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    • 91. 发明公开
    • GLYCERIDE OIL BASED COATING WAXES
    • 甘油酯油基涂料蜡
    • EP1261672A2
    • 2002-12-04
    • EP00982483.0
    • 2000-12-07
    • ARCHER-DANIELS-MIDLAND COMPANY
    • LEE, Inmok
    • C09D191/00A61K9/42B65D65/42D21H19/18
    • D21H19/14D21H19/46D21H27/10
    • This invention relates, in general, to a coating system which is a natural, renewable, healthier replacement of paraffin wax for paper coating application. The coating system is made from glyceride oils and is free of mineral hydrocarbons and their derivatives. More specifically, the present invention relates to packaging material comprising a substrate comprising a coating composition comprising a mixture of mono-, di- and triglycerides of saturated chain fatty acids, wherein said monoglycerides comprise 20-80% of said mixture, said diglycerides comprise 20-80% of said mixture, and, said triglycerides comprise 0-50% of said mixture. In a preferred embodiment, the glyceride oils are vegetable oils.
    • 本发明一般涉及一种涂料体系,该体系是用于纸张涂布应用的石蜡的天然的,可再生的,更健康的替代物。 涂层体系由甘油酯油制成,不含矿物烃及其衍生物。 更具体地说,本发明涉及包含基质的包装材料,所述基质包含包含饱和链脂肪酸的甘油单酯,甘油二酯和甘油三酯的混合物的涂料组合物,其中所述甘油单酯占所述混合物的20-80%,所述甘油二酯包含20 -80%的所述混合物,并且所述甘油三酯占所述混合物的0-50%。 在一个优选的实施方案中,甘油酯油是植物油。
    • 95. 发明公开
    • Electrodialysis water splitting process
    • Wasseraufspaltungsverfahren手套Elektrodialyse
    • EP1080776A2
    • 2001-03-07
    • EP00306359.1
    • 2000-07-26
    • Archer Daniels Midland Company
    • Mani, K. N.
    • B01D61/44C25B1/16C25B1/46C25B15/08C01D1/32
    • C01D1/32B01D61/445C01D1/38C25B15/08
    • An electrodialysis water splitting processes incorporates a chromatographic separation step using an amphoteric ion exchange resin to remove contamination salts from a salt solution feedstream (18) and a base product solution (36). When the chromatographic column (20,30) is subsequently eluted with water an effective separation of the components is achieved. The separated pure salt stream is forwarded to an electrodialysis water splitter cell (24) for conversion to acid and base. The base product solution (sodium hydroxide, potassium hydroxide) (36) may be similarly purified by passing through a second chromatographic column (30) also containing an amphoteric resin to separate the base from the salt (recovered salt). The process is also applicable in a chlor-alkali process for acidifying the brine feed (82) to the electrolysis cell (80) and for producing high purity caustic from salt.
    • 电渗析水分离方法包括使用两性离子交换树脂从盐溶液原料流(18)和碱产物溶液(36)中除去污染盐的色谱分离步骤。 当色谱柱(20,30)随后用水洗脱时,可实现组分的有效分离。 将分离的纯盐流送至电渗析分水器电池(24)以转化为酸和碱。 碱产物溶液(氢氧化钠,氢氧化钾)(36)可以类似地通过通过还含有两性树脂的第二色谱柱(30)纯化,以将碱与盐(回收的盐)分离。 该方法也适用于将盐水进料(82)酸化至电解槽(80)并从盐生产高纯度苛性碱的氯碱法。
    • 99. 发明公开
    • Electrodeionization apparatus and module
    • Vorrichtung和Modul zur elektrischen Entionisierung
    • EP0853972A2
    • 1998-07-22
    • EP97310533.1
    • 1997-12-23
    • ARCHER DANIELS MIDLAND COMPANY
    • Mani, Krishnamurty N.
    • B01D61/48B01J47/08
    • B01J47/08B01D61/48B01D61/50Y02A20/134
    • A gasket (20) for an electrodeionization cell assembly has a serpentine series flow path comprising a plurality of flow path sections (24,26,28) joined by restrictor sections (46,48) to form a series flow path. The series flow paths are packed with ion exchange material. Manifold holes (30,32,34,36) are located at opposite ends of the series flow path. A rigid port (P1,P2) is positioned between each of the manifold holes (30,32,34,36) and the ends of the series flow path. A plurality of the gaskets (20) are stacked in a face to face relationship so that the manifold holes (30,32,34,36) form conduits for fluid to flow to and from each of the series flow paths.
    • 用于电去电离单元组件的垫圈(20)具有蛇形串联流动路径,其包括由限制器部分(46,48)连接以形成串联流动路径的多个流路部分(24,26,28)。 串联流路包装有离子交换材料。 歧管孔(30,32,34,36)位于串联流动路径的相对端。 刚性端口(P1,P2)位于每个歧管孔(30,32,34,36)和串联流动路径的端部之间。 多个垫片(20)以面对面的关系堆叠,使得歧管孔(30,32,34,36)形成用于流体流动到每个串联流动路径的管道。
    • 100. 发明公开
    • Aglucone isoflavone enriched vegetable protein extract and protein material, and high genistein and daidzein content materials and process for producing the same
    • 富含阿维菌素异黄酮的植物蛋白提取物和蛋白质材料,以及高染料木黄酮和大豆黄素含量的材料及其生产方法
    • EP0827698A3
    • 1998-04-08
    • EP97306893.5
    • 1997-09-05
    • Protein Technologies International, Inc.
    • Bryan, Barbara A.Allred, Maryann C.
    • A23L1/211
    • C12P17/06A23J3/14A23J3/16A23L11/07A23L11/33A23L11/34
    • An aglucone is isoflavone enriched vegetable protein extract and protein material are provided, as well as a high genistein content material and a high daidzein content material. Isoflavone conjugates in a vegetable material are converted to isoflavone glucosides by treating the vegetable material at a temperature and a pH for a period of time sufficient to effect the conversion. The isoflavone glycosides are converted to glucose isoflavones by enzymatic reaction. The vegetable material is extracted with an aqueous extractant having a pH above about the isoelectric point of protein in the vegetable material to extract protein and the isoflavones either before or after conversion of the isoflavone conjugates to isoflavone glucosides or the conversion of the isoflavone glucosides to aglucone isoflavones. An aglucone isoflavone enriched protein material is produced by precipitating the protein and aglucone isoflavones from the extract. A high genistein content material or a high daidzein content material may be produced from the aglucone isoflavone enriched protein extract or aglucone isoflavone enriched protein material by separating the high genistein or high daidzein content material from the extract or protein material.
    • 甙元是富含异黄酮的植物蛋白提取物和蛋白质材料,以及高染料木黄酮含量的材料和高大豆黄素含量的材料。 通过在温度和pH下处理植物材料足够的时间以实现转化,将植物材料中的异黄酮共轭物转化为异黄酮糖苷。 通过酶促反应将异黄酮糖苷转化为葡萄糖异黄酮。 植物材料用具有高于约等于植物材料中蛋白质等电点的pH的水提取剂提取,以在异黄酮共轭物转化为异黄酮糖苷之前或之后提取蛋白质和异黄酮,或将异黄酮糖苷转化为配基葡糖苷 异黄酮。 通过从提取物中沉淀蛋白质和配基异黄酮制备富含配基异黄酮的蛋白质材料。 通过从提取物或蛋白质材料中分离高染料木黄酮或高黄豆苷原含量物质,可以从富含配基的异黄酮富集蛋白质提取物或富含配基的异黄酮蛋白质物质生产高染料木黄酮含量材料或高大豆黄素含量材料。