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A comparative study on anaerobic co-digestion of kitchen waste with sewage sludge and cow manure

机译:污水污泥和牛粪的厨房废物厌氧共消化的比较研究

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A comparative study on anaerobic co-digestion of kitchen waste (KW) with sewage sludge (SS) and KW with cow manure (CM) were carried out in 1 liter batch digesters under mesophilic temperature (37°C). CM and SS both acted as seed of bacteria to produce biogas through bio-degradation of organic materials under anaerobic conditions. At first, three digesters were prepared to observe the individual degradation rate of KW, CM and co-digested KW with CM at room temperature(25°C ∼30°C) and at 37°C and observed the degradation rate for co-digested KW with CM was higher than other two components. Again, another three digesters were prepared to observe the individual degradation rate of KW, SS and co-digested KW with SS and observed that the degradation rate for co-digested KW with SS was higher than the other two. Secondly, four digesters were constructed to optimize the loading rate and result showed that the highest degradation rate was obtained from loading rate of 200 gm/L for both CM and SS. Consequently, three digesters were constructed to observe the effect of alkalinity at temperature 37°C and loading rate 200 gm/L for both cases. Three alkali (NaOH) doses 1.0%, 1.5% and 2.0% on wet matter basis of kitchen waste were applied to improve biodegradability and biogas production. The highest degradation rates were 6.8 ml/gm and 5.74 ml/gm which were obtained for 1.5% NaOH from co-digested KW with CM and co-digested KW with SS respectively. It was also observed that the biogas production was almost doubled from treated KW than untreated KW due to its high biodegradability. Finally, two portable biogas reactors were fabricated for pilot-scale biogas production which included an agitator and heating system. These reactors were operated at both 37° C and room temperature at a loading rate of 200 gm/L and observed that the digestion rates were faster at 37° C than room temperature. Anaerobic co-digestion of KW w- th CM produced more biogas than co-digestion of KW with SS in all cases. The prime object of this work was to compare the biogas production rate and ultimate protection of environment from the bad effect of methane gas that would be produced by uncontrolled anaerobic digestion (AD).
机译:在融合温度(37℃)下的1升批量消化器中进行污水污泥(SS)和KW污泥(SS)和KW的厨房废物(KW)的比较研究。 CM和SS均以通过在厌氧条件下通过生物降解产生沼气的种子。起初,制备三个消化器以观察KW,Cm和CM在室温(25℃〜30℃)和37℃下的CM的单独降解率,并观察到共消化的降解速率kw厘米高于其他两个组件。同样,另外三种消化器准备观察KW,SS和共消化的KW的个体降解速率,并观察到具有SS的共消化kW的降解速率高于其他两个。其次,构建四个消化器以优化加载速率,结果表明,从厘米和SS的加载速率获得了最高的降解速率。因此,构建了三种消化器以观察到碱度在37℃的碱度和两种情况下的加载速率200Gm / L.应用三种碱(NaOH)剂量1.0%,1.5%和2.0%对厨房废物的湿法基础进行了改善生物降解性和沼气生产。最高的降解速率为6.8ml / gm和5.74ml / gm,分别从CM和CM和SS共消化的KW获得1.5%NaOH。还观察到,由于其高生物降解性,沼气产量几乎从治疗的kw均比未处理的kw加倍。最后,制造了两个便携式沼气反应器,用于包括搅拌器和加热系统的先导型沼气生产。这些反应器以200gm / L的加载速率在37℃和室温下操作,并且观察到在37°C的消化率比室温更快。 KW W-Th CM的Anaerobic Co-Digestion在所有情况下生产更多的沼气,而不是SS的kW的共消化。这项工作的主要目的是从甲烷气体的不良效果比较沼气生产率和环境的最终保护,这将是由不受控制的厌氧消化(AD)产生的。

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