Skip Navigation
Skip to contents

Journal of Microbiology : Journal of Microbiology

OPEN ACCESS
SEARCH
Search

Articles

Page Path
HOME > J. Microbiol > Volume 52(1); 2014 > Article
Review
MINIREVIEW] Microbial Leaching of Metals from Solid Industrial Wastes
Debaraj Mishra 1, Young Ha Rhee 2
Journal of Microbiology 2014;52(1):1-7.
DOI: https://doi.org/10.1007/s12275-014-3532-3
Published online: January 4, 2014
1Sungeel Hi-Tech Ltd., Incheon 404-250, Republic of Korea, 2Department of Microbiology and Molecular Biology, Chungnam National University, Daejeon 305-764, Republic of Korea1Sungeel Hi-Tech Ltd., Incheon 404-250, Republic of Korea, 2Department of Microbiology and Molecular Biology, Chungnam National University, Daejeon 305-764, Republic of Korea
Corresponding author:  Young Ha Rhee , Tel: +82-42-821-6413, 
Received: 14 October 2013   • Revised: 27 November 2013   • Accepted: 28 November 2013
next
  • 58 Views
  • 0 Download
  • 59 Crossref
  • 86 Scopus

Citations

Citations to this article as recorded by  Crossref logo
  • Recovery Approaches for Spent Batteries: A Review
    S. Pavithra, A. Sakunthala
    Prabha Materials Science Letters.2024; 3(2): 298.     CrossRef
  • Sequential biologically assisted extraction of Cu and Zn from printed circuit boards (PCB)
    Arevik Vardanyan, Narine Vardanyan, Nelli Abrahamyan, Mohamed Aatach, Stoyan Gaydardzhiev
    International Journal of Environmental Studies.2024; 81(4): 1756.     CrossRef
  • Remediation of heavy metals polluted soil environment: A critical review on biological approaches
    Xiaojun Zheng, Hongjun Lin, Daolin Du, Guanlin Li, Ohidul Alam, Zheng Cheng, Xinlin Liu, Shan Jiang, Jian Li
    Ecotoxicology and Environmental Safety.2024; 284: 116883.     CrossRef
  • Selective lithium extraction from spent lithium-ion batteries using siderophores produced by Pseudomonas aeruginosa: Efficacy, kinetics, and artificial neural network modeling
    Anusha Vishwakarma, Subrata Hait
    Process Biochemistry.2024; 146: 115.     CrossRef
  • A Mature Tool to Address New Challenges: Harnessing Coordination Chemistry for The Sustainable Copper Recovery from Industrial and E‐Waste in The Age of Energy Transition
    Pietro Ostellari, Silvia Gross
    European Journal of Inorganic Chemistry.2024;[Epub]     CrossRef
  • Effect of calcium lignosulfonate on surface modification and bioleaching of chalcopyrite
    Mengfei Liu, Jinglei Zhu, Chenyang Zhang, Peng He, Daixiong Chen, Guojian Zhong, Qun Liu, Wenying Hu, Yaozong Chen, Jianyu Zhu
    Biochemical Engineering Journal.2024; 207: 109329.     CrossRef
  • Enhanced removal of heavy metal from stainless steel pickling sludge by sonochemical cavitation: Physical fragmentation and chemical activation
    Jian-Xia Qiu, Zhen-Pan Chen, Kui-Yi You, He-An Luo
    Journal of Environmental Chemical Engineering.2024; 12(2): 111983.     CrossRef
  • A critical review on advances in remediation of toxic heavy metals contaminated solids by chemical processes
    Ohidul Alam, Xiaojun Zheng, Daolin Du, Xiuchen Qiao, Longyun Dai, Jian Li, Jiaojiao Xia, Jinhui Ye, Shan Zhong
    Journal of Environmental Chemical Engineering.2024; 12(4): 113149.     CrossRef
