糖化丁基乙酸梭菌 N1-4 利用棕榈仁饼(PKC)水解物生产生物丁醇的培养基优化

Q4 Agricultural and Biological Sciences
Muhd Arshad Amin, Hafiza Shukor, N. F. Shoparwe, M. Z. Makhtar, Aidil Abdul Hamid, Wichitpan Rongwong
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引用次数: 0

摘要

本研究旨在优化培养基组成,以便糖化丁基乙酰乙酸梭菌 N1-4 利用棕榈仁饼(PKC)水解物生产生物丁醇。采用普拉克特-伯曼设计法筛选了影响生物丁醇生产的各种营养因素。这些因素包括NH4NO3、KH2PO4、K2HPO4、MgSO4.7H2O、MnSO4.7H2O、FeSO4.7H2O、酵母提取物、半胱氨酸、PABA、生物素和硫胺素。方差分析结果表明,半胱氨酸(P=0.008)、NH4NO3(P=0.011)和酵母提取物(P=0.036)对生物丁醇产量有显著影响。方差分析所建立的模型 Pmodel>F = 0.0299,F 值为 32.82,说明各因素能详细解释平均数据的变化,R2 值为 0.993,解释正确。估计的最大生物丁醇产量为 10.56 克/升,而优化培养基的生物丁醇产量为 15.49 克/升。使用最佳浓度的半胱氨酸、NH4NO3 和酵母提取物进行工艺优化后,生物丁醇的产量为 21.33 克/升,比非优化培养基提高了 37.7%。研究结果表明,在 ABE 发酵过程中添加最佳浓度的三种培养基,即半胱氨酸(0.15 克/升)、NH4NO3(0.50 克/升)和酵母提取物(1.5 克/升)后,PKC 水解产物产生的生物丁醇浓度最高可达 21.33 克/升。因此,本研究的结果为促进 PKC 水解产物成为新型底物的新来源提供了良好的迹象,这种底物在糖化丁基乙酰丙酮藻 N1-4 通过 ABE 发酵生产高浓度生物丁醇方面具有巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Medium Optimization for Biobutanol Production From Palm Kernel Cake (PKC) Hydrolysate By Clostridium saccharoperbutylacetonicum N1-4
The study aims to optimize the medium composition for biobutanol production using a Palm Kernel Cake (PKC) hydrolysate by Clostridium saccharoperbutylacetonicum N1-4. Various nutrient factors affecting biobutanol production were screened using the Plackett-Burman design. These factors included: NH4NO3, KH2PO4, K2HPO4, MgSO4.7H2O, MnSO4.7H2O, FeSO4.7H2O, yeast extract, cysteine, PABA, biotin, and thiamin. The results were analyzed by an analysis of variance (ANOVA), which showed that cysteine (P=0.008), NH4NO3 (P=0.011) dan yeast extract (P=0.036) had significant effects on biobutanol production. The established model from the ANOVA analysis had a significant value of Pmodel>F = 0.0299 with an F-value of 32.82 which explains that the factors can explain in detail the variation in the data about the average and the interpretation is true with an R2 value of 0.993. The estimated maximum biobutanol production was 10.56 g/L, whereas the optimized medium produced 15.49 g/L of biobutanol. Process optimizations with optimum concentration of cysteine, NH4NO3, and yeast extract have produced 21.33 g/L biobutanol which is a 37.7% improvement from the non-optimized medium. The findings show that PKC hydrolysate with the addition of optimal concentrations of the three types of medium namely, cysteine (0.15 g/L), NH4NO3 (0.50 g/L), and yeast extract (1.5 g/L) during ABE fermentation, yielded a maximum biobutanol concentration of 21.33 g/L. Therefore, the results of this study provide good indications for promoting PKC hydrolysate as a new source of novel substrates with great potential in producing high biobutanol through ABE fermentation by C. saccharoperbutylacetonicum N1-4.
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来源期刊
Malaysian applied biology
Malaysian applied biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
0.60
自引率
0.00%
发文量
69
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