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References from Advanced industrial-scale recycling of nickel waste alloys: a driver for circular economy objectives. Local targets link to admitted publications; unresolved targets remain external evidence.
Potential of the recycling of grinding sludge by various powder metallurgical processes
10.1016/j.procir.2021.11.150 · 2021 · External reference
Selection of elements at the dissolution of heat resistant nickel alloys inmineral acid solutions: IV Congress “Fundamental research and applied developing of recycling and utilization processes of technogenic formations”
2020 · External reference
Quantitative experimental determination of the solid solution hardening potential of rhenium, tungsten and molybdenum in single-crystal nickel-based superalloys
2015 · External reference
Kinetics of sulfuric-acid nickel leaching from the grinding wastes of rhenium-containing superalloys
10.3103/s1067821221050163 · 2021 · External reference
Electrochemical processing of technogenic wastes of rhenium-containing heat-resistant nickel alloys in sulfuric acid solutions
10.17580/tsm.2017.10.08 · 2017 · External reference
Superalloys – characterization, usage and recycling
10.21062/mft.2022.070 · 2022 · External reference
Selective extraction of ni from superalloy scraps by molten mg-zn
10.3390/met11060993 · 2021 · External reference
10.1016/j.jiec.2025.03.049
10.1016/j.jiec.2025.03.049 · External reference
Study of dissolution of technogenic waste of heat-resistant nickel alloys in acid solutions
10.17580/nfm.2023.01.03 · 2023 · External reference
10.1016/j.seppur.2018.11.023
10.1016/j.seppur.2018.11.023 · External reference
Resource recycling of superalloys and hydrometallurgical challenges
10.1007/s10853-014-8219-y · 2014 · External reference
10.1016/j.seppur.2022.122168
10.1016/j.seppur.2022.122168 · External reference
10.1016/j.jmrt.2024.04.145
10.1016/j.jmrt.2024.04.145 · External reference
Recycling of superalloys: circular strategies for critical mineral supply chain resilience
10.1016/j.resconrec.2026.108859 · 2026 · External reference
10.3390/suschem1030016
10.3390/suschem1030016 · External reference
10.1016/j.eti.2021.101525
10.1016/j.eti.2021.101525 · External reference
Leaching of non-ferrous metals using a microemulsion in the system sodium dodecyl sulfate – butanol – caproic acid – kerosene – water
10.1016/j.mencom.2024.04.036 · 2024 · External reference
10.1016/j.jallcom.2025.180359
10.1016/j.jallcom.2025.180359 · External reference
Ultrasonic-assisted oxidation leaching of nickel sulfide concentrate
10.1016/s1004-9541(09)60152-x · 2010 · External reference
Lu G. Leaching mechanism of strategic metals from superalloy scrap under ultrasonic cavitation
10.1016/s1003-6326(22)66108-9 · 2023 · External reference
Complex electrochemical processing of technogenic wastes of rhenium-containing heat-resistant nickel alloys
10.17580/nfm.2020.01.04 · 2020 · External reference
Optimization of metal leaching from heat-resistant nickel alloy solid wastes
10.3390/molecules28145545 · 2023 · External reference
Application of pulse current for dissolution of heat-resistant GS32-VI alloy
10.32362/2410-6593-2021-16-5-438-447 · 2021 · External reference
Determination of the electrochemical dissolution feasibility of a superalloy used in turbine components in alkaline solutions with additives
2025 · External reference
Electrochemical dissolution behaviors of scrap superalloys in different electrolytes
10.1007/s11837-021-04676-0 · 2021 · External reference
10.2139/ssrn.3986790
10.2139/ssrn.3986790 · External reference
