aluminium Casting Foundries

39. Systems Analysis of Biogas ProductionPart I Research Design

40. Systems Analysis of Biogas ProductionPart I Research Design

41. Systems Analysis of Biogas ProductionPart I Research Design

42. Systems Analysis of Biogas ProductionPart I Research Design

43. Systems Analysis of Biogas ProductionPart I Research Design

44. Energy Use and Perceived Indoor Environment in a Swedish Multifamily Building before and after Major Renovation

45. Industrial Energy Management Systems and Energy-Related Decision-Making

46. Assessing Swedish Foundries Energy Management Program

47. Energy Use and Perceived Indoor Environment in a Swedish Multifamily Building before and after Major Renovation

48. Energy Use and Perceived Indoor Environment in a Swedish Multifamily Building before and after Major Renovation

49. Industrial Energy Management Systems and Energy-Related Decision-Making

50. Industrial Energy Management Systems and Energy-Related Decision-Making