NORIHIRO MORIYAMA

Last Updated :2024/05/08

Affiliations, Positions
Graduate School of Advanced Science and Engineering, Assistant Professor
E-mail
moriyama-nhiroshima-u.ac.jp
Self-introduction
I'm conducting research on separation of substances at the molecular level by permeation through ultra-thin films of 1 micrometer or less. I'm developing membrane materials and elucidating the permeation mechanism.

Basic Information

Academic Degrees

  • Hiroshima University
  • Hiroshima University

Educational Activity

  • [Master's Program] Graduate School of Advanced Science and Engineering : Division of Advanced Science and Engineering : Chemical Engineering Program
  • [Doctoral Program] Graduate School of Advanced Science and Engineering : Division of Advanced Science and Engineering : Chemical Engineering Program

In Charge of Primary Major Programs

  • Program of Chemical Engineering

Educational Activity

Course in Charge

  1. 2024, Undergraduate Education, Second Semester, Basic Experiments in Chemistry
  2. 2024, Undergraduate Education, Year, Graduation Thesis

Research Activities

Academic Papers

  1. ★, Steam recovery from flue gas by organosilica membranes for simultaneous harvesting of water and energy, Nature Communications, 2023
  2. ★, Water permeation in gas and liquid phases through organosilica membranes: A unified theory of reverse osmosis, pervaporation, and vapor permeation, Chemical Engineering Science, 2022
  3. Ammonia permeation of fluorinated sulfonic acid polymer/ceramic composite membranes, Journal of Membrane Science, 2022
  4. Tailoring Ultramicroporosity To Maximize CO2 Transport within Pyrimidine-Bridged Organosilica Membranes, ACS Applied Material and Interfaces, 2019
  5. Enhanced CO2 Separation Performance for Tertiary Amine-Silica Membranes via Thermally Induced Local Liberation of CH3Cl, AIChE Journal, 2018
  6. A highly water-selective carboxymethylated cellulose nanofiber (CNF-CMC) membrane for the separation of binary (water/N2) and ternary (water/alcohols/N2) systems in vapor-permeation, Journal of Membrane Science, 2024
  7. Steam recovery via nanoporous and subnanoporous organosilica membranes: The effects of pore structure and operating conditions, Separation and Purification Technology, 2021
  8. Network tailoring of organosilica membranes via aluminum doping to improve the humid-gas separation performance, RSC Advances, 2022
  9. Improved performance of organosilica membranes for steam recovery at moderate-to-high temperatures via the use of a hydrothermally stable intermediate layer, Journal of Membrane Science, 2021
  10. Pervaporation via silicon-based membranes: Correlation and prediction of performance in pervaporation and gas permeation, AIChE Journal, 2021
  11. Evaluation of experimentally obtained permeance based on module simulation: How should permeance be evaluated?, AIChE Journal, 2020
  12. Selective water vapor permeation from steam/non-condensable gas mixtures via organosilica membranes at moderate-to-high temperatures, Journal of Membrane Science, 2019
  13. Pervaporation dehydration of aqueous solutions of various types of molecules via organosilica membranes: Effect of membrane pore sizes and molecular sizes, Separation and Purification Technology, 2018
  14. Bis(triethoxysilyl)ethane (BTESE)-derived silica membranes: pore formation mechanism and gas permeation properties, Journal of Sol-Gel Science and Technology, 20180312
  15. Sub-nanometer scale tailoring of the microstructures of composite organosilica membranes for efficient pervaporation of toluene/ n-heptane mixtures, JOURNAL OF MEMBRANE SCIENCE, 672, 20230415
  16. Gas permeation properties of bridged-type organosilica membranes at extremely low temperatures and the application to oxygen separation, Journal of Membrane Science, 20231102
  17. Sub-nanometer scale tailoring of the microstructures of composite organosilica membranes for efficient pervaporation of toluene/ n-heptane mixtures, Journal of Membrane Science, 20230206
  18. Steam permeation properties of perfluorosulfonic acid/ceramic composite membranes at a high temperature under various humidity conditions, SEPARATION AND PURIFICATION TECHNOLOGY, 320, 20230901
  19. Permeation Properties of Water Vapor through Graphene Oxide/Polymer Substrate Composite Membranes, MEMBRANES, 13(5), 20230521