Experimental and detailed DFT/MD simulation of α-aminophosphonates as promising corrosion inhibitor for XC48 carbon steel in HCl environment
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering,General Chemistry
Reference107 articles.
1. Application of eco-friendly products as corrosion inhibitors for metals in acid pickling processes–A review;Zaferani;J Environ Chem Eng,2013
2. An overview of the recovery of acid from spent acidic solutions from steel and electroplating industries;Agrawal;J Hazard Mater,2009
3. How corrosion affects industry and life;Javaherdashti;Anti-Corrosion Methods Mater,2000
4. Recent developments in sustainable corrosion inhibitors: design, performance and industrial scale applications;Verma;Mater Adv,2021
5. New eco-friendly cationic surfactants: synthesis, characterization and applicability as corrosion inhibitors for carbon steel in 1 N HCl;Negm;Colloid Surfaces A Physicochem Eng Asp,2011
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