A. Rahimi Et Al. , "Enhancement corrosion resistance of mild steel in 15% HCl solution by a novel bio-based polyurethane for oil well acidizing," JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY , vol.113, pp.332-347, 2022
Rahimi, A. Et Al. 2022. Enhancement corrosion resistance of mild steel in 15% HCl solution by a novel bio-based polyurethane for oil well acidizing. JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY , vol.113 , 332-347.
Rahimi, A., Abdouss, M., Farhadian, A., Guo, L., KAYA, S., & Neshati, J., (2022). Enhancement corrosion resistance of mild steel in 15% HCl solution by a novel bio-based polyurethane for oil well acidizing. JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY , vol.113, 332-347.
Rahimi, Alireza Et Al. "Enhancement corrosion resistance of mild steel in 15% HCl solution by a novel bio-based polyurethane for oil well acidizing," JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY , vol.113, 332-347, 2022
Rahimi, Alireza Et Al. "Enhancement corrosion resistance of mild steel in 15% HCl solution by a novel bio-based polyurethane for oil well acidizing." JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY , vol.113, pp.332-347, 2022
Rahimi, A. Et Al. (2022) . "Enhancement corrosion resistance of mild steel in 15% HCl solution by a novel bio-based polyurethane for oil well acidizing." JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY , vol.113, pp.332-347.
@article{article, author={Alireza Rahimi Et Al. }, title={Enhancement corrosion resistance of mild steel in 15% HCl solution by a novel bio-based polyurethane for oil well acidizing}, journal={JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY}, year=2022, pages={332-347} }