Onofrio Scialdone

7.2k total citations · 2 hit papers
148 papers, 6.1k citations indexed

About

Onofrio Scialdone is a scholar working on Biomedical Engineering, Renewable Energy, Sustainability and the Environment and Water Science and Technology. According to data from OpenAlex, Onofrio Scialdone has authored 148 papers receiving a total of 6.1k indexed citations (citations by other indexed papers that have themselves been cited), including 63 papers in Biomedical Engineering, 49 papers in Renewable Energy, Sustainability and the Environment and 43 papers in Water Science and Technology. Recurrent topics in Onofrio Scialdone's work include Advanced oxidation water treatment (38 papers), Electrochemical Analysis and Applications (33 papers) and CO2 Reduction Techniques and Catalysts (24 papers). Onofrio Scialdone is often cited by papers focused on Advanced oxidation water treatment (38 papers), Electrochemical Analysis and Applications (33 papers) and CO2 Reduction Techniques and Catalysts (24 papers). Onofrio Scialdone collaborates with scholars based in Italy, Spain and France. Onofrio Scialdone's co-authors include Alessandro Galia, Ignasi Sirés, Manuel A. Rodrigo, Carlos A. Martínez‐Huitle, Giuseppe Filardo, Serena Randazzo, Simona Sabatino, Federica Proietto, Adriana D’Angelo and Chiara Guarisco and has published in prestigious journals such as Chemical Reviews, SHILAP Revista de lepidopterología and The Journal of Physical Chemistry B.

In The Last Decade

Onofrio Scialdone

143 papers receiving 6.0k citations

Hit Papers

Single and Coupled Electr... 2015 2026 2018 2022 2015 2023 400 800 1.2k

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Onofrio Scialdone Italy 42 3.3k 2.7k 2.0k 1.4k 1.2k 148 6.1k
Alessandro Galia Italy 41 1.8k 0.6× 1.8k 0.7× 1.6k 0.8× 820 0.6× 825 0.7× 152 4.4k
Yang Zhou China 43 4.7k 1.4× 4.5k 1.7× 2.3k 1.2× 622 0.4× 780 0.6× 101 8.0k
Jianmeng Chen China 40 2.4k 0.7× 2.8k 1.1× 920 0.5× 645 0.5× 915 0.7× 114 5.4k
Luı́s M. Madeira Portugal 53 3.6k 1.1× 3.1k 1.2× 2.4k 1.2× 323 0.2× 1.1k 0.9× 240 9.5k
Zhiqiao He China 41 2.1k 0.6× 3.4k 1.3× 846 0.4× 415 0.3× 970 0.8× 129 5.3k
Weiqing Han China 55 4.7k 1.4× 2.9k 1.1× 3.0k 1.5× 658 0.5× 2.2k 1.8× 185 9.3k
Satoshi Kaneco Japan 48 1.1k 0.3× 4.2k 1.6× 520 0.3× 443 0.3× 1.4k 1.1× 228 6.8k
Chuan-Shu He China 40 2.9k 0.9× 2.4k 0.9× 1.4k 0.7× 398 0.3× 736 0.6× 130 5.2k
Kiyohisa Ohta Japan 40 921 0.3× 2.4k 0.9× 437 0.2× 568 0.4× 579 0.5× 152 4.8k
Liming Yang China 49 2.3k 0.7× 2.5k 1.0× 1.4k 0.7× 419 0.3× 2.0k 1.6× 247 8.2k

Countries citing papers authored by Onofrio Scialdone

Since Specialization
Citations

This map shows the geographic impact of Onofrio Scialdone's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Onofrio Scialdone with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Onofrio Scialdone more than expected).

Fields of papers citing papers by Onofrio Scialdone

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Onofrio Scialdone. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Onofrio Scialdone. The network helps show where Onofrio Scialdone may publish in the future.

