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BTEX removal in a horizontal-flow anaerobic immobilized biomass reactor under denitrifying conditions

机译:在反硝化条件下在水平流厌氧固定化生物质反应器中去除BTEX

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摘要

Because benzene, toluene, ethylbenzene, and xylenes (BTEX) and ethanol are important contaminants present in Brazilian gasoline, it is essential to develop technology that can be used in the bioremediation of gasoline-contaminated aquifers. This paper evaluates the performance of a horizontal-flow anaerobic immobilized biomass (HAIB) reactor fed with water containing gasoline constituents under denitrifying conditions. Two HAIB reactors filled with polyurethane foam matrices (5 mm cubes, 23 kg/m(3) density and 95 % porosity) for biomass attachment were assayed. The reactor fed with synthetic substrate containing protein, carbohydrates, sodium bicarbonate and BTEX solution in ethanol, at an Hydraulic retention time (HRT) of 13.5 h, presented hydrocarbon removal efficiencies of 99 % at the following initial concentrations: benzene 6.7 mg/L, toluene 4.9 mg/L, m-xylene and p-xylene 7.2 mg/L, ethylbenzene 3.7 mg/L, and nitrate 60 mg N/L. The HAIB reactor fed with gasoline-contaminated water at an HRT of 20 h showed hydrocarbon removal efficiencies of 96 % at the following initial concentrations: benzene, 4.9 mg/L; toluene, 7.2 mg/L; m-xylene, 3.7 mg/L; and nitrate 400 mg N/L. Microbiological observations along the length of the HAIB reactor fed with gasoline-contaminated water confirmed that in the first segment of the reactor, denitrifying metabolism predominated, whereas from the first sampling port on, the metabolism observed was predominantly methanogenic.
机译:由于苯,甲苯,乙苯和二甲苯(BTEX)和乙醇是巴西汽油中存在的重要污染物,因此开发可用于对汽油污染的含水层进行生物修复的技术至关重要。本文评估了在反硝化条件下,向卧式厌氧固定式生物质(HAIB)反应器中加入含汽油成分的水的性能。分析了两个HAIB反应器,其中填充了聚氨酯泡沫基体(5毫米立方,23 kg / m(3)密度和95%孔隙度),用于生物质附着。在13.5 h的水力停留时间(HRT)下,向反应器中加入含有蛋白质,碳水化合物,碳酸氢钠和BTEX的乙醇溶液的合成底物,在以下初始浓度下,除烃效率为99%:苯6.7 mg / L,甲苯4.9 mg / L,间二甲苯和对二甲苯7.2 mg / L,乙苯3.7 mg / L,硝酸盐60 mg N / L。在以下初始浓度下,HRT为20 h的装有汽油污染水的HAIB反应器显示出96%的烃去除效率:苯,4.9 mg / L;甲苯7.2 mg / L;间二甲苯,3.7 mg / L;和硝酸盐400毫克N / L。沿用汽油污染的水进料的HAIB反应器长度方向的微生物学观察证实,在反应器的第一部分,反硝化代谢占主导,而从第一个采样口开始,观察到的代谢主要是产甲烷。

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