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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced CO2 fixation by a non-photosynthetic microbial community under anaerobic conditions: Optimization of electron donors
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Enhanced CO2 fixation by a non-photosynthetic microbial community under anaerobic conditions: Optimization of electron donors

机译:非光合微生物群落在厌氧条件下增强的CO2固定:电子供体的优化

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摘要

To enhance the CO_2 fixation efficiency of the non-photosynthetic microbial community (NPMC) isolated from sea water under anaerobic conditions without hydrogen, the concentration of inorganic compounds as electron donors and their ratios were optimized by response surface methodology design (RSMD). The results indicated that the CO_2 fixation efficiency of NPMC using NaNO_2, Na_2S_2O_3 and Na_2S as the electron donors was increased about 90%, 75% and 207%, respectively. Additionally, there were interactions between two electron donors and three electron donors. Central composite RSMD experimentation predicted that the optimal concentration and ratios of these inorganic compounds was 1.04% NaNO2, 1.07% Na_2S_2O_3 and 0.98% Na2S. Under these conditions, the fixed CO_2 was 139.89mg/L, which obviously exceeded the amount prior to optimization, as well as when H_2 was used as an electron donor. The established electron donor system can effectively enhance the CO_2 fixation efficiency of NPMC without hydrogen under anaerobic conditions.
机译:为了提高在无氢的厌氧条件下从海水中分离出来的非光合微生物群落(NPMC)的CO_2固定效率,通过响应表面方法设计(RSMD)优化了作为电子给体的无机化合物的浓度及其比例。结果表明,以NaNO_2,Na_2S_2O_3和Na_2S作为电子给体的NPMC的CO_2固定效率分别提高了约90%,75%和207%。另外,两个电子供体和三个电子供体之间存在相互作用。中央复合RSMD实验预测,这些无机化合物的最佳浓度和比例为1.04%NaNO2、1.07%Na_2S_2O_3和0.98%Na2S。在这些条件下,固定的CO_2为139.89mg / L,明显超过了优化之前以及将H_2用作电子供体时的量。建立的电子供体体系可以在厌氧条件下有效地提高无氢的NPMC的CO_2固定效率。

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