Your browser doesn't support javascript.
loading
An in-depth analysis of membrane distillation research (1990-2023): Exploring trends and future directions through bibliometric approach.
Boubakri, Ali; Elgharbi, Sarra; Bouguecha, Salah; Orfi, Jamel; El Oudi, Mabrouka; Bechambi, Olfa; Hafiane, Amor.
Affiliation
  • Boubakri A; Laboratory Water, Membranes and Environmental Biotechnology, Center of Water Research and Technologies (CERTE), PB 273, 8020, Soliman, Tunisia. Electronic address: ali.boubakri@certe.rnrt.tn.
  • Elgharbi S; Chemistry Department, College of Sciences, University of Ha'il, Hail, Saudi Arabia.
  • Bouguecha S; Department of Mechanical Engineering, Faculty of Engineering, King Abdul-Aziz University, P.B: 80204, Jeddah, 21589, Saudi Arabia.
  • Orfi J; Mechanical Engineering Department, King Saud University, PO Box 800, Riyadh, 11421, Saudi Arabia; K.A.CARE Energy Research and Innovation Center, King Saud University, Riyadh 11451, Saudi Arabia.
  • El Oudi M; Chemistry Department, College of Sciences, University of Ha'il, Hail, Saudi Arabia.
  • Bechambi O; Al Ghazalah, University of Hail, Ha'il, Saudi Arabia.
  • Hafiane A; Laboratory Water, Membranes and Environmental Biotechnology, Center of Water Research and Technologies (CERTE), PB 273, 8020, Soliman, Tunisia.
J Environ Manage ; 367: 121942, 2024 Sep.
Article in En | MEDLINE | ID: mdl-39067338
ABSTRACT
This bibliometric analysis offers a comprehensive investigation into membrane distillation (MD) research from 1990 to 2023. Covering 4389 publications, the analysis sheds light on the evolution, trends, and future directions of the field. It delves into authorship patterns, publication trends, prominent journals, and global contributions to reveal collaborative networks, research hotspots, and emerging themes within MD research. The findings demonstrate extensive global participation, with esteemed journals such as Desalination and the Journal of Membrane Science serving as key platforms for disseminating cutting-edge research. The analysis further identifies crucial themes and concepts driving MD research, ranging from membrane properties to strategies for mitigating membrane fouling. Co-occurrence analysis further highlights the interconnectedness of research themes, showcasing advancements in materials, sustainable heating strategies, contaminant treatment, and resource management. Overlay co-occurrence analysis provides temporal perspective on emerging research trends, delineating six key topics that will likely shape the future of MD. These include innovations in materials and surface engineering, sustainable heating strategies, emerging contaminants treatment, sustainable water management, data-driven approaches, and sustainability assessments. Finally, the study serves as a roadmap for researchers and engineers navigating the dynamic landscape of MD research, offering insights into current trends and future trajectories, ultimately aiming to propel MD technology towards enhanced performance, sustainability, and global relevance.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bibliometrics / Distillation Language: En Journal: J Environ Manage Year: 2024 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bibliometrics / Distillation Language: En Journal: J Environ Manage Year: 2024 Type: Article