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药品作为新兴污染物及其在水中的去除。 综述。

Pharmaceuticals as emerging contaminants and their removal from water. A review.

机构信息

Inorganic Chemistry Department, Science Faculty, Granada University, 18071-Granada, Spain.

出版信息

Chemosphere. 2013 Oct;93(7):1268-87. doi: 10.1016/j.chemosphere.2013.07.059. Epub 2013 Sep 8.

Abstract

The main objective of this study was to conduct an exhaustive review of the literature on the presence of pharmaceutical-derived compounds in water and on their removal. The most representative pharmaceutical families found in water were described and related water pollution issues were analyzed. The performances of different water treatment systems in the removal of pharmaceuticals were also summarized. The water treatment technologies were those based on conventional systems (chlorine, chlorine dioxide, wastewater treatment plants), adsorption/bioadsorption on activated carbon (from lotus stalks, olive-waste cake, coal, wood, plastic waste, cork powder waste, peach stones, coconut shell, rice husk), and advanced oxidation processes by means of ozonation (O₃, O₃/H₂O₂, O₃/activated carbon, O₃/biological treatment), photooxidation (UV, UV/H₂O₂, UV/K₂S₂O₈, UV/TiO₂, UV/H₂O₂/TiO₂, UV/TiO₂/activated carbon, photo-Fenton), radiolysis (e-Beam, ⁶⁰Co, ¹³⁷Cs. Additives used: H₂O₂, SO₃²⁻, HCO₃⁻, CH₃₋OH, CO₃²⁻, or NO₃⁻), and electrochemical processes (Electrooxidation without and with active chlorine generation). The effect of these treatments on pharmaceutical compounds and the advantages and disadvantages of different methodologies used were described. The most important parameters of the above water treatment systems (experimental conditions, removal yield, pharmaceutical compound mineralization, TOC removal, toxicity evolution) were indicated. The key publications on pharmaceutical removal from water were summarized.

摘要

本研究的主要目的是对水中药物衍生化合物的存在及其去除方法进行全面综述。描述了水中最具代表性的药物家族,并分析了相关的水污染问题。还总结了不同水处理系统对药物的去除性能。水处理技术包括基于常规系统(氯、二氧化氯、污水处理厂)的技术、在活性炭上的吸附/生物吸附(来自藕节、橄榄渣、煤、木材、塑料废物、软木粉末废物、桃核、椰子壳、稻壳)和通过臭氧氧化的高级氧化工艺(O₃、O₃/H₂O₂、O₃/活性炭、O₃/生物处理)、光氧化(UV、UV/H₂O₂、UV/K₂S₂O₈、UV/TiO₂、UV/H₂O₂/TiO₂、UV/TiO₂/活性炭、光芬顿)、辐射分解(电子束、⁶⁰Co、¹³⁷Cs。使用的添加剂:H₂O₂、SO₃²⁻、HCO₃⁻、CH₃₋OH、CO₃²⁻、或 NO₃⁻)和电化学工艺(无活性氯生成和有活性氯生成的电氧化)。描述了这些处理方法对药物化合物的影响以及不同方法的优缺点。还指出了上述水处理系统的最重要参数(实验条件、去除率、药物化合物矿化、TOC 去除、毒性演变)。总结了有关水中药物去除的主要文献。

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