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Electrochemical treatment of human urine for its storage and reuse as flush water

机译:人体尿液的电化学处理,以储存和用作回水

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We proposed the electrochemical treatment of human urine to enable its storage without the accompanying unpleasant odor. This urine can then be reused as flush water in toilets as a means to tackle water shortage problems. In laboratory-scale experiments, the time-dependent variation in the pH of human urine, after the addition of urease, could be suppressed by chlorine produced via the electrochemical treatment of diluted human urine. Ureolysis was quantified by pH increase within 100 h. This suppression occurred as a result of an irreversible change in the conformation of urease that resulted in its inactivation at an oxidation-reduction potential (ORP) of ca. 240 mV or above. Due to the electrochemical inactivation of urease during the entire storage period of urine, the hydrolysis of urea in urine, which results in the production of the unpleasant odor due to ammonia formation, can be avoided. Thus, the treatment enables the storage of urine for its reuse as flush water in toilets.
机译:我们提出了对人类尿液进行电化学处理的方法,以使其能够存储而不会伴随有令人不愉快的气味。然后,这些尿液可以用作厕所中的冲水,作为解决缺水问题的一种手段。在实验室规模的实验中,添加尿素酶后,人尿液pH值随时间的变化可以通过稀释人尿液的电化学处理产生的氯来抑制。通过在100小时内增加pH来量化尿液溶解。这种抑制是由于尿素酶构象的不可逆变化而导致的,该变化导致尿素酶在约200的氧化还原电位(ORP)下失活。 240 mV或更高。由于尿素酶在整个尿液储存期间的电化学失活,可以避免尿素在尿液中的水解,该水解导致由于氨的形成而产生令人不愉快的气味。因此,该处理使得能够存储尿液,以将其用作马桶中的冲水。

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