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    • 2. 发明授权
    • Process for recovery of protein from aqueous media in corn wet milling
    • 在玉米湿磨中从水性介质中回收蛋白质的方法
    • US5968585A
    • 1999-10-19
    • US798940
    • 1997-02-11
    • Gin C. LiawMunir Cheryan
    • Gin C. LiawMunir Cheryan
    • A23J1/12A23J1/16A23J1/14
    • A23J1/12A23J1/16A23V2002/00
    • An improved corn wet milling process is disclosed. In a process in which corn kernels are steeped in an aqueous solution and are milled to facilitate the separation of the components thereof, in which starch from the corn is separated from gluten, and in which at least one aqueous gluten-containing stream is generated, the improvement comprises membrane filtration of an aqueous gluten-containing stream, producing a gluten-enriched retentate, and removing water from the gluten-enriched retentate, thereby producing a substantially dry gluten product. This improved process provides an economical means of recovering a higher percentage of the available protein for inclusion in high value products.
    • 公开了改进的玉米湿磨工艺。 在玉米粒浸在水溶液中并研磨以促进其组分分离的过程中,其中玉米的淀粉与谷蛋白分离,并且其中至少含有含麸质的含水流产生, 该改进包括含水麸质流的膜过滤,产生富含谷蛋白的滞留物,以及从富含麸质的滞留物中除去水,从而产生基本干燥的麸质产品。 这种改进的方法提供了一种经济的方法来回收更高百分比的可用蛋白质以包含在高价值产品中。
    • 3. 发明授权
    • Process and equipment for chromatographic separation of
fructose/dextrose solutions
    • 果糖/葡萄糖溶液色谱分离的工艺和设备
    • US4366060A
    • 1982-12-28
    • US973494
    • 1978-12-26
    • Roger S. LeiserGin C. Liaw
    • Roger S. LeiserGin C. Liaw
    • B01D15/08B01D15/20B01D15/36B01J39/26C13K3/00
    • B01D15/206B01D15/362C13K3/00
    • Large-scale apparatus and process for chromatographic separation of fructose/dextrose sugar solutions employing large diameter beds of a strongly cationic salt of an ion exchange resin. The cationic ion exchange resin is densely and uniformly packed in a separation column by means of a resin loading method which includes washing the resin with a salt selected from the group of calcium, barium, strontium or silver salts of the resin. The shrunken resin is then placed in the column to completely fill the column. After sealing the column, excess salt is washed away to thereby expand the resin inside the confined separation column chamber.The uniformly dense packing of the resin in the separation column chamber eliminates the need for mechanical baffles which were formerly required to insure regular and uniform flow throughout the entire cross sectional area of the separation columns. Large diameter separation columns without baffles are made possible by the column packing method of the invention because undesirable channeling or irregular flow in the densely packed resin bed is virtually eliminated. A liquid feed stream containing fructose and dextrose and a second stream of elution water are fed through a series of separation columns in alternate, cyclic pulses. The liquid streams are further redistributed between the successive columns of the series to further increase the degree of separation of the output stream into a portion rich in fructose, and another output stream rich in dextrose.
    • 使用离子交换树脂的强阳离子盐的大直径床的果糖/葡萄糖糖溶液的色谱分离的大规模装置和方法。 阳离子离子交换树脂通过树脂加载方法密集均匀地包装在分离塔中,该方法包括用选自树脂的钙,钡,锶或银盐的盐洗涤树脂。 然后将收缩树脂置于柱中以完全填充柱。 密封柱后,过量的盐被冲洗掉,从而使密封的分离柱室内的树脂膨胀。 分离柱室中树脂的均匀密集填料消除了对以前需要确保在分离柱的整个横截面积上均匀流动的机械挡板的需要。 通过本发明的柱填充方法可以实现不带挡板的大直径分离塔,因为密实填充的树脂床中的不希望的流道或不规则流动实质上被消除。 含有果糖和葡萄糖的液体进料流和第二洗脱水流以交替的循环脉冲通过一系列分离柱。 液体物流进一步重新分配在该系列的连续列之间,以进一步增加输出流分离成富含果糖的部分,以及富含葡萄糖的另一输出流。
    • 4. 发明授权
    • Membrane filtration for thickening and starch washing in corn wet milling
    • 膜过滤用于玉米湿磨中的增稠和淀粉洗涤
    • US06648978B2
    • 2003-11-18
    • US09977779
    • 2001-10-15
    • Gin C. LiawMunir CheryanRoy O. Elmore
    • Gin C. LiawMunir CheryanRoy O. Elmore
    • B01D1500
    • C08B30/044B01D61/142B01D61/147B01D61/16B01D61/58B01D71/024C08B30/08
    • An improved corn wet milling process is disclosed in which a first stream comprising water, starch, and protein (e.g., gluten) is generated by separating fiber from wet milled de-germed corn particles (e.g. fiber separation step). Membrane filtration (e.g. starch-protein stream thickening) is performed on the first stream, producing a first retentate and a first aqueous permeate. The first retentate (e.g. thickened starch-protein stream) is separated into a second stream and a third stream (e.g. primary starch separation step). The second stream comprises water and a majority of the starch present in the first retentate, and the third stream comprises water and a majority of the protein (e.g., gluten) present in the first retentate. This process provides an economical means of recovering a higher percentage of the available cornstarch for inclusion in high value products.
    • 公开了一种改进的玉米湿法研磨方法,其中通过将纤维与湿磨的脱颗粒玉米颗粒(例如纤维分离步骤)分离,产生包含水,淀粉和蛋白质(例如谷蛋白)的第一物流。 在第一流上进行膜过滤(例如淀粉 - 蛋白质流增稠),产生第一渗余物和第一含水渗透物。 将第一滞留物(例如增稠的淀粉 - 蛋白质流)分离成第二流和第三流(例如初级淀粉分离步骤)。 第二料流包含水和存在于第一滞留物中的大部分淀粉,第三料流包含存在于第一滞留物中的水和大部分蛋白质(例如谷蛋白)。 该方法提供了一种经济的方法来回收更高百分比的可用玉米淀粉以包含在高价值产品中。