  • Recent advances in bioleaching and biosorption of metals from waste printed circuit boards: A review
    Shunchang Hu, Hongyan Wang, Xiaoke Li, Wenbin He, Jun Ma, Yingjie Xu, Yapeng Xu, Wuyi Ming
    Journal of Environmental Management.2024; 371: 123008.     CrossRef
  • Corn Stalk-Derived Cellulose Aerogel/Poly(vinyl alcohol): Impact of Hydrophobic Modifications on the Adsorption Activity and Assessment of Thermal Insulation Perspective
    Dang Thanh Phong, Phan Minh Tu, Nguyen Minh Dat, Nguyen Thanh Hoai Nam, Che Quang Cong, Nguyen Duy Hai, Hoang An, Lu Thi Mong Thy, Huynh Ky Phuong Ha, Nguyen Huu Hieu
    Waste and Biomass Valorization.2024; 15(12): 6959.     CrossRef
  • Advances in Extremophile Research: Biotechnological Applications through Isolation and Identification Techniques
    Giovanni Gallo, Martina Aulitto
    Life.2024; 14(9): 1205.     CrossRef
  • Bioleaching of heavy metals from metal tailings utilizing bacteria and fungi: Mechanisms, strengthen measures, and development prospect
    Yingbo Dong, Jinyu Zan, Hai Lin
    Journal of Environmental Management.2023; 344: 118511.     CrossRef
  • Microbiological Approach for Leaching Out Metallic Elements from Electric and Electronic Waste
    John Angel Sneha, Gurumurthy Kalaichelvan
    Journal of Resources and Ecology.2023;[Epub]     CrossRef
  • Closed-Loop Graphite Recycling from Spent Lithium-Ion Batteries through Bioleaching
    Joseph Jegan Roy, Ernest Jun Jie Tang, Minh Phuong Do, Bin Cao, Madhavi Srinivasan
    ACS Sustainable Chemistry & Engineering.2023; 11(17): 6567.     CrossRef
  • THE ROLE OF INTERACTIONS BETWEEN BACTERIA AND CLAY MINERALS IN PEDOCHEMICAL PROCESSES
    L. V. Perelomov
    Геохимия.2023; 68(10): 1021.     CrossRef
  • Culturable heterotrophic bacterial diversity study from an Indian lignite mine habitat
    Anjana D. Sanghani, Rajesh K. Patel, Shailesh R. Dave, Devayani R. Tipre
    Environmental Monitoring and Assessment.2023;[Epub]     CrossRef
  • The Role of Interactions between Bacteria and Clay Minerals in Pedochemical Processes
    L. V. Perelomov
    Geochemistry International.2023; 61(10): 1026.     CrossRef
  • A microbial technology approach using bioleaching for low grade metals extraction - a review
    S A Sani, A M Haris
    IOP Conference Series: Earth and Environmental Science.2022; 1103(1): 012019.     CrossRef
  • Recovery of Cobalt from Secondary Resources: A Comprehensive Review
    Michael Chandra, Dawei Yu, Qinghua Tian, Xueyi Guo
    Mineral Processing and Extractive Metallurgy Review.2022; 43(6): 679.     CrossRef
  • Heterotrophic Bioleaching of Vanadium from Low-Grade Stone Coal by Aerobic Microbial Consortium
    Han Zhang, Jiaxin Shi, Cuibai Chen, Meng Yang, Jianping Lu, Baogang Zhang
    International Journal of Environmental Research and Public Health.2022; 19(20): 13375.     CrossRef
  • Bioleaching of Typical Electronic Waste—Printed Circuit Boards (WPCBs): A Short Review
    Xiaosheng Ji, Mindong Yang, Anping Wan, Shaoqi Yu, Zhitong Yao
    International Journal of Environmental Research and Public Health.2022; 19(12): 7508.     CrossRef
  • Mathematical modeling in the organization of the production process of leaching metals
    Yu I Kondratyev, O A Sokolova, P V Arhipov
    Journal of Physics: Conference Series.2022; 2176(1): 012085.     CrossRef