Combined electrochemical processing of the wastes of nickel superalloys containing rhenium, tungsten, tantalum, niobium, and other precious metals
10.1134/s0036029514010108 · 2014 · External reference
10.1016/j.jclepro.2020.121275
10.1016/j.jclepro.2020.121275 · External reference
Complex electrochemical processing of the metallic wastes from a rhenium-containing nickel superalloy in sulfuric acid electrolytes
2011 · External reference
Resource recycling of superalloys and hydrometallurgical challenges
10.1007/s10853-014-8219-y · ExternalCitation · doi-reference
Electrochemical dissolution behaviors of scrap superalloys in different electrolytes
10.1007/s11837-021-04676-0 · ExternalCitation · doi-reference
10.1016/j.eti.2021.101525
10.1016/j.eti.2021.101525 · ExternalCitation · doi-reference
10.1016/j.jallcom.2025.180359
10.1016/j.jallcom.2025.180359 · ExternalCitation · doi-reference
10.1016/j.jclepro.2020.121275
10.1016/j.jclepro.2020.121275 · ExternalCitation · doi-reference
10.1016/j.jiec.2025.03.049
10.1016/j.jiec.2025.03.049 · ExternalCitation · doi-reference
10.1016/j.jmrt.2024.04.145
10.1016/j.jmrt.2024.04.145 · ExternalCitation · doi-reference
Leaching of non-ferrous metals using a microemulsion in the system sodium dodecyl sulfate – butanol – caproic acid – kerosene – water
10.1016/j.mencom.2024.04.036 · ExternalCitation · doi-reference
Potential of the recycling of grinding sludge by various powder metallurgical processes
10.1016/j.procir.2021.11.150 · ExternalCitation · doi-reference
Recycling of superalloys: circular strategies for critical mineral supply chain resilience
10.1016/j.resconrec.2026.108859 · ExternalCitation · doi-reference
10.1016/j.seppur.2018.11.023
10.1016/j.seppur.2018.11.023 · ExternalCitation · doi-reference
10.1016/j.seppur.2022.122168
10.1016/j.seppur.2022.122168 · ExternalCitation · doi-reference
Lu G. Leaching mechanism of strategic metals from superalloy scrap under ultrasonic cavitation
10.1016/s1003-6326(22)66108-9 · ExternalCitation · doi-reference
Ultrasonic-assisted oxidation leaching of nickel sulfide concentrate
10.1016/s1004-9541(09)60152-x · ExternalCitation · doi-reference
Combined electrochemical processing of the wastes of nickel superalloys containing rhenium, tungsten, tantalum, niobium, and other precious metals
10.1134/s0036029514010108 · ExternalCitation · doi-reference
Complex electrochemical processing of technogenic wastes of rhenium-containing heat-resistant nickel alloys
10.17580/nfm.2020.01.04 · ExternalCitation · doi-reference
Study of dissolution of technogenic waste of heat-resistant nickel alloys in acid solutions
10.17580/nfm.2023.01.03 · ExternalCitation · doi-reference
Electrochemical processing of technogenic wastes of rhenium-containing heat-resistant nickel alloys in sulfuric acid solutions
10.17580/tsm.2017.10.08 · ExternalCitation · doi-reference
Superalloys – characterization, usage and recycling
10.21062/mft.2022.070 · ExternalCitation · doi-reference
10.2139/ssrn.3986790
10.2139/ssrn.3986790 · ExternalCitation · doi-reference
Kinetics of sulfuric-acid nickel leaching from the grinding wastes of rhenium-containing superalloys
10.3103/s1067821221050163 · ExternalCitation · doi-reference
Application of pulse current for dissolution of heat-resistant GS32-VI alloy
10.32362/2410-6593-2021-16-5-438-447 · ExternalCitation · doi-reference
Selective extraction of ni from superalloy scraps by molten mg-zn
10.3390/met11060993 · ExternalCitation · doi-reference
Optimization of metal leaching from heat-resistant nickel alloy solid wastes
10.3390/molecules28145545 · ExternalCitation · doi-reference
10.3390/suschem1030016
10.3390/suschem1030016 · ExternalCitation · doi-reference