Environmental Surfaces and Interfaces Highly Cited Papers
Published 05 March, 2026
We have compiled the most cited articles published in Environmental Surfaces and Interfaces since its launch in 2023. We welcome you to read them—all articles are freely accessible!
Recent advances and mechanisms in magnetic field enhanced photocatalysis: A review
Suhang Meng a 1, Yuqing Li a 1, Yuepeng Liu a, Sihui Zhan b, Qin Ma a, Yi Li a c*
Environmental Surfaces and Interfaces Volume 1, November 2023, Pages 10-23
https://www.sciencedirect.com/science/article/pii/S2949864323000036
Keywords: Photocatalysis; Magnetic field; Photogenerated charge carriers; Charge separation
Younes Dehmani a b c*, Dison S.P. Franco d, Jordana Georgin d, Redouane Mghaiouini e, Bouchra Ba Mohammed f, Rachid Kacimi g, Taibi Lamhasni h, Eder C. Lima i, Noureddine El Messaoudi j, Abouarnadasse Sadik c
Environmental Surfaces and Interfaces Volume 3, December 2025, Pages 103-111
https://www.sciencedirect.com/science/article/pii/S2949864325000062
Keywords: Methyl orange; Activated carbon; Adsorption modelling; Adsorption mechanism
Pseudo-first-order kinetics in environmental adsorption: Why are there two distinct equations?
Khim Hoong Chu a*, Jean-Claude Bollinger b, Jakub Kierczak c
Environmental Surfaces and Interfaces Volume 3, December 2025, Pages 191-195
https://www.sciencedirect.com/science/article/pii/S2949864325000153
Keywords: Adsorption kinetics; Kawęcka kinetic equation; Lagergren kinetic equation; Misidentification; Water contaminant
Teng Wang a, Junhui Zhou b, Didi Li a, Zhimin Ao b*
Environmental Surfaces and Interfaces Volume 2, November 2024, Pages 19-25
https://www.sciencedirect.com/science/article/pii/S2949864324000122
Keywords: Volatile organic compounds; Degradation; Photocatalysis mechanism; Wide-bandgap semiconductors
Manami Yanaka, Shiori Nagoya, Yoshinori Kawase*
Environmental Surfaces and Interfaces Volume 3, December 2025, Pages 90-102
https://www.sciencedirect.com/science/article/pii/S2949864325000050
Keywords: Wastewater treatment; Biosorption; Dynamic biosorption kinetic model; Waste tea leaves biosorbent; Heavy metal copper removal
Mehdi Eisapour a, Rui Huang b, Tayebeh Roostaei a, Heng Zhao b*, Jinguang Hu a*, Zhangxing Chen a b c*
Environmental Surfaces and Interfaces Volume 3, December 2025, Pages 46-54
https://www.sciencedirect.com/science/article/pii/S2949864324000304
Keywords: Schottky-p-n heterojunction (SPN); Morphology regulation; Glycerol photoreforming; Hydrogen production; Value-added chemicals