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首页> 外文期刊>Journal of applied science & environmental management: JASEM >Tendu leaves refuse as a Biosorbent for COD removal from Molasses Fermentation based Bulk Drug Industry Effluent.
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Tendu leaves refuse as a Biosorbent for COD removal from Molasses Fermentation based Bulk Drug Industry Effluent.

机译:Tendu将垃圾作为生物吸附剂,用于从基于糖蜜发酵的散装制药工业废水中去除COD。

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Physico-chemical properties of effluent from a molasses fermentation based bulk drug unit were analyzed and found to be typical of the effluent from molasses fermentation except for high amount of phenols. The Chemical Oxygen Demand (COD) removal capacity of tendu (Diospyros melanoxylon) leaves refuse of bidi industry and its comparison with Granulated Activated Carbon (GAC) has been presented. Batch kinetics and isotherm studies were studied under varying experimental conditions of contact time, COD concentration, adsorbent dose and pH. Maximum COD removal was observed at a narrow pH range between 7 and 8. The kinetic data were best fitted to the pseudo-second-order chemisorption model. The adsorption followed both Langmuir and Freundlich isotherms. As per Langmuir model, maximum adsorption capacity was found to be 48.54 mg and 154.8 mg COD per g for tendu leaves refuse and GAC, respectively. The results illustrate how tendu leaves refuse, a solid waste disposal menace from bidi industry, is effective biosorbent for the removal of COD; offering a cheap option for primary treatment of the effluent.
机译:分析了基于糖蜜发酵的散装药物单元的流出物的理化性质,发现它是糖蜜发酵中典型的流出物,但酚含量很高。提出了比迪烟业的腱(Diospyros melanoxylon)叶片垃圾的化学需氧量(COD)去除能力,并将其与粒状活性炭(GAC)进行了比较。在接触时间,COD浓度,吸附剂剂量和pH值的不同实验条件下,对间歇动力学和等温线研究进行了研究。在7到8之间的较窄pH范围内观察到了最大的COD去除。动力学数据最适合于拟二级化学吸附模型。吸附遵循Langmuir和Freundlich等温线。根据Langmuir模型,发现每克藤叶垃圾和GAC的最大吸附容量分别为48.54 mg和154.8 mg COD / g。结果表明,藤蔓叶垃圾是比迪工业的一种固体废物处理威胁,如何有效去除COD的生物吸附剂。为废水的初级处理提供便宜的选择。

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