总溶解固体及其去除技术

N. Pushpalatha, V. Sreeja, R. Karthik, G. Saravanan
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引用次数: 0

摘要

由于地质和人为污染引起的总溶解固形物(TDS)是描述水质的基本参数之一。它包括有机和无机成分、重金属、盐类、其他溶解物质,以及由于随意处置未经处理的家庭和工业废水、城市和/或农业径流而造成的其他物质,这些物质在自然界中以微或纳米形式存在。水中较高的TDS水平严重影响健康和环境。例如,它会对人类的胃肠道、心血管、基因毒性、呼吸、皮肤和肝脏造成影响。高TDS水平(> 500ppm)会导致家用电器(如管道、加热器和锅炉)过度结垢,从而降低其效率。因此,从各种水基质中去除TDS对尽量减少其对健康和环境的影响至关重要。各种基于膜、离子和温度梯度的TDS去除技术被用来处理水。综述了反渗透、纳滤、蒸馏、超滤、正渗透、沉淀、脱盐、离子交换、电化学技术、电渗析、电解、电絮凝、吸附等TDS的去除技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Total Dissolved Solids and Their Removal Techniques
Total dissolved solids (TDS) due to both geogenic and anthropogenic contaminations, is one of the preliminary as well as essential parameters among others to describe water quality. It includes organic and inorganic components, heavy metals, salts, other dissolved substances, and others due to indiscriminate disposal of untreated domestic and industrial effluents, urban and/or agricultural runoff which exists in the form of micro or nano level in nature. Higher TDS levels in water severely impact health and the environment. For instance, it causes gastrointestinal, cardiovascular, genotoxic, respiratory, skin, and hepatic effects in humans. High TDS level (> 500 ppm) results in excessive scaling in household appliances (e.g., pipes, heaters, and boilers) thereby reducing their efficiency. Therefore, the removal of TDS from various water matrices is taking paramount importance to minimize its impact on health and the environment. Various TDS removal technologies based on the membrane, ion, and temperature gradient are employed to treat water. In this review paper, several TDS removal technologies for instance reverse osmosis, nanofiltration, distillation, ultrafiltration, forward osmosis, precipitation, desalination, ion exchange, electrochemical techniques, electrodialysis, electrolysis, electrocoagulation, and adsorption are discussed in detail.
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