Logo 知识与财富的链接
从荧光粉废料中提取稀土工艺研究

从荧光粉废料中提取稀土工艺研究

ISSN:1007-7545
2012年第10期
稀贵金属
杨幼明    邓声华    谢芳浩    蓝桥发    沈文明    黄振华 YANG You-ming , DENG Sheng-hua , XIE Fang-hao , LAN Qiao-fa , SHEN Wen-ming , HUANG Zheng-hua
江西理工大学冶金与化学工程学院,江西理工大学冶金与化学工程学院,江西理工大学冶金与化学工程学院,江西理工大学冶金与化学工程学院,江西理工大学冶金与化学工程学院,江西理工大学冶金与化学工程学院 Jiangxi University of Science and Technology,,,,,

采用4种方案从荧光粉废料中提取稀土元素,并考查了盐酸法提取稀土时盐酸和双氧水用量对稀土浸出率的影响,随后采用碳酸钠焙烧法提取渣中较难浸出的铈、铽,最后采用中和法对酸浸出液进行除杂。结果表明,100g物料盐酸最佳用量为150mL,双氧水用量为20mL,钇、铕浸出率可达99%。经碳酸钠焙烧—盐酸浸出后铽浸出率达到55%,除杂后铁、硅、铝含量分别降至11.47mg/L、15.93mg/L和150mg/L。

Rare earths (RE) were recovered from fluorescent powder scrap with four schemes, the effects of hydrochloric acid and hydrogen peroxide dosage on the leaching rate of RE were studied. Then Ce and Tb was extracted from waste residue with sodium carbonate roasting process, at last the leaching solution was edulcorated with neutralization process. The results show that the leaching rate of Y and Eu can reach 99% with the optimum dosage of hydrochloric acid of 150 mL and hydrogen peroxide of 20 mL for 100 g materials. The leaching rate of Tb can reach 55% after sodium carbonate roasting; Fe, Si and Al are reduced to 11.47 mg/L, 15.93 mg/L and 0.15 g/L after edulcorating.

关键词: 荧光粉废料稀土酸浸碱焙烧回收
认领
收 藏
点 赞
认领进度
0 %

发表评论

ISSN:1007-7545
2012年第10期
稀贵金属

用户信息设置