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De-scaling, experimental, DFT, and MD-simulation studies of unwanted growing plant as natural corrosion inhibitor for SS-410 in acid medium

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Al-Azhar University – Gaza
Singh R.; Prasad D.; Safi Z.; Wazzan N.; Guo L.
Singh, Rahul (60005948000); Prasad, Dwarika (24460575600); Safi, Zaki (16199979600); Wazzan, Nuha (36155094500); Guo, Lei (25934264300)
60005948000; 24460575600; 16199979600; 36155094500; 25934264300
2022
Colloids and Surfaces A: Physicochemical and Engineering Aspects
De-scaling, experimental, DFT, and MD-simulation studies of unwanted growing plant as natural corrosion inhibitor for SS-410 in acid medium
649
Elsevier B.V.
129333
Department of Chemistry, Shri Guru Ram Rai University, Dehradun, 248001, India; Al Azhar University-Gaza, Chemistry Department, Faculty of Science, P.O Box 1277, Gaza, Palestine; King Abdulaziz University, Chemistry Department, Faculty of Science, P.O Box 42805, Jeddah, 21589, Saudi Arabia; School of Materials and Chemical Engineering, Tongren University, Tongren, 554300, China
Singh R., Department of Chemistry, Shri Guru Ram Rai University, Dehradun, 248001, India; Prasad D., Department of Chemistry, Shri Guru Ram Rai University, Dehradun, 248001, India; Safi Z., Al Azhar University-Gaza, Chemistry Department, Faculty of Science, P.O Box 1277, Gaza, Palestine; Wazzan N., King Abdulaziz University, Chemistry Department, Faculty of Science, P.O Box 42805, Jeddah, 21589, Saudi Arabia; Guo L., School of Materials and Chemical Engineering, Tongren University, Tongren, 554300, China
43
10.1016/j.colsurfa.2022.129333
AFM; Ageratum houstonianum; De-scaling; DFT; Electrochemical analysis; MD; SS-410 steel
Adsorption; Benzoic acid; Chemical analysis; Corrosion inhibitors; Corrosion protection; Efficiency; Electrochemical corrosion; Losses; Petroleum industry; Pipeline corrosion; Quantum chemistry; Steel corrosion; acid; Ageratum houstonianum extract; benzoic acid; beta tertamethoxy phenyl, 6 hydroxyl 2,3,4,5 tetramethoxy benzoic acid; eupalestin; hydroxyl group; octa methoxy flavone; phytochemical; plant extract; steel; unclassified drug; Ageratum houstonianum; Atomic force; Atomic force microscope; De-scaling; DFT; Electrochemical analysis; Inhibition efficiency; MD; Scalings; SS-410 steel; adsorption kinetics; Ageratum houstonianum; agricultural land; Article; atomic force microscopy; body weight loss; controlled study; corrosion; current density; density functional theory; electrochemical analysis; growth inhibition; nonhuman; petrochemical industry; plant growth; quantum chemistry; simulation; surface property; Pipelines