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A novel hybrid approach of activated carbon and ultrasound cavitation for the intensification of palm oil mill effluent (POME) polishing

机译:活性炭和超声空化混合的新方法,用于增强棕榈油厂废水(POME)的抛光

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摘要

This investigation focuses on activated carbon (AC) adsorption and ultrasound (US) cavitation for polishing the palm oil mill effluent (POME). Both AC adsorption and US cavitation were investigated individually, in series and operating them in a combined way. The efficiency of above processes has been evaluated in terms of removal of chemical oxygen demand (COD) and total suspended solids (TSS). For the individual operation, the optimisation studies were carried out by using the following conditions: AC dosage (50–200 g/L); contact time (2, 4, 6 h); US power amplitude (50% and 80%) and US cavitation time (30–180 min). The optimisation studies utilising US power amplitude (50%) and cavitation time (15 min) followed by AC adsorption using minimum AC dosage (50 g/L) and contact time (30 min) resulted in ∼100% COD and 83.33% TSS removals which meets the discharge limits set by the Department of Environment (DoE), Malaysia. The hybrid operation was also studied by simultaneously employing AC adsorption and US cavitation and it was observed that an adsorption dosage of 50 g/L resulted into achieving 73.08% COD and 98.33% TSS removals within 15 min of US irradiation. With the possibility of continuous and feasible sonochemical reactors, this hybrid approach of US cavitation followed by AC adsorption could be an alternative processing technique for POME polishing.
机译:这项研究的重点是活性炭(AC)吸附和超声(US)空化,以抛光棕榈油厂的废液(POME)。分别对AC吸附和US空化进行了串联和组合操作研究。已根据去除化学需氧量(COD)和总悬浮固体(TSS)评估了上述过程的效率。对于单个操作,通过以下条件进行优化研究:AC剂量(50–200 g / L);接触时间(2、4、6小时);美国功率振幅(50%和80%)和美国空化时间(30-180分钟)。利用美国功率振幅(50%)和气蚀时间(15分钟),然后使用最小AC剂量(50 g / L)和接触时间(30分钟)进行AC吸附进行的优化研究导致〜100%的COD和83.33%的TSS去除符合马来西亚环境部(DoE)设定的排放限制。还通过同时使用AC吸附和US空化研究了混合操作,观察到50 g / L的吸附剂量导致在US辐射15分钟内达到73.08%的COD和98.33%的TSS去除率。由于连续和可行的声化学反应器的可能性,这种US空化然后AC吸附的混合方法可能是POME抛光的替代加工技术。

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