Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop supply chains (CLSCs) in Sweden. This has an unnecessary environmental impact, indicating not only the potential for more energy-efficient solutions but also the challenges that need to be understood. The purpose of this article is to increase the knowledge of challenges in applying different types of more or less energy-efficient CLSCs for flat glass. Through a literature review, an overview of CLSC types, together with challenges in different areas, is provided. The CLSC types and challenges are corroborated in a flat glass context, including focus groups and expert interviews. Four CLSC types—two CLSCs based on remanufacturing, one on reconditi...
This paper aims to summarize, propose, and discuss existing or emerging strategies to shift towards ...
This paper aims to summarize, propose, and discuss existing or emerging strategies to shift towards ...
Improved energy efficiency in supply chains can reduce both environmental impact and lifecycle costs...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Purpose: This thesis’ purpose is to identify a CLSC model of flat glass, including actors,waste sour...
Purpose: This thesis’ purpose is to identify a CLSC model of flat glass, including actors,waste sour...
Glass is one of the UK’s eight energy-intensive industries. As such, it is under scrutiny to decoupl...
Glass is one of the UK’s eight energy-intensive industries. As such, it is under scrutiny to decoupl...
Acknowledgements: This work was supported by the UK Engineering and Physical Sciences Research Counc...
Single use plastic products (SUPs) are a primary cause of plastic pollution causing significant envi...
Ensuring sustainable consumption and production patterns is one of the 17 Global Goals set in the U...
Ensuring sustainable consumption and production patterns is one of the 17 Global Goals set in the U...
This paper aims to summarize, propose, and discuss existing or emerging strategies to shift towards ...
This paper aims to summarize, propose, and discuss existing or emerging strategies to shift towards ...
Improved energy efficiency in supply chains can reduce both environmental impact and lifecycle costs...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Even if flat glass is 100% recyclable, only 1% is currently handled in circular or closed-loop suppl...
Purpose: This thesis’ purpose is to identify a CLSC model of flat glass, including actors,waste sour...
Purpose: This thesis’ purpose is to identify a CLSC model of flat glass, including actors,waste sour...
Glass is one of the UK’s eight energy-intensive industries. As such, it is under scrutiny to decoupl...
Glass is one of the UK’s eight energy-intensive industries. As such, it is under scrutiny to decoupl...
Acknowledgements: This work was supported by the UK Engineering and Physical Sciences Research Counc...
Single use plastic products (SUPs) are a primary cause of plastic pollution causing significant envi...
Ensuring sustainable consumption and production patterns is one of the 17 Global Goals set in the U...
Ensuring sustainable consumption and production patterns is one of the 17 Global Goals set in the U...
This paper aims to summarize, propose, and discuss existing or emerging strategies to shift towards ...
This paper aims to summarize, propose, and discuss existing or emerging strategies to shift towards ...
Improved energy efficiency in supply chains can reduce both environmental impact and lifecycle costs...