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首页> 外文期刊>Journal of Environmental Management >Removal of ametryn and organic matter from wastewater using sequential anaerobic-aerobic batch reactor: A performance evaluation study
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Removal of ametryn and organic matter from wastewater using sequential anaerobic-aerobic batch reactor: A performance evaluation study

机译:顺序厌氧-好氧间歇式反应器去除废水中的六氢萘和有机物:性能评估研究

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The present study was aimed to investigate biodegradation of 2-(ethylamino)-4-(isopropylamino)-6-(methylthio)-s-triazine (ametryn) in a laboratory-scale anaerobic sequential batch reactor (ASBR) and followed by aerobic post-treatment. Co-treatment of ametryn with starch is carried out at ambient environmental conditions. The treatment process lasted up to 150 days of operation at a constant hydraulic retention time (HRT) of 24 h and an organic loading rate (OLR) of 0.21-0.215 kg-COD/m(3)/d. Ametryn concentration of 4 and 6 mg/L was removed completely within 48-50 days of operation with chemical oxygen demand (COD) removal efficiencies > 85% at optimum reactor conditions. Ametryn acted as a nutrient/carbon source rather causing toxicity and contributed to methane gas production and sludge granulation in the anaerobic reactor. Biotransformation products of ametryn to cyanuric acid, biuret, and their further conversion to ammonia nitrogen and CO2 are monitored during the study. Adsorption of ametryn on to reactor sludge was negligible, sludge granulation, presence of ANAMMOX bacteria, and low MLVSS/MLSS ratio between 0.68 and 0.72. The study revealed that ametryn removal occurred mainly due to biodegradation and co-metabolism processes. Aerobic post-treatment of anaerobic effluent was able to remove COD up to 95%. The results of this study exhibit that anaerobic-aerobic treatment is feasible due to easy operation, economic, and highly efficient.
机译:本研究旨在研究2-(乙基氨基)-4-(异丙氨基氨基)-6-(甲硫基)-s-三嗪(ametryn)在实验室规模的厌氧顺序分批反应器(ASBR)中的生物降解,然后进行好氧后处理-治疗。六氢萘草胺与淀粉的共处理在环境条件下进行。该处理过程可在长达24小时的恒定水力停留时间(HRT)和0.21-0.215 kg-COD / m(3)/ d的有机负荷率(OLR)下持续运行150天。在最佳操作条件下,运行48-50天内可完全除去4和6 mg / L的六氢萘甲酸浓度,化学需氧量(COD)去除效率> 85%。 Ametricn充当营养物/碳源,而不是引起毒性,并促进了厌氧反应器中甲烷气体的产生和污泥的颗粒化。在研究过程中,监测了metry虫烯到氰尿酸,缩二脲的生物转化产物,以及它们进一步转化为氨氮和二氧化碳的过程。 metry紫杉醇在反应器污泥上的吸附微不足道,污泥颗粒化,ANAMMOX细菌的存在以及MLVSS / MLSS比在0.68至0.72之间较低。该研究表明,去除六氢大麻酚主要是由于生物降解和共代谢过程。厌氧废水的好氧后处理能够去除高达95%的COD。这项研究的结果表明,由于易于操作,经济和高效,厌氧-好氧处理是可行的。

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