Rodrigues Reis Cristiano E, Hu Bo
EARTH University, Guacimo, Limon 4442-1000, Costa Rica.
Department of Bioproducts and Biosystems Engineering, University of Minnesota, Saint Paul, MN 55108, USA.
Membranes (Basel). 2022 Feb 17;12(2):230. doi: 10.3390/membranes12020230.
Phytate is the main form of phosphorus in corn ethanol coproducts and poses digestion issues in monogastric-animal feed. Extracting phytate as a commodity chemical will bring extra revenue to the corn ethanol industry and reduces potential phosphorus pollution from livestock waste management. We assessed a simplified scale-up approach of an ion-exchange separation system applied to extract phytate from thin stillage using volumetric parameters and simplifications of the van Deemter model. Thin stillage is one of the main byproducts generated on dry-grind corn-to-ethanol plants and accounts for the liquid portion of the bottom product generated in the ethanol distillation process. Thin stillage is rich in dissolved phytate, which served as the basis for an ion-exchange extraction system developed with a scalability factor of 50. Under the evaluated conditions, similar breakthrough profiles were obtained when similar Péclet and Stanton numbers were maintained for the scales studied, demonstrating that a simple and straightforward scale-up can be attained if special attention is given to maintaining both parameters as the basis of calculations of the plate numbers of ion-exchange columns.
植酸盐是玉米乙醇副产品中磷的主要存在形式,在单胃动物饲料中会引发消化问题。将植酸盐作为一种商品化学品提取出来,将为玉米乙醇行业带来额外收入,并减少牲畜粪便管理中潜在的磷污染。我们评估了一种离子交换分离系统的简化放大方法,该系统应用体积参数和范德姆特模型的简化来从稀醪液中提取植酸盐。稀醪液是干磨玉米制乙醇工厂产生的主要副产品之一,占乙醇蒸馏过程中底部产物的液体部分。稀醪液富含溶解的植酸盐,这为开发的离子交换萃取系统提供了基础,该系统的放大系数为50。在评估条件下,当所研究的规模保持相似的佩克莱特数和斯坦顿数时,可获得相似的穿透曲线,这表明如果特别注意将这两个参数作为离子交换柱板数计算的基础,就可以实现简单直接的放大。