[1] 吴霆, 李金惠, 李永红. 废旧计算机CRT监视器的管理和资源化技术. 环境污染治理技术与设备,2003, 4(11): 86-91 Wu. T., Li. J. H., Li. Y. H. Management and technique for resource recovery of waste CRT monitors. Techniques and Equipment for Environmental Pollution Control, 2003, 4(11): 86-91(in Chinese)
[2] 李金惠, 温雪峰. 电子废物处理技术. 北京: 中国环境科学出版社, 2006
[3] Yang. J. X., Lu. B., Xu. C. WEEE flow and mitigating measures in China. Waste Management, 2008, 28(9): 1589-1597
[4] Xu. Q., Li. G. M., He. W. Z., et al. Cathode ray tube (CRT) recycling: Current capabilities in China and research progress. Waste Management, 2012, 32(8): 1566-1574
[5] Williams. E., Kahhat. R., Allenby. B., et al. Environmental, social, and economic implications of global reuse and recycling of personal computers. Environmental Science & Technology, 2008, 42(17): 6446-6454
[6] 李金惠, 苑文仪, 刘丽丽. 废CRT玻璃处置方案研究. 中技社2010年环境与能源研讨会, 台北, 2010 Li J. H., Yuan W. Y., Liu L. L. Research on the disposal of waste CRT glass. CTCI Foundation Energy Resource and Environment, Taipei, 2010(in Chinese)
[7] Sasai R., Kubo H., Kamiya M., et al. Development of an eco-friendly material recycling process for spent lead glass using a mechanochemical process and Na2EDTA reagent. Environmental Science & Technology, 2008, 42(11): 4159-4164
[8] ICER (Industrial Council for Electronic Equipment Recycling). Material recovery from waste cathode-ray tubes (CRTs). In: Creating Markets for Recycled Resources, Waste and Resource Action Program (WRAP). Oxon, United Kingdom,2004
[9] Chen M. J., Zhang F. S., Zhu J. X. Lead recovery and the feasibility of foam glass production from funnel glass of dismantled cathode ray tube through pyrovacuum process. Journal of Hazardous Materials, 2009, 161(2-3):1109-1113
[10] Wang Y., Zhu J. Preparation of lead oxide nanoparticles from cathode ray tube funnel glass by self-propagating method. Journal of Hazardous Materials, 2012, 215-216: 90-97
[11] Miyoshi H., Chen D., Akai T. A novel process utilizing subcritical water to remove lead from wasted lead silicate glass. Chemistry Letters, 2004, 33(8): 956-957
[12] Saterlay A., Wilkins S., Compton R. Towards greener disposal of waste cathode ray tubes via ultrasonically enhanced lead leaching. Green Chemistry, 2001, 3(4): 149-155
[13] 胡彪, 汤桂兰, 孟辰晨, 等. 一种用废含铅玻璃制取水玻璃并分离含铅化合物的方法. 中国发明专利, 201210339982.8, 2012-12-19
[14] 田英良, 梁新辉, 孙诗兵. 一种从废弃CRT玻璃中提取铅的方法. 中国发明专利, 201010554511.X, 2011-05-11
[15] Okada T., Yonezawa S. Energy-efficient modification of reduction-melting for lead recovery from cathode ray tube funnel glass. Waste Management, 2013, 33(8): 1758-1763
[16] Yuan W. Y., Li J. H., Zhang Q. W., et al. Innovated application of mechanical activation to separate lead from scrap cathode ray tube funnel glass. Environmental Science & Technology, 2012, 46(7): 4109-4114
[17] Yuan W. Y., Li J. H., Zhang Q. W., et al. Lead recovery from cathode ray tube funnel glass with mechanical activation. Journal of the Air & Waste Management Association, 2013, 63(1): 2-10
[18] 马荣骏. 湿法冶金原理. 北京: 冶金工业出版社, 2007
[19] 莫鼎成. 冶金动力学. 长沙: 中南工业大学出版社, 1987