College of Life Sciences, Qufu Normal University, Qufu, 273165, Shandong, China.
Bioprocess Biosyst Eng. 2020 Mar;43(3):385-392. doi: 10.1007/s00449-019-02234-2. Epub 2019 Nov 13.
To be competitive with common synthetic surfactants, the cost of production of rhamnolipid must be minimized by the fermentation process of non-foaming and low impurities. Herein, a novel solid-state fermentation process was developed for production of rhamnolipid by Pseudomonas aeruginosa SKY. The results were shown that high-density polyurethane foam is a satisfactory alternative to agro-industrial by-products for SSF of rhamnolipid. Palm oil and NaNO were promising carbon source and nitrogen source, respectively. Response surface methodology was employed to enhance the production of rhamnolipid. Palm oil, NaNO and liquid-to-solid ratios were significant factors. The optimal medium was developed as: 73.6 g/l palm oil; 3.0 g/l g NaNO; 1.1 g NaCl; 1.1 g KCl; 3.4 g KHPO; 4.4 g KHPO; 0.5 g MgSO·7HO and 37.2 liquid-to-solid ratios. An overall 1.39-fold increase in rhamnolipid production was achieved in the optimized medium as compared with the unoptimized basal medium. Air pressure pulsation solid-state fermentation (APP-SSF) was applied to the experiment of scale-up for improving transfer efficiency of heat and mass. The yield of rhamnolipid reached 39.8 g/l in a 30 l APP-SSF fermenter. The crude extract of rhamnolipid lowered the surface tension of water to 28 mN/m and kept the critical micelle concentration at 50 mg/l. The work revealed the SSF with HPUF as an inert support was a promising fermentation system that could effectively produce rhamnolipid with low impurities, high productivity and low cost of production at a large scale.
为了与常见的合成表面活性剂竞争,必须通过非起泡和低杂质的发酵过程将鼠李糖脂的生产成本降至最低。在此,开发了一种新型的固体发酵工艺,用于生产铜绿假单胞菌 SKY 的鼠李糖脂。结果表明,高密度聚氨酯泡沫是替代农业工业副产品进行鼠李糖脂固态发酵的理想选择。棕榈油和 NaNO 分别是有前途的碳源和氮源。响应面法被用于提高鼠李糖脂的产量。棕榈油、NaNO 和液固比是显著因素。优化的培养基开发为:73.6 g/l 棕榈油;3.0 g/l g NaNO;1.1 g NaCl;1.1 g KCl;3.4 g KHPO;4.4 g KHPO;0.5 g MgSO·7HO 和 37.2 倍液固比。与未优化的基础培养基相比,优化培养基中的鼠李糖脂产量提高了 1.39 倍。空气压力脉动固态发酵(APP-SSF)被应用于扩大实验,以提高热和质量的传递效率。在 30 l APP-SSF 发酵罐中,鼠李糖脂的产量达到 39.8 g/l。鼠李糖脂粗提物将水的表面张力降低到 28 mN/m,并将临界胶束浓度保持在 50 mg/l。这项工作表明,以 HPUF 为惰性载体的固态发酵是一种很有前途的发酵系统,可有效地生产低杂质、高生产力和低成本的鼠李糖脂,规模较大。