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Wasted cockle shell (Anadara granosa) as a natural adsorbent for treating polluted river water in the fabricated column model (FCM)

机译:废柱壳(Anadara granosa)作为天然吸附剂用于处理人造柱模型(FCM)中的污染河水

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The potential use of crushed cockle shells (Anadara granosa) for treating polluted river water in the fabricated column model was investigated along with the determination of the optimum amount of A. granosa used in the fabricated column model based on the results obtained from the series of jar test experiments performed during the study. The result shows that the crushed cockle shell could reduce chemical oxygen demand with the adsorption capacity of 5.3191 mg g (1). Moreover, based on adsorption isotherm, it is shown that the adsorption data best fitted for Freundlich (R-2=0.9798) when compared to Langmuir isotherm (R-2=0.5737). The breakthrough curves plotted based on the data obtained from fabricated column model experiment indicates that the exhaustion time of crushed cockle shell was on the third day. The linearization of breakthrough curves based on Thomas model, Yoon-Nelson model, and Adam-Bohart model, shows that the curves best fitted with Adam-Bohart model, since the value of R-2 was higher compared to the other models tested during the experiment.
机译:研究了破碎的蛤壳(Anadara granosa)在人造柱模型中用于处理污染河水的潜在用途,并根据一系列试验的结果确定了在人造柱模型中使用的最佳拟南芥数量。研究期间进行的jar测试实验。结果表明,破碎的蛤壳可以减少化学需氧量,吸附量为5.3191 mg g(1)。此外,基于吸附等温线,表明与朗缪尔等温线(R-2 = 0.5737)相比,最适合弗氏(R-2 = 0.9798)的吸附数据。根据从制造的柱模型实验获得的数据绘制的突破曲线表明,粉碎的蛤壳的耗尽时间是在第三天。基于Thomas模型,Yoon-Nelson模型和Adam-Bohart模型的突破曲线的线性化表明,该曲线最适合Adam-Bohart模型,因为R-2的值高于在测试过程中测试的其他模型。实验。

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