Effect of Carbon Depth in Diminution of Physico-Chemical Pollution Parameters in Cassava Processing Wastewater Treated by Aeration-Peroxide Oxidation Method

O. Omotosho, G. Ogunwande, J. Osunbitan
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Abstract

This study investigated the effect (attenuation of physico-chemical pollution characteristics) of carbon depth in vertical flow adsorption-filter system of the peroxide oxidation-aeration treatment process for cassava wastewater treatment. Results revealed that although the combined peroxide oxidation, aeration and adsorption-filter treatment process was successful in the reducing pollution characteristics of wastewater from cassava processing, the adsorption-filter part of the treatment process with carbon depths 0, 5, 10 and 15 cm carbon depths were observed to have been selective in removal of physico-chemical pollution characteristics. Parameters such as colour, SO 4 2- , NO 3- , Cl - , Ca 2+ , Zn 2+ , TDS and TSS were observed to have exhibited increased decontamination efficiency as the depth of carbon increased in the treatment process while Fe 2+ and CN ions exhibited delayed adsorption. Depth of carbon filter was however observed to have had no effect on Ni 2+ and Phenol content removal.
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碳深度对曝气-过氧化氧化法处理木薯废水理化污染参数降低的影响
研究了垂直流吸附-过滤系统中碳深度对过氧化氧曝气工艺处理木薯废水的影响(物理-化学污染特性的衰减)。结果表明,虽然过氧化氧化、曝气和吸附-过滤联合处理工艺在降低木薯加工废水的污染特性方面取得了成功,但在碳深度为0、5、10和15 cm的处理过程中,吸附-过滤部分在去除物理-化学污染特性方面具有选择性。随着碳深度的增加,颜色、so2 -、no3 -、Cl -、ca2 +、zn2 +、TDS和TSS等参数的去污率均有所提高,而Fe 2+和CN离子的吸附时间有所延迟。然而,碳过滤器的深度对Ni 2+和苯酚含量的去除没有影响。
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