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    • 1. 发明专利
    • Volatile cracked component collection and recovery device, liquid chromatograph and volatile cracked component analysis method
    • 挥发性破碎组件收集和恢复装置,液相色谱和挥发性破碎组分分析方法
    • JP2014182037A
    • 2014-09-29
    • JP2013057391
    • 2013-03-19
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所Nagoya Institute Of Technology国立大学法人 名古屋工業大学
    • ITO HIROSHIIWAI KOICHIROOTANI HAJIMEKITAGAWA SHINYAIIKUNI YOSHINORIKUNO MINORU
    • G01N1/22G01N30/06G01N30/88
    • PROBLEM TO BE SOLVED: To provide a volatile cracked component collection and recovery device capable of analyzing almost all volatile cracked components by liquid chromatograph, including volatile cracked components difficult to analyze by conventional gas chromatograph (GC).SOLUTION: The volatile cracked component collection and recovery device of the present invention includes: a sample holder for holding a sample in a flow path of carrier gas; heating means for heating the sample held by the sample holder; a guide and adhesion tube having an upper opening part attachable to/detachable from a downstream end of the sample holder, an extending part extending from the upper opening part, and a lower opening part existing at a downstream side of the extending part, for guiding the volatile cracked components from the upper opening part to the lower opening part, or making the volatile cracked components adhere to an inner wall; and a switching valve capable of switching positions between a first position where the upper opening part of the guide and adhesion tube is attached to the downstream end of the sample holder, and a second position where the upper opening part of the guide and adhesion tube is detached from the downstream end of the sample holder and solvent is supplied into the guide and adhesion tube.
    • 要解决的问题:提供一种能够通过液相色谱分析几乎所有挥发性裂纹组分的挥发性裂解组分收集和回收装置,包括常规气相色谱(GC)难以分析的挥发性裂解组分。解决方案:挥发性裂化组分收集和 本发明的回收装置包括:用于将样品保持在载气流动路径中的样品保持器; 用于加热由样品架保持的样品的加热装置; 引导和粘附管,其具有可从样品保持器的下游端附接/拆卸的上部开口部,从上部开口部延伸的延伸部和存在于延伸部的下游侧的下部开口部, 从上部开口部到下部开口部的挥发性裂纹成分,或使挥发性裂纹成分附着在内壁上; 以及切换阀,其能够在引导件的上部开口部和粘附管的第一位置与样品保持器的下游端连接的第一位置和引导和粘附管的上部开口部的第二位置 从样品保持器的下游端分离并将溶剂供应到引导和粘附管中。
    • 4. 发明专利
    • Column for liquid chromatography, and preparation method for the same
    • 液相色谱柱及其制备方法
    • JP2011117950A
    • 2011-06-16
    • JP2010240429
    • 2010-10-27
    • Nagoya Institute Of Technology国立大学法人 名古屋工業大学
    • KITAGAWA SHINYAHIRANO TOMOHIKO
    • G01N30/88G01N30/50
    • PROBLEM TO BE SOLVED: To provide a column for liquid chromatography and its preparation method which can attain low channel resistance and full separation performance.
      SOLUTION: In the method, an organic monolith column is prepared by photopolymerization for a period of 100-240 seconds, at light intensity of 100-250 mW/cm
      2 under a low temperature range of -30 to 0°C. After the photopolymerization, the column is cleaned with methanol, so that "fragile" portion of column center is destroyed, and a huge through-hole is formed inside the column. As a result, as shown in (b) and (c) of Fig., a winding huge through-hole is formed at the center, allowing preparation of the column for liquid chromatography with a monolithic structure formed around the huge through-hole.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供可以获得低通道阻力和完全分离性能的液相色谱柱及其制备方法。 解决方案:在该方法中,通过光聚合制备有机整料柱,时间为100-240秒,光强度为100-250mW / cm 2,在低温范围内 -30至0℃。 光聚合后,柱子用甲醇清洗,柱中心的“易碎”部分被破坏,柱内形成一个巨大的通孔。 结果,如图所示(b)和(c)所示,在中心形成有一个绕组的巨大的通孔,从而可以在形成在巨大通孔周围的整体结构的液相色谱柱上制备。 版权所有(C)2011,JPO&INPIT