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Optimizing volatile fatty acid production in partial acidogenesis of swine wastewater

机译:猪废水部分酸化过程中挥发性脂肪酸的生产优化

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This research has been conducted based on the fact that acetic and butyric acids are favorable substrates for methanogens, and that a low level of propionic acid production during acidogenesis minimizes the inhibition effect on methanogenic growth. Raw swine wastewater was pretreated with ammonia stripping to enhance acidogenesis. The ammonia nitrogen concentration of less than 1.2 g/L did not significantly affect the biochemical acidogenic potential of swine wastewater. For acidogenesis of swine wastewater, a set of experiments were carried out to produce short chain volatile fatty acids (VFA) in laboratory-scale continuously stirred tank reactors. The production of acetic, propionic, and butyric acids associated with simultaneous changes in hydraulic retention time (HRT) and temperature was investigated. Response surface methodology was successfully applied to approximate the responses of the VFA productions. The optimum physiological conditions where the maximum acetic and butyric acids production occurred were 2.4 days HRT at 34degreesC and 2.1 days HRT at 35degreesC, respectively. The propionic acid production linearly increased as both HRT and temperature increased.
机译:基于以下事实进行了这项研究:乙酸和丁酸是产甲烷菌的有利底物,并且在产酸过程中丙酸生成水平低使对产甲烷菌生长的抑制作用最小化。用氨气汽提预处理生猪废水以增强产酸作用。氨氮浓度低于1.2 g / L不会显着影响猪废水的生化产酸潜力。对于猪废水的酸发生,已进行了一组实验,以在实验室规模的连续搅拌釜反应器中生产短链挥发性脂肪酸(VFA)。研究了乙酸,丙酸和丁酸的产生与水力停留时间(HRT)和温度的同时变化有关。响应面方法已成功应用于近似VFA生产的响应。产生最大乙酸和丁酸的最佳生理条件分别是在34摄氏度的HRT下2.4天和在35摄氏度的HRT下2.1天。随着HRT和温度的升高,丙酸的产量线性增加。

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