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首页> 外文期刊>International Journal of Environmental Science and Technology >Decontamination of pesticide industrial effluent by adsorption-coagulation-flocculation process using biopolymer-nanoorganoclay composite
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Decontamination of pesticide industrial effluent by adsorption-coagulation-flocculation process using biopolymer-nanoorganoclay composite

机译:使用生物聚合物 - 纳米烃复合材料通过吸附凝血 - 絮凝工艺去污农药工业流出物

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Release of poorly treated industrial wastewater containing pesticides has adverse effect on aquatic environment. In this study, an attempt was made to evaluate the performance of biopolymer-nanoorganoclay composite based on carboxy methyl cellulose and two nanoorganobentonites viz. DMDA (nanobentonite modified with 35-45 wt% dimethyl dialkyl (C14-C18) amine) and ODAAPS (nanobentonite modified with 15-35 wt% octadecylamine and 0.5-5 wt% aminopropyltriethoxysilane) in the ratio 1:2.5:2.5 for removing nine pesticides, namely atrazine, butachlor, carbendazim, carbofuran, imidacloprid, isoproturon, pendimethalin, thiophanate methyl and thiamethoxam from aqueous solution. The composite dosage was optimized using Jar test in which aluminum sulfate (alum) was used as coagulation/flocculation aid. Decontamination efficiency of the composite was validated in pesticide industrial effluent. Decontamination process was found to be efficient in removing the selected pesticides from water (57-100%) as well as from industrial effluent (63-91%). The prepared composite was very efficient in removing more than 90% of butachlor, isoproturon, pendimethalin and thiophanate methyl from water. Spent or used composite was regenerated by acetone washing followed by thermal regeneration at 200 degrees C. The regenerated composite was able to maintain 57-97% of its initial pesticide removal efficiency even after second regeneration. Preparation and regeneration of the composite is easy and effective making the composite a promising adsorbent for pesticides.
机译:释放含有农药的含量不良的工业废水具有对水生环境的不利影响。在该研究中,试图评估基于羧基甲基纤维素和两种纳激蛋白烯烃的生物聚合物-NAWOWALINOCLAY复合物的性能。 DMDA(用35-45wt%二甲基二烷基二甲基(C14-C18)胺改性的纳米烯酸盐(C14-C18)胺(纳米烯酸盐(用15-35wt%十八烷基胺和0.5-5wt%氨基丙基三甲氧基氧基硅烷),以1:2.5:2.5去除九个杀虫剂,即阿特拉津,丁香素,碳氮唑,碳呋喃,咪酰啉,异常呋喃,PENDIMETHALIN,硫氰酸甲基和水溶液中的甲基氧肟。使用罐试验进行优化复合剂量,其中硫酸铝(Alum)用作凝固/絮凝助剂。复合材料的去污效率在农药工业污水中验证。发现去污过程有效地除去从水(57-100%)以及工业流出物(63-91%)中取出所选农药。制备的复合材料非常有效地除去超过90%的丁酰氯,异常呋喃,Pendimethalin和来自水的甲烷酸甲酯。通过丙酮洗涤再生或使用的复合材料,然后在200℃下进行热再生。再生复合物能够在第二次再生后维持57-97%的初始农药去除效率。复合材料的制备和再生易于有效,使复合物用于农药的有希望的吸附剂。

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