  • Acidithiobacillus ferrooxidans and mixed Acidophilic microbiota oxidation to remove sulphur impurity from iron concentrate
    Songyan Qin, Xiaolong Liu, Meng Lu, Danyang Li, Xin Feng, Lixin Zhao
    Biochemical Engineering Journal.2022; 187: 108647.     CrossRef
  • The smallest space miners: principles of space biomining
    Rosa Santomartino, Luis Zea, Charles S. Cockell
    Extremophiles.2022;[Epub]     CrossRef
  • Acidithiobacillus Ferrooxidans and Mixed Acidophilic Microbiota Oxidation to Remove Sulphur Impurity from Iron Concentrate
    Songyan Qin, Xiaolong Liu, Meng Lu, Xiaohui Xu, Wenlong Liu, Lixin Zhao
    SSRN Electronic Journal .2022;[Epub]     CrossRef
  • Co-pyrolysis kinetics and pyrolysis product distribution of various tannery wastes
    Jie-han ZHANG, Guo-jun KANG, Hang YANG, Zhou-en LIU, Jian YU, Shi-qiu GAO
    Journal of Fuel Chemistry and Technology.2021; 49(11): 1638.     CrossRef
  • A new bioleaching strategy for the selective recovery of aluminum from multi-layer beverage cans
    Klemens Kremser, Patrick Gerl, Alessandro Pellis, Georg M. Guebitz
    Waste Management.2021; 120: 16.     CrossRef
  • Tolerance of three fungal species to lithium and cobalt: Implications for bioleaching of spent rechargeable Li‐ion batteries
    A. Lobos, V.J. Harwood, K.M. Scott, J.A. Cunningham
    Journal of Applied Microbiology.2021; 131(2): 743.     CrossRef
  • The Role of Microorganisms in Mobilization and Phytoextraction of Rare Earth Elements: A Review
    Jihen Jalali, Thierry Lebeau
    Frontiers in Environmental Science.2021;[Epub]     CrossRef
  • A review on the recycling of spent lithium-ion batteries (LIBs) by the bioleaching approach
    Joseph Jegan Roy, Bin Cao, Srinivasan Madhavi
    Chemosphere.2021; 282: 130944.     CrossRef
  • Leachability of metals from waste incineration residues by iron- and sulfur-oxidizing bacteria
    Klemens Kremser, Sophie Thallner, Dorina Strbik, Sabine Spiess, Jiri Kucera, Tomas Vaculovic, Dalibor Vsiansky, Marianne Haberbauer, Martin Mandl, Georg M. Guebitz
    Journal of Environmental Management.2021; 280: 111734.     CrossRef
  • Prospective biodegradation of organic and nitrogenous pollutants from palm oil mill effluent by acidophilic bacteria and archaea
    Anisa Ratnasari, Nur Syamimi Zaidi, Achmad Syafiuddin, Raj Boopathy, Ahmad Beng Hong Kueh, Rizki Amalia, Dedy Dwi Prasetyo
    Bioresource Technology Reports.2021; 15: 100809.     CrossRef
  • Characteristics of Some Selected Methods of Rare Earth Elements Recovery from Coal Fly Ashes
    Aleksandra Rybak, Aurelia Rybak
    Metals.2021; 11(1): 142.     CrossRef
  • Review of the extraction of key metallic values from black shales in relation to their geological and mineralogical properties
    Johannes Vind, Kadriann Tamm
    Minerals Engineering.2021; 174: 107271.     CrossRef
  • Fungal bioleaching of metals from refinery spent catalysts: A critical review of current research, challenges, and future directions
    Ashish Pathak, Richa Kothari, Mari Vinoba, Nazima Habibi, V.V. Tyagi
    Journal of Environmental Management.2021; 280: 111789.     CrossRef
  • Bioleaching of Valuable Metals from Spent Catalyst Using Metabolic Citiric Acid by Aspergillus niger
