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Aquifer recharge with reclaimed water: life-cycle assessment of hybrid concepts for non-potable reuse

机译:再生水蓄水层:非饮用水回用混合概念的生命周期评估

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Aquifer recharge with reclaimed water is a promising means to store and supply on demand reclaimed water of high quality for further non-potable reuse. The reuse applications may include indirect agricultural or landscape irrigation, saltwater intrusion barriers, subsidence mitigation or aquifer replenishment. As an alternative to high-pressure or double-membrane systems, hybrid schemes consisting of a disinfection/filtration step prior to aquifer recharge were assessed in this study regarding their environmental footprint and energy efficiency. A simplified life-cycle assessment (LCA) for a hypothetical case study in a water-scarce country was conducted to compare these hybrid schemes to a double-membrane system working under similar conditions. The results show that there is a significant margin for lowering the environmental impact, energy demand and operational costs if non-potable water quality is targeted. While the hybrid schemes outperform high-pressure membranes for these factors, land footprint and final water quality also need to be considered in the choice of solution for specific conditions.
机译:再生水蓄水层是一种有前途的方式,可以按需存储和供应高质量的再生水,以进一步用于非饮用水的再利用。再利用的应用可能包括间接的农业灌溉或景观灌溉,盐水入侵屏障,减缓沉降或补充含水层。作为高压或双膜系统的替代方案,在本研究中评估了混合方案,包括在含水层补给前进行消毒/过滤步骤,以了解其环境足迹和能源效率。对缺水国家的假设案例进行了简化的生命周期评估(LCA),以将这些混合方案与在相似条件下工作的双膜系统进行比较。结果表明,如果以非饮用水水质为目标,则在降低环境影响,能源需求和运营成本方面有很大的余地。尽管在这些因素上混合方案优于高压膜,但在针对特定条件选择解决方案时也需要考虑土地足迹和最终水质。

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