首页> 外文期刊>Journal of Cleaner Production >Anaerobic/aerobic cycle effect on di(2-ethylhexyl) phthalate and pentachlorophenol removal from real textile wastewater in sequencing batch biofilm reactor
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Anaerobic/aerobic cycle effect on di(2-ethylhexyl) phthalate and pentachlorophenol removal from real textile wastewater in sequencing batch biofilm reactor

机译:厌氧/有氧循环效应Di(2-乙基己基)邻苯二甲酸酯和五氯苯酚从真正的纺织废水中除去测序分批生物膜反应器

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This study aims to investigate the treatability of pentachlorophenol encountered in cotton textile plants and di(2-ethylhexyl) phthalate used in synthetic textile production. They were selected as model micropollutants. Experiments were carried out at different anaerobic/aerobic (A/O) sequences (4 h/16 h, 8 h/12 h, 12 h/8 h, 16 h/4 h) at constant hydraulic retention time (36 h) and solid retention time (15 d) to determine the effect of biocarriers addition and anaerobic/aerobic cycle time on micropollutant removal from real textile wastewater. During the study period, sequencing batch reactor and sequencing batch biofilm reactor, which contains K3 Kaldnes bio-carrier with 50% filling ratio, were fed with a real textile wastewater. Reactors were operated with a total cycle period of 24 h (fill: 0.5 h; react: 20 h; settle: 2 h; decant: 1 h; idle: 0.5 h). Their performances were compared in terms of PCP, DEHP and macro pollutants (BOD5, COD, TOC, TN, TP, and color) removals. The average DEHP and PCP concentrations in feed wastewater were 124.5 +/- 5.24 and 12.8 +/- 0.27 mg/L, respectively. The maximum DEHP removal efficiencies were 72.2% for SBBR at 4 h/16 h (A/O) and 42.1% for SBR at 8 h/12 h (A/O) sequence. The PCP removal efficiency was not affected significantly by the change of aeration times and remained 51.1% -56.5% for SBBR and 35.0%-43.2% for SBR. The addition of biocarrier caused 30.0% and 13.0% increase in removal efficiency for DEHP and PCP, respectively. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究旨在研究棉纺织植物和合成纺织品生产中使用的棉纺织植物和二(2-乙基己基)邻苯二甲酸酯的处理能力。它们被选为模型微污染物。在恒定液压保留时间(36小时)和恒定的厌氧/有氧(A / O)序列(4h / 16h,8h / 12h,12h / 8h,16 h / 12h,12h / 8h,16 h / 4h),和实验固体保留时间(15d)以确定生物载体的添加和厌氧/有氧循环时间对从真正的纺织废水中的微量润肤剂去除。在研究期间,含有具有50%填充率的K3 kaldnes生物载体的测序分批反应器和测序分批Biofilm反应器用真正的纺织废水喂养。反应器以24小时的总循环期操作(填充:0.5小时;反应:20小时;终结:2小时;倾角:1小时;闲置:0.5小时)。他们的表演在PCP,DEHP和宏观污染物(BOD5,COD,TOC,TN,TP和COLOR)中进行了比较。饲料废水中的平均DEHP和PCP浓度分别为124.5 +/- 5.24和12.8 +/- 0.27 mg / L. SBBR的最大DEHP去除效率为4,H / 16h(A / O)的SBBR为72.2%,SBR为8 H / 12 H(A / O)序列42.1%。通过曝气时间的变化,PCP去除效率不会显着影响,SBR持续51.1%-56.5%,35.0%-43.2%。添加生物载波引起了30.0%和13.0%的去除效率增加了DEHP和PCP。 (c)2020 elestvier有限公司保留所有权利。

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