OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Reductive Dechlorination of Trichloroethene by Zero-valent Iron Nanoparticles: Reactivity Enhancement through Sulfidation Treatment
Yanlai Han, Weile Yan
Environmental Science & Technology (2016) Vol. 50, Iss. 23, pp. 12992-13001
Closed Access | Times Cited: 334

Showing 1-25 of 334 citing articles:

Iron-mediated activation of persulfate and peroxymonosulfate in both homogeneous and heterogeneous ways: A review
Sa Xiao, Min Cheng, Hua Zhong, et al.
Chemical Engineering Journal (2019) Vol. 384, pp. 123265-123265
Closed Access | Times Cited: 769

Nanotechnology for Environmental Remediation: Materials and Applications
Fernanda D. Guerra, Mohamed F. Attia, Daniel C. Whitehead, et al.
Molecules (2018) Vol. 23, Iss. 7, pp. 1760-1760
Open Access | Times Cited: 584

Sulfidation of Iron-Based Materials: A Review of Processes and Implications for Water Treatment and Remediation
Dimin Fan, Ying Lan, Paul G. Tratnyek, et al.
Environmental Science & Technology (2017) Vol. 51, Iss. 22, pp. 13070-13085
Open Access | Times Cited: 390

Application of nanoparticles in biofuels: An overview
Patrick T. Sekoai, Cecil Naphtaly Moro Ouma, S.P. du Preez, et al.
Fuel (2018) Vol. 237, pp. 380-397
Closed Access | Times Cited: 340

Removal of organic compounds by nanoscale zero-valent iron and its composites
Qian Li, Zhongshan Chen, Huihui Wang, et al.
The Science of The Total Environment (2021) Vol. 792, pp. 148546-148546
Closed Access | Times Cited: 328

Mechanochemically Sulfidated Microscale Zero Valent Iron: Pathways, Kinetics, Mechanism, and Efficiency of Trichloroethylene Dechlorination
Yawei Gu, Binbin Wang, Feng He, et al.
Environmental Science & Technology (2017) Vol. 51, Iss. 21, pp. 12653-12662
Open Access | Times Cited: 320

Advances in Sulfidation of Zerovalent Iron for Water Decontamination
Jinxiang Li, Xueying Zhang, Yuankui Sun, et al.
Environmental Science & Technology (2017) Vol. 51, Iss. 23, pp. 13533-13544
Closed Access | Times Cited: 302

Dechlorination of Excess Trichloroethene by Bimetallic and Sulfidated Nanoscale Zero-Valent Iron
Feng He, Zhenjie Li, Shasha Shi, et al.
Environmental Science & Technology (2018) Vol. 52, Iss. 15, pp. 8627-8637
Closed Access | Times Cited: 294

Removal of Antibiotic Florfenicol by Sulfide-Modified Nanoscale Zero-Valent Iron
Zhen Cao, Xue Liu, Jiang Xu, et al.
Environmental Science & Technology (2017) Vol. 51, Iss. 19, pp. 11269-11277
Closed Access | Times Cited: 285

Reactivity, Selectivity, and Long-Term Performance of Sulfidized Nanoscale Zerovalent Iron with Different Properties
Jiang Xu, Yan Wang, Cindy Weng, et al.
Environmental Science & Technology (2019) Vol. 53, Iss. 10, pp. 5936-5945
Closed Access | Times Cited: 255

Enhanced Reactivity and Electron Selectivity of Sulfidated Zerovalent Iron toward Chromate under Aerobic Conditions
Jinxiang Li, Xueying Zhang, Meichuan Liu, et al.
Environmental Science & Technology (2018) Vol. 52, Iss. 5, pp. 2988-2997
Closed Access | Times Cited: 246

New insights into the degradation of synthetic pollutants in contaminated environments
Pankaj Bhatt, Saurabh Gangola, Geeta Bhandari, et al.
Chemosphere (2020) Vol. 268, pp. 128827-128827
Closed Access | Times Cited: 228

