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Evolution of enzyme activity, heavy metals bioavailability and microbial community in different temperature stages of the co-bioevaporation process

机译:共生物蒸发过程中不同温度阶段酶活性,重金属生物利用度和微生物群落的演变

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Laboratory investigations documented enzyme activity, heavy metals' bioavailability and the bacterial community during co-bioevaporation treatment of food waste and landfill leachate. The activities of dehydrogenase, protease, urease and phosphatase were sensitive to the changes in operating temperature inherent in co-bioevaporation. The maximum dehydrogenase activity was appeared at warming 30 ℃. The maximum hydrolytic activity of the microorganisms on protein, urea and phosphorus-containing organic compounds appeared at warming 50 ℃. The bacteria mainly gathered on the surface and in the pores of the sludge particles used as a bulking agent. Bacterial abundance reached its maximum at warming 50 ℃. Firmicutes, Actinobacterica and Proteobacterica were the dominant bacterial phyla involved. Even though co-bioevaporation concentrated the heavy metals in the leachate, their bioavailability was substantially reduced during the process.
机译:实验室研究记录了食物垃圾和垃圾填埋场渗滤液的共生物蒸发处理过程中的酶活性,重金属的生物利用度和细菌群落。脱氢酶,蛋白酶,脲酶和磷酸酶的活性对共生物蒸发固有的工作温度变化敏感。在30℃时出现最大的脱氢酶活性。升温50℃时,微生物对蛋白质,尿素和含磷有机物的水解活性最大。细菌主要聚集在用作填充剂的污泥颗粒的表面和孔中。在50℃的温度下,细菌的丰度达到最大值。 Firmicutes,放线菌和Proteobacterica是主要的细菌门。即使共生物蒸发浓缩了渗滤液中的重金属,在此过程中其生物利用度也大大降低。

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