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An application of response surface methodology for optimizing coagulation process of raw industrial effluent using Cassia obtusifolia seed gum together with alum

机译:响应面法在决明子胶与明矾联合优化工业废水原液混凝工艺中的应用

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摘要

Coagulation is effective, simple to operate, and widely used in treatment of industrial effluent. However, commonly used inorganic coagulants pose detrimental effects on human health and living organisms in long run, and generate large amount of toxic sludge. Thus, this study investigated the optimized use of Cassia obtusifolia alone or combination of alum with lower dosages in treatment of industrial effluent. In this study, raw pulp and paper mill effluent (PPME) was used as a model wastewater in confirming the potential use of C. obtuszfolia seed gum as a plant-based coagulant or coagulant aid together with the alum. Response surface methodology (RSM) enabled the study of interactive effects between operating treatment conditions, and to determine the optimal treatment conditions. The analysis of variance results obtained in the present study reflected significant quadratic models and strong correlations between operating conditions and treatment performance. In addition, current findings suggested that the coagulation mechanisms using C. obtusifolia seed gum together with the alum were most likely based on adsorption with inter-particle bridging and charge neutralization. Floc characterization also showed distinctive results, indicating the presence of active functional groups and the thermal stability of floc formed using C. obtusifolia seed gum and alum. Using RSM, optimal dosages of 0.17 and 0.09 g/L of C. obtusifolia seed gum and alum, respectively were required to achieve maximum total suspended solids and chemical oxygen demand removals (89.6 and 55.4%, respectively) under natural pH of raw PPME and slow-mixing time of 3.40 min. By combining the use of both coagulants, coagulant dosages of C obtusifolia seed gum and alum could be reduced up to 90.5 and 62.5%, respectively. The present study revealed C obtusifolia seed gum could be used as a potential plant-based coagulant or coagulant aid in treatment of raw and complex industrial effluent together with reduced dosage of alum. (C) 2015 Elsevier B.V. All rights reserved.
机译:混凝效果好,操作简单,广泛用于工业废水的处理。但是,从长远来看,常用的无机混凝剂会对人体健康和生物造成不利影响,并产生大量有毒污泥。因此,本研究调查了决明子单独或低剂量明矾组合在工业废水处理中的优化使用。在这项研究中,使用纸浆和造纸厂的废液(PPME)作为模型废水,以确认钝角隐孢子虫种子胶与明矾一起用作植物性凝结剂或助凝剂的潜在用途。响应面方法(RSM)使得能够研究操作治疗条件之间的相互作用,并确定最佳治疗条件。在本研究中获得的方差结果分析反映了重要的二次模型以及操作条件和治疗效果之间的强相关性。此外,目前的发现表明,使用钝角隐孢子虫种子胶和明矾的凝结机制最有可能是基于颗粒间桥连和电荷中和的吸附。絮凝物的表征也显示出独特的结果,表明存在活性官能团以及使用钝角梭菌种子胶和明矾形成的絮凝物的热稳定性。使用RSM,在原始PPME和天然PPME的天然pH值下,需要达到0.17和0.09 g / L的钝角梭菌种子胶和明矾的最佳剂量,以实现最大的总悬浮固体和化学需氧量去除率(分别为89.6和55.4%)。缓慢混合时间为3.40分钟。通过结合使用两种凝结剂,钝齿ob种子胶和明矾的凝结剂量可分别降低至90.5和62.5%。本研究表明,钝齿ob种子胶可以用作潜在的基于植物的混凝剂或助凝剂,用于处理原液和复杂的工业废水,并减少白矾的用量。 (C)2015 Elsevier B.V.保留所有权利。

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