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Improving the stability and simultaneously capturing CO(2)during biogas production under controlled internal pressure using NaOH

机译:使用NaOH在受控内部压力下改善沼气生产过程中的稳定性和同时捕获CO(2)

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The current phenomena in research is coupling the digestion process and cleaning stage in one compartment with an aim of suppressing gas cleaning and energy costs. To improve the stability of the digester two concentrations of NaOH were tested in a batch pressure digester at the pressure of 6 bar. Significant amount of biogas and methane gas were recorded, both cumulative and daily. The highest amount of biogas was recorded when the system was buffered with 2.66 M NaOH solution, followed by the one without NaOH in daily productions. Cumulatively the amount of biogas produced when the system was buffered with 5.33 M NaOH appeared to be higher than amount of biogas produced with buffer. In this study, the methane composition at 0 M NaOH, 2.66 M NaOH and 5.33 NaOH were 71.2%, 76.9 and 78.8%, respectively. Using 2.66 M NaOH buffer the system was more stable as evidenced by the amount of biogas produced.
机译:研究中的当前现象在一个隔室中耦合消化过程和清洁阶段,目的是抑制气体清洁和能量成本。 为了改善蒸煮器的稳定性,在6巴的压力下在间歇压力消化器中测试了两种浓度的NaOH。 记录大量沼气和甲烷气体,累积和每日。 当系统缓冲2.66米NaOH溶液缓冲时,记录了最多的沼气量,然后在日常生产中没有NaOH的情况下。 累积地,用5.33M NaOH缓冲系统时产生的沼气量似乎高于缓冲液产生的沼气量。 在该研究中,甲烷组合物在0 m NaOH,2.66m NaOH和5.33 NaOH下分别为71.2%,76.9和78.8%。 使用2.66米NaOH缓冲液,系统更稳定,可以通过产生的沼气量证明。

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