首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Anaerobic caproate production on carbon chain elongation: Effect of lactate/butyrate ratio, concentration and operation mode
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Anaerobic caproate production on carbon chain elongation: Effect of lactate/butyrate ratio, concentration and operation mode

机译:碳链伸长症厌氧胶干生产:乳酸/丁酸盐比,浓度和操作模式的影响

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The objective of this study was to understand how lactate-to-butyrate ratio and substrates concentrations affect the caproate production and product structure. The results showed that a higher butyrate-to-lactate ratio is beneficial to caproate production at low initial lactate concentration. Low pH (5.0) and low substrate concentration (20 mM and 40 mM) effectively decreased propionate production via restrained acrylate pathway, resulting in higher electron efficiency of caproate. With the optimum mole ratio of lactate to butyrate (1:4) and 80 mM initial butyrate concentration, the electron efficiency of caproate reached the maximum (43.10%). Moreover, high butyrate concentration suppressed the production of odd-carbon-number carboxylates while promoting the production of caproate. Compared with the batch operation, the caproate production in semicontinuous operation was enhanced by 3.45 times to 30.91 ? 1.07 mM as the acrylate pathway was successfully inhibited in semi-continuous experiments due to low pH and low lactate concentration.
机译:本研究的目的是了解乳酸与丁酸的比例和底物浓度如何影响己酸盐的生产和产品结构。结果表明,在较低的乳酸初始浓度下,较高的丁酸/乳酸比有利于己酸盐的生产。低pH(5.0)和低底物浓度(20 mM和40 mM)通过抑制丙烯酸途径有效地降低丙酸盐的生成,从而提高己酸盐的电子效率。在最佳乳酸盐与丁酸盐的摩尔比(1:4)和80mm的丁酸盐初始浓度下,己酸盐的电子效率达到最大值(43.10%)。此外,高丁酸浓度抑制奇数碳数羧酸盐的生成,同时促进己酸盐的生成。与间歇操作相比,半连续操作的己酸产量提高了3.45倍,达到30.91?1.07 mM,因为在半连续实验中,由于低pH值和低乳酸浓度,丙烯酸途径被成功抑制。

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