Characterization of ionic liquids removing heavy metals from electroplating sludge: Influencing factors, optimisation strategies and reaction mechanisms.
暂无分享,去创建一个
Shirong Zhang | Xiaoxun Xu | Zhanbiao Yang | Wei-yu Zhou | Ting Li | Guiyin Wang | Yulin Pu | Junzhuo Cai | Guochun Lv | F. Li | Zhang Cheng | Changlian Xu | Chencheng Cao | Xiaofan Li | Zhien Pu
[1] Yaoxing Liu,et al. Nickel recovery from electroplating sludge via bipolar membrane electrodialysis. , 2023, Journal of colloid and interface science.
[2] F. Deng,et al. Experimental study on the redistribution law of heavy metals in sludge disintegration. , 2022, Journal of environmental management.
[3] Xueming Liu,et al. One-step extraction of CuCl2 from Cu-Ni mixed electroplating sludge by chlorination-mineralization surface-interface phase change modulation , 2022, Surfaces and Interfaces.
[4] M. A. Gilani,et al. Nonlinear optical (NLO) response of boron phosphide nanosheet by alkali metals doping: A DFT study , 2022, Materials Science in Semiconductor Processing.
[5] A. Arab,et al. Decomposition of formic acid via carboxyl mechanism on the graphene nanosheet decorated by Cr, Mn, Fe, Co, Ni, Pd, Ag, and Cd metals: A DFT study , 2022, International Journal of Hydrogen Energy.
[6] Xintai Su,et al. Facile Synthesis of Cr-Doped Ferrite Catalyst from Cr-Containing Electroplating Sludge with Activated Persulfate for Efficient Degradation of Tetracycline , 2022, SSRN Electronic Journal.
[7] Prashant Singh,et al. Spectroscopic and DFT study of imidazolium based ionic liquids with broad spectrum antibacterial drug levofloxacin. , 2022, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[8] Bo Zhang,et al. Removal behavior and mechanism of AAEMs and Fe in Zhundong coal under acidic ionic liquid system , 2022, Fuel.
[9] Manhong Huang,et al. Treating waste with waste: Metals recovery from electroplating sludge using spent cathode carbon combustion dust and copper refining slag. , 2022, The Science of the total environment.
[10] Zhonghe Han,et al. Application of quadratic regression orthogonal design to optimization surface heating for control wet steam condensation flow in nozzle , 2022, Case Studies in Thermal Engineering.
[11] G. Rzepa,et al. Adsorptive removal of fluoride using ionic liquid-functionalized chitosan - Equilibrium and mechanism studies. , 2022, International journal of biological macromolecules.
[12] Shuhe Wei,et al. Co-high-efficiency washing agents for simultaneous removal of Cd, Pb and As from smelting soil with risk assessment. , 2022, Chemosphere.
[13] Simeng Li,et al. Removal of heavy metals from sewage sludge by chemical leaching with biodegradable chelator methyl glycine diacetic acid. , 2022, Chemosphere.
[14] B. Xin,et al. Indirect bioleaching recovery of valuable metals from electroplating sludge and optimization of various parameters using response surface methodology (RSM). , 2022, Journal of environmental management.
[15] A. Kannan,et al. A DFT study on Ca-Alginate interactions with divalent transition metals , 2022, Materials Today: Proceedings.
[16] Shoaib Muhammad,et al. Selective extraction of heavy metals (Fe, Co, Ni) from their aqueous mixtures by Task-Specific salicylate functionalized imidazolium based ionic liquid , 2022, Journal of Cleaner Production.
[17] Ziyu Zhao,et al. Soil washing by biodegradable GLDA and PASP: Effects on metals removal efficiency, distribution, leachability, bioaccessibility, environmental risk and soil properties , 2022, Process Safety and Environmental Protection.
[18] T. Raab,et al. Using modified Tessier sequential extraction to specify potentially toxic metals at a former sewage farm. , 2021, Journal of environmental management.
[19] P. Show,et al. A critical review on various remediation approaches for heavy metal contaminants removal from contaminated soils. , 2021, Chemosphere.
[20] G. Qian,et al. Recycling electroplating sludge as a monolithic catalyst for effective catalytic purification of volatile organic compounds. , 2021, Journal of environmental management.
