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Removal of carbofuran and methylparathion from aqueous media through calix[4]arene-based impregnated resin

机译:通过杯[4]芳烃基浸渍树脂从水性介质中去除呋喃丹和甲基对硫磷

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The present study explores the synthesis of impregnated resin and its adsorption efficiency for the removal of carbofuran and methylparathion from aqueous media through static and dynamic adsorption methods. Different factors that affect the adsorption process were optimized as pH 5, adsorbent dosage 30 mg and agitation time 45 min for carbofuran and 60 min for methylparathion. The adsorption data were found to be best fitted with Freundlich isotherm and follow pseudo-second-order kinetic model. In addition to this, it was found from intraparticle diffusion model which explores that the adsorption of both pesticides may involve the film diffusion process as the rate limiting step. Thomas model rate constant (k(TH)) was found to be 0.0015 cm(3) mg(-1) min(-1) for both pesticides, whereas maximum solid-phase concentration (q(0)) was found to be 22.58 and 34.05 mg g(-1) for carbofuran and methylparathion, respectively, through dynamic adsorption study. The resin can be regenerated and reused effectively for real water samples.
机译:本研究探讨了浸渍树脂的合成及其通过静态和动态吸附方法从水性介质中去除呋喃丹和甲基对硫磷的吸附效率。优化了影响吸附过程的不同因素,如pH 5,呋喃丹的吸附剂量为30 mg,搅拌时间为45分钟,甲基对硫磷的搅拌时间为60分钟。发现吸附数据最适合Freundlich等温线,并遵循伪二级动力学模型。除此之外,从颗粒内扩散模型中发现,该模型探索了两种农药的吸附可能涉及膜扩散过程作为限速步骤。发现两种农药的Thomas模型速率常数(k(TH))为0.0015 cm(3)mg(-1)min(-1),而最大固相浓度(q(0))为22.58通过动态吸附研究分别测定了呋喃呋喃和甲基对硫磷的34.05 mg g(-1)。该树脂可以再生并有效地用于真实水样。

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