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如题,文章名:Removal of Lead From Cathode Ray Tube Funnel Glass By Generating The Sodium Silicate 作者: Biao Hu, Shuangshuang Zhao, Shuhao Zhang. 杂志:Journal of the Air & Waste Management Association,2015,65(1):106~114. |
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lazy锦溪
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6楼2015-09-08 20:09:43
lazy锦溪
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小双ssigg: 金币+20, ★★★很有帮助 2015-09-08 20:17:56
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Removal of lead from cathode ray tube funnel glass by generating the sodium silicate 作者:Hu, B (Hu, Biao)[ 1 ] ; Zhao, SS (Zhao, Shuangshuang)[ 1 ] ; Zhang, SH (Zhang, Shuhao)[ 1 ] JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION 卷: 65 期: 1 页: 106-114 DOI: 10.1080/10962247.2014.976721 出版年: 2015 查看期刊信息 摘要 In the disposal of electronic waste, cathode ray tube (CRT) funnel glass is an environmental problem of old television sets. Removal of the lead from CRT funnel glass can prevent its release into the environment and allow its reuse. In this research, we reference the dry progress productive technology of sodium silicate, the waste CRT glass was dealt with sodium silicate frit melted and sodium silicate frit dissolved. Adding a certain amount of Na2CO3 to the waste CRT glass bases on the material composition and content of it, then the specific modulus of sodium silicate frit is obtained by melting progress. The silicon, potassium and sodium compounds of the sodium silicate frit are dissolved under the conditions of high temperature and pressure by using water as solvent, which shows the tendency that different temperature, pressure, liquid-solid ratio and dissolving time have effect on the result of dissolving. At 175 degrees C(0.75MPa), liquid-solid ratio is 1.5:1, the dissolving time is 1h, the dissolution rate of sodium silicate frit is 44.725%. By using sodium sulfide to separate hydrolysis solution and to collect lead compounds in the solution, the recovery rate of lead in dissolving reached 100% and we can get clean sodium silicate and high purity of lead compounds. The method presented in this research can recycle not only the lead but also the sodium, potassium and other inorganic minerals in CRT glass and can obtain the comprehensive utilization of leaded glass. 关键词 KeyWords Plus:MECHANICAL ACTIVATION; CRT GLASS; RECOVERY; CERAMICS; DISPOSAL 作者信息 通讯作者地址: Hu, B (通讯作者) [显示增强组织信息的名称] Tianjin Univ Technol, Sch Environm Sci & Safety Engn, Tianjin 300384, Peoples R China. 地址: [显示增强组织信息的名称] [ 1 ] Tianjin Univ Technol, Sch Environm Sci & Safety Engn, Tianjin 300384, Peoples R China 电子邮件地址:hubiaomail@126.com 基金资助致谢 基金资助机构 授权号 Tianjin Science and Technology Support Program 14ZCDGSF00035 查看基金资助信息 出版商 TAYLOR & FRANCIS INC, 530 WALNUT STREET, STE 850, PHILADELPHIA, PA 19106 USA 类别 / 分类 研究方向:Engineering; Environmental Sciences & Ecology; Meteorology & Atmospheric Sciences Web of Science 类别:Engineering, Environmental; Environmental Sciences; Meteorology & Atmospheric Sciences 文献信息 文献类型:Article 语种:English 入藏号: WOS:000346647400011 PubMed ID: 25946963 ISSN: 1096-2247 eISSN: 2162-2906 期刊信息 目录: Current Contents Connect® Impact Factor (影响因子): Journal Citation Reports® 其他信息 IDS 号: AX0MX Web of Science 核心合集中的 "引用的参考文献": 26 Web of Science 核心合集中的 "被引频次": 0 |
2楼2015-09-08 19:53:12
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小双ssigg: 金币+20, ★★★很有帮助 2015-09-08 20:18:09
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Removal of lead from cathode ray tube funnel glass by generating the sodium silicate 作者:Hu, B (Hu, Biao)[ 1 ] ; Zhao, SS (Zhao, Shuangshuang)[ 1 ] ; Zhang, SH (Zhang, Shuhao)[ 1 ] JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION 卷: 65 期: 1 页: 106-114 DOI: 10.1080/10962247.2014.976721 出版年: 2015 查看期刊信息 摘要 In the disposal of electronic waste, cathode ray tube (CRT) funnel glass is an environmental problem of old television sets. Removal of the lead from CRT funnel glass can prevent its release into the environment and allow its reuse. In this research, we reference the dry progress productive technology of sodium silicate, the waste CRT glass was dealt with sodium silicate frit melted and sodium silicate frit dissolved. Adding a certain amount of Na2CO3 to the waste CRT glass bases on the material composition and content of it, then the specific modulus of sodium silicate frit is obtained by melting progress. The silicon, potassium and sodium compounds of the sodium silicate frit are dissolved under the conditions of high temperature and pressure by using water as solvent, which shows the tendency that different temperature, pressure, liquid-solid ratio and dissolving time have effect on the result of dissolving. At 175 degrees C(0.75MPa), liquid-solid ratio is 1.5:1, the dissolving time is 1h, the dissolution rate of sodium silicate frit is 44.725%. By using sodium sulfide to separate hydrolysis solution and to collect lead compounds in the solution, the recovery rate of lead in dissolving reached 100% and we can get clean sodium silicate and high purity of lead compounds. The method presented in this research can recycle not only the lead but also the sodium, potassium and other inorganic minerals in CRT glass and can obtain the comprehensive utilization of leaded glass. 关键词 KeyWords Plus:MECHANICAL ACTIVATION; CRT GLASS; RECOVERY; CERAMICS; DISPOSAL 作者信息 通讯作者地址: Hu, B (通讯作者) 显示增强组织信息的名称 Tianjin Univ Technol, Sch Environm Sci & Safety Engn, Tianjin 300384, Peoples R China. 地址: 显示增强组织信息的名称 [ 1 ] Tianjin Univ Technol, Sch Environm Sci & Safety Engn, Tianjin 300384, Peoples R China 电子邮件地址:hubiaomail@126.com 基金资助致谢 基金资助机构 授权号 Tianjin Science and Technology Support Program 14ZCDGSF00035 查看基金资助信息 出版商 TAYLOR & FRANCIS INC, 530 WALNUT STREET, STE 850, PHILADELPHIA, PA 19106 USA 类别 / 分类 研究方向:Engineering; Environmental Sciences & Ecology; Meteorology & Atmospheric Sciences Web of Science 类别:Engineering, Environmental; Environmental Sciences; Meteorology & Atmospheric Sciences 文献信息 文献类型:Article 语种:English 入藏号: WOS:000346647400011 PubMed ID: 25946963 ISSN: 1096-2247 eISSN: 2162-2906 期刊信息 Impact Factor (影响因子): Journal Citation Reports® 其他信息 IDS 号: AX0MX Web of Science 核心合集中的 "引用的参考文献": 26 Web of Science 核心合集中的 "被引频次": 0 引文网络 0 被引频次 26 引用的参考文献 查看 Related Records 查看引证关系图查看引证关系图 当有人引用此记录时接收电子邮件创建引文跟踪 (数据来自 Web of ScienceTM 核心合集) 全部被引频次计数 0 / 所有数据库 0 / Web of Science 核心合集 0 / BIOSIS Citation Index 0 / 中国科学引文数据库 0 / Data Citation Index 0 / SciELO Citation Index 此记录来自: Web of ScienceTM 核心合集 |

3楼2015-09-08 19:53:21
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4楼2015-09-08 19:53:29









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