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首页> 外文期刊>Water Environment Research >Taking the water out of 'wastewater': An ineluctable oxymoron for urban water cycle sustainability
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Taking the water out of 'wastewater': An ineluctable oxymoron for urban water cycle sustainability

机译:将水从“废水”中出来:城市水循环可持续性的无形oxymoron

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Water, energy, and food are key resources that could easily limit sustainability of human society development. Water supply requires considerable amounts of energy, and “usedwater” carries considerable amounts of embedded energy and recoverable materials within. Usedwater is increasingly considered as a potential resource, rather than as a waste. Among process technology options that may allow efficient recovery of that energy, anaerobic digestion could be considered the most mature, already sporting countless applications worldwide. However, the present inefficient dilution‐base collection systems paradigm produces rather dilute sewage, preventing to a large degree a more efficient application of this technology. A new collection system paradigm, based on liquid sources segregation and minimal organics dilution, could result in significant energy savings for conveyance and treatment. This could also enhance recovery of nutrients and reclamation of potentially reusable water, with the associated benefit of reduced production of process residuals requiring further disposal. Implications of this model are discussed. Practitioner points The nexus between water, energy, and food is an impending challenge on water cycle sustainability Current paradigms of urban water management are based on disadvantageous paradigms: high dilution and gravity flow Taking the water out of wastewater may improve energy and recovery efficiency of urban water systems and water reuse options Technologies exist (high‐rate anaerobic, vacuum sewers) and are mature for more widespread application of new urban sanitation paradigms Different paradigms of the urban water cycle.
机译:水,能源和食品是可轻松限制人类社会发展的可持续性的关键资源。供水需要大量的能量,“二手水”承载相当大量的嵌入式能量和可回收材料。二手水越来越多地被视为潜在的资源,而不是浪费。在可能允许高效恢复该能量的过程技术中,厌氧消化可能被认为是最成熟的,已经在全球范围内体育无数应用。然而,目前低效的稀释基础收集系统范式产生相当稀释的污水,预防该技术的大程度更有效地应用。基于液体源偏析和最小有机稀释的新的收集系统范式可能导致运输和治疗的显着节省。这也可以增强营养素的恢复和潜在可重复使用的水的回收,以及减少需要进一步处置的工艺残留的生产的相关益处。讨论了该模型的含义。从业者指出水,能源和食物之间的Nexus是对水循环可持续性的即将挑战,城市水管理的目前范式基于不利的范式:高稀释和重力流量从废水中脱离水可能提高城市的能源和恢复效率存在水系统和水再利用选项技术(高速厌氧,真空下水道),并具有更广泛应用新的城市卫生范式不同的城市水循环范式。

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