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铅锌尾矿绿色建材化最新研究进展
The Latest Research Progress of Green Building Materials in Lead and Zinc Tailings

DOI: 10.12677/MEng.2018.62009, PP. 59-65

Keywords: 铅锌尾矿,绿色建筑材料,强度,防辐射,重金属固化
Lead-Zinc Tailings
, Green Building Materials, Strength, Radiation Protection, Heavy Metal Curing

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Abstract:

对近几年国内外科研人员利用铅锌尾矿制备绿色建筑材料进行分析。从利用铅锌尾矿制备地聚物、发泡陶瓷进行主要论述;并简单介绍了铅锌尾矿基建筑材料的重金属固化及防辐射能力;研究结果表明:铅锌尾矿基绿色建筑材料具有高强、重金属固化以及防辐射等性能。最后对铅锌尾矿在建筑材料领域的应用进行了分析与前景展望,为后期在该领域探索的科研工作者提供理论依据。
In recent years, domestic and foreign researchers have used lead and zinc tailings to prepare green building materials for analysis. The preparation of geopolymers and foamed ceramics from lead-zinc tailings is discussed; and the reduction of heavy metal solidification and radiation pro-tection of lead-zinc tailings-based building materials is introduced. Research indicates that the lead-zinc tailings-based green building materials have high strength, heavy metal curing and radi-ation protection. Finally, the application and prospect of lead-zinc tailings in the field of building materials are analyzed, which provides a theoretical basis for the researchers in the field.

