{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"黄金具有优良的导电性、延展性和低接触电阻,被广泛应用于电气电子产品的印刷线路板上.随着科技的发展,电气电子产品的市场需求量不断增大,其平均寿命伴随产品功能和外观设计的日益更新显著降低,导致大量的印刷线路板被废弃.在我国金矿资源如此紧张的情况下,从废弃印刷线路板中回收黄金受到广泛重视.文中阐述了废弃印刷线路板的构成特点及回收价值,并从废弃印刷线路板预处理、金属富集、金的浸出和浸出液中金的回收4方面详细介绍了黄金回收提取的整个过程中所涉及的多种主要技术.同时,文中从经济效益、环境影响和工业化可行性等方面对各种技术进行对比分析,指出各种回收处理技术的优势及存在的问题.表明未来的研究趋势是以最大程度降低二次污染为目标,将多种技术融合联用,在达到环境效益和降低处理成本的基础上,最大程度提高黄金的回收率和回收纯度;同时还需进一步开发新的处理设备,寻找更有效的处理手段,以促进我国废弃印刷线路板中黄金的回收利用.","authors":[{"authorName":"李瑞卿","id":"54fcd2f5-d442-4fea-95ae-07bf55f6112b","originalAuthorName":"李瑞卿"},{"authorName":"王维","id":"97f2d9e9-233c-4eee-825c-565dc8168e7d","originalAuthorName":"王维"},{"authorName":"吴玉锋","id":"7672f425-b800-4050-9fd2-aabc3b269b4b","originalAuthorName":"吴玉锋"},{"authorName":"","id":"179a8ea2-2058-461e-8049-e9754a4a4108","originalAuthorName":"章启军"}],"doi":"10.13373/j.cnki.cjrm.2014.03.025","fpage":"516","id":"43638232-d184-47cf-b44c-6cf003fa0754","issue":"3","journal":{"abbrevTitle":"XYJS","coverImgSrc":"journal/img/cover/XYJS.jpg","id":"67","issnPpub":"0258-7076","publisherId":"XYJS","title":"稀有金属"},"keywords":[{"id":"1d6d6e8e-da1d-4266-940d-5b1dbc1b3ae4","keyword":"废弃印刷线路板","originalKeyword":"废弃印刷线路板"},{"id":"2e5fc5ac-6d87-4032-a4e8-7e57ac2bc086","keyword":"黄金","originalKeyword":"黄金"},{"id":"e00ee961-1658-4d67-bad1-9f6c098df24b","keyword":"回收处理技术","originalKeyword":"回收处理技术"}],"language":"zh","publisherId":"xyjs201403025","title":"废弃印刷线路板中金的回收处理现状","volume":"38","year":"2014"},{"abstractinfo":"为了实现废弃CRT荧光粉中稀土元素的高效浸出,本实验采用高温碱熔加酸浸相结合的方法处理废弃CRT荧光粉,主要考察了煅烧温度、碱渣比及煅烧时间对稀土元素浸出率的影响.并采用X射线衍射仪、扫描电子显微镜和激光粒度分布仪对碱熔前后的物质进行物相、形貌和粒度表征.实验结果表明:废弃CRT荧光粉中所含稀土元素为Y和Eu,稀土氧化物含量高达26.79%,极具回收价值;在碱渣比为4∶1,煅烧温度为700℃,煅烧时间为30 min时能够有效破坏废弃CRT荧光粉物相组成,使稀土元素Y和Eu浸出率达到99.7%以上.","authors":[{"authorName":"吴玉锋","id":"cbf262f3-f13f-4f86-8f0c-6dc7682480a8","originalAuthorName":"吴玉锋"},{"authorName":"贾平平","id":"b639e69e-c345-4291-a303-8b0ddc1d51b8","originalAuthorName":"贾平平"},{"authorName":"王维","id":"3a99c273-809e-4ff2-84d5-952245b559b3","originalAuthorName":"王维"},{"authorName":"王宝磊","id":"bd47e56a-8176-4511-801b-47087057a2ef","originalAuthorName":"王宝磊"},{"authorName":"","id":"51f251a1-6c26-4cfd-bef6-48c60d736640","originalAuthorName":"章启军"}],"doi":"10.11785/S1000-4343.20130613","fpage":"723","id":"4e9f7f78-54ed-4871-a4bb-b626aba39e65","issue":"6","journal":{"abbrevTitle":"ZGXTXB","coverImgSrc":"journal/img/cover/ZGXTXB.jpg","id":"86","issnPpub":"1000-4343","publisherId":"ZGXTXB","title":"中国稀土学报"},"keywords":[{"id":"67c81775-bd8e-48ca-ad99-1948cc0ec267","keyword":"废弃CRT荧光粉","originalKeyword":"废弃CRT荧光粉"},{"id":"1166514d-bcc7-4de0-8f33-4b6ffe8d91b1","keyword":"高温碱熔","originalKeyword":"高温碱熔"},{"id":"f4191e1c-b1cc-48ad-a20b-0fac032074b1","keyword":"酸浸","originalKeyword":"酸浸"},{"id":"ffd3f3f7-1ec1-4e85-a2a0-1416b660b3e8","keyword":"稀土","originalKeyword":"稀土"}],"language":"zh","publisherId":"zgxtxb201306013","title":"从废弃CRT荧光粉中熔浸稀土元素的研究","volume":"31","year":"2013"},{"abstractinfo":"采用溶胶凝胶和溶剂热两步法,在玻璃基底上垂直生长Ag-TiO2纳米片薄膜.