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    • 1. 发明申请
    • PROCESS FOR PRODUCING ADAMANTANE
    • 生产ADAMANTANE的方法
    • US20090177019A1
    • 2009-07-09
    • US12299785
    • 2007-05-09
    • Masao SaitoAkio KojimaToshiaki KusabaJun Mase
    • Masao SaitoAkio KojimaToshiaki KusabaJun Mase
    • C07C13/28
    • B01J29/126B01J29/088B01J2229/186C07C5/29C07C2529/08C07C2529/12C07C2603/74C07C13/615
    • Provided is a method for production of adamantane which enables producing a high-purity adamantane at low cost and with high efficiency by using effectively trimethylenenorbornane contained in a heavy raffinate heavy and having conventionally been no use other than fuels and the like, and which enables alleviating poisoning of a catalyst used in isomerization and corrosion of devices, whereby an industrially advantageous adamantane can be produced. In addition, the process for producing adamantane including an isomerization process of isomerizing trimethylenenorbornane contained in a raffinate obtained from a platfinate is characterized by including a water-washing removal process of removing sulfolane in a trimethylenenorbornane concentrate to be supplied in the isomerization process by water-washing.
    • 本发明提供一种金刚烷的制造方法,其能够低成本且高效率地制造高纯度金刚烷,其特征在于,使用重质提余液重金属中含有的三甲基降冰片烷,并且以往除了燃料等以外没有其他用途,能够缓和 用于装置的异构化和腐蚀的催化剂的中毒,由此可以生产工业上有利的金刚烷。 另外,含有由平板化合物得到的残液中异构化亚烷基降冰片烷异构化方法的金刚烷的制造方法的特征在于,在异氰酸酯化方法中,通过水洗方法,在三亚甲基降冰片烷烷浓缩物中除去环丁砜, 洗涤。
    • 4. 发明授权
    • Process for producing adamantane
    • 生产金刚烷的方法
    • US07381855B2
    • 2008-06-03
    • US10590995
    • 2005-02-28
    • Jun MaseShinji MiyamotoAkio KojimaMasao SaitoToshiaki Kusaba
    • Jun MaseShinji MiyamotoAkio KojimaMasao SaitoToshiaki Kusaba
    • C07C13/28C07C7/14
    • C07C5/29B01J29/126C07C7/14C07C2603/74C07C13/615
    • An industrially advantageous process for producing adamantane by which high-purity adamantane reduced in coloration is efficiently produced while minimizing the loss. The process, which is for producing adamantane by isomerizing trimethylenenorbornane, includes (A) a reaction step of isomerizing the starting material, (B) a concentration step of concentrating the adamantane contained in the resultant liquid reaction mixture, (C) a crystallization step of precipitating the concentrated adamantane, (D) a solid-liquid separation step of separating the adamantane crystals from the slurry resulting from the crystallization, (E) a washing step of washing the isolated adamantane crystals, and (F) a drying step of drying the adamantane crystals washed, characterized in that the mass ratio of the endo-trimethylenenorbornane to the adamantane each contained in the materials to be subjected to the crystallization step (C) (endo-trimethylenenorbornane/adamantane) is 0.25 or lower.
    • 在生产金刚​​烷的工业上有利的方法是高效率地生产高纯度金刚烷,降低了损失。 用于通过异亚丙基降冰片烷生产金刚烷的方法包括(A)使原料异构化的反应步骤,(B)浓缩所得液体反应混合物中所含金刚烷的浓缩步骤,(C)结晶步骤 沉淀浓缩金刚烷,(D)从结晶得到的浆料中分离金刚烷结晶的固液分离步骤,(E)洗涤分离的金刚烷结晶的洗涤步骤,和(F)干燥步骤 金刚烷晶体洗涤,其特征在于,待进行结晶步骤(C)(内 - 三亚甲基降冰片烷/金刚烷)的材料中含有的内 - 三亚甲基降冰片烷与金刚烷的质量比为0.25以下。
    • 5. 发明申请
    • Process for producing adamantane
    • 生产金刚烷的方法
    • US20070173678A1
    • 2007-07-26
    • US10590995
    • 2005-02-28
    • Jun MaseShinji MiyamotoAkio KojimaMasao SaitoToshiaki Kusaba
    • Jun MaseShinji MiyamotoAkio KojimaMasao SaitoToshiaki Kusaba
    • C07C5/13
    • C07C5/29B01J29/126C07C7/14C07C2603/74C07C13/615
    • An industrially advantageous process for producing adamantane by which high-purity adamantane reduced in coloration is efficiently produced while minimizing the loss. The process, which is for producing adamantane by isomerizing trimethylenenorbornane, includes (A) a reaction step of isomerizing the starting material, (B) a concentration step of concentrating the adamantane contained in the resultant liquid reaction mixture, (C) a crystallization step of precipitating the concentrated adamantane, (D) a solid-liquid separation step of separating the adamantane crystals from the slurry resulting from the crystallization, (E) a washing step of washing the isolated adamantane crystals, and (F) a drying step of drying the adamantane crystals washed, characterized in that the mass ratio of the endo-trimethylenenorbornane to the adamantane each contained in the materials to be subjected to the crystallization step (C) (endo-trimethylenenorbornane/adamantane) is 0.25 or lower.
    • 在生产金刚​​烷的工业上有利的方法是高效率地生产高纯度金刚烷,降低了损失。 用于通过异亚丙基降冰片烷生产金刚烷的方法包括(A)使原料异构化的反应步骤,(B)浓缩所得液体反应混合物中所含金刚烷的浓缩步骤,(C)结晶步骤 沉淀浓缩金刚烷,(D)从结晶得到的浆料中分离金刚烷结晶的固液分离步骤,(E)洗涤分离的金刚烷结晶的洗涤步骤,和(F)干燥步骤 金刚烷晶体洗涤,其特征在于,待进行结晶步骤(C)(内 - 三亚甲基降冰片烷/金刚烷)的材料中含有的内 - 三亚甲基降冰片烷与金刚烷的质量比为0.25以下。