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Synthesis and Characterization of ZSM-5/β Co-Crystalline Zeolite
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作者 TianboZhao huiyingzhang +2 位作者 FengyanLi ChaoYang BaoningZong 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2005年第2期95-100,共6页
ZSM-5/β co-crystalline zeolites with different content of ZSM-5 have beensynthesized by adding different amount of ZSM-5 to the synthetic system of β zeolite with NaAlO_2,silica sol as the source of aluminum and sil... ZSM-5/β co-crystalline zeolites with different content of ZSM-5 have beensynthesized by adding different amount of ZSM-5 to the synthetic system of β zeolite with NaAlO_2,silica sol as the source of aluminum and silica, respectively, and TEA^+ as the template undercontrolled condition of the synthesis. The ZSM-5/β co-crystalline zeolite was studied by XRD, SEM,BET and NH_3-TPD. The reaction activity of toluene alkylation was investigated with a mixture oftoluene-methanol as the feedstock in a pulse micro-reactor over the ZSM-5/β co-crystalline zeolite.It is found that ZSM-5/β co-crystalline zeolite has two kinds of zeolite structure including ZSM-5and β zeolite, not in the form of a physical mixture. The pore structure of ZSM-5/βco-crystalline zeolites is different from that for β zeolite, ZSM-5 and their physical mixture. Inaddition, the peaks of both high and low temperature desorption of ammonia over the ZSM-5/βco-crystalline zeolite shift 23℃ to lower temperatures and the acid amount of its strong acid is 3%more than the physical mixture. So the ZSM-5/β co-crystalline zeolite produces the highest contentof xylene, which is 10.4% higher than the physical mixture. And the ZSM-5/β co-crystalline zeolitehas better selectivity for toluene alkylation and weaker de-methylation than β zeolite, ZSM-5 andtheir physical mixture. 展开更多
关键词 β zeolite ZSM-5 co-crystalline ZEOLITE SYNTHESIS CHARACTERIZATION
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Ultramicroscopic observation on the traumainduced neurodegeneration in the newborn rat brain
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作者 huiyingzhang ZhengruiHe +3 位作者 PingZhu JunGu WenchaoLiu LihuaCheng 《中国组织化学与细胞化学杂志》 CAS CSCD 2004年第3期400-400,共1页
关键词 超显微观察 外伤 新生大鼠 大脑 神经变性
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