DESAL RESEARCH GROUP

Sustainable technologies for a water-secure future

LEARN MORE
KEY VALUES

Committed to excellence

We aim to be at the forefront of global efforts to contribute to a water-secure future. We envision a world where sustainable desalination technologies and water treatment solutions are pivotal in providing clean and safe water to communities and fostering economic growth. Through continuous innovation and collaboration, we aspire to set new standards for excellence in the field, leaving a long-lasting effect on the well-being of societies and the health of our planet.

About
DESAL team at the lab
RESEARCH & TECHNOLOGY

Driven by innovation, recognized by impact

The DESAL Research Group pioneers advancements in desalination and wastewater treatment, prioritizing excellence, innovation, and sustainability. Our focus on cutting-edge research and efficiency aims to address global water challenges and support sustainable development goals.

NEWS & UPDATES 

Discover the latest breakthroughs from our team

21 September, 2026

DESAL research featured in Arab News: How AI is reshaping desalination in Saudi Arabia

Read more

08 September, 2026

A Summer of Research at DESAL: Meet Our 2026 Interns

Read more

04 August, 2026

DESAL research featured in Arab News: Hydrogels and the Future of Saudi Desalination

Read more
ADVANCING SCIENCE

Scientific Contributions

Through research papers, patents, and PhD dissertations, we push the boundaries of knowledge, driving innovation in desalination and water treatment.

Heat-activated peroxymonosulfate pretreatment toward high water recovery in RO–MD seawater desalination

by Jaewon Lee, M. Obaid, Najat A Amin, Taegeun Park, Seunghwan Woo, Hayoung Lee, Seonkyu Lee, Min Zhan, Seungkwan Hong
Year: 2026 DOI: 10.1016/j.cej.2026.181861

Abstract

This study proposes a high-recovery seawater desalination strategy that integrates a heat-activated peroxymonosulfate (PMS) pretreatment with RO–MD hybrid operations. Under Cl-rich seawater conditions, the heat-activated PMS pretreatment thermally promotes the formation of reactive chlorine species (RCS), enabling selective degradation of humic substances, which are the dominant precursors of organic fouling. In synthetic seawater, the heat-activated PMS pretreatment achieved up to 44.5% removal of total organic carbon (TOC) at 2 mM PMS and 90 °C. Experiments using real Red Sea water demonstrated 30% TOC reduction with >90% removal of the humic substance fraction, reflecting the preferential cleavage of high-molecular-weight organics into low-molecular-weight species. This selective degradation substantially mitigated organic fouling in RO, maintaining 48% of the initial flux at 50% recovery, compared with 34% without pretreatment. The subsequent MD process with heat-activated PMS pretreatment increased the achievable volume concentration factor (VCF) from 2.5 to 3.3 (overall water recovery of approximately 85%), while markedly suppressing both NaCl and CaSO4 scaling. The improved MD performance arises from the prevention of organic–inorganic composite scale formation. Therefore, the integration of the heat-activated PMS pretreatment with RO–MD desalination provides a potential strategy for achieving high-recovery seawater desalination.

Keywords

Peroxymonosulfate Seawater Desalination Membrane fouling Pretreatment High water recovery

New Era Of Accelerated Impact

DISCOVER THE NEW KAUST STRATEGY
GET IN TOUCH

Collaborate with Us

Be part of our journey towards cleaner, safer water, reduced environmental impact, and economic growth. Whether you're a researcher, industry expert, or passionate advocate, let's collaborate to set new standards in desalination and wastewater treatment.