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首页> 外文期刊>Environmental Progress & Sustainable Energy >Ion-Exchange Softening of Human Urine to Control Precipitation
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Ion-Exchange Softening of Human Urine to Control Precipitation

机译:离子交换软化人的尿液来控制降水

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摘要

A major barrier to widespread implementation of urine source-separation is the uncontrolled precipitation of magnesium (Mg) and calcium (Ca) minerals in waterless urinal plumbing, which results in clogging that increases maintenance requirements. The goal of this research was to investigate the use of ion-exchange softening of undiluted, fresh human urine to control precipitation reactions in hydrolyzed urine. The working hypothesis was that selective removal of Ca and Mg from undiluted, fresh urine by cation exchange resin would decrease the precipitation of Ca and Mg minerals in hydrolyzed urine. Ion-exchange experiments and precipitation experiments were used to investigate ion-exchange reactions in synthetic urine. Cation exchange resin (Amber-lite A200C) removed both Ca and Mg from undiluted, fresh urine with a greater affinity for Ca over Mg. Precipitation experiments showed that struvite, MgNH4PO4·6H2O, and hydroxyapatite, Ca5(PO4)3(OH), were the dominant minerals in untreated and ion-exchange treated hydrolyzed urine. Overall, ion-exchange softening decreased the mass of solids that would be deposited in the urinal plumbing and increased the phosphate available for nutrient recovery.
机译:广泛实施的一大障碍尿源分离是不受控制的降水(Mg)和钙镁(Ca)无水小便池管道矿物质,导致堵塞,增加了维护难度要求。调查使用离子交换软化未稀释的,新鲜的人类的尿液来控制沉淀反应水解尿液。工作假说是选择性删除钙和镁的稀释,新鲜尿液通过阳离子交换树脂将减少降水钙和镁的矿物水解尿液。离子交换实验和降水实验被用来研究离子交换反应合成尿。树脂(Amber-lite A200C)去除钙和镁未稀释的,新鲜尿液更大钙/镁亲和力。实验表明,鸟粪石,MgNH4PO4·6水,和羟磷灰石,Ca5 (PO4) 3(哦),是主要矿物质在治疗和离子交换水解处理尿液。软化固体的质量会下降被放置在小便池管道和增加可用的磷营养恢复。

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