首页> 外文期刊>Journal of Degraded and Mining Lands Management >Degrading cassava mill effluent using aerated sequencing batch reactor with palm kernel shell as medium
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Degrading cassava mill effluent using aerated sequencing batch reactor with palm kernel shell as medium

机译:以棕榈仁壳为介质的曝气顺序分批反应器降解木薯磨房废水

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Local cassava agro-processing industries in Nigeria generate toxic organic effluent with negative environmental impact if disposed without adequate treatment. This study examines the performance of a lab-scale aerated sequencing batch reactor (SBR) in degrading cassava mill effluent using palm kernel ( Elaeis guineensis ) shell (PKS) as biofilter media. Wastewater samples were collected before and after flowing through each compartment at hydraulic retention times of 3, 5 and 7 hours. Continuous aeration and nature-based degradation of the effluent recorded overall removal efficiencies of 73.5% (Hydrogen cyanide), 70.59% (BOD), 69.18% (COD), 29.93% (Turbidity), 4.92% (Sodium), 25% (Magnesium) and 14.32% (Calcium) respectively. Effluent electrical conductivity (EC) slightly increased by 7.84%. The Sodium Adsorption Ratio (SAR) of the treated wastewater ranged from 6.9 to 7.3 while the final pH ranged from 4.5 to 4.6. The values of EC, BOD and COD were significantly different ( P <0.05) along the treatment sequence, confirming the effectiveness of the chambers in reducing these pollutants. Despite achieving high removal efficiencies, the final values of most parameters still fall short of the local permissible limit signifying operational limitations and the need to optimize the system to reduce key contaminants to safe disposal limits.
机译:如果不进行适当处理,尼日利亚当地的木薯农业加工业会产生有毒有机废水,对环境造成负面影响。这项研究检查了实验室规模的充气测序批处理反应器(SBR)在以棕榈仁(Elaeis guineensis)壳(PKS)作为生物过滤器介质降解木薯磨坊废水中的性能。在3、5和7小时的水力停留时间流过每个隔室之前和之后收集废水样品。废水的连续曝气和基于自然的降解记录的总去除效率分别为73.5%(氰化氢),70.59%(BOD),69.18%(COD),29.93%(浊度),4.92%(钠),25%(镁) )和14.32%(钙)。废水电导率(EC)略微提高了7.84%。处理后的废水的钠吸附率(SAR)为6.9至7.3,最终pH为4.5至4.6。 EC,BOD和COD的值沿处理顺序有显着差异(P <0.05),证实了处理室在减少这些污染物方面的有效性。尽管达到了很高的去除效率,但大多数参数的最终值仍未达到当地允许的极限,这表明运行受到限制,并且还需要优化系统以将关键污染物减少至安全处置极限。

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