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利用棕榈油基生物柴油生产产生的废甘油,通过洋葱伯克霍尔德氏菌BPT1213生产聚羟基脂肪酸酯的响应面法优化

Response surface methodology optimization of polyhydroxyalkanoate production by Burkholderia cepacia BPT1213 using waste glycerol from palm oil-based biodiesel production.

作者信息

Mohd Zain Nor Fauziah, Paramasivam Murugan, Tan Joo Shun, Lim Vuanghao, Lee Chee Keong

机构信息

Bioprocess Technology Division, School of Industrial Technology, Universiti Sains Malaysia, Minden, Malaysia.

Integrative Medicine Cluster, Advanced Medical and Dental Institute, Universiti Sains Malaysia, Kepala Batas, Malaysia.

出版信息

Biotechnol Prog. 2021 Jan;37(1):e3077. doi: 10.1002/btpr.3077. Epub 2020 Sep 17.

Abstract

The feasibility of using waste glycerol from the biodiesel industry for biosynthesis of polyhydroxyalkanoate (PHA) by Burkholderia cepacia BPT1213 was evaluated. Culture conditions were optimized by growing B. cepacia BPT1213 in mineral salt medium supplemented with 2% waste glycerol in a 2.5 L bioreactor. Response surface methodology was used to determine the influence of aeration rate (0.6-1.8 vvm), agitation speed (100-300 rpm), and cultivation period (48-72 hr) on PHA production. The optimum conditions for the growth and PHA accumulation were 1.5 vvm, 300 rpm, and 72 hr, with predicted values of 5.08 g/L cell dry weight (CDW), 66.07% PHA content, and 3.35 g/L total PHA concentration. Using these conditions, the experimental system produced 5.63 g/L of CDW with 64.00% wt/wt PHA content, which is threefold higher PHA concentration (3.60 g/L) compared to the non-optimized conditions. The melting temperature (T ) of purified PHA was 173.45 ± 1.05°C. In conclusion, the statistical approach was significantly increased the PHA production using waste glycerol as the sole carbon source.

摘要

评估了利用生物柴油行业的废甘油通过洋葱伯克霍尔德菌BPT1213生物合成聚羟基脂肪酸酯(PHA)的可行性。通过在2.5升生物反应器中,在补充有2%废甘油的矿物盐培养基中培养洋葱伯克霍尔德菌BPT1213来优化培养条件。采用响应面法确定通气速率(0.6 - 1.8 vvm)、搅拌速度(100 - 300 rpm)和培养时间(48 - 72小时)对PHA产量的影响。生长和PHA积累的最佳条件为1.5 vvm、300 rpm和72小时,预测的细胞干重(CDW)为5.08 g/L、PHA含量为66.07%、总PHA浓度为3.35 g/L。使用这些条件,实验系统产生了5.63 g/L的CDW,PHA含量为64.00%(重量/重量),与未优化条件相比,PHA浓度(3.60 g/L)提高了三倍。纯化后的PHA的熔点(Tm)为173.45 ± 1.05°C。总之,该统计方法显著提高了以废甘油为唯一碳源时的PHA产量。

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