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Continuous nitrous oxide abatement in a novel denitrifying off-gas bioscrubber

机译:新型脱硝废气生物洗涤塔中的连续一氧化二氮减排

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The potential of a bioscrubber composed of a packed bed absorption column coupled to a stirred tank denitrification bioreactor (STR) was assessed for 95 days for the continuous abatement of a diluted air emission of N2O at different liquid recycling velocities. N2O removal efficiencies of up to 40 +/- 1 % were achieved at the highest recirculation velocity (8 m h(-1)) at an empty bed residence time of 3 min using a synthetic air emission containing N2O at 104 +/- 12 ppm(v). N2O was absorbed in the packed bed column and further reduced in the STR at efficiencies > 80 % using methanol as electron donor. The long-term operation of the bioscrubber suggested that the specialized N2O degrading community established was not able to use N2O as nitrogen source. Additional nitrification assays showed that the activated sludge used as inoculum was not capable of aerobically oxidizing N2O to nitrate or nitrite, regardless of the inorganic carbon concentration tested. Denitrification assays confirmed the ability of non-acclimated activated sludge to readily denitrify N2O at a specific rate of 3.9 mg N2O g VSS h(-1) using methanol as electron donor. This study constitutes, to the best of our knowledge, the first systematic assessment of the continuous abatement of N2O in air emission. A characterization of the structure of the microbial population in the absorption column by DGGE-sequencing revealed a high microbial diversity and the presence of heterotrophic denitrifying methylotrophs.
机译:连续95天评估了由填充床吸收塔与搅拌釜反硝化生物反应器(STR)组成的生物洗涤塔在不同液体再循环速度下连续减少N2O稀释空气排放的潜力。使用包含104 +/- 12 ppm的N2O的合成空气排放物,在最高回流速度(8 mh(-1))的空床停留时间为3分钟的情况下,可以实现高达40 +/- 1%的N2O去除效率(v)。使用甲醇作为电子给体,N2O被吸附在填充床塔中,并在STR中以> 80%的效率进一步还原。生物洗涤塔的长期运行表明建立的专门的N2O降解团体无法使用N2O作为氮源。额外的硝化测定表明,用作接种物的活性污泥不能将N2O氧化成硝酸盐或亚硝酸盐,而与所测试的无机碳浓度无关。反硝化测定法证实了未驯化的活性污泥具有以甲醇为电子供体以3.9 mg N2O g VSS h(-1)的特定速率轻易地反硝化N2O的能力。据我们所知,这项研究是对空气排放中N2O持续减少的首次系统评估。通过DGGE测序对吸收柱中微生物种群的结构进行表征,发现微生物多样性高,并且存在异养反硝化甲基营养菌。

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