Co-authorship network of co-authors of Onofrio Scialdone

This figure shows the co-authorship network connecting the top 25 collaborators of Onofrio Scialdone. A scholar is included among the top collaborators of Onofrio Scialdone based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Onofrio Scialdone. Onofrio Scialdone is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Randazzo, Serena, et al.. (2025). Fate of organics during treatment of water streams by active chlorine in chemical and electrochemical processes. International Journal of Environmental Science and Technology. 23(2).
3.
Proietto, Federica, et al.. (2025). Role of pressure and current density on the cathodic conversion of CO2 using Ag, Sn, Bi and Ni cathodes. Journal of environmental chemical engineering. 13(5). 117871–117871.
4.
Randazzo, Serena, Alessandro Galia, & Onofrio Scialdone. (2025). Effect of quenchers on the electrochemical oxidation of phenol in presence of electro-generated active chlorine. Journal of Water Process Engineering. 78. 108819–108819.
7.
Proietto, Federica, Alessandro Tamburini, Andrea Cipollina, et al.. (2024). Hydrogen-Electrodialysis with Bipolar Membrane (H-EDBM): First experiments and preliminary economic evaluation. Desalination. 592. 118169–118169. 5 indexed citations
8.
Proietto, Federica, et al.. (2023). Treatment of aqueous solutions of oxytetracycline by different electrochemical approaches: anodic oxidation, pressurized electro‐Fenton and oxidation by electrogenerated active chlorine. Journal of Chemical Technology & Biotechnology. 98(8). 1955–1963. 3 indexed citations
9.
Scialdone, Onofrio, et al.. (2022). Hydrothermal liquefaction of wet biomass in batch reactors: Critical assessment of the role of operating parameters as a function of the nature of the feedstock. The Journal of Supercritical Fluids. 189. 105689–105689. 19 indexed citations
10.
Galia, Alessandro, et al.. (2021). Development of a membrane-less microfluidic thermally regenerative ammonia battery. Energy. 225. 120221–120221. 12 indexed citations
11.
Luo, Jinhua, Xiao Du, Fengfeng Gao, et al.. (2020). Electrochemically triggered iodide-vacancy BiOI film for selective extraction of iodide ion from aqueous solutions. Separation and Purification Technology. 259. 118120–118120. 31 indexed citations
12.
Bensaid, Samir, Camilla Galletti, Raffaele Pirone, et al.. (2018). Interesterification of rapeseed oil catalysed by a low surface area tin (II) oxide heterogeneous catalyst. Fuel Processing Technology. 177. 336–344. 24 indexed citations
13.
Costa, Paula, et al.. (2018). Sewage sludge as cheap alternative to microalgae as feedstock of catalytic hydrothermal liquefaction processes. The Journal of Supercritical Fluids. 143. 251–258. 52 indexed citations
14.
Sabatino, Simona, Federica Proietto, Salah Ammar, et al.. (2018). Electrochemical treatment of aqueous solutions of organic pollutants by electro-Fenton with natural heterogeneous catalysts under pressure using Ti/IrO2-Ta2O5 or BDD anodes. Chemosphere. 202. 111–118. 54 indexed citations
15.
Pérez, J.F., Simona Sabatino, Alessandro Galia, et al.. (2018). Effect of air pressure on the electro-Fenton process at carbon felt electrodes. Electrochimica Acta. 273. 447–453. 36 indexed citations
16.
Ma, Pengfei, Hongrui Ma, Alessandro Galia, Simona Sabatino, & Onofrio Scialdone. (2018). Reduction of oxygen to H2O2 at carbon felt cathode in undivided cells. Effect of the ratio between the anode and the cathode surfaces and of other operative parameters. Separation and Purification Technology. 208. 116–122. 60 indexed citations
18.
Scialdone, Onofrio, et al.. (2014). Electrochemical Processes and Apparatuses for the Abatement of Acid Orange 7 in Water. SHILAP Revista de lepidopterología. 41. 31–36. 9 indexed citations
19.
Scialdone, Onofrio, et al.. (2014). Utilization of Reverse Electrodialysis Processes for the Abatement of Pollutants in Water. SHILAP Revista de lepidopterología. 41. 139–144. 13 indexed citations
20.
Scialdone, Onofrio, et al.. (2010). Electroreduction of aliphatic chlorides at silver cathodes in water. Journal of Electroanalytical Chemistry. 641(1-2). 14–22. 62 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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