Search Results - "Kopyto, Dorota"
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Electrolytic production and characterization of nickel–rhenium alloy coatings
Published in Reviews on advanced materials science (20-10-2021)“…Electrolytic Ni–Re alloy coatings were obtained in galvanostatic conditions from nickel–rhenium baths with different contents of ammonium rhenate( ) (0.5,…”
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2
Recovery of Zinc and Rhenium for the Production of Zinc Perrhenates
Published in Crystals (Basel) (01-08-2024)“…This study outlines findings from an investigation into the development of a hydrometallurgical process for manufacturing various forms of zinc perrhenate,…”
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3
A New Method of Obtaining High Purity Nickel(II) Perrhenate from Waste
Published in Crystals (Basel) (01-10-2023)“…The article presents a new method of producing anhydrous nickel(II) perrhenate of high purity, entirely from waste from the national Cu industry. This method…”
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4
Production of Perrhenic Acid by Solvent Extraction
Published in Separations (01-08-2024)“…The aim of this work was to develop an effective method for obtaining perrhenic acid from available ammonia waste solutions using the solvent extraction…”
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5
Hydrometallurgical Technology for Producing Rhenium(VII) and Cobalt(II) from Waste
Published in Crystals (Basel) (01-09-2024)“…This paper presents a method for obtaining cobalt(II) perrhenate from waste derived from two types of materials, i.e., Li-ion battery scrap, or more precisely,…”
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6
Purification of Industrial Copper Electrolyte from Bismuth Impurity
Published in Minerals (Basel) (01-01-2022)“…This work focused on purifying copper electrolytes from a bismuth impurity on a laboratory scale. The electrolyte came from Polish copper electrorefineries…”
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7
Rhenium(VII) Compounds as Inorganic Precursors for the Synthesis of Organic Reaction Catalysts
Published in Molecules (Basel, Switzerland) (12-04-2019)“…Rhenium is an element that exhibits a broad range of oxidation states. Synthesis paths of selected rhenium compounds in its seventh oxidation state, which are…”
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8
An Innovative Method of Leaching of Battery Masses Produced in the Processing of Li-Ion Battery Scrap
Published in Applied sciences (01-01-2024)“…This paper presents comparative experimental results for the single-stage and two-stage counter-current acid leaching of battery masses, with the addition of a…”
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9
Application of Electrodialysis to Production of High-Purity Perrhenic Acid
Published in Separations (01-09-2024)“…Laboratory tests were conducted for the production of high-purity perrhenic acid using a membrane technique—electrodialysis. Four solutions were used in the…”
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10
A Comparison of Production Methods of High-Purity Perrhenic Acid from Secondary Resources
Published in Separations (01-08-2024)“…Methods for obtaining high-purity perrhenic acid (with metallic impurities content below 100 ppm) of a high concentration > 200 g/dm3 and entirely from…”
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11
Recycling of Rhenium from Superalloys and Manganese from Spent Batteries to Produce Manganese(II) Perrhenate Dihydrate
Published in Recycling (Basel) (01-06-2024)“…This work presents the research results on the development of an innovative, hydrometallurgical technology for the production of manganese(II) perrhenate…”
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12
Hydrometallurgical Method of Producing Lithium Perrhenate from Solutions Obtained during the Processing of Li-Ion Battery Scrap
Published in Batteries (Basel) (01-05-2024)“…The work presents the research results regarding the development of an innovative technology for the production of lithium perrhenate. The new technology is…”
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13
Application of Ion Exchange for Preparation of Selected Metal Perrhenates—Precursors for Superalloy Production
Published in Metals (Basel ) (01-02-2019)“…Methods for the preparation of selected metal perrhenates and their mixtures are presented in this paper. These materials are suitable for reduction, and…”
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14
Environmentally friendly method for regeneration of copper chloride acidic solutions used in etching of printed circuits
Published in E3S Web of Conferences (01-01-2017)“…Etching of copper with acidic CuCl2 solution is a widely used chemical method in printed circuits production. During the process, the solution is enriched in…”
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Journal Article Conference Proceeding -
15
Environmentally friendly method for regeneration of copper chloride acidic solutions used in etching of printed circuits
Published in E3S web of conferences (2017)“…Etching of copper with acidic CuCl2 solution is a widely used chemical method in printed circuits production. During the process, the solution is enriched in…”
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Journal Article -
16
Application of electrodialysis enhanced with complex formation integrated with electrolysis for treatment of electroplating wastewaters as a new approach to the selective copper recovery
Published in Chemical engineering journal (Lausanne, Switzerland : 1996) (15-08-2024)“…[Display omitted] •ED with complex formation and electrolysis as a separation process for the treatment of wastewaters containing heavy metals.•Selective…”
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17
Novel Additives in Copper Electrorefining-Small Laboratory Scale
Published in Materials (08-03-2024)“…This research aimed to evaluate the effectiveness of new organic substances, including a novel ionic liquid based on polyhexamethylenebiguanidine,…”
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Facile synthesis of reduced graphene oxide/peroxomolybdate(VI)–citrate composite and its potential energy storage application
Published in Applied physics. A, Materials science & processing (01-11-2017)“…A new energy storage material based on molybdate active species has been presented. Molybdenum seems to be a perspective material in supercapacitors because of…”
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19
Hydrometallurgical Technology for Producing Rhenium from Waste
Published in Crystals (Basel) (01-09-2024)“…This paper presents a method for obtaining cobalt(II) perrhenate from waste derived from two types of materials, i.e., Li-ion battery scrap, or more precisely,…”
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Journal Article -
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Production of High-Purity Anhydrous Nickel(II) Perrhenate for Tungsten-Based Sintered Heavy Alloys
Published in Materials (24-04-2017)“…This paper presents a method for the production of high-purity anhydrous nickel(II) perrhenate. The method comprises sorption of nickel(II) ions from aqueous…”
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