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首页> 外文期刊>Biotechnology and Bioengineering >Effect of biodiesel-derived waste glycerol impurities on biomass and 1,3-propanediol production of Clostridium butyricum VPI 1718
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Effect of biodiesel-derived waste glycerol impurities on biomass and 1,3-propanediol production of Clostridium butyricum VPI 1718

机译:生物柴油废甘油杂质对丁酸梭菌VPI 1718的生物量和1,3-丙二醇生产的影响

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摘要

Aim of the present study was to assess and evaluate the impact of various kinds of impurities of biodiesel-derived raw glycerol feedstock, upon microbial growth and 1,3-propanediol (1,3-PDO) production by Clostridium butyricum. Preliminary trials in 200-mL anaerobic bottles revealed that the presence of NaCl at a concentration of 4.5% (w/w of glycerol) in growth medium imposed an evident inhibitory effect, in contrast with phosphoric salts. However, the application of NaCl at elevated quantities during batch bioreactor experiments [up to 30% (w/w of glycerol)], did neither affect the microbial growth, nor the 1,3-PDO production. Moreover, when oleic acid was added into the growth medium at 2% (w/w of glycerol), a total preclusion of the strain was observed. In order to further investigate whether the nature of oleic acid itself or the presence of the double bond induced the inhibitory phenomenon, stearic acid was added into the medium at the same concentration (2%, w/w, of glycerol). Indeed, no inhibitory effect was observed in the fermentor, suggesting that the presence of the double bond may play a key role in the growth behavior of the microorganism. Finally, methanol effect was tested in batch and continuous bioreactor operations. Interestingly enough, the alcohol addition did not affect the microbial bioconversion of glycerol into 1,3-PDO, even when imposed at relatively high concentrations (10%, w/w, of glycerol) in batch-bioreactor operations. In continuous experiments, methanol was added when steady state had been achieved, and although in one case high concentration was added into the chemostat (5 g/L), the system re-obtained a steady state without indications of negative effect upon biomass production due to the alcohol.
机译:本研究的目的是评估和评估生物柴油衍生的甘油原料中各种杂质对丁酸梭菌的微生物生长和1,3-丙二醇(1,3-PDO)生产的影响。在200 mL厌氧瓶中进行的初步试验表明,与磷酸盐相比,生长培养基中浓度为4.5%(重量比甘油)的NaCl的存在具有明显的抑制作用。但是,在分批生物反应器实验中以较高的量使用NaCl [高达30%(w / w的甘油)],既不影响微生物的生长,也不影响1,3-PDO的产生。此外,当将油酸以2%(w / w的甘油)添加到生长培养基中时,观察到菌株的完全排除。为了进一步研究油酸本身的性质或双键的存在是否会引起抑制现象,将硬脂酸以相同浓度(2%,w / w的甘油)添加到培养基中。实际上,在发酵罐中未观察到抑制作用,表明双键的存在可能在微生物的生长行为中起关键作用。最后,在间歇和连续生物反应器操作中测试了甲醇效果。有趣的是,即使在分批生物反应器操作中以相对较高的浓度(10%,w / w的甘油)加入酒精,酒精的添加也不会影响甘油向1,3-PDO的微生物转化。在连续的实验中,当达到稳定状态时添加甲醇,尽管在一种情况下将高浓度的化学稳定剂(5 g / L)添加到了化学恒温器中,该系统重新获得了稳定状态,而没有迹象表明对生物质的生产会产生负面影响去喝酒

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