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微生物脱盐电池中酸碱度平衡的优化研究
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作者 肖常泓 魏雪 +3 位作者 周宇 刘畅 艾克拜尔·麦麦提艾力 李永峰 《中国甜菜糖业》 2020年第3期39-42,共4页
本文为了解决由于pH值不稳定对微生物脱盐电池(MDC)性能造成的影响,通过对MDC反应器进行优化设计,在MDC反应器的基础上,加装细软管和蠕动泵,增加外源推动力,使阳极室和阴极室中的溶液不断相互中和,研究了rMDC的产电量、脱盐率、两室实... 本文为了解决由于pH值不稳定对微生物脱盐电池(MDC)性能造成的影响,通过对MDC反应器进行优化设计,在MDC反应器的基础上,加装细软管和蠕动泵,增加外源推动力,使阳极室和阴极室中的溶液不断相互中和,研究了rMDC的产电量、脱盐率、两室实验前后pH变化以及与MDC进行比较。经实验我们发现MDC启动阶段的最大输出电压值为221.6 mV,启动时间需要12天,rMDC启动阶段的最大输出电压值为419 mV,启动时间缩短至7天,并且具有3天的电压平台期。在确定最佳底物溶液循环流速为0.25 mL·min^-1,初始盐浓度为20 g·L^-1的前提下,以MDC模式和rMDC模式分别进行一个脱盐周期,周期结束后,MDC的脱盐率为39%,rMDC的脱盐率为56.5%,MDC和rMDC复合模式的脱盐率为73%;MDC阳极室溶液pH由6.17变为4.2,阴极室溶液pH由6.1变为10.2,rMDC阳极室溶液PH由6.8变为6.42,阴极室溶液pH由6.8变为6.65。实验结果表明了此次改造对于解决系统内部PH不平衡问题有很大的改善效果,同时也相应提高了产电量和脱盐率,十分具有可行性。 展开更多
关键词 微生物脱盐电池(MDC) 酸碱度平衡 脱盐率 产电量
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Relative Basicity of Trioctylamine to Carboxylic Acid in Selected Organic Diluents 被引量:1
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作者 单欣昌 秦炜 戴猷元 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第6期747-750,共4页
The relative basicity of trioctylamine (TOA), pKa,BS, in protic polar diluent (1-octanol), non-protic polar diluent [methyl iso-butyl ketone (MIBK)] and inert diluent (CCl4) were determined for 11 mono-carboxy... The relative basicity of trioctylamine (TOA), pKa,BS, in protic polar diluent (1-octanol), non-protic polar diluent [methyl iso-butyl ketone (MIBK)] and inert diluent (CCl4) were determined for 11 mono-carboxylic acids, and the dependence of PKa,BS on the nature of solute and diluent type was discussed. The results show that pKa,BS determined by half neutralization with the solute carboxylic acid is in the order of 1-octanol〉MIBK〉CCl4 for a fixed TOA concentration, and it increases with increasing acidity and hydrophobicity of the carboxylic acid. Compared with two parameters of the solute extracted (acidity and hydrophobicity), pKa,BS is more sensitive to hydrophobicity of the acid. A mathematic equation representing relationship between the apparent extraction equilibrium (K11) and the system properties (PKa,BS and pKa) was proposed: 1g K11 = 2pKa,BS=pKa. It is proved that the extraction equilibrium of mono-carboxylic acids can be predicted by the above equation with reasonable accuracy. 展开更多
关键词 relative basicity trioctylamine (TOA) mono-carboxylic acid extraction equilibrium
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