对产品的污染——一种新的两段单罐发酵生产1,3-丙二醇的方法

IF 3.1 3区 工程技术 Q3 ENERGY & FUELS BioEnergy Research Pub Date : 2023-01-18 DOI:10.1007/s12155-023-10570-1
Shreya Anand, Koel Mukherjee, Padmini Padmanabhan
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引用次数: 1

摘要

目前许多工业化学品都是从化石资源中生产出来的。然而,化石燃料的广泛使用导致了一系列与能源和污染有关的令人震惊的挑战。从化石资源中生产的工业化学品可以通过绿色路线以可持续的方式生产。本文报道了利用甘蔗加工废弃物(甘蔗渣)通过发酵途径生产1,3-丙二醇(1,3- pdo)。本研究以低成本原料甘蔗渣回收的第二代(2G)可发酵糖(2G FS)为底物,利用酿酒酵母菌NCIM 3594和肺炎克雷伯菌NCIM 2957在单罐混合培养发酵生产1,3- pdo。通过优化底物浓度(2G FS)、pH和温度等工艺参数,验证了单罐混合培养发酵生产1,3- pdo的新概念。2G FS的浓度范围为0.5 ~ 5% (V2G FS/Vworking volume), pH范围为6 ~ 7,温度范围为30 ~ 37℃。在浓度为5% (V2G FS/Vworking volume)、pH为6.8、温度为35℃的条件下,1,3- pdo产量最大。分析发酵速率的热力学参数为焓(ΔH), ?47596 KJ/mol;活化能(ΔE), - 47596 KJ/mol;熵(ΔS), 500.46 J/mol;吉布斯自由能(ΔG)为2.018 × 105 J/mol;动力学参数为:比生长速率(μ) 0.0053 h?1;细胞质量效率(Qx), 0.249 g/L/h;产率(Qp) 0.237 g/L/h;产率(Yp/s) 0.0427 g/g。这项工作展示了一种新的单罐方法,以低成本的原料生产1,3- pdo,为开发基于可再生资源的高成本效益发酵做出了有价值的贡献。
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Pollution to Product—a Novel Two-Stage Single-Pot Fermentative Production of 1,3-Propanediol

Many industrial chemicals are currently produced from fossil resources. However, extensive use of fossil fuels has resulted in an alarming array of energy and pollution-related challenges. The industrial chemicals that are produced from fossil resources could be produced alternatively using green route in a sustainable manner. Here we report the production of 1,3-propanediol (1,3-PDO) through fermentative route using sugarcane processing wastes (sugarcane bagasse). This study used the second-generation (2G) fermentable sugar (2G FS) recovered from the low-cost feedstock sugarcane bagasse as a substrate for 1,3-PDO production through a mixed culture fermentation in a single pot using Saccharomyces cerevisiae NCIM 3594 and Klebsiella pneumoniae NCIM 2957. This novel concept of single-pot, mixed culture fermentation method to produce 1,3-PDO was verified by optimizing process parameters like substrate concentration (2G FS), pH, and temperature. The concentration of 2G FS was varied in the range of 0.5–5% (V2G FS/Vworking volume), pH was varied between 6 and 7, and the temperature range was 30–37°C. The maximum production of 1,3-PDO was observed at the concentration of 5% (V2G FS/Vworking volume), at an optimum pH of 6.8 and a temperature of 35°C. The evaluated thermodynamics parameters for analyzing the rate of fermentation were enthalpy (ΔH), ?47596 KJ/mol; activation energy (ΔE), ?47596 KJ/mol; entropy (ΔS), 500.46 J/mol; and Gibbs free energy (ΔG), ?2.018?×?105?J/mol; and the kinetics parameters were specific growth rate (μ), 0.0053 h?1; cell mass productivity (Qx), 0.249 g/L/h; rate of production (Qp), 0.237 g/L/h; and product yield (Yp/s), 0.0427 g/g. This work demonstrates a novel single-pot method to produce 1,3-PDO from a low-cost feedstock and makes a valuable contribution to the development of a cost-effective fermentation based on renewable resources.

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来源期刊
BioEnergy Research
BioEnergy Research ENERGY & FUELS-ENVIRONMENTAL SCIENCES
CiteScore
6.70
自引率
8.30%
发文量
174
审稿时长
3 months
期刊介绍: BioEnergy Research fills a void in the rapidly growing area of feedstock biology research related to biomass, biofuels, and bioenergy. The journal publishes a wide range of articles, including peer-reviewed scientific research, reviews, perspectives and commentary, industry news, and government policy updates. Its coverage brings together a uniquely broad combination of disciplines with a common focus on feedstock biology and science, related to biomass, biofeedstock, and bioenergy production.
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