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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bioconversion of plant biomass hydrolysate into bioplastic (polyhydroxyalkanoates) using Ralstonia eutropha 5119
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Bioconversion of plant biomass hydrolysate into bioplastic (polyhydroxyalkanoates) using Ralstonia eutropha 5119

机译:使用Ralstonia Eutropha 5119将植物生物质的生物转化物水解成生物塑料(多羟基烷烃)5119

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摘要

Pretreatment of lignocellulosic biomass results in the formation of byproducts (furfural, hydroxymethylfurfural [HMF], vanillin, acetate etc.), which affect microbial growth and productivity. Furfural (0.02%), HMF (0.04%), and acetate (0.6%) showed positive effects on Ralstonia eutropha 5119 growth and polyhydroxyalkanoate (PHA) production, while vanillin exhibited negative effects. Response optimization and interaction studies between the variables glucose, ammonium chloride, furfural, HMF, and acetate using the response surface methodology resulted in maximum PHA production (2.1 g/L) at optimal variable values of 15.3 g/L, 0.43 g/L, 0.04 g/L, 0.05 g/L, and 2.34 g/L, respectively. Different lignocellulosic biomass hydrolysates (LBHs), including barley biomass hydrolysate (BBH), Miscanthus biomass hydrolysate (MBH), and pine biomass hydrolysate (PBH), were evaluated as potential carbon sources for R. eutropha 5119 and resulted in 1.8, 2.0, and 1.7 g/L PHA production, respectively. MBH proved the best carbon source, resulted in higher biomass (Y-x/s, 0.31 g/g) and PHA (Y-p/s, 0.14 g/g) yield.
机译:木质纤维素生物质的预处理导致形成副产物(糠醛,羟甲基糠醛[HMF],香草蛋白,醋酸乙酯等),影响微生物生长和生产率。糠醛(0.02%),HMF(0.04%)和醋酸盐(0.6%)对Ralstonia Eutropha 5119生长和多羟基烷烃(PHA)产生的积极作用,而香草素表现出负面影响。使用响应表面方法的变量葡萄糖,氯化铵,糠醛,HMF和醋酸盐之间的反应优化和相互作用研究导致最大的PHA产生(2.1g / L)在最佳变量值15.3g / L,0.43g / L, 0.04克/升,0.05克/升和2.34克/升。将不同的木质纤维素生物量(LBH)包括大麦生物量水解产物(BBH),Miscanthus生物质水解产物(MBH)和松原生物质水解产物(PBH),作为R. Eutropha 5119的潜在碳源评价,并导致1.8,2.0和1.7克/升PHA生产。 MBH证明了最佳碳源,导致更高的生物量(Y-X / S,0.31g / g)和PHA(Y-P / S,0.14g / g)产率。

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