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Enhancing hydrolysis with microaeration

机译:通过微曝气增强水解

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Effects of microaeration on hydrolysis of primary sludge are investigated in 500 ml batch reactors at 377 degrees C. Two experiments, one with a microaerobic inoculum and one with a combination of a microaerobic and an anaerobic inoculum, are carried out to also investigate the role of the inoculum. Assuming an acidogenic, methanogenic and aerobic biomass yield of 0.1, 0.05 and 0.45 mgC/mgC, respectively, a 50-60% hydrolysis increase, during the 4 day experiment, is observed with a ratio between aerobic and anaerobic metabolism in the range 0.5-0.7. The extra hydrolysed products are oxidized to carbon dioxide and incorporated into new biomass. The oxygen utilization to carbon dioxide production ratio was similar to 1:1 on a mol basis. Effects of the oxygen supplied on the hydrolysis of carbohydrates, proteins and lipids are analyzed based on measurements and balances of dissolved carbon, nitrogen and COD. The total observed hydrolysis increase can be accounted for by increased hydrolysis of carbohydrates and proteins. Lipids are only hydrolysed when anaerobic inoculum is added, but no effect of oxygen availability is detected.
机译:在377摄氏度下于500 ml分批反应器中研究了微曝气对初级污泥水解的影响。进行了两项实验,一项是使用微需氧菌接种物,另一项是结合了微需氧菌和厌氧菌接种物,以研究接种物。假设产酸,产甲烷和好氧的生物质产率分别为0.1、0.05和0.45 mgC / mgC,在4天的实验过程中,观察到好氧和厌氧代谢之间的比例在0.5- 0.7。多余的水解产物被氧化为二氧化碳,并结合到新的生物质中。以摩尔计,氧利用与二氧化碳产生的比率类似于1:1。根据溶解的碳,氮和COD的测量值和平衡,分析了供应的氧气对碳水化合物,蛋白质和脂质水解的影响。观察到的总水解增加可以通过碳水化合物和蛋白质水解的增加来解释。仅当添加厌氧接种物时,脂质才被水解,但是没有检测到氧气供应的影响。

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