Factors influencing degradation of trichloroethylene by sulfide-modified nanoscale zero-valent iron in aqueous solution
Haoran Dong, Cong Zhang, Junmin Deng, et al.
Water Research (2018) Vol. 135, pp. 1-10
Closed Access | Times Cited: 227

Sulfurized oolitic hematite as a heterogeneous Fenton-like catalyst for tetracycline antibiotic degradation
Hanlin Wang, Tianhu Chen, Dong Chen, et al.
Applied Catalysis B Environment and Energy (2019) Vol. 260, pp. 118203-118203
Closed Access | Times Cited: 210

Enhanced sulfamethoxazole degradation by peroxymonosulfate activation with sulfide-modified microscale zero-valent iron (S-mFe0): Performance, mechanisms, and the role of sulfur species
Yangju Li, Xiuge Zhao, Yan Yan, et al.
Chemical Engineering Journal (2019) Vol. 376, pp. 121302-121302
Closed Access | Times Cited: 188

Recent Advances in Sulfidated Zerovalent Iron for Contaminant Transformation
Ariel Nunez Garcia, Yanyan Zhang, Subhasis Ghoshal, et al.
Environmental Science & Technology (2021) Vol. 55, Iss. 13, pp. 8464-8483
Open Access | Times Cited: 184

Iron and Sulfur Precursors Affect Crystalline Structure, Speciation, and Reactivity of Sulfidized Nanoscale Zerovalent Iron
Jiang Xu, Astrid Avellan, Hao Li, et al.
Environmental Science & Technology (2020) Vol. 54, Iss. 20, pp. 13294-13303
Closed Access | Times Cited: 180

Sulfur Dose and Sulfidation Time Affect Reactivity and Selectivity of Post-Sulfidized Nanoscale Zerovalent Iron
Jiang Xu, Zhen Cao, He Ping Zhou, et al.
Environmental Science & Technology (2019) Vol. 53, Iss. 22, pp. 13344-13352
Closed Access | Times Cited: 158

Sustainable remediation and redevelopment of brownfield sites
Deyi Hou, Abir Al‐Tabbaa, David O’Connor, et al.
Nature Reviews Earth & Environment (2023) Vol. 4, Iss. 4, pp. 271-286
Closed Access | Times Cited: 158

Sulfidized Nanoscale Zero-Valent Iron: Tuning the Properties of This Complex Material for Efficient Groundwater Remediation
Jiang Xu, Hao Li, Gregory V. Lowry
Accounts of Materials Research (2021) Vol. 2, Iss. 6, pp. 420-431
Closed Access | Times Cited: 138

Atomic Hydrogen in Electrocatalytic Systems: Generation, Identification, and Environmental Applications
Wentian Zheng, Yanbiao Liu, Fuqiang Liu, et al.
Water Research (2022) Vol. 223, pp. 118994-118994
Closed Access | Times Cited: 134

Unveiling the Role of Sulfur in Rapid Defluorination of Florfenicol by Sulfidized Nanoscale Zero-Valent Iron in Water under Ambient Conditions
Zhen Cao, Hao Li, Gregory V. Lowry, et al.
Environmental Science & Technology (2021) Vol. 55, Iss. 4, pp. 2628-2638
Closed Access | Times Cited: 128

Biochar-supported nanosized zero-valent iron (nZVI/BC) composites for removal of nitro and chlorinated contaminants
Shakeel Ahmad, Xiaomei Liu, Jingchun Tang, et al.
Chemical Engineering Journal (2021) Vol. 431, pp. 133187-133187
Closed Access | Times Cited: 128

Increasing the electron selectivity of nanoscale zero-valent iron in environmental remediation: A review
Long Zhou, Zheng Li, Yunqiang Yi, et al.
Journal of Hazardous Materials (2021) Vol. 421, pp. 126709-126709
Closed Access | Times Cited: 125

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