Composition for recovery of MG.sup.++ from brines
    41.
    发明授权
    Composition for recovery of MG.sup.++ from brines 失效
    从盐水中回收MG ++的组成

    公开(公告)号:US4243555A

    公开(公告)日:1981-01-06

    申请号:US071920

    申请日:1979-08-31

    CPC classification number: B01J47/006 B01J41/08 C01D3/145 C01F7/002

    Abstract: Magnesium values are selectively recovered from salt brines, even salt brines which contain competing ions such as Li.sup.+, Ca.sup.++, and Sr.sup.++, by contacting the brine with an anion exchange resin which has dispersed therein a microcrystalline structure of the formula MgX.sub.2.2Al(OH).sub.3, where X is a halide.

    Abstract translation: 通过使盐水与分散有式MgX2.2Al(OH)的微晶结构的阴离子交换树脂接触,从盐盐水,甚至含有竞争离子的盐盐,即Li +,Ca ++和Sr ++的盐水中选择性地回收镁值, 3,其中X是卤化物。

    Ion exchange materials
    42.
    发明授权
    Ion exchange materials 失效
    离子交换材料

    公开(公告)号:US4130512A

    公开(公告)日:1978-12-19

    申请号:US659496

    申请日:1976-02-19

    Applicant: Michael Streat

    Inventor: Michael Streat

    CPC classification number: C08F2/44 B01J39/165 B01J41/085 B01J47/007

    Abstract: A process for the production of a particulate ion exchange material which comprises heating an inorganic material to produce a porous inert inorganic substrate, adsorbing an organic monomer into the substrate and polymerizing the adsorbed monomer so that the resultant polymer is retained within the pores of the substrate, and, if necessary, introducing ion exchange functional groups into the polymer.

    Abstract translation: 一种生产颗粒状离子交换材料的方法,包括加热无机材料以制备多孔惰性无机基材,将有机单体吸附到基材中并聚合吸附的单体,使得所得聚合物保留在基材的孔内 ,如果需要,将离子交换官能团引入到聚合物中。

    METAL ORGANIC RESINS WITH ZIRCONIUM NODES

    公开(公告)号:US20210299634A1

    公开(公告)日:2021-09-30

    申请号:US17315833

    申请日:2021-05-10

    Abstract: Metal organic resins, composite materials composed of the metal organic resins, and anion exchange columns packed with the composite materials are provided. Also provided are methods of using the composite materials to remove metal anions from a sample, methods of using the metal organic resins as fluorescence sensors for detecting metal anions in a sample, and methods of making the metal organic resins and the composite materials. The metal organic resins are amine-functionalized metal organic frameworks and their associated counter anions. The composite materials are composed of metal organic resin particles coated with organic polymers, such as alginic acid polymers.

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