Excellent corrosion inhibition efficiency of Catharanthus roseus (Nayantara or Sadabahar) leaf aqueous extract on mild steel in chloride-contaminated solutions at different pH

IF 8.6 2区 工程技术 Q1 ENERGY & FUELS Sustainable Materials and Technologies Pub Date : 2024-07-22 DOI:10.1016/j.susmat.2024.e01058
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Abstract

The efficacy of Catharanthus roseus (Nayantara or Sadabahar) leaf extract as a green corrosion inhibitor for mild steel in chloride-contaminated environments has been investigated in the present work. This study has employed a straightforward, practical, and less expensive Maceration process to prepare leaf extract. The adaptability of the extract as a corrosion inhibitor has been evaluated through electrochemical polarization and impedance studies in chloride-contaminated environments with varying pH levels. In addition, long-term corrosion monitoring has been conducted to evaluate the sustainability of the inhibitor against chloride-induced corrosion at a neutral pH level. This novel study has revealed that the extract defends mild steel against chloride assaults better at pH 2 than it does in neutral or alkaline conditions. Moreover, electrochemical studies and subsequent characterizations have confirmed the film-forming nature of the inhibitor.

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在不同 pH 值的氯化物污染溶液中,Catharanthus roseus(Nayantara 或 Sadabahar)叶水提取物对低碳钢的优异缓蚀效果
本研究调查了(Nayantara 或 Sadabahar)叶提取物作为绿色缓蚀剂在氯化物污染环境中对低碳钢的功效。本研究采用了一种简单、实用且成本较低的浸渍工艺来制备叶提取物。通过在不同 pH 值的氯化物污染环境中进行电化学极化和阻抗研究,评估了萃取物作为缓蚀剂的适应性。此外,还进行了长期腐蚀监测,以评估该抑制剂在中性 pH 水平下对氯化物引起的腐蚀的可持续性。这项新颖的研究表明,该提取物在 pH 值为 2 时比在中性或碱性条件下更能保护低碳钢免受氯化物的侵蚀。此外,电化学研究和随后的表征也证实了这种抑制剂的成膜性。
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来源期刊
Sustainable Materials and Technologies
Sustainable Materials and Technologies Energy-Renewable Energy, Sustainability and the Environment
CiteScore
13.40
自引率
4.20%
发文量
158
审稿时长
45 days
期刊介绍: Sustainable Materials and Technologies (SM&T), an international, cross-disciplinary, fully open access journal published by Elsevier, focuses on original full-length research articles and reviews. It covers applied or fundamental science of nano-, micro-, meso-, and macro-scale aspects of materials and technologies for sustainable development. SM&T gives special attention to contributions that bridge the knowledge gap between materials and system designs.
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