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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Optimization of electron donors to improve CO2 fixation efficiency by a non-photosynthetic microbial community under aerobic condition using statistical experimental design.
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Optimization of electron donors to improve CO2 fixation efficiency by a non-photosynthetic microbial community under aerobic condition using statistical experimental design.

机译:使用统计实验设计,优化有氧条件下非光合微生物群落的电子供体,以提高CO2固定效率。

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摘要

To improve the CO(2) fixation efficiency of non-photosynthetic microbial community (NPMC) isolated from sea water under aerobic conditions without hydrogen, the concentration of inorganic compounds as electron donors and their ratios were optimized using response surface methodology design (RSMD). These results indicated that Na(2)S, followed by Na(2)S(2)O(3) and NaNO(2) enhanced the CO(2) fixation by NPMC and the efficiency was increased about 100%, 200% and 200%, respectively. Some interaction between NaNO(2) and Na(2)S(2)O(3), as well as between Na(2)S(2)O(3) and Na(2)S was observed. Central composite RSMD experimentation predicted that the optimal concentration of these inorganic compounds and their ratios was 0.457% NaNO(2), 0.50% Na(2)S(2)O(3) and 1.25% Na(2)S. Under these conditions, the fixed CO(2) was 105.76 mg/L, which obviously exceeded the amount before optimization, as well as that obtained using hydrogen as the electron donor. This indicates that the NPMC using the established electron donors system can effectively fix CO(2) without light and hydrogen gas under aerobic condition.
机译:为了提高在无氢条件下从有氧条件下从海水中分离出的非光合微生物群落(NPMC)的CO(2)固定效率,使用响应表面方法设计(RSMD)优化了作为电子供体的无机化合物的浓度及其比率。这些结果表明,Na(2)S,随后是Na(2)S(2)O(3)和NaNO(2)增强了NPMC对CO(2)的固定作用,效率提高了约100%,200%和分别为200%。 NaNO(2)和Na(2)S(2)O(3)之间以及Na(2)S(2)O(3)和Na(2)S之间观察到一些相互作用。中央复合RSMD实验预测,这些无机化合物的最佳浓度及其比例为0.457%NaNO(2),0.50%Na(2)S(2)O(3)和1.25%Na(2)S。在这些条件下,固定的CO(2)为105.76 mg / L,明显超过优化之前的量,以及使用氢作为电子供体获得的量。这表明使用已建立的电子供体系统的NPMC可以在需氧条件下有效地固定CO(2),而无需光和氢气。

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