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纳米X-型沸石制备及其对含铅废水处理试验 被引量:11
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作者 施平平 刘金泉 +1 位作者 王银叶 毕飞 《化学工业与工程》 CAS 2005年第3期182-186,共5页
用水热合成法合成了纳米级X 型沸石分子筛,并采用透射电镜(TEM)和X 射线衍射(XRD)进行了表征。研究了纳米X 型沸石分子筛对Pb(Ⅱ)的吸附。考察了纳米X 沸石分子筛用量、pH值、吸附时间和温度对Pb(Ⅱ)的吸附去除的影响。结果表明,在50mL... 用水热合成法合成了纳米级X 型沸石分子筛,并采用透射电镜(TEM)和X 射线衍射(XRD)进行了表征。研究了纳米X 型沸石分子筛对Pb(Ⅱ)的吸附。考察了纳米X 沸石分子筛用量、pH值、吸附时间和温度对Pb(Ⅱ)的吸附去除的影响。结果表明,在50mL质量浓度为25mg L的含铅水样中,投加0 03g纳米X 型沸石分子筛用量在pH约为4 0,温度为20℃,吸附时间为5min,去除率达到99 52%。最大吸附量可达150mg g以上。采用1mol L的HCl能较完全洗脱纳米级X 型沸石分子筛所吸附的Pb(Ⅱ)。表明纳米级X 型沸石分子筛能循环使用,可应用于含铅废水的处理。 展开更多
关键词 水热合成法 纳米X-型沸石分子筛 制备 铅离子 吸附
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纳米X型沸石制备及其对含铜废水处理 被引量:8
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作者 施平平 王银叶 《安全与环境学报》 CAS CSCD 2004年第1期80-83,共4页
采用水热合成法以煅烧高岭土为原料合成了纳米级 X型沸石分子筛 ,并采用透射电镜 (TEM)和 X射线衍射 (XRD)进行了表征。研究了影响纳米 X型沸石分子筛对 Cu(II)吸附的因素 ,包括纳米 X型沸石分子筛用量、p H值、接触时间和温度。结果表... 采用水热合成法以煅烧高岭土为原料合成了纳米级 X型沸石分子筛 ,并采用透射电镜 (TEM)和 X射线衍射 (XRD)进行了表征。研究了影响纳米 X型沸石分子筛对 Cu(II)吸附的因素 ,包括纳米 X型沸石分子筛用量、p H值、接触时间和温度。结果表明 :投加 0 .4g纳米 X沸石分子筛 ,在 p H为 5.0、温度为 2 5℃、吸附时间为 1 0 min情况下 ,去除率达到 99.65% ,最大吸附量可达 1 0 1 .4mg/ g。采用0 .5 mol/ L的 Na2 EDTA能较完全洗脱纳米级 X型沸石分子筛所吸附的 Cu(II) ,表明纳米级 X型沸石分子筛能循环使用 ,可应用于含铜废水的处理。 展开更多
关键词 环境工程 水热合成法 X型沸石 制备 铜离子 吸附
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Selective Adsorption Properties and Stable Solidification of Cs by Insoluble Ferrocyanide Loaded Zeolites
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作者 Yuki Ikarashi Rana Syed Masud +4 位作者 Tomonori Nakai Hitoshi Mimura Eiji Ishizaki M inoru Matsukura Yoshinobu Hosoi 《Journal of Energy and Power Engineering》 2014年第3期461-469,共9页
In Fukushima NPP-1, large amounts of HALW (high-activity-level water) accumulated in the reactor, turbine building and the trench in the facility is treated by circulating injection cooling system. The development o... In Fukushima NPP-1, large amounts of HALW (high-activity-level water) accumulated in the reactor, turbine building and the trench in the facility is treated by circulating injection cooling system. The development of highly functional adsorbents and stable solidification method contributes to the advancement of the decontamination system and environmental remediation. The present study deals with: (1) preparation of insoluble ferrocyanide loaded zeolites; (2) selective uptake of Cs~ in seawater; and (3) estimation of Cs immobilization ratio and stable solidification. Various kinds of Cs-selective composites loaded with insoluble ferrocyanides (CoFC, NiFC) into the zeolites (zeolite A (A51, A-51J), zeolite X (LSX), chabazite (modified chabazite) and natural mordenite (SA-5)) matrices have been prepared to use successive impregnation/precipitation methods by Tohoku University. As for Cs~ adsorption, these composites had relatively large uptake (%) over 95%, distribution coefficients (Kd) above 103 cm3/g and excellent adsorption kinetics even in seawater. The immobilization ratio (%) of Cs for the CoFC saturated with Cs+was estimated at different calcination temperatures up to 1,200 ℃ in advance. The immobilization ratio was less than 0.1% above 1,000℃, indicating that the adsorbed Cs~ ions are completely volatilized and insoluble ferrocyanides had no immobilization ability for Cs. In contrast, the insoluble ferrocyanide-loaded zeolites had excellent Cs immobilization ability; in the case of insoluble ferrocyanide-loaded natural zeolites (NiFC-SA-5, CoFC-modified chabazite), the immobilization ratio was above 99% and 96% even after calcination at 1,000 ℃ and 1,100 ℃, respectively, indicating that nearly all Cs ions are immobilized in the sintered solid form. On the other hand, the immobilization ratio for the insoluble ferrocyanide-loaded A and X zeolites (NiFC-A (A51, A51J), NiFC-X) tended to decrease with calcining temperature; for example, the immobilization ratio for NiFC-X at 1,000 ℃and 1,100 ℃ was estimated to be 74.9% and 55.4%, respectively, and many spots concentrating Cs were observed on the surface. The difference in immobilization behavior between natural zeolites and synthetic ones is probably due to the phase transformation and surface morphology at higher temperature above 1,000 ℃. The stable solidification of insoluble ferrocyanides was thus accomplished by using the excellent Cs immobilization abilities of zeolite matrices (Cs trapping and self-sintering abilities). 展开更多
关键词 CS Sr Zeolites HALW (high-activity-level water) insoluble ferrocyanides stable solidification.
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