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基于撞击流微反应器连续制备纳米ZnO及其光催化性能研究
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作者 桑朋涛 赵倩 李镇江 《青岛科技大学学报(自然科学版)》 CAS 北大核心 2013年第5期452-456,共5页
以Zn(NO3)2、Na2CO3为原材料,采用自制撞击流微反应器连续制备出纳米ZnO,系统研究了反应温度、反应物浓度、进料速率等工艺条件对所制备纳米ZnO光催化性能的影响,采用SEM、XRD等测试手段对制备产物的物相及微观形貌进行了表征。结果表明... 以Zn(NO3)2、Na2CO3为原材料,采用自制撞击流微反应器连续制备出纳米ZnO,系统研究了反应温度、反应物浓度、进料速率等工艺条件对所制备纳米ZnO光催化性能的影响,采用SEM、XRD等测试手段对制备产物的物相及微观形貌进行了表征。结果表明,采用撞击流微器可实现纳米ZnO的连续高效制备,其光催化性能随着反应温度和进料速率的增大而升高,随着反应物浓度的增大先提高后降低。当反应温度为80℃,反应物浓度为0.3mol·L-1,Na2CO3溶液的进料速率为350mL·min-1、Zn(NO3)2溶液的进料速率为291mL·min-1时,可制得平均粒径为20.1nm,粒径分布较均匀的纳米ZnO。以其为光催化剂,在100W高压汞灯照射下降解甲基橙(MO)40min,其降解率可达到93.9%,表现出良好的光催化性能。 展开更多
关键词 撞击流微反应器 ZNO纳米材料 光催化活性
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Micromixing in the Submerged Circulative Impinging Stream Reactor 被引量:20
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作者 伍沅 肖杨 周玉新 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2003年第4期420-425,共6页
Micromixing in the submerged circulative impinging stream reactor (SCISR) developed by the authors is investigated with the Bourne's reaction scheme. The values measured for the impinging velocity, u0, under the ... Micromixing in the submerged circulative impinging stream reactor (SCISR) developed by the authors is investigated with the Bourne's reaction scheme. The values measured for the impinging velocity, u0, under the conditions of SCISR normal operation, only is of the order of 0.1m·s^-1, are much slower than that inferred,suggesting low power requirement for operation. The values of the characteristic time constant for micromixing,tM, determined in the impinging velocity range of 0.184m·s^-1 < u0 < 0.326m·s^-1 are ranged from 192ms to 87 ms, showing that impinging streams promotes micromixing very efficiently. The data follow approximately the relationship of tM∝ u0^-1.5. A comparative study shows that the micromixing performance of SCISR is much better than that of the traditional stirred tank reactor. The tM values predicted with the existing theoretical model are systematically longer than those measured by about 2--3 times, implying that the regularity of impinging streams promoting micromixing is unclear yet. 展开更多
关键词 MICROMIXING impinging streams REACTOR
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