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High-yield biohydrogen production from biodiesel manufacturing waste by Thermotoga neapolitana

机译:Thermotoga neapolitana从生物柴油生产废料中高产生物氢

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Efficient conversion of glycerol waste from biodiesel manufacturing processes into biohydrogen by the hyperthermophilic eubacterium Thermotoga neapolitana DSM 4359 was investigated. Biohydrogen production by T. neapolitana was examined using the batch cultivation mode in culture medium containing pure glycerol or glycerol waste as the sole substrate. Pre-treated glycerol waste showed higher hydrogen (H_2) production than untreated waste. Nitrogen (N_2) sparging and pH control were successfully implemented to maintain the culture pH and to reduce H_2 partial pressure in the headspace for optimal growth rate and to enhance hydrogen production from the glycerol waste. It was found that hydrogen production increased from 1.24 ± 0.06 to 1.98 ± 0.1 mol-H_2 mol~(-1) glycer-ol_(consumed) by optimising N_2 sparging and pH control. We observed that in medium containing 0.05 M HEPES, with three cycles of N_2 sparging, the H_2 yield increased to 2.73 ± 0.14 mol-H_2 mol~(-1) glycerol_(consumed), which was 2.22-fold higher than the non-N_2 sparged H_2 yield (1.23 ± 0.06 mol-H_2 mol~(-1) glycerol_(consumed)).
机译:研究了通过超嗜热的真细菌嗜热嗜热菌DSM 4359将生物柴油生产过程中的甘油废物有效地转化为生物氢。在含有纯甘油或甘油废料作为唯一底物的培养基中,使用分批培养模式检查了纳波菌(T. neapolitana)产生的生物氢。预处理的甘油废料比未处理的废料显示更高的氢(H_2)产生。氮气(N_2)喷射和pH控制已成功实施,以维持培养液的pH值并降低顶部空间中的H_2分压,以实现最佳生长速率并提高甘油废料的产氢量。研究发现,通过优化N_2鼓泡和控制pH值,产氢量从1.24±0.06增加到1.98±0.1mol-H_2 mol〜(-1)甘油(消耗)。我们观察到,在含有0.05 M HEPES的培养基中,经过三个N_2循环喷射,H_2产量增加到2.73±0.14 mol-H_2 mol〜(-1)甘油_(消耗),比非N_2高2.22倍喷射的H_2产量(1.23±0.06 mol-H_2 mol〜(-1)甘油_(已消耗))。

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