Production of Acetic Acid and Whey Protein from Cheese Whey in a Hybrid Reactor under Response Surface Optimized Conditions

Jayato Nayak, S. Chakrabortty
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Abstract

Experimental investigations were carried out in a membrane-integrated hybrid bio-reactor system for direct and continuous production of acetic acid and whey protein from waste cheese whey under response surface optimized conditions. In this novel scheme of fermentative production, using Acetobactor aceti, the major operating parameters such as temperature, concentrations of yeast extract, and glucose were optimized. Under the set of optimum operating conditions (temperature of 300 °C, pH of 6.0, yeast extract concentration of 15 g/L and glucose concentration of 44 g/ L), more than 95% pure acetic acid was produced with a concentration of 84.1 g/L, yield of 97.4% and productivity of 7.2 g/(L· h). Simultaneous production of whey protein powder makes the process more economically viable. Findings indicate that acetic acid could be produced directly and continuously from waste cheese whey with high productivity, yield and purity under response surface optimized conditions, in a simple, flexible, energy-saving and environmentally benign membrane-integrated hybrid reactor system.
响应面优化条件下混合反应器中奶酪乳清生产醋酸和乳清蛋白的研究
在响应面优化条件下,在膜集成混合生物反应器系统中对废干酪乳清直接连续生产乙酸和乳清蛋白进行了实验研究。在这个新的发酵生产方案中,利用乙酰乳杆菌,优化了主要的操作参数,如温度、酵母浸膏浓度和葡萄糖。在最佳工艺条件(温度300℃、pH 6.0、酵母膏浓度15 g/L、葡萄糖浓度44 g/L)下,乙酸纯度达到95%以上,乙酸浓度为84.1 g/L,产率为97.4%,产率为7.2 g/(L·h),同时生产乳清蛋白粉,更具经济可行性。研究结果表明,在响应面优化条件下,在简单、灵活、节能、环保的膜集成混合反应器系统中,利用废干酪乳清直接连续生产乙酸,具有较高的产率、产率和纯度。
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