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A Study on Acclimation and Culture of Salt Tolerant Sludge

机译:盐耐盐污泥的适应与培养研究

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The inoculated sludge in this experimental system is from the end of aeration tank of the wastewater treatment plant. Under stable operation, the system's treatments of COD and NH_4~+-N are all in line with Level One Urban Sewage Discharge stipulated by Pollutant Discharge Standards for Urban Sewage Treatment Plants (GB 18918-2002). The removal rates of COD and NH_4~+-N are 94.27% and 91.03%. By gradually improving the method of salinity acclimation, the salt tolerant sludge with outstanding performance can be successfully acclimated, and each gradual increase in salinity scope is controlled at around 4 g/L. When the salinity is 1%, the removal rates of COD and NH_~+ N reach to 92.09% and 70.13%. The salinity has significant impacts on microbial activity. With the- increase in salinity, the dehydrogenase activity gradually decreases. Salinity has significant effects on protozoa. Paramecia and nematodes can be taken as the biological indicator of outflow water quality of brine waste.
机译:该实验系统中的接种污泥是来自废水处理厂的曝气池结束。在稳定的操作下,系统的COD和NH_4〜+ -N的治疗均符合城市污水处理厂(GB 18918-2002)的污染物排放标准规定的一级城市污水排放量。 COD和NH_4〜+ -N的去除率为94.27%和91.03%。通过逐步改善盐度适应的方法,可以成功地适应具有出色性能的耐盐污泥,并且盐度范围的每次逐渐增加在约4克/升左右。当盐度为1%时,鳕鱼和NH_〜+ N的去除率达到92.09%和70.13%。盐度对微生物活性产生显着影响。随着盐度的增加,脱氢酶活性逐渐降低。盐度对原生动物具有显着影响。 Paramecia和Nematodes可以作为盐水垃圾流出水质的生物指标。

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