References

[1]  梁雅雅, 易筱筠, 党志, 等. 铅锌尾矿库对周围环境重金属污染风险评价指标的建立及方法[J]. 生态学杂志, 2018, 37(6): 1772-1780.
[2]  Zhao, Z.W., Shen, M., Zhan, F.D., et al. (2016) Heavy Metal Pollution and Accumulation in Maize Grown in Arable Soils Located near a Lead and Zinc Slag Heap in Yunnan, Southwest China. International Journal of Environment and Pollution, 59, 97.
https://doi.org/10.1504/IJEP.2016.10000734
[3]  汤波. 陕南铅锌尾矿区土壤重金属污染特征及来源分析[J]. 江苏农业科学, 2018, 46(18): 271-275.
[4]  高国龙, 张望, 周连碧, 许亚丽, 陈霏云, 巫秋萍, 等. 纳米CeO2对铅锌尾矿中重金属离子溶出特性影响的研究[J]. 功能材料, 2017, 48(2): 2135-2139.
[5]  贾冬琴, 柯平. 面向数学素养的高校图书馆数字服务系统研究[C]//中国图书馆学会. 中国图书馆学会年会论文集: 2011年卷. 北京: 国家图书馆出版社, 2011: 45-52.
[6]  黄雷, 张时伟, 任重, 等. 不同材料对铅锌尾矿重金属浸出毒性影响[J]. 环境保护与循环经济, 2016, 36(8): 38-42.
[7]  Nouairi, J., Hajjaji, W., Costa, C.S., et al. (2018) Study of Zn-Pb Ore Tailings and Their Potential in Cement Technology. Journal of African Earth Sciences, 139, 165-172.
https://doi.org/10.1016/j.jafrearsci.2017.11.004
[8]  范定强, 水中和, 余睿, 等. 铅锌尾矿回收制备环保型超高性能混凝土研究[J]. 硅酸盐通报, 2018, 37(7): 2231-2236.
[9]  石振武, 薛群虎. 国内铅锌尾矿建材化研究进展[J]. 硅酸盐通报, 2018, 37(2): 508-512.
[10]  Pan, Z., Zhang, J. and Liu, W. (2015) Solidification/Stabilization of Zinc-Lead Tailings by Alkali Activated Slag Cement. Journal of Wuhan University of Technology—Materials Science Edition, 30, 105-108.
https://doi.org/10.1007/s11595-015-1109-6
[11]  罗浩, 刘鸣明, 刘文白, 等. 粉煤灰基地聚物材料的早期强度及其微观结构[J]. 化工新型材料, 2018, 46(10): 149-151+155.
[12]  Colangelo, F., Cioffi, R., Roviello, G., et al. (2017) Thermal Cycling Stability of Fly Ash Based Geopolymer Mortars. Composites Part B: Engineering, 129, 11-17.
https://doi.org/10.1016/j.compositesb.2017.06.029
[13]  张海燕, 祁术亮, 曹亮. 地聚物净浆、砂浆和混凝土高温后力学性能比较[J]. 防灾减灾工程学报, 2015, 35(1): 11-16.
[14]  胡洁. 碱激发胶凝材料的耐腐蚀性及固化Pb2+的研究[D]: [硕士学位论文]. 郑州: 郑州大学, 2009.
[15]  Aiken, T.A., Kwasny, J., Sha, W. and Soutsos, M.N. (2018) Effect of Slag Content and Activator Dosage on the Resistance of Fly Ash Geopolymer Binders to Sulfuric Acid Attack. Cement and Concrete Research, 111, 23-40.
https://doi.org/10.1016/j.cemconres.2018.06.011
[16]  Montes, C., Broussard, K., Gongre, M., et al. (2015) Eval-uation of Lunar Regolith Geopolymer Binder as a Radioactive Shielding Material for Space Exploration Applications. Advances Space in Research, 56, 1212-1221.
https://doi.org/10.1016/j.asr.2015.05.044
[17]  Guo, X., Zhang, L., Huang, J. and Shi, H. (2017) Detoxification and Solidification of Heavy Metal of Chromium Using Fly Ash-Based Geopolymer with Chemical Agents. Construction and Building Materials, 151, 394-404.
https://doi.org/10.1016/j.conbuildmat.2017.05.199
[18]  廖希雯, 陈杰, 范天凤, 等. 地质聚合物固化稳定化重金属复合污染土壤[J]. 环境工程学报, 2018, 12(7): 2056-2065.
[19]  任鑫明, 马北越, 李世明, 等. 工业废渣制备多孔陶瓷的研究进展[J]. 耐火材料, 2018(5): 396-400.
[20]  魏婧婧. 赤泥质多孔陶瓷材料的制备及对重金属Cr(VI)吸附的研究[D]: [硕士学位论文]. 南宁: 广西大学, 2014.
[21]  李北星, 冯紫豪, 叶茂, 等. 原状铅锌尾矿制备地聚物的研究[J]. 混凝土, 2018(1): 68-71.
[22]  孙双月, 牛丽红, 王聪. 铅锌冶炼废渣和尾矿制备地聚合物的研究[J]. 中国矿业, 2015, 24(7): 48-52.
[23]  Li, S., Huang, X., Muhammad, F., et al. (2018) Waste Solidifica-tion/Stabilization of Lead-Zinc Slag by Utilizing Fly Ash Based Geopolymers. RSC Advances, 8, 32956-32965.
https://doi.org/10.1039/C8RA06634E
[24]  Davidovits, J. (1994) Geopolymers: Man-Made Rock Geosynthesis and the Resulting Development of Very Early High Strength Cement. Journal of Materials Education, 16, 91-139.
