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Fit-for-purpose urban wastewater reuse: Analysis of issues and available technologies for sustainable multiple barrier approaches

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TAYLOR & FRANCIS INC
DOI: 10.1080/10643389.2020.1763231

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Water reuse; fit-for-purpose treatment; multiple barrier treatment; membrane processes; disinfection; advanced oxidation reduction processes

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A selective approach for multiple wastewater recovery is desirable and technologically feasible, aiming to provide water at specific quality standards for each reuse objective. The appropriate choice of technologies is crucial when considering systems for implementation or refurbishing to save water, reduce production cost, and energy demand, as it typically aims at local reuses. This approach involves a sequence of complementary processes at an increasing level of protection for both conventional and emerging pollutants to meet foreseen uses under a multiple barrier treatment.
A selective approach for multiple wastewater recovery is nowadays desirable and technologically feasible, to provide water at specific quality standards for each reuse objective. This fit-for-purpose approach to water reuse could both save water and would reduce production cost and energy demand by eliminating unnecessary treatment and long-range conveyance, as it typically aims at local reuses. The appropriate choice of technologies for such approaches is perhaps the most critical planning and design decision when evaluating systems for implementation or refurbishing. This article examines wastewater reuse goals (direct potable use, indirect potable use, non-potable uses and industrial uses) and related requirements as relevant case studies, and issues that may arise during implementation. It then proposes an overview of current conventional and advanced technologies and their possible combination to meet foreseen uses under a multiple barrier treatment (MBT) approach, which implies a sequence of complementary processes at an increasing level of protection for both conventional and emerging pollutants according to reuse goals.

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