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The toxicity effects of ammonia on anaerobic digestion of organic fraction of municipal solid waste

机译:氨对城市生活垃圾中有机物厌氧消化的毒性作用

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HighlightsInhibitory effects of ammonia on the anaerobic digestion of MSW.Estimates of biogas production at different TAN and pH.Potential improvements due to gradual loading versus abrupt ammonia loading.AbstractIn this research the inhibitory effects of ammonia on the AD of synthetic OFMSW were examined under different total ammonia nitrogen (TAN) concentrations of 2,500, 5,000, 7,500, and 10,000mg/L and at pH levels of 7.5, 8.0 and 8.5 using a factorial experimental design and statistical analysis. Reduction in Cumulative Biogas Production (CBP) at a TAN concentration of 2,500mg/L was close to 10% for all 3 pH levels. For a TAN concentration of 10,000mg/L the percent reduction in CBP was over 80% for all 3 pH levels showing significant inhibition due to ammonia with neglible influence due to change in pH. However, pH played a more significant role for TAN concentrations between the above two levels, as at a TAN concentartion of 7,500mg/L, the percent reduction in CBP increased from 42.2% at a pH of 7.5 to 76.5% at a pH of 8.5. Regression analysis was used to estimate CBP and % reduction (%R) in CBP using a quadratic equation with pH and TAN as independant variables (R2=0.95 and 0.94). Methane produciton per g of COD removed was obsereved to vary from 264mL CH4/g CODdfor control reactors at pH 7.5 down to 1mL CH4/g CODdfor the reactor at pH of 8.5 which contained 10,000mg/L TAN. Results of gradual ammonia loading also showed that mesophilic bacteria could be adapted to a TAN concentration of up to 5,000mg/L at pH 7.5 through gradual TAN loading. At 10,000mg/L TAN CBP in reactors with gradual TAN loading was more than 1.9–3 times the CBP in reactors with abrupt TAN addition.
机译: 突出显示 氨水对MSW厌氧消化的抑制作用。 在不同的TAN和pH下产生沼气的估算值。 逐步加载与突然加载氨相比可能带来的改进。 摘要 在不同浓度的总氨氮(TAN)下研究了氨对合成OFMSW AD的抑制作用使用析因实验设计和统计分析,分别在2,500、5,000、7,500和10,000mg / L的pH值分别为7.5、8.0和8.5的情况下,可得到2,500、5,000、7,500和10,000mg / L的溶液。在所有3个pH值水平下,当TAN浓度为2500mg / L时,累积沼气产量(CBP)的降低均接近10%。对于10,000 mg / L的TAN浓度,在所有3个pH值下,CBP的降低百分比均超过80%,这表明由于氨而产生的显着抑制作用,由于pH的变化而产生的影响很小。但是,pH对于上述两个水平之间的TAN浓度起着更重要的作用,因为TAN浓度为7,500mg / L时,CBP的降低百分比从7.5的pH的42.2%增加到8.5的pH的76.5%。 。使用回归分析来估计CBP和CBP的减少率(%R),使用一个以pH和TAN作为独立变量的二次方程式(R 2 = 0.95和0.94 )。观察到每g去除的COD甲烷产生量为264mL CH 4 / g COD d 对于pH 7.5到1mL的对照反应器,CH 4 / g COD d pH值为8.5的反应器中含有10,000mg / L TAN逐步加载氨的结果还表明,通过逐步加载TAN,嗜温细菌可以在pH 7.5的条件下适应高达5,000 mg / L的TAN浓度。在TAN逐渐增加的反应堆中,当TAN达到10,000mg / L时,其CBP大于突然添加TAN的反应堆中的CBP的1.9-3倍。

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