- Shimadzu岛津色谱柱MS-13X 80/100, 3.2*2.1mm*3.0M,3m*1/8
详细信息
品牌:Shimadzu 型号:,3m*1/8 加工定制:是 规格:3m*1/8 长度:3000 内径:2.1 膜厚:2.0 岛津:MS13X 氧:氮 一氧化碳:甲烷 二氧化碳:消毒剂 苯系物:甲缩醛
甲醇水蒸气重整制氢即甲醇和水在一定温度、压力和催化剂作用下转化生成 H2、CO2及少量 CO和 CH4的混合气体。甲醇水蒸气重整制氢具有反应温度低,产物中 H2含量高、CO 含量较甲醇分解制氢法低(体积分数小于2%) 等优点。
浩瀚色谱(山东)应用技术开发有限公司,研制的《岛津色谱柱MS-13X 80/100, 3.2*2.1mm*3.0M》,柱效高,分离好,可配套岛津各种型号的仪器GC7A,GC14C,GC2010,2014,2030使用,取得了不错的效果。
名称:岛津MS-13X填充柱
规格:3.2mm(OD)*2.1mm(ID)*3m,80-100Mesh
zui高使用温度:320°C
应用:岛津GC-7C,GC-14C,GC-2010,GC-2014,GC-2030
分离:氢(H2),氧(O2),氮(N2),一氧化碳(co),甲烷(CH4)
应用实例:
1.工业氢中氧+氩,氮的测定
2.高纯气体中微量氢,氧,氮,一氧化碳,甲烷的测定
3.空气中氧,氮的分离
4.环境空气中甲烷柱
5.固定污染源废气中甲烷的测定
6.变压器油溶解气体中氢,氧,氮,一氧化碳,甲烷的分离
With the gradual upgrading of refined oil quality, the demand for H2 continues to grow, while driving the continuous development of hydrogen production technology. The traditional hydrogen production processes mainly include natural gas hydrogen production, coal hydrogen production, and electrolysis of water hydrogen production.
Methanol steam reforming for hydrogen production refers to the conversion of methanol and water into a mixture of H2, CO2, and small amounts of CO and CH4 gases under certain temperature, pressure, and catalytic conditions. Methanol steam reforming for hydrogen production has the advantages of low reaction temperature, high H2 content in the product, and lower CO content (less than 2% by volume) compared to methanol decomposition for hydrogen production.
Haohan Chromatography (Shandong) Application Technology Development Co., Ltd. has developed the Shimadzu Chromatography Column MS-13X 80/100, 3.2 * 2.1mm * 3.0M, which has high column efficiency, good separation, and can be matched with various models of Shimadzu instruments GC7A, GC14C,GC2010, The use of 2014 and 2030 has achieved good results.
Name: Shimadzu MS-13X Filler Column
Specification: 3.2mm (OD) * 2.1mm (ID) * 3m, 80-100Mesh
Maximum operating temperature: 320 ° C
Application: Shimadzu GC-7C, GC-14C,GC-2010,GC-2014,GC-2030
Separation: Hydrogen (H2), Oxygen (O2), Nitrogen (N2), Carbon Monoxide (CO), Methane (CH4)
Application example:
1. Determination of oxygen, argon, and nitrogen in industrial hydrogen
2. Determination of trace amounts of hydrogen, oxygen, nitrogen, carbon monoxide, and methane in high-purity gases
3. Separation of oxygen and nitrogen in the air
4. Methane column in ambient air
5. Determination of methane in exhaust gas from fixed pollution sources
6. Separation of hydrogen, oxygen, nitrogen, carbon monoxide, and methane from dissolved gases in transformer oil
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