Key Laboratory of Bio-Resources and Eco-Environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, 610065, China.
Bioprocess Biosyst Eng. 2020 May;43(5):927-936. doi: 10.1007/s00449-020-02289-6. Epub 2020 Jan 29.
Bacterial cellulose (BC) has extensive application prospects in many fields in view of its unique characteristics. However, the large-scale applications of BC are severely limited because of relatively low BC productivity and high cost of culture medium. Herein, the distiller's grain enzymatic hydrolysate (DEH) and yellow water were successfully combined as an effective substitute (the best distiller's grains-yellow water medium, BDY medium) for traditional Hestrin-Schramm medium (HS medium) for BC production by Gluconacetobacter xylinus through the response surface methodology. The BC production in BDY medium was significantly enhanced to 7.42 g/l with BC conversion yield of 42.4% after 7 days static cultivation, which was 3.72-fold and 3.37-fold higher than that in HS medium, respectively. The structure and properties of BC membranes produced in HS and BDY medium were evaluated by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), field emission scanning electron microscopy (FE-SEM), thermogravimetric analysis (TGA) and hydrophilicity analysis. There was no significant difference between BC samples produced in the HS and BDY medium, indicating that BDY, as abundant and inexpensive substrates, can effectively replace HS medium to enhance BC production. The employment of distiller's grains and yellow water to BC production not only is conducive to achieve industrial production of BC, but also can effectively realize the recycling of waste from Baijiu distillery.
鉴于其独特的特性,细菌纤维素 (BC) 在许多领域具有广泛的应用前景。然而,由于 BC 生产率相对较低和培养基成本较高,其大规模应用受到严重限制。在此,通过响应面法,成功地将酒糟酶解物 (DEH) 和黄水组合为用于 BC 生产的传统 Hestrin-Schramm 培养基 (HS 培养基) 的有效替代品(最佳酒糟-黄水培养基,BDY 培养基),通过木醋杆菌生产 BC。在 7 天的静态培养后,BDY 培养基中的 BC 产量显著提高到 7.42 g/L,BC 转化率为 42.4%,分别是 HS 培养基的 3.72 倍和 3.37 倍。通过 X 射线衍射 (XRD)、傅里叶变换红外光谱 (FT-IR)、场发射扫描电子显微镜 (FE-SEM)、热重分析 (TGA) 和亲水性分析评估了在 HS 和 BDY 培养基中生产的 BC 膜的结构和性能。HS 和 BDY 培养基中生产的 BC 样品之间没有明显差异,这表明 BDY 作为丰富且廉价的基质,可以有效地替代 HS 培养基来提高 BC 的产量。将酒糟和黄水用于 BC 生产不仅有利于实现 BC 的工业化生产,而且可以有效地实现白酒厂废物的循环利用。