Khalid Hamid Rashid Abdul-Khalik
Professor of Corrosion Engineering at the Chemical Engineering Faculty, University of Technology, Iraq
Prof. Dr. Khalid Hamid Rashid Abdul-Khalik have many academic and research activities in the fields of chemical and corrosion engineering. The current research interests are corrosion and corrosion control, green corrosion inhibitors, green technologies, thermal engineering, and many other researches in the fields of chemical engineering. He have a B.Sc., M. Sc. and Ph.D. in chemical engineering from University of Baghdad and published more than 40 research papers in respected journals.
64
Scholar Pubs
34
Scopus Pubs
1,081
Scholar Citations
851
Scopus Citations
23
h-index
Personal information
- Arabic Name
- خالد حامد رشيد عبد الخالق
- English Name
- Khalid Hamid Rashid Abdul-Khalik
- Date of birth
- 1965-08-12
- The academic title
- Professor
- Certificate
- Doctorate
- General Specialization
- Chemical engineering
- Specific Specialization
- Chemical and Corrosion Engineering
- khalid.h.rashid@uotechnology.edu.iq
- Phones
- 07700733818
Researcher's Scientific Achievements
The number of research papers
Citations number
H-Index
Profile Views
Education
Certificate
| Certificate | University name | Country | Date of obtaining |
|---|---|---|---|
| Doctorate | University of Baghdad | Iraq | 2014-04-09 |
Academic titles
| The academic title | Date of obtaining |
|---|---|
| Professor | 2021-12-09 |
Other certifications
| Certificate | Date of obtaining | Description |
|---|---|---|
| دكتوراه | 2014-04-09 | Chemical Engineering / Corrosion Engineering |
Work Positions
Supervision of students
| Name | Date | Description |
|---|---|---|
| Wasan Farhan Hameed | 2021 | Corrosion Inhibition of Mild Steel in CO2 Saturated Saline Solution Using Hexamethylenetetraamine |
| Ali Shareef Jasim | 2022 | Synthesis and Investigations of Organic Corrosion Inhibitors for Mild Steel in Hydrochloric acid Solution |
| Zinah Ibrahim Jasim | 2023 | Synthesis and Characterization of New Heterocyclic Compounds Containing Oxazolidine Ring as Corrosion Inhibitors for Mild Steel in Acidic Solution |
| Hussein Sami Hassan | 2024 | Synthesis and characterization of some new heterocyclic compounds |
Administrative positions
| Name | Date | To Date |
|---|---|---|
| Professor of Corrosion Engineering at the Chemical Engineering Faculty, University of Technology, Iraq | 2021-12-09 | Present |
Research & Activities
Awards and honors
| # | Name | Description | Date |
|---|---|---|---|
| 1 | The international scientific award in gold medal | Awarded the international scientific Prize for the professors, academics and researchers (International Golden Medal with international scientific certificate) in the International Event in Iraq for the year 2019 was awarded by the EVEREST Organization Development Training/NGO and the French Society of thinkers, researchers and inventors in France at the headquarters of the European Union of scientists and inventors sponsored by the Society of Computer Science and Artificial Intelligence and Data Protection of the Ministry of Higher Education and Iraqi scientific research in 2019. | 2019-12-03 |
Patents
| # | Patent | Date | Description |
|---|---|---|---|
| 1 | Synthesis of a novel pyrazole heterocyclic derivative as corrosion inhibitor for low-carbon steel in 1M HCls | 2024-02-21 | A novel organic corrosion inhibitor, named 3, 5-dimethyl-1H-pyrazol-1-yl m (4-((4-hydroxybenzylidene) amino) phenyl) methanone (DPHM) has been effectively synthesized and characterized. The diagnosis of functional groups and constituents of DPHM has been conducted by FTIR, 1 H NMR, and 13C NMR. The inhibitor efficacy for low-carbon steel in 1 M HCl was evaluated by using weight loss and electrochemical techniques. The inhibition efficiency was increased with increasing the temperature and DPHM concentrations. The inhibition efficiency approaches a maximum value of 89.5% at 400 ppm of DPHM and 60 ◦C. The efficiency of the inhibitor was attributed to the formation of a protective mono-layer on the steel surface. The Langmuir adsorption isotherm was used to inspect the adsorption process mechanism. Theoretical quantum chemical simulations were used to investigate the mechanism of inhibition. The results revealed that the DPHM was the donor of electron, while the steel surface was an electron acceptor. Mathematical and statistical modelling were used as powerful tool for data representation. Exponential model, with 0.992 correlation coefficient, was the most accurate one. |
Research interests
Skills in using scientific software
AI Research Summary
AI is analyzing publications......
Generated by AI based on publications
Click the button above to generate an AI summary of this researcher's publications
Publications
Peer Reviews (ORCID)
Loading...
Reviews
Journals