采用SEM、TEM、XRD、XPS等对样品进行表征,研究了不同前躯体浓度对Ag-TiO2纳米片生长的影响,并检测了Ag-TiO2纳米片薄膜的抗菌性能.结果表明,所获得的低银量掺杂改性的二氧化钛纳米片薄膜在紫外灯照射和黑暗条件下,对大肠杆菌和金黄色葡萄球菌均具有优异的抗菌性能.","authors":[{"authorName":"","id":"92db0fd4-deb6-4334-a293-21cde085b037","originalAuthorName":"章启军"},{"authorName":"孙承华","id":"e64391d0-4157-4e70-b80a-78af9a565b3a","originalAuthorName":"孙承华"},{"authorName":"严峻","id":"dce7fef6-2c9d-43e0-b95d-3c969f52300a","originalAuthorName":"严峻"},{"authorName":"胡秀杰","id":"4f1fdf12-0af7-427f-9e1b-45e1379fe157","originalAuthorName":"胡秀杰"},{"authorName":"周树云","id":"80bd7d2e-c16d-43ec-ae33-04ea0f698ca3","originalAuthorName":"周树云"},{"authorName":"陈萍","id":"816a87c0-1c08-4e44-8e02-9471f34538e5","originalAuthorName":"陈萍"}],"doi":"","fpage":"305","id":"fbbce70f-2947-4aa8-aa95-87121bdf1b79","issue":"4","journal":{"abbrevTitle":"YXKXYGHX","coverImgSrc":"journal/img/cover/YXKXYGHX.jpg","id":"74","issnPpub":"1674-0475","publisherId":"YXKXYGHX","title":"影像科学与光化学 "},"keywords":[{"id":"e190d213-0b4f-4c87-80ea-938e9b4e4cdc","keyword":"Ag-TiO2纳米片薄膜","originalKeyword":"Ag-TiO2纳米片薄膜"},{"id":"43b8a749-0041-4321-ba34-d790be09b488","keyword":"溶胶凝胶法","originalKeyword":"溶胶凝胶法"},{"id":"016238fb-12ee-44ed-ba21-71c0544b2935","keyword":"溶剂热法","originalKeyword":"溶剂热法"},{"id":"ff902406-b71f-40af-b384-dfaf12f15e9a","keyword":"抗菌性能","originalKeyword":"抗菌性能"}],"language":"zh","publisherId":"ggkxyghx201004009","title":"低银量掺杂TiO2纳米片薄膜的制备及其抗菌性能研究","volume":"28","year":"2010"},{"abstractinfo":"采用单一碱熔试剂(Na2O2)活化分解荧光粉废料,经水浸、碱分离、盐酸提取后,氨水分离、脱硅和草酸盐沉淀稀土,重量法测定废弃稀土荧光粉中稀土氧化物的总量.研究进行了加标回收率和精密度实验,回收率在99.60%~100.40%,被分析元素的测定范围为:10.00%~70.00%,相对标准偏差RSD< 1.00%.","authors":[{"authorName":"王宝磊","id":"b2a40b48-b6ac-4046-8328-edb27688bbf2","originalAuthorName":"王宝磊"},{"authorName":"吴玉锋","id":"5a692ca8-1b30-47aa-83ad-26858e9b3ed1","originalAuthorName":"吴玉锋"},{"authorName":"","id":"9dbeab72-db0b-4cd2-9406-0f3ec2506b70","originalAuthorName":"章启军"},{"authorName":"王维","id":"6c878bfc-5a19-4c48-97eb-bc960db83722","originalAuthorName":"王维"}],"doi":"10.16533/J.CNKI.15-1099/TF.201605015","fpage":"92","id":"9d1c915d-5ecd-4753-92cc-a9a257a02c75","issue":"5","journal":{"abbrevTitle":"XT","coverImgSrc":"journal/img/cover/XT.jpg","id":"65","issnPpub":"1004-0277","publisherId":"XT","title":"稀土"},"keywords":[{"id":"faa94a0e-8c0f-4526-a2be-baba3b542d10","keyword":"荧光粉废料","originalKeyword":"荧光粉废料"},{"id":"b2cd8287-ebdc-4f8d-97da-25036775b1ad","keyword":"稀土总量","originalKeyword":"稀土总量"},{"id":"f4f41296-f170-4615-99ea-e51030f0b35d","keyword":"草酸盐重量法","originalKeyword":"草酸盐重量法"}],"language":