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Wastewater-based resource recovery technologies across scale: A review

机译:基于废水的资源恢复技术跨越规模:评论

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Over the past few decades, wastewater has been evolving from a waste to a valuable resource. Wastewater can not only dampen the effects of water shortages by means of water reclamation, but it also provides the medium for energy and nutrient recovery to further offset the extraction of precious resources. Since identifying viable resource recovery technologies can be challenging, this article offers a review of technologies for water, energy, and nutrient recovery from domestic and municipal wastewater through the lens of the scale of implementation. The system scales were classified as follows: small scale (design flows of 17 m(3)/day or less), medium scale (8 to 20,000 m(3)/day), and large scale (3800 m(3)/day or more). The widespread implementation of non-potable reuse (NPR) projects across all scales highlighted the ease of implementation associated with lower water quality requirements and treatment schemes that resembled conventional wastewater treatment. Although energy recovery was mostly achieved in large-scale plants from biosolids management or hydraulic head loss, the highest potential for concentrated nutrient recovery occurred in small-scale systems using urine source separating technologies. Small-scale systems offered benefits such as the ability for onsite resource recovery and reuse that lowered distribution and transportation costs and energy consumption, while larger scales benefited from lower per unit costs and energy consumption for treatment. The removal of pharmaceuticals and personal care products remained a challenge across scales, but unit processes such as reverse osmosis, nanofiltration, activated carbon, and advanced oxidation processes exhibited high removal efficiency for select contaminants.
机译:在过去的几十年里,废水一直从浪费到宝贵的资源。废水不仅可以通过水填充抑制水资源短缺的影响,但它还为能源和养分回收提供了培养基,以进一步抵消珍贵资源的提取。由于识别可行的资源恢复技术可能具有挑战性,本文提供了通过实施规模的镜头从国内和市政废水中的水,能源和营养回收技术审查。系统尺度分类如下:小规模(设计流量为17米(3)/天或更小),中等规模(8至20,000米(3)/天),大规模(3800米(3)/天)或者更多)。所有尺度的非饮用重用(NPR)项目的广泛实施突出了与类似常规废水处理的水质要求和治疗方案相关的易于实现。虽然能量回收大多是在生物溶解体管理或液压头部损失中大多实现的,但是使用尿源分离技术的小规模系统中发生了浓缩营养回收的最高潜力。小规模系统提供了优势,如现场资源恢复的能力,以及降低分销和运输成本和能源消耗的能力,而较大的尺度从低于每单位成本和治疗能耗中受益。除去药品和个人护理产品的去除仍然是尺度的挑战,但是单位过程,如反渗透,纳米滤乱,活性炭和先进的氧化过程,表现出用于选择污染物的高除去效率。

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