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SO_4^(2-)/Zr-SBA-15介孔材料的合成及其催化性能 被引量:5
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作者 焦卫勇 李福祥 +2 位作者 周梅梅 李瑞丰 谢克昌 《石油化工》 CAS CSCD 北大核心 2010年第6期620-624,共5页
在乙醇蒸气中以硝酸锆为原料,用浸渍晶化法合成了一系列Zr-SBA-15介孔分子筛,并采用XRD、N2吸附-脱附、元素分析和吡啶吸附红外光谱法对其进行了表征。表征结果显示,Zr-SBA-15分子筛孔道规整,ZrO2呈四方相,当n(Zr)∶n(Si)=1.34时,ZrO2... 在乙醇蒸气中以硝酸锆为原料,用浸渍晶化法合成了一系列Zr-SBA-15介孔分子筛,并采用XRD、N2吸附-脱附、元素分析和吡啶吸附红外光谱法对其进行了表征。表征结果显示,Zr-SBA-15分子筛孔道规整,ZrO2呈四方相,当n(Zr)∶n(Si)=1.34时,ZrO2质量分数达50.53%,比表面积为356m2/g。用硫酸浸渍Zr-SBA-15分子筛制得SO42-/Zr-SBA-15介孔固体超强酸,它同时具有L酸和B酸中心,且L酸量较大。以正戊烷异构化为探针反应评价了SO42-/Zr-SBA-15的催化活性,在35℃、SO42-/Zr-SBA-15(n(Zr)∶n(Si)=2.15)用量0.5g、正戊烷25μL的条件下反应3h,正戊烷转化率高达46.6%。 展开更多
关键词 浸渍晶化 介孔材料 固体超强酸 SO42-/Zr-SBA-15催 正戊烷异构
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Preparation of tetrapod-like ZnO whiskers from waste hot dipping zinc 被引量:1
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作者 陈艺锋 唐谟堂 +2 位作者 杨声海 张保平 杨建广 《Journal of Central South University of Technology》 EI 2004年第1期51-54,共4页
Large and uniform tetrapod-like ZnO whiskers (T-ZnO) were prepared from waste hot dipping zinc by vapor oxidation and examined by means of X-ray diffraction and ICP-AES analysis and scanning electron microscope. The... Large and uniform tetrapod-like ZnO whiskers (T-ZnO) were prepared from waste hot dipping zinc by vapor oxidation and examined by means of X-ray diffraction and ICP-AES analysis and scanning electron microscope. The products are pure hexagonal wurtzite crystals with tetrapod shape and edge size of center body 56 μm and needle length of 100130 μm. The size and shape of ZnO particles are fully controlled by the growth conditions and T-ZnO can be obtained only at 8501 000 ℃ and total gas flow rate ranging from 40 to 250 L·h-1 in which the size of the T-ZnO particles varies slightly with temperature. The process of the formation of T-ZnO is that T-ZnO may nucleate at the initial stage with a complete tetrapod shape and develop to the large size, but not the process of (preferential) growth of octahedral nuclei and subsequent growth of the needles. The experiment presents a new method to prepare T-ZnO economically by using the waste hot dipping zinc. 展开更多
关键词 waste hot dipping zinc tetrapod-like ZnO whisker PREPARATION crystal morphology
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