欢迎登录材料期刊网

材料期刊网

高级检索

通过对3个进口含铜物料的固体废物鉴别,得到了进口含铜物料的固体废物鉴别方法,即含铜物料的固体废物鉴别通常包括3步:第1步,确定物料的自然属性,包括利用肉眼进行外观和杂质观察;利用X射线荧光光谱(XRF )进行半定量分析,确认物料的主要成分及其质量分数;利用X射线衍射仪(X RD )和矿相显微镜进行物相组成分析,得到物料的主要物相组成;对于极细粉末类含铜物料,还需要利用扫描电子显微镜(SEM )分析物料的微观形态和粒度分布。第2步,确定物料的产生来源,具体是指根据物料的外观特征和试验结果,通过资料对比、实地调研、专家咨询的方法,判断出物料的产生工艺,最终明确该物料是否有意识生产等信息。第3步,确定物料的固体废物属性,即根据《固体废物鉴别导则》(试行)得出物料的固体废物鉴别结论。在此所鉴别的3个含铜物料固体废物鉴别结论分别是铜冶炼过程中产生的铜渣、含铜电镀污泥、废黄杂铜冶炼中渣/烟灰/二级泥渣的混合物料,均属于我国禁止进口的固体废物。实验研究为进口含铜物料的固体废物鉴别和监管提供参考,对将铜渣、铜电镀污泥、含铜渣/灰/泥混合物料等固体废物堵在国门之外具有重要意义。

Based on the solid waste identification of three imported copper-containing materials ,the solid waste identification method of copper-containing materials was obtained .The solid waste identification of copper-containing materials usually consists of three steps .The first step was to determine the natural properties of the material ,including the use of the naked eye to observe the appearance and impurities . Semiquantitative analysis was performed using X-ray fluorescence spectrometry (XRF) to identify the main components and their mass fractions .The main phase composition of the material was obtained by means of X-ray diffraction (XRD ) and mineral phase microscope technology . T he scanning electron microscope (SEM ) was used to analyze the micro morphology and particle size distribution of the very fine powder copper-containing materials .The second step was to determine the origin of the material .According to the material appearance characteristic and the test results ,through the methods including the data comparison , the on-the-spot investigation and the expert consultation ,the production process of the material was judged .It could be identified that the material was produced conscious or not .The third step was to deter-mine the solid waste properties of the material .The solid waste identification conclusion was obtained ac-cording to the solid waste identification guide(Trial) .The results showed that the three imported copper-containing materials were the copper slag produced in the copper smelting process ,electroplating sludge , mixed material of slag/ash/secondary sludge from yellow copper scrap smelting process .The three copper-containing materials were all of nonimportation solid wastes .It would provide technical reference for su-pervising and identifying the solid waste property of imported copper-containing materials ,which had great significance for preventing the import of copper-containing solid waste of copper slag ,electroplating sludge ,mixed material of slag/ash/secondary sludge .

参考文献

[1] 周炳炎;贾晨夜;汪群慧.进口含铅物品的固体废物属性鉴别研究[J].环境科学研究,2009(1):89-94.
[2] 郝雅琼;周炳炎;王琪.进口粉末涂料物品的固体废物属性鉴别方法研究[J].环境污染与防治,2014(11):12-16.
[3] 李小莉;唐力君;黄进初.X射线荧光光谱熔融片法测定铜矿中的主次元素[J].冶金分析,2012(7):67-70.
[4] 史亚丹;陈天虎;李平;朱晓;杨燕.氮气气氛下黄铁矿热分解的矿物相变研究[J].高校地质学报,2015(4):577-583.
[5] 宋义;谷松海;孙鑫;武素茹.铜精矿与铜冶炼渣的物相鉴别[J].冶金分析,2015(3):25-31.
[6] 杜谷;王坤阳;冉敬;王风玉;潘忠习.红外光谱/扫描电镜等现代大型仪器岩石矿物鉴定技术及其应用[J].岩矿测试,2014(5):625-633.
[7] 赵凯;程相利;齐渊洪;高建军;师学峰.铜渣处理技术分析及综合利用新工艺[J].中国有色冶金,2012(1):56-60.
[8] 李磊;胡建杭;魏永刚;廖彬;邱在军.铜渣中铜的回收工艺及新技术[J].材料导报,2013(11):21-26.
[9] 叶海明;王静.含铜污泥中铜的资源化回收技术[J].化工技术与开发,2010(8):55-58.
[10] 杨振宁 .电镀污泥中铜镍回收工艺的研究[D].广西大学,2008.
[11] 严丽君;黎彬;左君;杨秀琴;程跃;朱俊虹.印刷线路板含铜污泥中有价金属铜的回收[J].上海大学学报(自然科学版),2010(5):403-406.
[12] 刘承先.含铜污泥中铜的回收及污泥无害化处理[J].辽宁化工,2001(06):248-249.
[13] 陈永松;周少奇.电镀污泥的基本理化特性研究[J].中国资源综合利用,2007(5):2-6.
[14] 侯新刚;张琰;张霞.从铜转炉烟灰中浸出铜、锌试验研究[J].湿法冶金,2011(1):57-59.
[15] 王巍;黄松涛;杨丽梅;徐政;李岩.废杂铜冶炼渣性质与浸出试验结果分析研究[J].稀有金属,2013(6):968-975.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%