"zh","publisherId":"xitu201605015","title":"草酸盐重量法测定荧光粉废料中稀土氧化物的总量","volume":"37","year":"2016"},{"abstractinfo":"介绍由常规五酸草绿色钝化工艺改良的,以重铬酸钾为体系的镀锌绿色钝化工艺.","authors":[{"authorName":"奚兵","id":"d30c6c88-07a9-4e6e-af44-2c375b8e90b9","originalAuthorName":"奚兵"}],"doi":"10.3969/j.issn.1005-748X.2004.09.016","fpage":"414","id":"cc7eaf66-167b-4803-9d57-67270cc9a5ad","issue":"9","journal":{"abbrevTitle":"FSYFH","coverImgSrc":"journal/img/cover/FSYFH.jpg","id":"25","issnPpub":"1005-748X","publisherId":"FSYFH","title":"腐蚀与防护"},"keywords":[{"id":"e3c595f9-21b8-4923-8ae3-f792ba18b497","keyword":"镀锌层","originalKeyword":"镀锌层"},{"id":"f77f39f6-b5ef-41d8-a711-7ac5e012b3d9","keyword":"绿色钝化","originalKeyword":"军绿色钝化"},{"id":"13934250-e5bb-402b-9e7b-e423b23f73ac","keyword":"工艺配方","originalKeyword":"工艺配方"}],"language":"zh","publisherId":"fsyfh200409016","title":"镀锌层绿色钝化","volume":"25","year":"2004"},{"abstractinfo":"研究了空心玻璃微珠和纳米陶瓷材料等材料用量对绿色隔热降温涂料热性能的影响,通过对多种着色颜料及其复配体系反射率的研究,优选出反射率较好的几种颜料,用它们调制出的绿色降温涂料作为深色降温涂料具有较高的反射率,并且其他各项物理机械性能良好.","authors":[{"authorName":"杨万国","id":"793b0da8-8608-440c-8e4a-022dd055f4eb","originalAuthorName":"杨万国"},{"authorName":"董秀彩","id":"c43ae4eb-00bb-418f-b320-5597248b09df","originalAuthorName":"董秀彩"},{"authorName":"李少香","id":"dcb0977e-28d6-4c76-92aa-4941d1fcf746","originalAuthorName":"李少香"},{"authorName":"张波","id":"9ac8f00e-ce3c-4963-9180-da28371bfbb7","originalAuthorName":"张波"}],"doi":"10.3969/j.issn.0253-4312.2010.04.008","fpage":"29","id":"899a45e4-e10b-4ec0-8088-d856b2998bfc","issue":"4","journal":{"abbrevTitle":"TLGY","coverImgSrc":"journal/img/cover/TLGY.jpg","id":"61","issnPpub":"0253-4312","publisherId":"TLGY","title":"涂料工业 "},"keywords":[{"id":"a0184b87-3758-4313-aa44-baf3fbd7abb7","keyword":"隔热","originalKeyword":"隔热"},{"id":"455b948f-affd-4efb-9082-3660c20d295a","keyword":"降温","originalKeyword":"降温"},{"id":"a1e4b887-f4d5-406a-b78c-d7c59c2e08b4","keyword":"绿色","originalKeyword":"军绿色"},{"id":"003b9d48-62da-4ed4-95f7-161b35e61c27","keyword":"反射率","originalKeyword":"反射率"},{"id":"89cc8604-33de-4671-ae2f-194a480e52cd","keyword":"发射率","originalKeyword":"发射率"}],"language":"zh","publisherId":"tlgy201004008","title":"绿色隔热降温涂料的研究","volume":"40","year":"2010"},{"abstractinfo":"介绍了军用汽车哑光绿色面漆及其稀释剂的配制,着重探讨了军用汽车哑光绿色面漆的施工工艺,分析了热固性丙烯酸树脂、环氧树脂、氨基树脂和聚酯树脂,氨基比、消光粉、分散剂、防沉剂和稀释剂对军用汽车哑光绿色面漆性能的影响.结果表明,选用丁醚化三聚氰胺甲醛树脂作交联剂,氨基比为28.24:10.44时,面漆的综合性能最佳,满足技术指标要求.","authors":[{"authorName":"周荣华","id":"9d8fe359-a153-4ac2-9745-47ef67d9b2ab","originalAuthorName":"周荣华"}],"doi":"","fpage":"54","id":"34e64f8d-7730-4138-af97-e5f572db43d7","issue":"8","journal":{"abbrevTitle":"DDYTS","coverImgSrc":"journal/img/cover/DDYTS.jpg","id":"21","issnPpub":"1004-227X","publisherId":"DDYTS","title":"电镀与涂饰 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