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Experience of starting the pilot scale anaerobic reactor treating hydrogen production residue from sludge and kitchen waste

机译:从污泥和厨房垃圾处理厌氧反应器的试验规模厌氧反应器的经验

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As more and more water treatment plants were built, the amount of sludge in China increases rapidly. The main method of disposing is landfill, but it will occupy a large number of lands. Co-digestion with kitchen waste is an effective way to treat sludge, but there are some problems, such as acidification. Dividing the anaerobic digestion into hydrogen production process and methane production process can solve these problems properly. In this study, a 300L continuously stirred tank reactor treating the hydrogen production residue from sludge and kitchen waste had been running for about 110 days. The reactor was operated at a temperature of 36°C. Due to equipment problem, the reactor failed to maintain suitable temperature from the 82nd day.PH and the concentration of TVFA were measured everyday after equipment breakdown. Total sugar, TCOD, soluble sugar, total protein and soluble protein of the feedstock were compared with that of the effluent to evaluate the performance of the reactor after breakdown. On the 102th day, the concentration of TCOD decreased from 71009 mg/L to 53296 mg/L, and the degradation rate was 24.9 %, the concentration of total sugar and total protein respectively decreased from 9721 mg/L,23373 mg/L to 5357mg/L,14475mg/L, the degradation rates were 44.9% and 38.1 %.
机译:随着越来越多的水处理厂建造,中国污泥的量迅速增加。主要处理方法是垃圾填埋场,但它将占据大量的土地。与厨房废物共消化是治疗污泥的有效方法,但存在一些问题,如酸化。将厌氧消化分成氢气生产过程,甲烷生产过程可以适当地解决这些问题。在本研究中,将300L连续搅拌的罐式反应器从污泥和厨房废物中处理氢气产生残留物持续约110天。将反应器在36℃的温度下操作。由于设备问题,反应器未能从第82天维持合适的温度,并且在设备故障后每天测量TVFA的浓度。将原料的总糖,TCOD,可溶性糖,总蛋白质和可溶性蛋白质与流出物进行比较,以评估击穿后反应器的性能。在第102天,TCOD的浓度从71009mg / L降低至53296 mg / L,降解速率为24.9%,总糖的浓度和总蛋白质分别从9721 mg / L,23373mg / L. 5357mg / L,14475mg / L,降解率为44.9%和38.1%。

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