    Himawan Tri Bayu Murti Petrus, Hotden Manurung, Rivky Juarsa Aditya, Rifani Amanda, Widi Astuti
    Applied Mechanics and Materials.2020; 898: 23.     CrossRef
  • Study on the process of harmless treatment of residual electrolyte in battery disassembly
    Yanbin Zhu, Qing Ding, Yuming Zhao, Jinwen Ai, Yan Li, Yuan-Cheng Cao
    Waste Management & Research: The Journal for a Sustainable Circular Economy.2020; 38(11): 1295.     CrossRef
  • Biohydrometallurgy as an environmentally friendly approach in metals recovery from electrical waste: A review
    Alireza Habibi, Shatav Shamshiri Kourdestani, Malihe Hadadi
    Waste Management & Research: The Journal for a Sustainable Circular Economy.2020; 38(3): 232.     CrossRef
  • Extracellular electron uptake by autotrophic microbes: physiological, ecological, and evolutionary implications
    Dinesh Gupta, Michael S Guzman, Arpita Bose
    Journal of Industrial Microbiology and Biotechnology.2020; 47(9-10): 863.     CrossRef
  • Influence of Sludge Initial pH on Bioleaching of Excess Sludge to Improve Dewatering Performance
    Shaonan Lin, Mingyan Shi, Jiade Wang, Huijie Zhu, Guicheng Wen
    Coatings.2020; 10(10): 989.     CrossRef
  • Acidithiobacillus thiooxidans DSM 26636: An Alternative for the Bioleaching of Metallic Burrs
    Gómez-Ramírez Marlenne, Moreno-Villanueva Fernanda, Rojas-Avelizapa Norma G
    Catalysts.2020; 10(11): 1230.     CrossRef
  • Bioleaching of metals from wastes and low-grade sources by HCN-forming microorganisms
    Mohammad Ali Faramarzi, Mehdi Mogharabi-Manzari, Helmut Brandl
    Hydrometallurgy.2020; 191: 105228.     CrossRef
  • Enfoques microbiológicos para el tratamiento de catalizadores agotados
    Andrea M. Rivas-Castillo, Norma G. Rojas-Avelizapa
    TIP Revista Especializada en Ciencias Químico-Biológicas.2020;[Epub]     CrossRef
  • Environmentally friendly recovery of valuable metals from spent coin cells through two-step bioleaching using Acidithiobacillus thiooxidans
    Tannaz Naseri, Nazanin Bahaloo-Horeh, Seyyed Mohammad Mousavi
    Journal of Environmental Management.2019; 235: 357.     CrossRef
  • Microbial recovery and recycling of manganese waste and their future application: a review
    Bhubaneswari Bal, Shreya Ghosh, Alok Prasad Das
    Geomicrobiology Journal.2019; 36(1): 85.     CrossRef
  • Bioleaching of trace elements and rare earth elements from coal fly ash
    Stephen Park, Yanna Liang
    International Journal of Coal Science & Technology.2019; 6(1): 74.     CrossRef
  • Effect of ultrasound on bioleaching of hydrodesulphurization spent catalyst
    Shruti Vyas, Yen-Peng Ting
    Environmental Technology & Innovation.2019; 14: 100310.     CrossRef
  • Influence of initial pH on bioleaching of river sediments to achieve deep dehydration
    Mingyan Shi, Guicheng Wen, Hengfu Liu, Guodan Jian, Yaoqian Chen
    Environmental Science and Pollution Research.2019; 26(17): 17183.     CrossRef
  • Environmentally sound system for E-waste: Biotechnological perspectives
    Abhishek Kumar Awasthi, Mohammed Hasan, Yogendra Kumar Mishra, Akhilesh Kumar Pandey, Bhupendra Nath Tiwary, Ramesh C. Kuhad, Vijai Kumar Gupta, Vijay Kumar Thakur
