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Effects of different pre-treatment methods on anaerobic mixed microflora for hydrogen production and COD reduction from domestic effluent

机译:不同预治疗方法对厌氧混合微生物的影响及国内流出物的鳕鱼

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Effects of different pretreatment methods on sludge inoculum were evaluated concerning hydrogen(H2)production enhancement and COD(chemical oxygen demand)reduction,using domestic effluent in a batch system.The sludge was taken from a recycled line of the activated sludge reactor.Two types of pretreatment were investigated,heat treatment and chloroform treatment.The experiment was conducted at pH 4-6 and inoculum sizes of microbes were 10%,20%,and 30% respectively;and experiment without sludge pretreatment was also conducted as control.The result showed that 30% COD reduction was achieved for chloroform pretreatment at pH 3 and 10% inoculum size.For heat treatment,a maximum COD removal of 60% was achieved in the experiment at pH 6 and 10% inoculum size.In chloroform pretreatment,a maximum volume of gas evolved was 3.6 mL,at pH 3 and 20% inoculum size.For heat pretreatment,maximum biogas evolved was 2.1 mL,at pH 3 and 10% inoculum size.The experimental results showed that the pretreatment methods(heat treatment and chloroform treatment)at 35 °C and initial pH 5.5 had a positive influence on H2 production yield and COD removal efficiency during the fermentative H2 production as compared to the control experiments(without pretreatment).Heat treatment method was shown to be a simple and useful method for enhancing both H2 producing and COD removal processes from domestic effluent with highest H2 yield and COD removal efficiency at 0.314 rnmol H2/g COD and 86%,respectively.
机译:评估不同预处理方法对脂肪(H2)生产增强和COD(化学需氧量)减少的污泥inoculum的影响,使用批量生产。污泥是从活性污泥反应器的再循环系列中获取污泥研究了预处理,热处理和氯仿治疗。实验在pH 4-6处进行,微生物的尺寸分别为10%,20%和30%;并且没有污泥预处理的实验也是如此。结果表明,30%的COD降低于pH 3和10%的接种物size.For热处理氯仿预处理实现,最大COD去除率为60%是在实验在pH 6和10%的接种物size.In氯仿预处理,一个实现进化的最大气体体积为3.6ml,pH 3和20%的接种物尺寸。热预处理,在pH 3和10%的接种物尺寸下,进化的最大沼气是2.1ml。实验结果表明预处理表明预处理显示了预处理方法(热处理和氯仿处理)在35℃和初始pH 5.5时对发酵实验(无预处理)相比,发酵H2生产中的H 2产率和COD去除效率具有正影响。是一种简单而有用的方法,用于增强H2的生产和COD去除过程,其来自家庭流出物,最高H2产量和COD去除效率分别为0.314 rnmol H2 / G COD和86%。

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