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Palm Oil Mill Effluent Treatment Using Electrocoagulation-Adsorption Hybrid Process

机译:棕榈油磨机采用电凝吸附杂交工艺处理

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Palm oil processing is a multi-stage operation which generates large amount of palm oil mill effluent (POME). Due to its potential to cause environmental pollution, POME must be treated prior to discharge. Electrocoagulation (EC), adsorption (AD), combined EC and AD, and EC integrated with AD have demonstrated great potential to remove various organic and inorganic pollutants from wastewater. Up to date, no study has been found on POME treatment using EC-AD hybrid process. Therefore, this study aims to investigate the feasibility of applying EC-AD hybrid process as an alternative treatment for POME. The EC-AD hybrid process achieved higher removal of total suspended solid (TSS), chemical oxygen demand (COD) and colour as compared to EC and AD stand-alone processes. The EC-AD hybrid process reduced 79% of TSS, 44% of COD and 89% of colour from POME. The adsorption kinetics of TSS, COD and colour were best interpreted using pseudo-second-order model, which indicated that the adsorption rate was mainly controlled by chemisorption. Overall, the EC-AD hybrid process could be recommended as an alternative treatment for POME.
机译:棕榈油加工是一种多级操作,产生大量的棕榈油磨流出物(Pome)。由于其造成环境污染的可能性,必须在出院之前进行治疗。电凝(EC),吸附(AD),组合EC和AD,EC与AD集成的EC表明,从废水中除去各种有机和无机污染物。最新情况下,使用EC-AD混合过程没有发现在POME治疗上的研究。因此,本研究旨在探讨将EC-AD杂交过程应用为POME的替代治疗的可行性。与EC和AD独立工艺相比,EC-AD杂交过程达到较高的去除总悬浮固体(TSS),化学需氧量(COD)和颜色。 EC-AD混合过程减少了79%的TSS,44%的COD和89%的颜色。使用伪二阶模型最好地解释TSS,COD和颜色的吸附动力学,这表明吸附速率主要由化学控制。总的来说,可以推荐EC-AD混合过程作为PAME的替代处理。

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