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[1]韩文静,张晓光.电镀污泥中镍的提取回收利用研究进展[J].电镀与精饰,2022,(11):100-106.[doi:10.3969/j.issn.1001-3849.2022.11.018]
 HAN Wenjing,ZHANG Xiaoguang.Research Progress on Extraction and Recycling of Nickel from Electroplating Sludge[J].Plating & Finishing,2022,(11):100-106.[doi:10.3969/j.issn.1001-3849.2022.11.018]
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电镀污泥中镍的提取回收利用研究进展

参考文献/References:



[1] 高天锐 , 蓝卓越 , 吕晋芳 , 等 . 电镀污泥中有价金属综合回收技术研究现状 [J]. 电镀与精饰 , 2021, 43(11): 42-47.

[2] 易龙生 , 冯泽平 , 汪洲 , 等 . 电镀污泥资源化处理技术综述 [J]. 电镀与精饰 , 2014, 36(12): 16-20.

[3] 彭桂群 , 敖子强 . 电镀污泥处理技术的研究进展 [J]. 电镀与环保 , 2018, 38(5): 56-58.

[4] 赵晶磊 , 王岱 , 杨占昆 . 电镀污泥的资源化利用技术及实例研究 [J]. 中国资源综合利用 , 2019, 37(3): 96-98.

[5] Ellis R J, Neish B, Trett M W, et al. Comparison of microbial and meiofaunal community analyses for determining impact of heavy metal contamination[J]. Journal of Microbiological Methods, 2001, 45(3): 171-185.

[6] Zhang J, Zhang J, Xu Y, et al. Efficient selective catalytic reduction of NO by novel carbon-doped metal catalysts made from electroplating sludge[J]. Environmental Science & Technology, 2014, 48: 11497-11503.

[7] 吴长淋 . 电镀污泥的性质及资源化研究进展 [J]. 资源节约与环保 , 2018, (4): 94+123.

[8] Chen Q, Zhang L, Ke Y, et al. Influence of carbonation on the acid neutralization capacity of cements and cement-solidified/stabilized electroplating sludge[J]. Chemosphere, 2009, 74 (6): 758-764.

[9] Li H, Yang X, Xu W, et al. Application of dry composite electroplating sludge into preparation of cement-based decorative mortar as green pigment[J]. Clean Production, 2014, 66: 101-106.

[10] Ballesteros F, Manila A A, Choi A E S, et al. Electroplatin sludge handling by solidification/stabilization process: a comprehensive assessment using kaolinite clay, waste latex paint and calcium chloride cement additives[J]. Journal of Material Cycles and Waste Management, 2019, 21(6): 1505-1517.

[11] 廖昌华 , 孙水裕 , 张志 . 焚烧温度对电镀污泥后续处理影响研究 [J]. 再生资源与循环经济 , 2002, (5): 34-36.

[12] 党晓娥 , 周雪 , 吕军 , 等 . 鳌合电镀污泥的基本理化特性及燃烧特性 [J]. 环境科学学报 , 2015, 35(11): 3762-3768.

[13] 李志 . 电镀污泥中铜镍浸出条件的选取及 PtCuNi 合金电极的制备与电氧化性能研究 [D]. 杭州 : 浙江工业大学 , 2018.

[14] 张焕然 . 氨法回收电镀污泥中铜、镍的工艺研究 [D]. 赣州 : 江西理工大学 , 2013.

[15] Zhang M, Chen C, Mao L, et al. Use of electroplating sludge in production of fired clay bricks: Characterization and environmental risk evaluation[J]. Construction & Building Materials, 2018, 159: 27-36.

[16] Hou Z Y, Liu T B, Tahir M U, et al. Facile conversion of nickel-containing electroplating sludge into nickel-based multilevel nano-material for high-performance pseudocapacitors[J]. Applied Surface Science, 2021, 538: 147978.

[17] 彭明明 . 电镀污泥中铜、镍回收工艺现状 [J]. 电镀与涂饰 , 2015, 34(8): 458-461.

[18] 俞杰翔 , 付培敏 , 刘伟 , 等 . 电镀污泥中铜镍锌元素的检测 [J] . 电镀与精饰 , 2014, 36(12): 31-33, 40.

[19] 查丽娜 , 李金花 , 周保学 , 等 . 电镀铬 (Ⅵ) 废水离子交换处理与资源化利用的研究进展 [J]. 材料保护 , 2021, 54(10): 123-126.

[20] 林玮 , 袁子洲 . Fe-Si-B 非晶雾化粉末去除 Cd(Ⅱ) 的机理研究 [J]. 材料保护 , 2021, 54(9): 148-152.

[21] 杨金辉 , 雷增江 , 杨斌 , 等 . 烟末生物质对 Pb(Ⅱ) 的吸附性能研究 [J]. 材料保护 , 2020, 53(7): 162-167, 176.

[22] Peng G L, Deng S B, Feng L, et al. Superhigh adsorption of nickel from electroplating wastewater by raw and calcined electroplating sludge waste[J]. Journal of Cleaner Production, 2020, 246: 118948.

[23] Xia Y X, Meng F L, Zhong L V, et al. Develop spinel structure and quantify phase transformation for nickel stabilization in electroplating sludge[J]. Waste Management, 2021, 131: 286-293.

[24] Roy A, Stegemann J A. Nickel speciation in cement-stabilized/solidified metal treatment filtercakes[J]. Hazard Mater. 2017, 321: 353-361.

[25] Zheng J, Lyu J, Liu W, et al. Selective recovery of Cr from electroplating nanosludge via crystal modification and dilute acid leaching[J]. Environmental Science Nano, 2020, 7: 1593-1601.

[26] 龚方旭 . 电镀污泥中回收镍的工艺优化研究 [D]. 合肥 : 合肥学院 , 2021.

[27] Wu C B, Li B S, Yuan C F, et al. Recycling valuable metals from spent lithium-ion batteries by ammonium sulfite-reduction ammonia leaching[J]. Waste Management, 2019, 93: 153-161.

[28] Pathak A, Dastidar M G, Sreekrishnan T R. Bioleaching of heavy metals from sewage sludge: A review[J]. Journal of Environmental Management, 2009, 90(8): 2343-2353.

[29] Marchenko W, Demchenko V, Pshinko G. Bioleaching of heavy metals from sewage sludge with recirculation of the liquid phase: a mass balance model[J] .Chemical Engineering Journal, 2018, 350: 429-435.

[30] Zhou W B, Zhang J, Peng J, et al. Cleaner utilization of electroplating sludge by bioleaching with a moderately thermophilic consortium: A pilot study[J]. Chemosphere, 2019, 232: 345-355.

[31] Sarah J, Mohammed A, Hassan Nour, et al. Removal of nickel through sulfide precipitation and characterization of electroplating wastewater sludge[J]. Water Quality Research Journal, 2020, 55(4): 345-357.

[32] Weng C Z, Sun X, Han B, et al. Targeted conversion of Ni in electroplating sludge to nickel ferrite nanomaterial with stable lithium storage performance[J]. Journal of Hazardous Materials, 2020, 393: 122296.

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备注/Memo

收稿日期: 2022-04-28 修回日期: 2022-05-10 作者简介: 韩文静( 1985 —),女,硕士,副教授, email : hanwenjing19850122@126.com 。 基金项目: 2021 年度河南省高等学校重点科研项目资助计划( 21A880017 )?/html>

更新日期/Last Update: 2022-11-12