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第一步离子交换时间对化学钢化玻璃的性能影响 被引量:6
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作者 宋培煜 马强 +3 位作者 庞欢欣 李玉辉 何峰 谢峻林 《硅酸盐通报》 CAS CSCD 北大核心 2016年第6期1790-1794,共5页
本文主要研究化学钢化玻璃中第一步离子交换的时间对化学钢化玻璃的性能影响。制备出不同的离子交换时间的化学钢化玻璃。分析第一步交换时间对钢化玻璃的弯曲强度、Weibull模数、表面应力大小、深度以及K+离子扩散所产生的影响。结果表... 本文主要研究化学钢化玻璃中第一步离子交换的时间对化学钢化玻璃的性能影响。制备出不同的离子交换时间的化学钢化玻璃。分析第一步交换时间对钢化玻璃的弯曲强度、Weibull模数、表面应力大小、深度以及K+离子扩散所产生的影响。结果表明:随着第一步离子交换时间的延长,弯曲强度逐渐降低,Weibull先升高后降低,在40h时达到最高值;表面应力大小会随着时间的延长而降低,应力深度会增加;K+离子扩散曲线符合菲克第二定律的拟合曲线。扩散深度随着时间增加而增加,并且会在玻璃内部产生富集峰。 展开更多
关键词 化学钢化 离子交换时间 韦伯模数 表面应力 离子扩散
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离子交换工艺对化学钢化玻璃性能的影响 被引量:3
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作者 刘锡宇 何峰 +4 位作者 陈七 张树岩 张卓恒 谢峻林 宋培煜 《玻璃》 2018年第11期7-12,共6页
使用两步离子交换工艺制备两步离子交换玻璃。研究第二步离子交换时间对化学钢化玻璃的性能影响。第一步离子交换温度450℃,时间30 h;第二步离子交换温度400℃,第二步离子交换时间分别为18 min、33 min、48 min、63 min。通过对化学钢... 使用两步离子交换工艺制备两步离子交换玻璃。研究第二步离子交换时间对化学钢化玻璃的性能影响。第一步离子交换温度450℃,时间30 h;第二步离子交换温度400℃,第二步离子交换时间分别为18 min、33 min、48 min、63 min。通过对化学钢化玻璃进行抗折强度测试,显微硬度测试,Weibull模量计算,电子探针测试来分析第二步离子交换时间的延长对化学钢化玻璃所产生的影响。结果表明:第二步离子交换时间的延长会使得化学钢化玻璃的机械性能先升高后降低,在33 min处出现最大值;Weibull模量亦为33 min处最大;时间的延长使得K^+离子最高峰位置逐渐向玻璃内部推移。交换时间33 min时,可形成较为尖锐的最高峰,提高Weibull模量。第二步离子交换最佳时间应为33 min。 展开更多
关键词 两步离子交换 离子交换时间 韦伯模数 离子扩散
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Deep removal of copper from cobalt sulfate electrolyte by ion-exchange 被引量:1
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作者 温俊杰 张启修 +1 位作者 张贵清 曹左英 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第8期1534-1540,共7页
SP-C was applied for the removal of Cu^2+ from simulated cobalt sulfate electrolyte containing Co2+ 50 g/L and Cu2+ 0.5-2.0 g/L. Experimental conditions included pH of 2-4, temperature of 20-60℃ and contact time o... SP-C was applied for the removal of Cu^2+ from simulated cobalt sulfate electrolyte containing Co2+ 50 g/L and Cu2+ 0.5-2.0 g/L. Experimental conditions included pH of 2-4, temperature of 20-60℃ and contact time of 10-40 min. The investigation demonstrated that SP-C had recommendable efficiency in adsorbing Cu2+ from the electrolyte with 25- to 100-fold of Co2+ The optimal adsorption conditions of SP-C were pH of 4, contact time of 30 min and ambient temperature. The study also showed that the loaded resin could be effectively eluted with 2.0 mol/L H2SO4 solution at a contact time of 40 min; the peak concentration of Cu2+ in the eluate was about 35 g/L. The sorption characteristics of Cu2+ by SP-C could be described by Langrnuir isotherm and the pseudo second-order kinetic equation. Infrared spectra showed that nitrogen atoms in the functional group coordinated with Cu2+ to form coordination bands. 展开更多
关键词 cobalt sulfate electrolyte removal of copper chelating resin ion exchange
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Enrichment of Cd^(2+) from water with a calcium alginate hydrogel filtration membrane 被引量:2
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作者 ZHAO YuJie ZHAO KongYin +5 位作者 LI Ye LIU Liang ZHANG XinXin LI JinGang CHEN Min WANG XiaoLei 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第3期438-445,共8页
A new method was developed for effective enrichment of Cd2+ ions from water with a calcium alginate(CaAlg) hydrogel filtration membrane. First, the CaAlg hydrogel filtration membrane was prepared without a pore-formin... A new method was developed for effective enrichment of Cd2+ ions from water with a calcium alginate(CaAlg) hydrogel filtration membrane. First, the CaAlg hydrogel filtration membrane was prepared without a pore-forming agent. This membrane was used to remove Cd^(2+) via ion exchange with Ca^(2+), and the Cd^(2+) was preserved in the CaAlg hydrogel. Then, the CaAlg hydrogel containing Cd^(2+) was soaked in a sodium citrate solution, and the hydrogel was fully dissolved. The removal rate of the CaAlg filtration membrane reached almost 100% within 120 min when the Cd^(2+) concentration was under 1 mg/L. Factors affecting the removal rate were investigated, such as NaAlg concentration, operating pressure, operating time and the initial concentration of Cd^(2+). The effects of initial Cd^(2+) concentration, pressure and filtration time on the enrichment factor were also investigated. The results show that the enrichment factor reached 87.3 when the pressure was 0.18 MPa and the filtration time was 240 min. Different enrichment factors could be achieved by adjusting the operating pressure and filtration time. 展开更多
关键词 calcium alginate hydrogel filtration membrane Cd^(2+) ion removal enrichment
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