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Multilayer Approach for Product Portfolio Optimization: Waste to Added-Value Products
Lidia S Guerras1, Debalina Sengupta2, Mariano Martín1
1Department of Chemical Engineering, University of Salamanca, Plz. Caídos 1-5, 37008 Salamanca, Spain.
This study presents a systematic procedure to select optimal products from waste biomass for the water-energy-food nexus. It efficiently converts olive industry waste into valuable food, chemicals, and energy, maximizing economic and environmental performance.
Area of Science:
- Biomass valorization
- Circular economy principles
- Sustainable chemical production
Background:
- Waste biomass, particularly from the olive oil industry, presents a significant underutilized resource.
- Integrating waste valorization into the water-energy-food nexus is crucial for sustainability.
- Existing methods for biomass processing lack a systematic approach for optimal product portfolio selection.
Purpose of the Study:
- To develop a multistage, hybrid methodology for selecting the optimal product portfolio from waste biomass.
- To evaluate the economic and environmental performance of value-added products derived from waste.
- To optimize the valorization of olive industry residues for food, chemical, and energy applications.
Main Methods:
- A hybrid heuristic, metric-based, and optimization approach was employed.
- Stage 1: Literature review and metric-based preselection of promising products.
- Stage 2: Superstructure optimization to determine the best facility design and product mix.
Main Results:
- Membrane technology is optimal for recovering phenols from "alperujo" (wet solid waste).
- Adsorption is effective for recovering phenols from olive leaves and branches.
- An investment of €110.2 million is estimated for a 100 kt/yr facility, with potential annual profits ranging from €14.5 to €34.3 million depending on integration and feedstock cost.
Conclusions:
- The developed systematic procedure effectively identifies optimal product portfolios from waste biomass.
- Valorization of olive industry waste offers significant economic benefits and contributes to a circular economy.
- The methodology provides a robust framework for waste-to-value applications in the water-energy-food nexus.
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