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铜锌柱在环境分析中测定硝酸根的应用 被引量:1
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作者 汪洪武 冯长根 《理化检验(化学分册)》 CAS CSCD 北大核心 2004年第2期84-85,88,共3页
研究了用Cu Zn柱将微量NO-3还原为NH+4,奈斯勒试剂为显色剂,光度法间接测定NO-3的含量。常见离子无干扰,线性范围为0.1~5.3μg·ml-1。方法简单易行,用于水中NO-3的间接测定,结果满意。
关键词 环境分析 水分析 硝酸根 含量测定 铜-锌柱 光度法 铵离子 奈斯勒试剂
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Mass transfer process in replacement-column purification device in zinc hydrometallurgy 被引量:3
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作者 周萍 李冬梅 陈卓 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第8期2660-2664,共5页
It is important to remove the impurities, such as copper and cadmium, from leaching solution in zinc hydrometallurgy. To improve purification efficiency, a replacement-column purification device was proposed and its m... It is important to remove the impurities, such as copper and cadmium, from leaching solution in zinc hydrometallurgy. To improve purification efficiency, a replacement-column purification device was proposed and its mass transfer characteristics and purification efficiency were experimentally studied. The results show that purification efficiency increases with the decrease of the zinc powder diameter and decreases with the increase of solution velocity. If appropriate structure and operation parameters are used, it is possible to make purification efficiency more than 99%, but the diameter of zinc powder should be larger than 0.45 mm. For the velocity of 0.05-0.7 cm/s, mass transfer coefficient kc is in the range of 3.94×10-7-2.76×10-6 m/s, and increases with the decrease of zinc powder diameter and the increase of solution velocity. Moreover, it can be derived by mass transfer correlations of Sherwood number:Sh=0.1069Re0.5Sc0.33, for 0.3<Re<6. 展开更多
关键词 zinc hydrometallurgy purification of copper and cadmium replacement column mass transfer behavior
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