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首页> 外文期刊>Water and Environment Journal >Remediation of suspended solids and turbidity by improved settling tank design in a small-scale, free-standing toilet system using recycled blackwater
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Remediation of suspended solids and turbidity by improved settling tank design in a small-scale, free-standing toilet system using recycled blackwater

机译:在小型,独立式马桶系统中使用回收的黑水,通过改进的沉淀池设计,对悬浮物和浊度进行补救

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摘要

Our research is focused on the development of decentralized waste water treatment technologies enabling onsite water reuse. Accumulation of solids with recycling of treated blackwater increases the energy required for disinfection with an electrochemical process. We hypothesized that improving the preprocess settling of blackwater by increasing the tortuosity of the liquid flow path would reduce this energy demand by reducing particle-associated chemical oxygen demand (COD). This approach successfully reduced the total suspended solids and turbidity in the process liquid accumulated per user-day equivalent. A modest reduction in the apparent steady-state accumulation of COD was also observed, likely because of the retention of COD associated with larger particles in the settling tanks. Interestingly, these improvements did not improve the energy efficiency of the electrochemical disinfection process, as predicted. These observations suggest that improving the energy efficiency of electrochemical disinfection will require remediation of dissolved COD.
机译:我们的研究专注于分散式废水处理技术的发展,以实现现场回用水。回收处理过的黑水后,固体的积累会增加电化学过程消毒所需的能量。我们假设通过增加液体流动路径的曲折度来改善黑水的预处理过程,将通过减少与颗粒相关的化学需氧量(COD)来减少这种能量需求。这种方法成功地减少了每用户日当量所累积的工艺液体中的总悬浮固体和浊度。还观察到了COD的表观稳态积累的适度降低,这可能是由于与沉淀池中较大颗粒相关的COD保留所致。有趣的是,这些改进并未如预期的那样提高电化学消毒过程的能效。这些观察结果表明,提高电化学消毒的能量效率将需要对溶解的COD进行补救。

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