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机构地区:[1]陕西省石油化工研究设计院,陕西西安710054 [2]中国石油庆阳石化分公司工程技术处,甘肃庆阳745115
出 处:《应用化工》2008年第9期1035-1038,1042,共5页Applied Chemical Industry
摘 要:用1-丁烯炭沉积法修饰碳分子筛的孔结构。考察了炭沉积的位置、浓度、温度、沉积时间和活性组分对沉积效果的影响。结果表明,当1-丁烯浓度为31.8%,沉积温度为993 K,沉积时间为10 min,炭沉积量合适时,空气变压吸附(PSA)N2浓度可达85.6%;对浸Ni(Ni载持量5%)样,炭沉积主要发生在接近外表面的中孔和大孔中,不容易导致孔的堵塞,Ni的加入起到了提高炭沉积选择性的作用,(PSA)N2浓度可达91.0%。FT-IR、XRD、in-situTG/DTA测试表明,经炭沉积修饰后的碳分子筛具有微孔分布独特的骨架网络结构。The pore of carbon molecular sieve was positively modified by 1-butene chemical deposition. The chemical deposition was affected by deposition sites, concentration, temperature and active components. When 1-butene concentration 31.8%, deposition temperature 993 K and deposition time 10 rain and carbon loading to obtain the requirement of pore modification. The PSA N2 concentration would be up to 85.6%. Carbon deposition for impregnated nickel (5%)sample is mainly on mesopore and macropore walls, the nicke added improved selectivity of carbon deposition. The PSA N2 concentration would be up to 91.0%. b-T-m, XRD, in-situ TG/DTA analysis indicated that the modified carbon molecular sieve has unique microporous structure.
关 键 词:热炭沉积 催化炭沉积 空气变压吸附(PAS)N2浓度 孔结构修饰
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