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Nutrient recovery from the dry grind process using sequential micro and ultrafiltration of thin stillage

机译:使用稀釜馏物的连续微滤和超滤从干磨过程中回收营养

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摘要

The effectiveness of microfiltration (MF) and ultrafiltration (UF) for nutrient recovery from a thin stillage stream was determined. When a stainless steel MF membrane (0.1 mu m pore size) was used, the content of solids increased from 7.0% to 22.8% with a mean permeate flux rate of 45 L/m(2)/h (LMH), fat increased and ash content decreased. UF experiments were conducted in batch mode under constant temperature and flow rate conditions. Permeate flux profiles were evaluated for regenerated cellulose membranes (YM1. YM10 and YM100) with molecular weight cut offs of 1, 10 and 100 kDa. UF increased total solids, protein and fat and decreased ash in retentate stream. When permeate streams from MF were subjected to UF, retentate total solids concentrations similar to those of commercial syrup (23-28.8%) were obtained. YM100 had the highest percent permeate flux decline (70% of initial flux) followed by YM10 and YM1 membranes. Sequential filtration improved permeate flux rates of the YM100 membrane (32,6-73.4 LMH) but the percent decline was also highest in a sequential MF + YM100 system. Protein recovery was the highest in YM1 retentate. Removal of solids, protein and fat from thin stillage may generate a permeate stream that may improve water removal efficiency and increase water recycling.
机译:确定了微滤(MF)和超滤(UF)从稀酒馏分流中回收营养物的有效性。当使用不锈钢MF膜(孔径为0.1μm)时,固体含量从7.0%增加到22.8%,平均渗透通量率为45 L / m(2)/ h(LMH),脂肪增加,灰分降低。 UF实验以间歇模式在恒定温度和流速条件下进行。对分子量截止值为1、10和100 kDa的再生纤维素膜(YM1,YM10和YM100)的渗透通量曲线进行了评估。 UF增加了滞留物流中的总固体,蛋白质和脂肪,并减少了灰分。当将来自MF的渗透物流进行UF处理时,得到的滞留物总固体浓度与市售糖浆相似(23-28.8%)。 YM100的渗透通量下降百分比最高(初始通量的70%),其次是YM10和YM1膜。顺序过滤改善了YM100膜的渗透通量速率(32,6-73.4 LMH),但在连续MF + YM100系统中,百分比下降幅度最大。 YM1保留物中的蛋白质回收率最高。从稀釜馏物中除去固体,蛋白质和脂肪可能会产生渗透流,这可能会提高脱水效率并增加水的循环利用。

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