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Removal of phenol and conventional pollutants from aqueous effluent by chitosan and chitin

机译:壳聚糖和甲壳素去除废水中的苯酚和常规污染物

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摘要

The present study deals with phenol adsorption on chitin and chitosan and removal of contaminants from wastewater of a petroleum refinery. The adsorption kinetic data were best fitted to first- and second-order models for chitosan and chitin, respectively. The results of adsorption isotherms showed Langmuir model more appropriately described than a Freundlich model for both adsorbents. The adsorption capacity was 1.96 and 1.26 mg/g for chitin and chitosan, respectively. Maximum removal of phenol was about 70-80% (flow rate: 1.5 mL/min, bed height: 18.5 cm, and 30 mg/L of phenol. Wastewater treatment with chitin in a fixed-bed system showed reductions of about 52 and 92% for COD and oil and greases, and for chitosan 65 and 67%, respectively. The results show improvement of the effluent quality after treatment with chitin and chitosan.
机译:本研究涉及苯酚在几丁质和壳聚糖上的吸附以及从炼油厂废水中去除污染物。吸附动力学数据最适合分别用于壳聚糖和几丁质的一阶和二阶模型。吸附等温线的结果表明,对于两种吸附剂而言,Langmuir模型比Freundlich模型更恰当地描述。几丁质和壳聚糖的吸附容量分别为1.96和1.26 mg / g。苯酚的最大去除量约为70-80%(流速:1.5 mL / min,床高:18.5 cm,苯酚30 mg / L。在固定床系统中用几丁质处理废水显示减少约52和92化学需氧量,油脂和壳聚糖的含量分别为65%和67%,结果表明,用几丁质和壳聚糖处理后的出水水质得到改善。

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