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PUBMED FOR HANDHELDS

Journal Abstract Search


124 related items for PubMed ID: 38043422

  • 1. A novel method for effective solidifying chromium and preparing crude stainless steel from multi-metallic electroplating sludge.
    Heng W, Yong Y, Jianhang H, Hua W.
    J Hazard Mater; 2024 Mar 05; 465():133068. PubMed ID: 38043422
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  • 2. Treating waste with waste: Metals recovery from electroplating sludge using spent cathode carbon combustion dust and copper refining slag.
    Xiao Y, Li L, Huang M, Liu Y, Xu J, Xu Z, Lei Y.
    Sci Total Environ; 2022 Sep 10; 838(Pt 3):156453. PubMed ID: 35660588
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  • 3. Co-treatment of electroplating sludge, copper slag, and spent cathode carbon for recovering and solidifying heavy metals.
    Yong Y, Hua W, Jianhang H.
    J Hazard Mater; 2021 Sep 05; 417():126020. PubMed ID: 33992022
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  • 5. Stabilization/solidification of chromium-bearing electroplating sludge with alkali-activated slag binders.
    Chen H, Yuan H, Mao L, Hashmi MZ, Xu F, Tang X.
    Chemosphere; 2020 Feb 05; 240():124885. PubMed ID: 31568939
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  • 6. Recovery of valuable metals from electroplating sludge with reducing additives via vitrification.
    Huang R, Huang KL, Lin ZY, Wang JW, Lin C, Kuo YM.
    J Environ Manage; 2013 Nov 15; 129():586-92. PubMed ID: 24036091
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  • 7. Vitrification of chromium electroplating sludge.
    Li CT, Lee WJ, Huang KL, Fu SF, Lait YC.
    Environ Sci Technol; 2007 Apr 15; 41(8):2950-6. PubMed ID: 17533863
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  • 10. Transformation behavior of heavy metal during Co-thermal treatment of hazardous waste incineration fly ash and slag/electroplating sludge.
    Long Y, Song Y, Huang H, Yang Y, Shen D, Geng H, Ruan J, Gu F.
    J Environ Manage; 2024 Feb 15; 351():119730. PubMed ID: 38086123
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  • 13. Recovery of Ni matte from Ni-bearing electroplating sludge.
    Wang HY, Li Y, Jiao SQ, Chou KC, Zhang GH.
    J Environ Manage; 2023 Jan 15; 326(Pt A):116744. PubMed ID: 36375435
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  • 14. Indirect bioleaching recovery of valuable metals from electroplating sludge and optimization of various parameters using response surface methodology (RSM).
    Tian B, Cui Y, Qin Z, Wen L, Li Z, Chu H, Xin B.
    J Environ Manage; 2022 Jun 15; 312():114927. PubMed ID: 35358844
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  • 16. Selective metal cation concentration during the solidification of stainless steel EAF dust and slag mixtures from high temperatures for increased Cr recovery.
    Kim G, Sohn I.
    J Hazard Mater; 2018 Oct 05; 359():174-185. PubMed ID: 30029087
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  • 18. Efficient immobilization and utilization of chromite ore processing residue via hydrothermally constructing spinel phase Fe2+(Cr3+X, Fe3+2-x)O4 and its magnetic separation.
    Lan Y, Zhang L, Li X, Liu W, Su X, Lin Z.
    Sci Total Environ; 2022 Mar 20; 813():152637. PubMed ID: 34963612
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  • 20. Preparation of Black Ceramic Tiles Using Waste Copper Slag and Stainless Steel Slag of Electric Arc Furnace.
    Liu M, Ma G, Zhang X, Liu J, Wang Q.
    Materials (Basel); 2020 Feb 08; 13(3):. PubMed ID: 32046250
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