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Chemical simulation of greywater

机译:灰水的化学模拟

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Sustainable water resources management attracts considerable attention in today's world. Recycling and reuse of both wastewater and greywater are becoming more attractive. The strategy is to protect ecosystem services by balancing the withdrawal of water and the disposal of wastewater. In the present study, a timely and novel synthetic greywater composition has been proposed with respect to the composition of heavy metals, nutrients and organic matter. The change in water quality of the synthetic greywater due to increasing storage time was monitored to evaluate the stability of the proposed chemical formula. The new greywater is prepared artificially using analytical-grade chemicals to simulate either low (LC) or high (HC) pollutant concentrations. The characteristics of the synthetic greywater were tested (just before starting the experiment, after two days and a week of storage under real weather conditions) and compared to those reported for real greywater. Test results for both synthetic greywater types showed great similarities with the physiochemical properties of published findings concerning real greywater. Furthermore, the synthetic greywater is relatively stable in terms of its characteristics for different storage periods. However, there was a significant (p <.05) reduction in 5-day biochemical oxygen demand (BOD5) for both low (LC) and high (HC) concentrations of greywater after two days of storage with reductions of 62% and 55%, respectively. A significant (p <.05) change was also noted for the reduction (70%) of nitrate-nitrogen (NO3-N) concerning HC greywater after seven days of storage.
机译:可持续的水资源管理在当今世界引起了相当大的关注。废水和中水的回收和再利用变得越来越有吸引力。该战略是通过平衡取水量和废水处理量来保护生态系统服务。在本研究中,就重金属,营养物和有机物的组成提出了及时,新颖的合成灰水组成。监测了由于存储时间延长而引起的合成灰水的水质变化,以评估所提出化学式的稳定性。新的灰水是使用分析级化学药品人工制备的,以模拟低(LC)或高(HC)污染物浓度。测试了合成灰水的特性(就在实验开始之前,在真实天气条件下储存了两天零一周之后),并与报告的纯灰水进行了比较。两种合成灰水的测试结果均与已发表的有关实际灰水的发现的理化性质非常相似。此外,合成灰水在不同存储期间的特性方面相对稳定。但是,储存两天后,低(LC)和高(HC)浓度的灰水的5天生化需氧量(BOD5)显着降低(p <.05),分别降低62%和55% , 分别。储存七天后,与HC灰水有关的硝酸盐氮(NO3-N)减少(70%),也发现了显着(p <.05)的变化。

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