[25]  刘清, 唐卫兵, 招国栋. 碱浸铅锌渣地聚物的制备及其力学性能研究[J]. 硅酸盐通报, 2018, 37(8): 2650-2655.
[26]  孙双月, 蔡靖. 利用铅锌冶炼废渣制备碱激发胶凝材料的实验研究[J]. 广东化工, 2016, 43(5): 39-40.
[27]  孙双月. 利用冶炼渣制备地聚合物胶凝材料的正交试验研究[J]. 中国矿业, 2017, 26(3): 146-150.
[28]  郭斌. 铅锌冶炼渣制备微晶玻璃和地质聚合物及其铅镉固化机理[D]: [博士学位论文]. 北京: 北京科技大学, 2018.
[29]  叶芬, 车龙, 刘勇闯, 等. 发泡陶瓷的研究现状与展望[J]. 广州化工, 2017, 45(15): 9-10.
[30]  张留生, 邱永斌. 高温发泡陶瓷及其应用[J]. 新型建筑材料, 2005(5): 58-59.
[31]  罗学维, 陈益人, 赵皇, 等. 铝硅系固体废弃物制备发泡陶瓷保温板研究进展[C]//第七届尾矿与冶金渣综合利用技术研讨会暨招远市循环经济项目招商对接会.
[32]  罗学维, 石朝军, 陈上, 等. 电解锰渣制备轻质发泡陶瓷保温板工艺及性能研究[J]. 中国锰业, 2016, 34(6): 125-129.
[33]  Liu, T., Li, X., Guan, L., et al. (2016) Low-Cost and Environment-Friendly Ceramic Foams Made from Lead-Zinc Mine Tailings and Red Mud: Foaming Mechanism, Physical, Mechanical and Chemical Properties. Ceramics International, 42, 1733-1739.
https://doi.org/10.1016/j.ceramint.2015.09.131
[34]  Liu, T., Tang, Y., Li, Z., et al. (2016) Red Mud And Fly Ash Incorporation for Lightweight Foamed Ceramics Using Lead-Zinc Mine Tailings as Foaming Agent. Materials Letters, 183, 362-364.
https://doi.org/10.1016/j.matlet.2016.07.041
[35]  Liu, T., Tang, Y., Han, L., et al. (2017) Recycling of Harmful Waste Lead-Zinc Mine Tailings and Fly Ash for Preparation of Inorganic Porous Ceramics. Ceramics International, 43, 4910-4918.
https://doi.org/10.1016/j.ceramint.2016.12.142
[36]  丁庆军, 王承, 刘勇强, 等. 烧成制度对电镀渣泥防辐射功能集料性能的影响[J]. 建筑材料学报, 2017, 20(6): 887-893.
[37]  周喜艳. 利用铅锌尾矿作掺料制备水泥研究[D]: [硕士学位论文]. 长沙: 中南大学, 2013.
[38]  张志海. 利用铅锌尾矿作为水泥掺料的应用研究[D]: [硕士学位论文]. 北京: 北京化工大学, 2015.
[39]  何哲祥, 肖祈春, 周喜艳, 等. 铅锌尾矿制备水泥熟料及重金属固化特性[J]. 中南大学学报(自然科学版), 2015, 46(10): 3961-3968.
[40]  高锦城, 倪文, 于淼, 等. 以铅锌尾矿为原料煅烧水泥熟料[J]. 金属矿山, 2017(3): 192-196.
[41]  胡志敏. 碱浸铅锌渣粉胶砂的制备及其性能研究[D]: [硕士学位论文]. 衡阳: 南华大学, 2016.
[42]  Wang, X., Yu, R., Shui, Z., et al. (2018) Development of a Novel Cleaner Construction Product: Ultra-High Performance Concrete Incorporating Lead-Zinc Tailings. Journal of Cleaner Pro-duction, 196, 172-182.
https://doi.org/10.1016/j.jclepro.2018.06.058
[43]  李冲, 许亚丽, 于岩, 等. 铅锌尾矿免烧吸附砖的制备与研究[J]. 材料科学与工艺, 2016, 24(4): 46-51.
[44]  Zhang, D., Shi, S., Wang, C., et al. (2015) Preparation of Cementi-tious Material Using Smelting Slag and Tailings and the Solidification and Leaching of Pb2+. Advances in Materials Science and Engineering, 2015, Article ID: 352567.
https://doi.org/10.1155/2015/352567
[45]  熊俊, 宋涛. 防辐射材料的研究进展[J]. 中国组织工程研究与临床康复, 2010, 14(12): 2209-2212.
[46]  杨文峰, 刘颖, 杨林, 等. 辐射屏蔽材料的研究进展[J]. 材料导报, 2007, 21(5): 82-85.
[47]  伍崇明, 丁德馨, 丛成河, 等. 密度5.7 t/m3屏蔽γ射线混凝土试验研究[J]. 混凝土, 2007(7): 5-8.
[48]  Alwaeli, M. (2017) Investigation of Gamma Radiation Shielding and Compressive Strength Properties of Concrete Containing Scale and Granulated Lead-Zinc Slag Wastes. Journal of Cleaner Production, 166, 157-162.
https://doi.org/10.1016/j.jclepro.2017.07.203
[49]  Saca, N., Radu, L., Fugaru, V., et al. (2018) Composite Mate-rials with Primary Lead Slag Content: Application in Gamma Radiation Shielding and Waste Encapsulation Fields. Journal of Cleaner Production, 179, 255-265.
https://doi.org/10.1016/j.jclepro.2018.01.045
[50]  吴庆文, 陈西子, 陈艳蕾, 等. 铅锌尾矿制备防辐射混凝土的实验研究[J]. 陶瓷学报, 2018, 39(6): 769-775.

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