Jing Yu | Thermodynamic Mechanisms in Brine Separation | Physics Technology Award

Physics Technology Award

Jing Yu
Name Jing Yu
Affiliation Jiangsu Vocational Institute of Commerce
Country China
Subject Area Thermodynamic Mechanisms in Brine Separation
Event International Physics and Quantum Physics Awards
ORCID 0000-0001-7716-6568

Jing Yu is affiliated with the Jiangsu Vocational Institute of Commerce, China, and is associated with research concerning thermodynamic mechanisms in brine separation. The research area intersects thermodynamics, The Physics Technology Award recognition is presented in the context of the International Physics and Quantum Physics Awards. This article summarizes the stated research profile and subject area associated with Jing Yu while distinguishing supplied researcher information from bibliographic metrics that require independent database verification. [1]

Abstract

Jing Yu of Jiangsu Vocational Institute of Commerce, China, is associated with the research field of thermodynamic mechanisms in brine separation. Brine separation involves the application of physical chemistry, thermodynamics, transport phenomena, and separation engineering to the treatment of concentrated saline streams. Thermodynamic analysis can contribute to understanding phase behavior, energy requirements, mass transfer, equilibrium conditions, and process efficiency in separation systems. The subject therefore occupies an interdisciplinary position between physics, chemical engineering, environmental technology, and water-resource management. [2]

Keywords

  • Physics Technology Award
  • Thermodynamic Mechanisms
  • Brine Separation
  • Thermodynamics
  • Separation Processes
  • Saline Water Treatment
  • Mass Transfer
  • Phase Equilibrium
  • Water Resource Technology
  • Physics and Quantum Physics

Introduction

Brine separation is concerned with the processing of saline solutions and concentrated streams generated by desalination, industrial activities, mineral processing, and related water-treatment operations.[1] These principles are relevant to technologies including membrane processes, evaporation, crystallization, and other approaches for concentrating or separating saline solutions.

Research Profile

The stated research profile of Jing Yu is centered on thermodynamic mechanisms in brine separation. Within this area, research may involve the quantitative interpretation of equilibrium and non-equilibrium phenomena that govern saline systems. Such work can draw on thermodynamic theory, experimental characterization, mathematical modeling, and process analysis.[3]

Research Contributions

Research on thermodynamic mechanisms in brine separation can contribute to a more detailed understanding of the physical factors governing saline separation processes. Potential areas of scientific contribution include characterization of thermodynamic equilibrium, assessment of energy-transfer pathways, interpretation of concentration-dependent properties, and evaluation of the interaction between thermodynamics and mass transport. [4]

Publications

Specific publication titles, journal information, publication dates, citation counts, and DOI identifiers for Jing Yu were not supplied with the recognition data. For academic accuracy, no individual publication is attributed to the researcher without a verifiable bibliographic record.[1] Additional publication-level information should be verified through authoritative scholarly databases or the researcher’s persistent identifier before being incorporated into a formal bibliography.

Research Impact

The broader relevance of thermodynamic research in brine separation is associated with the scientific and engineering challenges of managing concentrated saline streams. Desalination and water-treatment systems can involve substantial energy consumption and complex material flows, making thermodynamic characterization useful for evaluating process performance and identifying opportunities for improved efficiency. [1]

Award Suitability

The supplied recognition information associates Jing Yu with the Physics Technology Award under the International Physics and Quantum Physics Awards. The stated subject area, thermodynamic mechanisms in brine separation, has a direct connection with physical principles involving energy, equilibrium, phase behavior, and transport phenomena. These concepts form part of the scientific foundations used to study and design separation processes. [2]

Conclusion

Jing Yu is identified with Jiangsu Vocational Institute of Commerce, China, and the research subject of thermodynamic mechanisms in brine separation. This field combines fundamental thermodynamic principles with separation science and water-treatment applications. Its scientific scope includes phase equilibrium, chemical potential, energy requirements, mass transfer, and the behavior of concentrated saline systems. [3]

References

  1. Development and thermal performance of porous PDMS composites with microencapsulated phase change materials for enhanced thermal insulation. Journal of Materials Research, 40(9), 1335–1345.
    https://doi.org/10.1557/s43578-025-01582-y
  2. Investigation on thermodynamic mechanisms of brine evaporation in air-carried evaporating separation cycle coupling with process-heat-supplied. npj Clean Water.
    https://doi.org/10.1038/s41545-026-00604-4
  3. Two-dimensional simulation for performance and characteristics of heat and mass transfer in evaporative-separating atomized saltwater with process-heat-supplied. Desalination, 630, 120170.
    https://doi.org/10.1016/j.desal.2026.120170
  4. ORCID. (n.d.). ORCID record: Jing Yu, 0000-0001-7716-6568. ORCID.
    https://orcid.org/0000-0001-7716-6568