作者的详细信息

Bondarenko, V. L.

栏目 标题 文件
卷 51, 编号 9-10 (2016) Article Optimization of Design and Operational Parameters of Adsorbers for Purification of Neon-Helium Mixture
卷 51, 编号 9-10 (2016) Article Substantiation of Concentration Level at Enrichment of Light Rare Gases
卷 51, 编号 9-10 (2016) Article Application, Production, and Exploitation of Alternative Sources of the Isotope 3He
卷 51, 编号 9-10 (2016) Article Analysis of the Possibility of Using Industrial Low-Temperature Fractionation for 3He/4He Separation
卷 51, 编号 11-12 (2016) Article Evaluation of Critical Parameters of Neon Isotopes for Comparative Analysis of Various Methods for Separating Them
卷 51, 编号 11-12 (2016) Article Comparative Analysis of Various Adsorbents for Low-Temperature Separation of a 20Ne–22Ne Isotopic Mixture
卷 51, 编号 11-12 (2016) Article Separation of Neon Isotopes by Stepwise Fractionation at 28 K
卷 52, 编号 9-10 (2017) Article Production of High-Purity Krypton and Xenon. Purification from Trace Impurities
卷 53, 编号 11-12 (2018) Article Vapor-Liquid Equilibrium of the Ethylene–Butane Mixture
卷 54, 编号 7-8 (2018) Cryogenic Equipment, Production and Application of Industrial Gases. Vacuum Technology Multi-Stage Separation of Neon Isotopes Over a Single Column
卷 54, 编号 9-10 (2019) Cryogenic Equipment, Production and Application of Industrial Gases. Vacuum Technology Automated Cryogenic Unit for Xenon Extraction from Concentrated Mixtures
卷 54, 编号 9-10 (2019) Cryogenic Equipment, Production and Application of Industrial Gases. Vacuum Technology Analysis of Losses in High-Purity Neon Production Technology. Part 1. Extraction of a Ne–He Mixture as a By-Product of Air Separation
卷 54, 编号 9-10 (2019) Article Analysis of Losses in High-Purity Neon Production Technology. Part 2.* Processing of a Ne–He Mixture to Obtain Pure Products
卷 54, 编号 11-12 (2019) Article Universal Research Cryogenic Unit for Xenon Production
卷 55, 编号 5-6 (2019) Cryogenic Equipment, Production and Application of Industrial Gases. Vacuum Technology Gas Chromatography in Technology of High-Purity Noble Gases