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A method for the production of inorganic crystalline bases exchanger materials with a high capacitor or capacitance and is produced in accordance with the process exchanger materials

机译:一种具有高电容器或电容的无机结晶基交换材料的生产方法,并根据工艺交换材料生产

摘要

A method is disclosed for producing inorganic crystalline base exchange materials having high total exchange capacities and specific initial exchange rates which yield well-defined residual concentrations for the elements of Group II of the Periodic Table. The method of the invention includes the concept of controlling the rate of the addition of the reactants and other reaction variables to prevent gel structure formation and to provide a precipitate of discrete particles with a preoriented array of the elements that is predisposed to the final crystalline structure. Recycle of the mother liquor to provide a totally closed system is further disclosed. By preventing the formation of the gel structure it is possible to eliminate cumbersome and costly processing steps and equipment. By varying the precipitation and crystallation conditions, it is possible to control the ultimate crystal size. Recycle allows recovery of the chemical values of the mother liquor and reduces manufacturing cost. Throughput is also significantly increased. Specific and significant process steps include: make-up of the reactants, purification purge of the reactants, precipitation, crystallization, decanting and quench, solids separation and recycle of the mother liquor to provide the closed system. Recycling includes concentration and desalination. The method of the invention further includes particularly unique processing steps comprising solids separation and countercurrent washing.
机译:公开了一种生产具有高的总交换容量和特定的初始交换速率的无机晶体碱交换材料的方法,该方法对于元素周期表的第II族的元素产生明确定义的残留浓度。本发明的方法包括控制反应物和其他反应变量的添加速率的概念,以防止形成凝胶结构并提供具有预取向的最终晶体结构的元素的预取向阵列的离散颗粒的沉淀。 。还公开了母液的再循环以提供完全封闭的系统。通过防止形成凝胶结构,可以消除麻烦且昂贵的加工步骤和设备。通过改变沉淀和结晶条件,可以控制最终的晶体尺寸。循环利用可以恢复母液的化学价值并降低制造成本。吞吐量也显着提高。具体且重要的工艺步骤包括:反应物的组成,反应物的净化吹扫,沉淀,结晶,de析和淬灭,固体分离和母液循环以提供密闭系统。回收包括浓缩和脱盐。本发明的方法还包括特别独特的加工步骤,包括固体分离和逆流洗涤。

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