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- W311194297 abstract "Abstract This chapter presents a new dynamic approach for the optimal synthesis of water treatment networks considering environmental and sustainability constraints simultaneously. The proposed model considers the optimal location of new industrial facilities to integrate dynamically their wastewater discharges to the environment through a disjunctive formulation. The discharged pollutants from the new plants are tracked simultaneously with other discharges to the watershed (i.e., residential, sanitary, industrial, and extractions) and the natural phenomena that affect the composition of the watershed (i.e., evaporation, filtration, etc.) in addition to the chemical reactions that are carried out in the rivers. The mixed-integer dynamic optimization formulation allows identifying the time periods where the watershed conditions are critical in terms of sustainability. The objective function consists in minimizing the total annual cost that is composed by the installation cost and the wastewater treatment costs. An example problem is used to show the applicability of the proposed methodology." @default.
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- W311194297 date "2015-01-01" @default.
- W311194297 modified "2023-09-27" @default.
- W311194297 title "Dynamic Optimization for the Optimal Location of New Industrial Facilities Considering the Sustainability of the Watershed" @default.
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- W311194297 doi "https://doi.org/10.1016/b978-0-444-63472-6.00017-3" @default.
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