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利用替代氮源,通过sp KKU-PS1从乳酸、乙酸、丁酸和制糖废水中生产光氢和脂质。

Photo-hydrogen and lipid production from lactate, acetate, butyrate, and sugar manufacturing wastewater with an alternative nitrogen source by sp KKU-PS1.

作者信息

Assawamongkholsiri Thitirut, Reungsang Alissara, Sittijunda Sureewan

机构信息

Research and Development of GM Plant & Microbe Detection Laboratory/Biotechnology Research and Development Office, Department of Agriculture, Bangkok, Thailand.

Department of Biotechnology/Faculty of Technology/Khon Kaen University, Khon Kaen, Thailand.

出版信息

PeerJ. 2019 Apr 4;7:e6653. doi: 10.7717/peerj.6653. eCollection 2019.

Abstract

Photo-hydrogen and lipid production from individual synthetic volatile fatty acids (VFAs) and sugar manufacturing wastewater (SMW) by sp. KKU-PS1 with sodium glutamate or Aji-L (i.e., waste from the process of crystallizing monosodium glutamate) as a nitrogen source was investigated. Using individual synthetic VFAs, the maximum hydrogen production was achieved with Aji-L as a nitrogen source rather than sodium glutamate. The maximum hydrogen production was 1,727, 754 and 1,353 mL H/L, respectively, using 25 mM of lactate, 40 mM of acetate and 15mM of butyrate as substrates. Under these conditions, lipid was produced in the range of 10.6-16.9% (w/w). Subsequently, photo-hydrogen and lipid production from SMW using Aji-L as nitrogen source was conducted. Maximal hydrogen production and hydrogen yields of 1,672 mL H/L and 1.92 mol H/mol substrate, respectively, were obtained. Additionally, lipid content and lipid production of 21.3% (w/w) and 475 mg lipid/L were achieved. The analysis of the lipid and fatty acid components revealed that triacyglycerol (TAG) and C18:1 methyl ester were the main lipid and fatty acid components, respectively, found in sp. KKU-PS1 cells.

摘要

研究了菌株KKU - PS1以谷氨酸钠或味之素L(即味精结晶过程中的废料)作为氮源,从单个合成挥发性脂肪酸(VFAs)和制糖废水(SMW)中光解产氢及脂质生产的情况。使用单个合成VFAs时,以味之素L作为氮源比谷氨酸钠能实现更高的产氢量。分别以25 mM乳酸盐、40 mM乙酸盐和15 mM丁酸盐为底物时,最大产氢量分别为1727、754和1353 mL H₂/L。在此条件下,脂质产量在10.6 - 16.9%(w/w)范围内。随后,以味之素L作为氮源进行了SMW的光解产氢及脂质生产实验。分别获得了1672 mL H₂/L的最大产氢量和1.92 mol H₂/mol底物的产氢率。此外,脂质含量和脂质产量分别达到21.3%(w/w)和475 mg脂质/L。脂质和脂肪酸成分分析表明,甘油三酯(TAG)和C18:1甲酯分别是在菌株KKU - PS1细胞中发现的主要脂质和脂肪酸成分。

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