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Electrochemical disinfection of repeatedly recycled blackwater in a free-standing, additive-free toilet

机译:独立式无添加剂马桶中反复循环使用的黑水的电化学消毒

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摘要

Decentralized, energy-efficient waste water treatment technologies enabling water reuse are needed to sustainably address sanitation needs in water- and energy-scarce environments. Here, we describe the effects of repeated recycling of disinfected blackwater (as flush liquid) on the energy required to achieve full disinfection with an electrochemical process in a prototype toilet system. The recycled liquid rapidly reached a steady state with total solids reliably ranging between 0.50 and 0.65% and conductivity between 20 and 23 mS/cm through many flush cycles over 15 weeks. The increase in accumulated solids was associated with increased energy demand and wide variation in the free chlorine contact time required to achieve complete disinfection. Further studies on the system at steady state revealed that running at higher voltage modestly improves energy efficiency, and established running parameters that reliably achieve disinfection at fixed run times. These results will guide prototype testing in the field.
机译:需要分散,节能的废水处理技术以实现水的再利用,以可持续地解决缺水和缺能源环境中的卫生需求。在这里,我们描述了重复循环使用消毒过的黑水(作为冲洗液)对在原型座便器系统中通过电化学过程实现完全消毒所需的能量的影响。经过15周的多次冲洗循环后,回收的液体迅速达到了稳定状态,总固含量可靠地在0.50至0.65%之间,电导率在20至23 mS / cm之间。累积固体的增加与能源需求的增加以及实现完全消毒所需的游离氯接触时间的广泛变化有关。对系统在稳态下的进一步研究表明,在较高电压下运行可适度提高能源效率,并建立了可在固定运行时间可靠实现消毒的运行参数。这些结果将指导该领域的原型测试。

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