[21] Xi-yuan Xiao,et al. Cleanup of arsenic, cadmium, and lead in the soil from a smelting site using N,N-bis(carboxymethyl)-L-glutamic acid combined with ascorbic acid: A lab-scale experiment. , 2021, Journal of environmental management.
[22] Z. Gusiatin,et al. A holistic approach to remediation of soil contaminated with Cu, Pb and Zn with sewage sludge-derived washing agents and synthetic chelator , 2021 .
[23] Wang Hua,et al. Co-treatment of electroplating sludge, copper slag, and spent cathode carbon for recovering and solidifying heavy metals. , 2021, Journal of hazardous materials.
[24] Shirong Zhang,et al. Removal of heavy metals from abandoned smelter contaminated soil with poly-phosphonic acid: Two-objective optimization based on washing efficiency and risk assessment , 2021 .
[25] Ni Guanhua,et al. Microstructure characteristics of lignite under the synergistic effect of oxidizing acid and ionic liquid [Bmim][Cl] , 2021, Fuel.
[26] Hongbo Zhou,et al. Bioleaching of Copper-Containing Electroplating Sludge. , 2021, Journal of environmental management.
[27] P. Thai,et al. Removal of lead and other toxic metals in heavily contaminated soil using biodegradable chelators: GLDA, citric acid and ascorbic acid. , 2021, Chemosphere.
[28] G. Wang,et al. Effect of Imidazole-Based Ionic Liquids on the Pore Wetting Characteristics and Mechanical Properties of Coal , 2021, SSRN Electronic Journal.
[29] Z. M. Magriotis,et al. Treatment, reuse, leaching characteristics and genotoxicity evaluation of electroplating sludge. , 2020, Journal of environmental management.
[30] Md. Abul Hossain,et al. DFT and QTAIM investigations of the adsorption of chlormethine anticancer drug on the exterior surface of pristine and transition metal functionalized boron nitride fullerene , 2020 .
[31] Gang Yu,et al. Calcined electroplating sludge as a novel bifunctional material for removing Ni(II)-citrate in electroplating wastewater , 2020 .
[32] Hai-juan Wang,et al. Effect of soil washing on heavy metal removal and soil quality: A two-sided coin. , 2020, Ecotoxicology and environmental safety.
[33] A. Łukomska,et al. Liquid-liquid extraction of cobalt(II) and zinc(II) from aqueous solutions using novel ionic liquids as an extractants , 2020 .
[34] Sarwar Muhammad Tariq,et al. Comparative investigation on copper leaching efficiency from waste mobile phones using various types of ionic liquids , 2020 .
[35] Xiaohong Zhang,et al. Remediation of heavy metal contaminated soil by biodegradable chelator-induced washing: Efficiencies and mechanisms. , 2020, Environmental research.
[36] Zhang Lin,et al. Targeted conversion of Ni in electroplating sludge to nickel ferrite nanomaterial with stable lithium storage performance. , 2020, Journal of hazardous materials.
[37] Wei Zhou,et al. Removal of heavy metals from industrial sludge with new plant-based washing agents. , 2020, Chemosphere.
[38] L. Tian,et al. Separation and Extraction of Valuable Metals from Electroplating Sludge by Carbothermal Reduction and Low-Carbon Reduction Refining , 2020, JOM.
[39] M. Z. Hashmi,et al. Stabilization/solidification of chromium-bearing electroplating sludge with alkali-activated slag binders. , 2020, Chemosphere.
[40] Yanzong Zhang,et al. Soil washing remediation of heavy metal from contaminated soil with EDTMP and PAA: Properties, optimization, and risk assessment. , 2020, Journal of hazardous materials.
[41] A. Parhami,et al. Novel SO3H-functionalized polyoxometalate-based ionic liquids as highly efficient catalysts for esterification reaction , 2019, Journal of Molecular Structure.
[42] S. Naz,et al. Acidic ionic liquids: Promising and cost-effective solvents for processing of lignocellulosic biomass , 2019, Journal of Molecular Liquids.
[43] Z. Rengel,et al. Citric acid decreased and humic acid increased Zn sorption in soils , 2019, Geoderma.
[44] G. Zeng,et al. Humic substances from green waste compost: An effective washing agent for heavy metal (Cd, Ni) removal from contaminated sediments. , 2019, Journal of hazardous materials.
[45] Yue-hua Hu,et al. Cr(III) and Fe(II) recovery from the polymetallic leach solution of electroplating sludge by Cr(III)-Fe(III) coprecipitation on maghemite , 2019, Hydrometallurgy.
