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Ammonia sanitisation of sewage sludge using urea

机译:用尿素对污水污泥进行氨消毒

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The aim of the study was to develop a simple, low-cost treatment for sewage sludge using urea as a sanitising agent. Sewage sludge was spiked with Enterococcus faecalis and Salmonella typhimurium, treated with 0.5, 1, 1.5 and 2% w/w urea at laboratory scale, and the viability was monitored during 4 months of storage at 4, 10 and 22°C (only 0.5%). A linear relationship was identified between Salmonella spp. inactivation rate and ammonia (NH_3) concentration. Temperature had a positive impact on Salmonella spp. inactivation at higher temperatures, but in the range 4-10°C temperature influenced this inactivation merely by its impact on the ammonia equilibrium. Enterococcus spp. was more persistent and a lag phase of up to 11 weeks was observed. Higher temperature and ammonia concentration reduced the lag phase duration signifi cantly, and also had a clear effect on the inactivation rate for the treatments with 0.5% urea at 22°C and 2% urea at 4 and 10°C. Urea sanitisation of sewage sludge can give a 2 log10 reduction of Enterococcus spp. and more than a 5 log_(10) reduction of Salmonella spp. within 6 weeks with either 0.5% w/w urea at 22°C or 2% urea at 10°C.
机译:该研究的目的是开发一种简单,低成本的处理方法,以尿素为消毒剂处理污水污泥。向污水污泥中加入粪肠球菌和鼠伤寒沙门氏菌,在实验室规模下用0.5、1、1.5和2%w / w尿素处理,并在4、10和22°C下储存4个月(仅0.5 %)。沙门氏菌属之间存在线性关系。失活速率和氨(NH_3)浓度。温度对沙门氏菌有积极影响。在较高温度下会失活,但在4-10°C的温度范围内,温度仅会影响氨平衡,从而影响这种失活。肠球菌更持久,观察到长达11周的延迟期。较高的温度和氨浓度显着减少了滞后阶段的持续时间,并且对于在22°C下使用0.5%尿素和在4和10°C下使用2%尿素的处理对失活率也有明显的影响。污水污泥的尿素消毒可使肠球菌减少2 log10。沙门氏菌减少了5 log_(10)以上。在6周内使用22%的0.5%w / w尿素或10%的2%尿素。

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