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Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project

PURPOSE: There is an increasing interest in the use of non-nutritive sweeteners to replace added sugar in food and beverage products for reasons of improving consumer health. Much work has been done to understand safety of sweeteners, but very little on sustainability. To address that gap, this stud...

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Autores principales: Suckling, J., Morse, S., Murphy, R., Astley, S., Halford, J. C. G., Harrold, J. A., Le-Bail, A., Koukouna, E., Musinovic, H., Perret, J., Raben, A., Roe, M., Scholten, J., Scott, C., Stamatis, C., Westbroek, C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9839952/
https://www.ncbi.nlm.nih.gov/pubmed/36686846
http://dx.doi.org/10.1007/s11367-022-02127-9
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author Suckling, J.
Morse, S.
Murphy, R.
Astley, S.
Halford, J. C. G.
Harrold, J. A.
Le-Bail, A.
Koukouna, E.
Musinovic, H.
Perret, J.
Raben, A.
Roe, M.
Scholten, J.
Scott, C.
Stamatis, C.
Westbroek, C.
author_facet Suckling, J.
Morse, S.
Murphy, R.
Astley, S.
Halford, J. C. G.
Harrold, J. A.
Le-Bail, A.
Koukouna, E.
Musinovic, H.
Perret, J.
Raben, A.
Roe, M.
Scholten, J.
Scott, C.
Stamatis, C.
Westbroek, C.
author_sort Suckling, J.
collection PubMed
description PURPOSE: There is an increasing interest in the use of non-nutritive sweeteners to replace added sugar in food and beverage products for reasons of improving consumer health. Much work has been done to understand safety of sweeteners, but very little on sustainability. To address that gap, this study presents the results of a life cycle assessment (LCA) of production of rebaudioside A 60%, 95% pure (RA60) steviol glycoside mix from Stevia rebaudiana leaf grown in Europe. METHODS: An attributional cradle-to-factory-gate life cycle assessment was conducted on growing of stevia leaves and extraction of steviol glycosides in Europe. Primary data were used from a case study supply chain. Results are reported in impact categories from the ReCiPe 2016 (H) method, with focus given to global warming potential, freshwater eutrophication, water consumption, and land use. Impacts are expressed both in terms of production mass and sweetness equivalence, a common metric for understanding high intensity sweetener potency. Sweetness equivalence of RA60 is typically 200 to 300 times that of sugar. Comparison of environmental impact is made to sugar (sucrose) produced from both cane and beets. The research is part of the EU project SWEET (sweeteners and sweetness enhancers: impact on health, obesity, safety, and sustainability). RESULTS AND DISCUSSION: Global warming potential for production of RA60 was found to be 20.25 kgCO(2)-eq/kg(RA60) on a mass basis and 0.081 kgCO(2)-eq/kg(SE) on a sweetness equivalence basis. Field production of stevia leaves was found to be the main source of impact for most impact categories, and for all four focus categories. Extraction of the RA60 was the main source of impact for the others. Leaf processing and seedling propagation were minor contributors to life cycle impact. Removal of international transport from the supply chain reduced global warming potential by 18.8%. Compared with sugar on a sweetness equivalence basis, RA60 has approximately 5.7% to 10.2% the impact for global warming potential, 5.6% to 7.2% the impact for land use, and is lower across most other impact categories. CONCLUSION: This is the first LCA of steviol glycoside mix RA60 produced from leaf in Europe. The results indicate that RA60 can be used to reduce environmental impact of providing a sweet taste by replacing sugar across all impact categories. However, it is important to note that specific formulations in which RA60 is used will have a bearing on the final environmental impact of any food or beverage products. For solid foods, this requires further research. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s11367-022-02127-9.
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spelling pubmed-98399522023-01-17 Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project Suckling, J. Morse, S. Murphy, R. Astley, S. Halford, J. C. G. Harrold, J. A. Le-Bail, A. Koukouna, E. Musinovic, H. Perret, J. Raben, A. Roe, M. Scholten, J. Scott, C. Stamatis, C. Westbroek, C. Int J Life Cycle Assess Lca for Energy Systems and Food Products PURPOSE: There is an increasing interest in the use of non-nutritive sweeteners to replace added sugar in food and beverage products for reasons of improving consumer health. Much work has been done to understand safety of sweeteners, but very little on sustainability. To address that gap, this study presents the results of a life cycle assessment (LCA) of production of rebaudioside A 60%, 95% pure (RA60) steviol glycoside mix from Stevia rebaudiana leaf grown in Europe. METHODS: An attributional cradle-to-factory-gate life cycle assessment was conducted on growing of stevia leaves and extraction of steviol glycosides in Europe. Primary data were used from a case study supply chain. Results are reported in impact categories from the ReCiPe 2016 (H) method, with focus given to global warming potential, freshwater eutrophication, water consumption, and land use. Impacts are expressed both in terms of production mass and sweetness equivalence, a common metric for understanding high intensity sweetener potency. Sweetness equivalence of RA60 is typically 200 to 300 times that of sugar. Comparison of environmental impact is made to sugar (sucrose) produced from both cane and beets. The research is part of the EU project SWEET (sweeteners and sweetness enhancers: impact on health, obesity, safety, and sustainability). RESULTS AND DISCUSSION: Global warming potential for production of RA60 was found to be 20.25 kgCO(2)-eq/kg(RA60) on a mass basis and 0.081 kgCO(2)-eq/kg(SE) on a sweetness equivalence basis. Field production of stevia leaves was found to be the main source of impact for most impact categories, and for all four focus categories. Extraction of the RA60 was the main source of impact for the others. Leaf processing and seedling propagation were minor contributors to life cycle impact. Removal of international transport from the supply chain reduced global warming potential by 18.8%. Compared with sugar on a sweetness equivalence basis, RA60 has approximately 5.7% to 10.2% the impact for global warming potential, 5.6% to 7.2% the impact for land use, and is lower across most other impact categories. CONCLUSION: This is the first LCA of steviol glycoside mix RA60 produced from leaf in Europe. The results indicate that RA60 can be used to reduce environmental impact of providing a sweet taste by replacing sugar across all impact categories. However, it is important to note that specific formulations in which RA60 is used will have a bearing on the final environmental impact of any food or beverage products. For solid foods, this requires further research. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s11367-022-02127-9. Springer Berlin Heidelberg 2023-01-14 2023 /pmc/articles/PMC9839952/ /pubmed/36686846 http://dx.doi.org/10.1007/s11367-022-02127-9 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Lca for Energy Systems and Food Products
Suckling, J.
Morse, S.
Murphy, R.
Astley, S.
Halford, J. C. G.
Harrold, J. A.
Le-Bail, A.
Koukouna, E.
Musinovic, H.
Perret, J.
Raben, A.
Roe, M.
Scholten, J.
Scott, C.
Stamatis, C.
Westbroek, C.
Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project
title Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project
title_full Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project
title_fullStr Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project
title_full_unstemmed Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project
title_short Environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from Stevia rebaudiana leaf grown in Europe: The SWEET project
title_sort environmental life cycle assessment of production of the high intensity sweetener steviol glycosides from stevia rebaudiana leaf grown in europe: the sweet project
topic Lca for Energy Systems and Food Products
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9839952/
https://www.ncbi.nlm.nih.gov/pubmed/36686846
http://dx.doi.org/10.1007/s11367-022-02127-9
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