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首页> 外文期刊>Indian journal of chemical technology >Sugarcane trash ash: A low cost adsorbent for atrazine and fipronil removal from water
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Sugarcane trash ash: A low cost adsorbent for atrazine and fipronil removal from water

机译:甘蔗垃圾灰:尿嘧啶和氟镍腈从水中去除的低成本吸附剂

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The sugarcane trash ash (STA) has been explored as low cost adsorbent for atrazine and fipronil removal from water. Kinetics study suggested that the pseudo second order model best explain the adsorption of both pesticides. The STA show higher adsorption of fipronil (K d - 1267.5-3321.1) than atrazine (K d - 137.0-1445.3) while desorption followed reverse trend with 0-2.27 and 4.83-9.32% fipronil and atrazine desorption, respectively. Isotherm model optimization suggested that the Freundlich isotherm best predict the adsorption-desoprtion behaviour of pesticides. Adsorption is highly nonlinear as 1/n values were 0.23 and 0.407 for atrazine and fipronil respectively. Adsorption decreased with increase in initial concentration of pesticide in solution. The sugarcane trash, a waste, can be used as energy source in boilers and the ash obtained can be utilized as low-cost adsorbent for pesticide removal from contaminated water.
机译:甘蔗垃圾灰(STA)已被探索为亚尿嘧啶的低成本吸附剂,并从水中去除FIPRONIL。 动力学研究表明,伪二阶模型最能解释两种杀虫剂的吸附。 STA显示比阿特拉嗪(K D - 137.0-1445.3)更高吸附FIPRONIL(K D-1267.5-3321.1),同时解吸逆转趋势,分别具有0-2.27和4.83-9.32%的FIPRONIL和阿特拉嗪解吸。 等温模型优化表明,Freundlich等温线最能预测杀虫剂的吸附性行为。 吸附性高度非线性,At1 / N值分别为阿特拉津和氟氮的值0.23和0.407。 随着溶液中农药初始浓度的增加,吸附降低。 甘蔗垃圾废物可以用作锅炉中的能量源,并且可以用作从污染的水中去除农药的低成本吸附剂。

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