Production of Poly(3-Hydroxybutyrate-Co-3-Hydroxyvalerate) by Bacillus megaterium LVN01 Using Biogas Digestate

Amanda Lucía Mora Martínez, María Yepes-Pérez, Karent Alexandra Carrero Contreras, Paola Eliana Zapata Moreno
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Abstract

The Bacillus megaterium LVN01 species native to Colombia has demonstrated the ability to metabolize different coproducts or industrial waste (such as fique juice, cane molasses, and residual glycerol) and accumulate polyhydroxybutyrate (PHB), giving it potential in the bioplastics industry. In this research, the potential of liquid digestate as a carbon source for the production of PHA polymers in fermentation processes with this bacterial strain was evaluated. Favorably, it was found that B. megaterium utilizes the nutrients from this residual substrate to multiply appropriately and efficiently synthesize poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV). Bench-scale aerobic batch fermentation, under the operational conditions of this research [volume: 3 L; temperature: 30.8 °C; agitation: 400 rpm; pH: 7.0 ± 0.2; dissolved oxygen: 100% saturation; antifoam: 10% (v/v)], generated maximum values of dry cell weight (DCW) (0.56 g cell L−1) at 60 h, while the maximum PHBV yield (360 mg PHBV L−1) occurred at 16 h, which is very favorable for sustainable degradable bioplastics production. Additionally, GC–MS and NMR analyses confirmed that the PHBV copolymer synthesized by B. megaterium is made up of the monomers 3-hydroxybutyrate (3HB) and 3-hydroxyvalerate (3HV). Furthermore, the thermal properties determined by TGA (Tonset = 283.1 °C; Tendset = 296.98 °C; Td = 290.114 °C) and DSC (Tm = °C 155.7 °C; ΔHf = 19.80 J g−1; Xcr = 18.17%) indicate that it is a thermally stable biopolymer with low percentages of crystallinity, providing flexibility that facilitates molding, adaptation, and application in various industrial sectors.
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巨型芽孢杆菌 LVN01 利用沼气沼渣生产聚(3-羟基丁酸-Co-3-羟基戊酸盐
原产于哥伦比亚的巨大芽孢杆菌(Bacillus megaterium LVN01)菌种已证明能够代谢不同的副产品或工业废物(如fique果汁、甘蔗糖蜜和残留甘油)并积累聚羟基丁酸(PHB),这使其在生物塑料工业中具有潜力。本研究评估了液态沼渣作为碳源在该细菌菌株发酵过程中生产 PHA 聚合物的潜力。结果表明,巨大芽孢杆菌能利用残留基质中的营养物质适当繁殖,并高效合成聚(3-羟基丁酸-3-羟基戊酸)(PHBV)。在本研究的操作条件[容积:3 升;温度:30.8 °C;搅拌:30.8 °C]下进行台式好氧批次发酵:30.8 °C; 搅拌400 rpm;pH 值:7.0 ± 0.2;溶解氧:100% 饱和度;消泡剂:10% (v/v)],干细胞重量(DCW)在 60 小时后达到最大值(0.56 克细胞 L-1),而 PHBV 产量(360 毫克 PHBV L-1)在 16 小时后达到最大值,这对可持续降解生物塑料的生产非常有利。此外,气相色谱-质谱(GC-MS)和核磁共振(NMR)分析证实,巨型芽孢杆菌合成的 PHBV 共聚物是由单体 3-hydroxybutyrate (3HB) 和 3-hydroxyvalerate (3HV) 组成的。此外,通过 TGA(Tonset = 283.1 °C;Tendset = 296.98 °C;Td = 290.114 °C)和 DSC(Tm = °C 155.7 °C;ΔHf = 19.80 J g-1;Xcr = 18.17%)测定的热特性表明,它是一种热稳定性生物聚合物,结晶度较低,具有灵活性,便于成型、适应和应用于各种工业领域。
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