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首页> 外文期刊>Applied and Environmental Microbiology >Biodegradation of organic wastes containing surfactants in a biomass recycle reactor.
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Biodegradation of organic wastes containing surfactants in a biomass recycle reactor.

机译:在生物质循环反应器中对含有表面活性剂的有机废物进行生物降解。

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The microbial biodegradation of simulated graywater, containing 21.5 mg of linear alkylbenzene sulfonate liter-1, was investigated with a continuous-flow bioreactor with 100% biomass recycle. Low concentrations of organic matter in the ultrafiltration eluate were achieved by hydraulic residence times as short as 1.6 h and for periods of up to 74 days at a hydraulic residence time of 6 h. Upon a shift from the chemostat to the biomass recycle mode, the increase in biomass with time approximated a linear rather than an exponential function. Biomass densities as high as 6.8 g of cell protein liter-1 were reached; this was 50-fold higher than the steady-state biomass level in chemostats fed the same medium. We assessed physiological changes in the microbial community after a switch from the chemostat to the biomass recycle mode. Over 150 h, there was a two- to fourfold decrease in the respiratory potential of the microbes. After this decrease, respiratory potentials were relatively constant up to 74 days of operation. A decline in reactivity was also indicated by increasing lag periods before growth in response to organic nutrient inputs and by a decrease in the proportion of cells able to reduce tetrazolium dye. However, the bioreactor system was still capable of rapidly metabolizing inputs of organic matter, because of the very high biomass concentrations. It appears that < 10% of the organic carbon inputs accumulate as biomass.
机译:使用具有100%生物量循环的连续流生物反应器,研究了包含21.5 mg线性烷基苯磺酸盐升-1的模拟灰水的微生物降解。通过短至1.6 h的水力停留时间,以及在6 h的水力停留时间下长达74天的时间,即可实现超滤洗脱液中低浓度的有机物。从化学稳定器转变为生物质循环模式后,生物质随时间的增加近似为线性函数,而不是指数函数。生物质密度高达6.8 g细胞蛋白liter-1。这比饲喂相同培养基的恒化器中稳态生物量高出50倍。从化学恒温器转换为生物质循环模式后,我们评估了微生物群落的生理变化。在150个小时内,微生物的呼吸潜能下降了2到4倍。减少之后,在手术74天之内呼吸潜能相对恒定。反应性的下降还表明,响应有机营养输入,生长前的滞后时间增加以及能够还原四唑鎓染料的细胞比例下降。然而,由于很高的生物质浓度,生物反应器系统仍然能够快速代谢有机物的输入。看来,有机碳输入的<10%积累为生物质。

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