首页> 外文期刊>Water, Air, and Soil Pollution >Exploitation of Nano-Bentonite, Nano-Halloysite and Organically Modified Nano-Montmorillonite as an Adsorbent and Coagulation Aid for the Removal of Multi-Pesticides from Water: A Sorption Modelling Approach
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Exploitation of Nano-Bentonite, Nano-Halloysite and Organically Modified Nano-Montmorillonite as an Adsorbent and Coagulation Aid for the Removal of Multi-Pesticides from Water: A Sorption Modelling Approach

机译:利用纳米膨润土,纳米水铁矿和有机改性的纳米蒙脱土作为吸附剂和混凝剂,用于去除水中的多种农药:一种吸附建模方法

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The objective of this study was to investigate the removal of multi-pesticides through a combined treatment process with coagulation-adsorption on nano-clay. Nano-clays like nano-bentonite, nano-halloysite and organically modified nano-montmorillonite were used as the adsorbent, and alum and polyaluminium chloride (PAC) were used as the coagulants. The coagulation method alone was not sufficient to purify water, whereas coagulation plus adsorption methods provided superior purification. Amongst the nano-clays used, organically modified nano-montmorillonite gave the best result in terms of pesticide removal from water. In order to evaluate the effect of coagulant addition on the removal efficiency of nano-clay, the respective adsorption isotherms were also calculated in the presence and absence of coagulants. Freundlich isotherm constants have shown that adsorption of pesticides on different nano-clay depends on the type of clay, presence and absence of coagulants as well as the properties of pesticides. The treatment combination having the maximum removal capacity was used efficiently for the removal of pesticides from natural and fortified natural water. The results indicated that alum-PAC coagulation aided by nano-clay as an adsorbent was the superior process for the simultaneous removal of multi-pesticides from water.
机译:这项研究的目的是研究通过在纳米粘土上进行凝聚吸附的组合处理工艺去除多效农药。纳米粘土,如纳米膨润土,纳米硅藻土和有机改性的纳米蒙脱土被用作吸附剂,明矾和聚氯化铝(PAC)被用作凝结剂。单独的凝结方法不足以净化水,而凝结加吸附方法则提供了卓越的净化效果。在使用的纳米粘土中,有机改性的纳米蒙脱土在从水中去除农药方面效果最好。为了评估凝结剂添加对纳米粘土去除效率的影响,还计算了在有凝结剂和不存在凝结剂的情况下各自的吸附等温线。 Freundlich等温常数表明,农药在不同的纳米粘土上的吸附取决于粘土的类型,是否存在凝结剂以及农药的性质。具有最大去除能力的处理组合被有效地用于从天然和强化的天然水中去除农药。结果表明,以纳米粘土为吸附剂辅助的铝-PAC混凝是同时去除水中多种农药的优良工艺。

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