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Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products

[Image: see text] A multistage multilayer systematic procedure has been developed for the selection of the optimal product portfolio from waste biomass as feedstock for systems involving water–energy–food nexus. It consists of a hybrid heuristic, metric-based, and optimization methodology that evalu...

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Autores principales: Guerras, Lidia S., Sengupta, Debalina, Martín, Mariano, El-Halwagi, Mahmoud M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8592024/
https://www.ncbi.nlm.nih.gov/pubmed/34796044
http://dx.doi.org/10.1021/acssuschemeng.1c01284
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author Guerras, Lidia S.
Sengupta, Debalina
Martín, Mariano
El-Halwagi, Mahmoud M.
author_facet Guerras, Lidia S.
Sengupta, Debalina
Martín, Mariano
El-Halwagi, Mahmoud M.
author_sort Guerras, Lidia S.
collection PubMed
description [Image: see text] A multistage multilayer systematic procedure has been developed for the selection of the optimal product portfolio from waste biomass as feedstock for systems involving water–energy–food nexus. It consists of a hybrid heuristic, metric-based, and optimization methodology that evaluates the economic and environmental performance of added-value products from a particular raw material. The first stage preselects the promising products. Next, a superstructure optimization problem is formulated to valorize or transform waste into the optimal set of products. The methodology has been applied within the waste to power and chemicals initiative to evaluate the best use of the biomass residue from the olive oil industry toward food, chemicals, and energy. The heuristic stage is based on the literature review to analyze the feasible products and techniques. Next, simple metrics have been developed and used to preselect products that are promising. Finally, a superstructure optimization approach is used to design the facility that processes leaves, wood chips, and olives into final products. The best technique to recover phenols from “alperujo”, a wet solid waste/byproduct of the process, consists of the use of membranes, while the adsorption technique is used for the recovery of phenols from olive leaves and branches. The investment required to process waste adds up to €110.2 million for a 100 kt/yr for the olive production facility, while the profit depends on the level of integration. If the facility is attached to an olive oil production, the generated profit ranges between 14.5 MM €/yr (when the waste is purchased at prices of €249 per ton of alperujo and €6 per ton of olive leaves and branches) and 34.3 MM €/yr when the waste material is obtained for free.
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spelling pubmed-85920242021-11-16 Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products Guerras, Lidia S. Sengupta, Debalina Martín, Mariano El-Halwagi, Mahmoud M. ACS Sustain Chem Eng [Image: see text] A multistage multilayer systematic procedure has been developed for the selection of the optimal product portfolio from waste biomass as feedstock for systems involving water–energy–food nexus. It consists of a hybrid heuristic, metric-based, and optimization methodology that evaluates the economic and environmental performance of added-value products from a particular raw material. The first stage preselects the promising products. Next, a superstructure optimization problem is formulated to valorize or transform waste into the optimal set of products. The methodology has been applied within the waste to power and chemicals initiative to evaluate the best use of the biomass residue from the olive oil industry toward food, chemicals, and energy. The heuristic stage is based on the literature review to analyze the feasible products and techniques. Next, simple metrics have been developed and used to preselect products that are promising. Finally, a superstructure optimization approach is used to design the facility that processes leaves, wood chips, and olives into final products. The best technique to recover phenols from “alperujo”, a wet solid waste/byproduct of the process, consists of the use of membranes, while the adsorption technique is used for the recovery of phenols from olive leaves and branches. The investment required to process waste adds up to €110.2 million for a 100 kt/yr for the olive production facility, while the profit depends on the level of integration. If the facility is attached to an olive oil production, the generated profit ranges between 14.5 MM €/yr (when the waste is purchased at prices of €249 per ton of alperujo and €6 per ton of olive leaves and branches) and 34.3 MM €/yr when the waste material is obtained for free. American Chemical Society 2021-04-28 2021-05-10 /pmc/articles/PMC8592024/ /pubmed/34796044 http://dx.doi.org/10.1021/acssuschemeng.1c01284 Text en © 2021 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Guerras, Lidia S.
Sengupta, Debalina
Martín, Mariano
El-Halwagi, Mahmoud M.
Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products
title Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products
title_full Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products
title_fullStr Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products
title_full_unstemmed Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products
title_short Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products
title_sort multilayer approach for product portfolio optimization: waste to added-value products
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8592024/
https://www.ncbi.nlm.nih.gov/pubmed/34796044
http://dx.doi.org/10.1021/acssuschemeng.1c01284
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