[46] Hao Zhang,et al. Pretreatment of lignite by acidic bronsted ionic liquid [B(SO3H)mim]OTf for lignite pyrolysis , 2019, Fuel.
[47] S. Hait,et al. Chelating extraction of metals from e-waste using diethylene triamine pentaacetic acid , 2019, Process Safety and Environmental Protection.
[48] M. Hodson,et al. Investigating the use of synthetic humic-like acid as a soil washing treatment for metal contaminated soil. , 2019, The Science of the total environment.
[49] Dongxia Wu,et al. Molecular weight effect on PAA antiscale performance in LT-MED desalination system: Static experiment and MD simulation , 2018, Desalination.
[50] Yanzong Zhang,et al. Effect of soil washing with biodegradable chelators on the toxicity of residual metals and soil biological properties. , 2018, The Science of the total environment.
[51] Xiaolong Wang,et al. Influence of hydrogen bond accepting ability of anions on the adsorption performance of ionic liquid surface molecularly imprinted polymers. , 2018, Journal of chromatography. A.
[52] A. Berthod,et al. Recent advances on ionic liquid uses in separation techniques. , 2017, Journal of chromatography. A.
[53] Yanzong Zhang,et al. Enhancing the soil heavy metals removal efficiency by adding HPMA and PBTCA along with plant washing agents. , 2017, Journal of hazardous materials.
[54] Chao Lu,et al. Extractive decontamination of cesium-containing soil using a biodegradable aminopolycarboxylate chelator , 2017 .
[55] Shirong Zhang,et al. Removal of Pb, Zn, and Cd from contaminated soil by new washing agent from plant material , 2017, Environmental Science and Pollution Research.
[56] Xingwei Wang,et al. Removal of arsenic and cadmium with sequential soil washing techniques using Na2EDTA, oxalic and phosphoric acid: Optimization conditions, removal effectiveness and ecological risks. , 2016, Chemosphere.
[57] Shing‐Jong Huang,et al. Transesterification of soybean oil to biodiesel by tin-based Brønsted-Lewis acidic ionic liquid catalysts , 2016, Korean Journal of Chemical Engineering.
[58] Chang-Ping Yu,et al. Heavy metal removal from sludge with organic chelators: Comparative study of N, N-bis(carboxymethyl) glutamic acid and citric acid. , 2016, Journal of environmental management.
[59] K. Nam,et al. Effect of different soil washing solutions on bioavailability of residual arsenic in soils and soil properties. , 2015, Chemosphere.
[60] X. Yan,et al. Heavy metal chemical extraction from industrial and municipal mixed sludge by ultrasound-assisted citric acid , 2015 .
[61] Oladele A Ogunseitan,et al. Comparative study on copper leaching from waste printed circuit boards by typical ionic liquid acids. , 2015, Waste management.
[62] K. Baek,et al. Enhanced reductive extraction of arsenic from contaminated soils by a combination of dithionite and oxalate. , 2015, Journal of hazardous materials.
[63] Mengjun Chen,et al. Leaching behavior of copper from waste printed circuit boards with Brønsted acidic ionic liquid. , 2014, Waste management.
[64] A. Ouadi,et al. Kinetics of metal extraction in ionic liquids: Eu3+/HNO3//TODGA/[C1C4im][Tf2N] as a case study , 2013 .
[65] Stefan Grimme,et al. Effect of the damping function in dispersion corrected density functional theory , 2011, J. Comput. Chem..
[66] J. Labrincha,et al. Leaching behaviour of a galvanic sludge in sulphuric acid and ammoniacal media. , 2005, Journal of hazardous materials.
[67] R. P. Swatloski,et al. Task-specific ionic liquids for the extraction of metal ions from aqueous solutions , 2001 .
[68] A. Becke. Density-functional thermochemistry. III. The role of exact exchange , 1993 .
[69] Michael Dolg,et al. Energy‐adjusted ab initio pseudopotentials for the first row transition elements , 1987 .
[70] A. D. McLean,et al. Contracted Gaussian basis sets for molecular calculations. I. Second row atoms, Z=11–18 , 1980 .
[71] J. Pople,et al. Self‐consistent molecular orbital methods. XX. A basis set for correlated wave functions , 1980 .
[72] A. Tessier,et al. Sequential extraction procedure for the speciation of particulate trace metals , 1979 .