首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A dual purpose packed-bed reactor for biogas scrubbing and methane-dependent water quality improvement applying to a wastewater treatment system consisting of UASB reactor and trickling filter
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A dual purpose packed-bed reactor for biogas scrubbing and methane-dependent water quality improvement applying to a wastewater treatment system consisting of UASB reactor and trickling filter

机译:一种用于沼气洗涤和甲烷依赖的水质改善的两用填充床反应器,应用于由UASB反应器和滴滤器组成的废水处理系统

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A wastewater treatment system employing a UASB reactor in temperate regions requires biogas as a heat source for the UASB reactor during low temperature seasons. In this case, removal of HS in the biogas by means of a scrubber before burning is necessary in order to prevent the boilers from corroding. Heating of the UASB reactor is, however, unnecessary in a warm season, and the scrubber and biogas become useless. Methane-dependent water quality improvement using the scrubber and biogas would be one way to use them efficiently during the warm season. The possible dual-purpose use of a packed-bed reactor was examined, with one of its uses being the scrubbing of biogas during the cold season and the other being the methane-dependent improvement of effluent water quality during the warm season. A bench scale packed-bed filled with plastic latticed-ring media was installed ill a livestock wastewater treatment plant consisting of a UASB reactor and a trickling filter for post-treatment. The packed-bed was operated with biogas flowing at a superficial velocity of 0.14-0.39 m h(-1) and the hydraulic loading of trickling filter effluent sprayed onto the media 9.4-26.1 m(3) m(2) day(-1). H2S in the biogas from the UASB reactor was reduced from 1200-2500 ppm to less than 2 pprin by the reactor. Methane-dependent water quality improvement was examined using it laboratory scale reactor to which methane and/or air was supplied from the bottom, while plant effluent was spread from the top of the reactor. When the mixture gas of methane and air (volume ratio 1:3) was added to the reactor, biofilm grew on the surface of the media. Accompanying this growth, ammonium and phosphate in the spread water decreased, probably due to assimilation by the methane-oxidizing bacteria. Though assimilation activity dropped after the accumulation of biomass, it could be reactivated by washing out the excess biomass. Periodical backwash at a rate of more than once a week seemed to efficiently maintain the removal activity. The dark brown color of the wastewater could be also reduced in concert with methane oxidation. It seemed that methane-oxidizing bacteria degraded color-causing compounds. These results suggest that the packed-bed reactor is useful for both HS purification of biogas and methane-dependent effluent water quality improvement. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 14]
机译:在温带地区使用UASB反应器的废水处理系统在低温季节需要沼气作为UASB反应器的热源。在这种情况下,有必要在燃烧前通过洗涤器除去沼气中的HS,以防止锅炉腐蚀。然而,在温暖的季节,UASB反应器的加热是不必要的,并且洗涤器和沼气变得无用。使用洗涤塔和沼气改善甲烷相关的水质将是在温暖季节有效利用它们的一种方法。对填充床反应器的双重用途进行了研究,其中一种用途是在寒冷季节洗涤沼气,另一种用途是在温暖季节洗涤甲烷取决于废水的水质。在由UASB反应器和滴滤器组成的牲畜废水处理厂中,安装了装有塑料格状环介质的台式秤填充床,以进行后处理。填充床运行时沼气的表观流速为0.14-0.39 mh(-1),滴入式滤池出水的水力负荷喷到介质上9.4-26.1 m(3)m(2)day(-1) 。 UASB反应器产生的沼气中的H2S通过反应器从1200-2500 ppm减少到小于2 pprin。使用实验室规模的反应器检查了与甲烷有关的水质改善情况,从反应器的底部向其中供应甲烷和/或空气,同时从反应器的顶部扩散出工厂废水。当将甲烷和空气的混合气体(体积比为1:3)添加到反应器中时,生物膜会在介质表面生长。伴随着这种增长,散布水中的铵盐和磷酸盐减少了,这可能是由于甲烷氧化细菌的吸收所致。尽管生物量积累后同化活性下降,但可以通过洗去多余的生物量将其活化。以每周一次以上的速度进行定期反冲洗似乎可以有效地保持去除活性。废水的深棕色也可与甲烷氧化一起减少。甲烷氧化细菌似乎降解了引起颜色的化合物。这些结果表明,填充床反应器可用于沼气的HS提纯和甲烷依赖性废水水质的改善。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:14]

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