    Current Research in Biotechnology.2019; 1: 58.     CrossRef
  • Desulfurization of Iron Ores: Processes and Challenges
    Hassan Rezvanipour, Ali Mostafavi, Ali Ahmadi, Mohammad Karimimobarakabadi, Mohsen Khezri
    steel research international.2018;[Epub]     CrossRef
  • Biological Leaching and Chemical Precipitation Methods for Recovery of Co and Li from Spent Lithium-Ion Batteries
    Basanta Kumar Biswal, Umesh U. Jadhav, Munusamy Madhaiyan, Lianghui Ji, En-Hua Yang, Bin Cao
    ACS Sustainable Chemistry & Engineering.2018; 6(9): 12343.     CrossRef
  • Bioleaching of low-grade waste printed circuit boards by mixed fungal culture and its community structure analysis
    Mingchen Xia, Peng Bao, Ajuan Liu, Mingwei Wang, Li Shen, Runlan Yu, Yuandong Liu, Miao Chen, Jiaokun Li, Xueling Wu, Guanzhou Qiu, Weimin Zeng
    Resources, Conservation and Recycling.2018; 136: 267.     CrossRef
  • Comparative assessment of metallurgical recovery of metals from electronic waste with special emphasis on bioleaching
    Anshu Priya, Subrata Hait
    Environmental Science and Pollution Research.2017; 24(8): 6989.     CrossRef
  • Integrated bioleaching of copper metal from waste printed circuit board—a comprehensive review of approaches and challenges
    Abhishek Kumar Awasthi, Xianlai Zeng, Jinhui Li
    Environmental Science and Pollution Research.2016; 23(21): 21141.     CrossRef
  • Removal of Toxic Metals from Sewage Sludge Through Chemical, Physical, and Biological Treatments—a Review
    Franciele Pereira Camargo, Paulo Sérgio Tonello, André Cordeiro Alves dos Santos, Iolanda Cristina Silveira Duarte
    Water, Air, & Soil Pollution.2016;[Epub]     CrossRef
  • Formation of Crystalline Metal Nanoparticles by Marine Isolates and Their Microbial Consortium
    Lee Shi Yn, Yang Soo Lee, Muthuswamy Sathishkumar, Sneha Krishnamurthy, Yeoung-Sang Yun
    Journal of Environmental Engineering.2016;[Epub]     CrossRef
  • Copper resistant strain Candida tropicalis RomCu5 interaction with soluble and insoluble copper compounds
    Ie. P. Prekrasna
    Biotechnologia acta.2015; 8(5): 93.     CrossRef
  • Statistical optimization of medium components for chitinase production byPseudomonas fluorescensstrain HN1205: role of chitinase on egg hatching inhibition of root-knot nematode
    Yong Seong Lee, Kil Yong Kim
    Biotechnology & Biotechnological Equipment.2015; 29(3): 470.     CrossRef
  • The Confluence of Heavy Metal Biooxidation and Heavy Metal Resistance: Implications for Bioleaching by Extreme Thermoacidophiles
    Garrett Wheaton, James Counts, Arpan Mukherjee, Jessica Kruh, Robert Kelly
    Minerals.2015; 5(3): 397.     CrossRef
  • Cite this Article
    Cite this Article
    export Copy Download
    Close
    Download Citation
    Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

    Format:
    • RIS — For EndNote, ProCite, RefWorks, and most other reference management software
    • BibTeX — For JabRef, BibDesk, and other BibTeX-specific software
    Include:
    • Citation for the content below
    MINIREVIEW] Microbial Leaching of Metals from Solid Industrial Wastes
    J. Microbiol. 2014;52(1):1-7.   Published online January 4, 2014
    Close
Related articles

Journal of Microbiology : Journal of Microbiology
TOP