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Mechanism of bioleaching chalcopyrite by Acidithiobacillus ferrooxidans in agar-simulated extracellular polymeric substances media

https://doi.org/10.1007/s11771-010-0011-9
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19/19 checkable references clean · checked 2026-07-23

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

3 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 19 checked references that resolve
resolves10.1016/j.hydromet.2006.05.001
The bioleaching of sulphide minerals with emphasis on copper sulphides — A review
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Extracellular polymeric substances mediate bioleaching/biocorrosion via interfacial processes involving iron(III) ions and acidophilic bacteria
resolves10.1016/S0304-386X(03)00176-2
Bioleaching—a result of interfacial processes caused by extracellular polymeric substances (EPS)
resolves10.1128/AEM.64.7.2743-2747.1998
Importance of Extracellular Polymeric Substances from<i>Thiobacillus ferrooxidans</i>for Bioleaching
resolves10.1038/sj.jim.2900610
The role of exopolymers in the bioleaching of a non-ferrous metal sulphide
resolves10.1016/S0304-386X(01)00182-7
The mechanism of ‘direct’ and ‘indirect’ bacterial oxidation of sulphide minerals
resolves10.1016/j.hydromet.2007.11.005
Leaching of chalcopyrite with ferric ion. Part IV: The role of redox potential in the presence of mesophilic and thermophilic bacteria
resolves10.1016/S0892-6875(00)00095-9
The role of iron-hydroxy precipitates in the passivation of chalcopyrite during bioleaching
resolves10.1016/j.hydromet.2006.03.044
Adhesion to metal sulfide surfaces by cells of Acidithiobacillus ferrooxidans, Acidithiobacillus thiooxidans and Leptospirillum ferrooxidans
resolves10.2166/wst.2001.0365
The EPS of Acidithiobacillus ferrooxidans - a model for structure-function relationships of attached bacteria and their physiology
resolves10.1080/01490459009377874
Effects of bacterial exopolymer adhesion on the entrainment of sand
resolves10.1021/es0014739
Incipient Erosion of Biostabilized Sediments Examined Using Particle-Field Optical Holography
resolves10.1006/ecss.1999.0512
Measuring the Erosion Shear Stress of Intertidal Sediments with the Cohesive Strength Meter (CSM)
resolves10.1017/S0967026201003419
Physical characterization and diel dynamics of different fractions of extracellular polysaccharides in an axenic culture of a benthic diatom
resolves10.1023/A:1020291728513
Sorption of EPS to sediment particles and the effect on the rheology of sediment slurries
resolves10.1016/S0304-386X(00)00115-8
The role of iron-oxidizing bacteria in stimulation or inhibition of chalcopyrite bioleaching
resolves10.1016/S0045-6535(03)00355-2
Relation between extracellular polymers’ composition and its ability to complex Cd, Cu and Pb
resolves10.1016/S0304-3894(97)00040-X
Sorption of cadmium and other heavy metals by pine bark
resolves10.1016/S0304-386X(00)00166-3
Chemical and electrochemical basis of bioleaching processes
The 3 references without a DOI — listed, not checked
no DOI — not checkedBARRETT J, HUGHES M N, KARAVAIKO G I, SPENCER P A. Extraction by bacterial oxidation of minerals [M]. Chichester: Metal Ellis Horwood, 1993.
no DOI — not checkedFU Jian-hua, QIU Guan-zhou, HU Yue-hua, XU Jing. The role of EPS of Thiobacillus ferrooxidans during bioleaching [J]. Acta Laser Biology Sinica, 2004, 13(1): 62–66.
no DOI — not checkedNICOL M J, LAZARO I. The role of non-oxidative processes in the leaching of chalcopyrite [M]. Montreal: Canadian Institute of Mining, Metallurgy and Petroleum, 2003: 367–381.
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