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Removal of 4-chlorophenol from contaminated water using coconut shell waste pretreated with chemical agents

机译:使用化学试剂预处理的椰子壳废料从污水中去除4-氯苯酚

摘要

BACKGROUND: At concentrations higher than 1 mg L-1, 4-chlorophenol (4-CP) is very toxic to living organisms, and if ingested beyond the permitted concentration it causes health disorders such as cancer and mutation. This laboratory study investigates treatment of contaminated water laden with 4-CP using coconut shell charcoal (CSC) waste. Batch studies were conducted to study the effects of dose, pH, and equilibrium time on 4-CP removal. To improve 4-CP removal, surface modification of the adsorbent with TiO2, HNO3, and/or NaOH was undertaken. RESULTS: At an initial 4-CP concentration of 25 mg L-1 under optimized conditions (dose 13.5 g L-1, pH 2.0; agitation speed 150 rpm and 50 min equilibrium time), the NaOH-treated CSC demonstrated a greater removal of 4-CP (71%) than those oxidized with HNO3 (40%) and/or coated with TiO2 (52%). The adsorption capacity of the NaOH-treated CSC (54.65 mg g-1) was higher than those treated with HNO3 (23.13 mg g-1) or coated with TiO2 (48.42 mg g-1). CONCLUSION: Although treatment results using the NaOH-treated CSC alone were promising, the treated effluents were still unable to meet the required limit of less than 1 mg L-1. Therefore, subsequent treatments are still required to complement the removal of 4-CP from the wastewater.
机译:背景:在高于1 mg L-1的浓度下,4-氯苯酚(4-CP)对活生物体有剧毒,如果摄入超过允许的浓度,则会导致健康疾病,例如癌症和突变。这项实验室研究调查了使用椰子壳木炭(CSC)废物处理4-CP污染的水的方法。进行了批量研究,以研究剂量,pH和平衡时间对4-CP去除的影响。为了改善4-CP的去除,对吸附剂进行了TiO2,HNO3和/或NaOH的表面改性。结果:在优化条件下(剂量13.5 g L-1,pH 2.0;搅拌速度150 rpm和平衡时间50分钟),在4-CP初始浓度为25 mg L-1时,经NaOH处理的CSC表现出更大的去除率。 4-CP(71%)高于被HNO3氧化(40%)和/或被TiO2包覆(52%)的化合物。 NaOH处理过的CSC(54.65 mg g-1)的吸附容量高于HNO3(23.13 mg g-1)或TiO2涂层(48.42 mg g-1)处理的CSC。结论:尽管仅使用NaOH处理的CSC的处理结果是有希望的,但处理后的废水仍不能满足要求的小于1 mg L-1的限值。因此,仍然需要后续处理来补充从废水中去除4-CP的过程。

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