Zhang Yongming, Kennedy John F, Knill Charles J, Panesar Parmjit S
Department of Environmental Engineering, School of Urban Science, Shanghai Normal University, Shanghai, PR, china.
Artif Cells Blood Substit Immobil Biotechnol. 2006;34(4):395-405. doi: 10.1080/10731190600769644.
Yeast cells were immobilized by absorption onto porous ceramic support and evaluated for continuous beer primary fermentation using a bioreactor in comparison to yeast cells immobilized by entrapment in calcium alginate gel. The effects of temperature and flow rate as a function of reaction/fermentation time on fermentation rate were investigated. The fermentation reaction (in terms of loss of total soluble solids in the beer wort as a function of time) was first-order with half-lifes in the range of approximately 9-11 hours at approximately 10-12 degrees C at beer wort linear flow rates of approximately 0.8-1.6 cm/minute for ceramic support, compared with approximately 16 hours for Ca-alginate gel, the former support matrix being more efficient and demonstrating greater potential for future commercial application.
将酵母细胞通过吸附固定在多孔陶瓷载体上,并使用生物反应器对其进行连续啤酒主发酵评估,同时与通过包埋在海藻酸钙凝胶中固定的酵母细胞进行比较。研究了温度和流速作为反应/发酵时间的函数对发酵速率的影响。发酵反应(以啤酒麦芽汁中总可溶性固形物随时间的损失来衡量)为一级反应,在约10-12摄氏度、啤酒麦芽汁线性流速约为0.8-1.6厘米/分钟的条件下,陶瓷载体的半衰期约为9-11小时,相比之下,海藻酸钙凝胶的半衰期约为16小时,前一种载体基质效率更高,显示出更大的未来商业应用潜力。