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Combined Fenton process and sulfide precipitation for removal of heavy metals from industrial wastewater: Bench and pilot scale studies focusing on in-depth thallium removal

https://doi.org/10.1007/s11783-019-1130-7
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53/53 checkable references clean · checked 2026-07-22

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.

6 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 53 checked references that resolve
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Adsorption and Oxidation of Thallium(I) by a Nanosized Manganese Dioxide
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Removal of Thallium from Waste Water by Using the Iron Metal and Hydrogen Peroxide
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Application of response surface methodology to the advanced treatment of biologically stabilized landfill leachate using Fenton’s reagent
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Removal and recovery of thallium from aqueous solutions via a magnetite-mediated reversible adsorption-desorption process
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Removal of thallium from wastewater by a combination of persulfate oxidation and iron coagulation
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Preparation, characterization and photocatalytic activity of visible-light-driven plasmonic Ag/AgBr/ZnFe2O4 nanocomposites
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Efficient electrochemical oxidation of thallium (I) in groundwater using boron-doped diamond anode
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A Novel Electro-Fenton Process for Water Treatment:  Reaction-controlled pH Adjustment and Performance Assessment
resolves10.1007/s11783-018-1030-2
Oxidation and biotoxicity assessment of microcystin-LR using different AOPs based on UV, O3 and H2O2
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Thallium (Tl) sorption onto illite and smectite: Implications for Tl mobility in the environment
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Adsorption and desorption of thallium(I) on multiwalled carbon nanotubes
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A study of the extraction behavior of thallium with tribenzylamine as the extractant
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A method for the removal of Cu(II) from aqueous solutions by sulfide precipitation employing heavy oil fly ash
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The acute toxicity of thallium to freshwater organisms: Implications for risk assessment
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The role of surface sulfur species in the inhibition of pyrrhotite dissolution in acid conditions
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Isotopic Tracing of Thallium Contamination in Soils Affected by Emissions from Coal-Fired Power Plants
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The behaviour of thallium in the (sub) surface environment in terms of Eh and pH
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Thallium Speciation and Extractability in a Thallium- and Arsenic-Rich Soil Developed from Mineralized Carbonate Rock
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Selective capture of thallium(I) ion from aqueous solutions by amorphous hydrous manganese dioxide
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Spontaneous thallium (I) oxidation with electricity generation in single-chamber microbial fuel cells
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Thallium Adsorption onto Illite
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Thallium pollution in China: A geo-environmental perspective
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Optimization of Fenton treatment process for degradation of refractory organics in pre-coagulated leachate membrane concentrates
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XPS study of thallium oxidation states in precursor TlBaCaCuO HTSC thin films
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Inhibition of photocorrosion and photoactivity enhancement for ZnO via specific hollow ZnO core/ZnS shell structure
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Immobilizing Metal-Resistant Sulfate-Reducing Bacteria for Cadmium Removal from Aqueous Solutions
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Isolation of a non-traditional sulfate reducing-bacteria Citrobacter freundii sp. and bioremoval of thallium and sulfate
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Removal of thallium(I) from aqueous solution using modified sugar beet pulp
The 6 references without a DOI — listed, not checked
no DOI — not checkedLewis A E (2010). Review of metal sulphide precipitation. Hydro-metallurgy, 104(2): 222–234
no DOI — not checkedMerck K (2009). LabTools: Tables for Laboratory Use. Darmstadt, Germany: EMD Millipore
no DOI — not checkedNriagu J O (1998). Thallium in the Environment. New York: John Wiley & Sons
no DOI — not checkedQi J Y, Chen Y H, Li X P, Zhang Y M, Wang C L, Cao T H, Jiang W W, Lu W Z, Chen X Y, Chen Y L (2017). Emission Standard of Thallium for Industry Wastewater. Guangzhou: Department of Environmental Protection of Guangdong Province, China, Adminstration of Quality and Technology Supervision of Guangdong Province
no DOI — not checkedRosengrant L, Craig R (1990). Final best demonstrated available technology (BDAT) background document for P and U thallium wastes. In: US EPA editor. EPA 530-sw-90-059R, National Technical Information Services PB90-234188l. Washington, DC: US EPA, Office of Solid Waste
no DOI — not checkedTwidwell L G, Williams-Beam C (2002). Potential technologies for removing thallium from mine and process wastewater: an annotation of the literature. European Journal of Mineral Processing and Environmental Protection, 2(1): 1–10
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