An overview of sustainable green inhibitors for aluminum in acid media

IF 1.6 Q4 ENVIRONMENTAL SCIENCES AIMS Environmental Science Pub Date : 2022-01-01 DOI:10.3934/environsci.2023003
P. Desai, F. Desai
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引用次数: 3

Abstract

Metal corrosion is a significant and growing area of study in industrial problems, which has found productive research ground in the field of green chemistry. In the last 10 years, green chemistry has been highlighting the importance of safeguarding human as well as the environmental well-being, in an economically advantageous way aiming at keeping away from reducing waste hazardous toxins, and pollutants. The era of metal degradation, commonly faced due to the usage of hazardous chemicals became very relevant and useful in the research area of chemistry. Even though several experiments have been conducted and, several research articles were published on this topic of nature-friendly green and clean inhibitors still there are yet a lot of things to be explored in this field for sustainable eco-friendly existence of human and natural interconnected existence. The main aim of the study is to provide a summary and describe the past authentic research that accounted in the research literature to employ eco-friendly corrosion inhibitors, especially extraction from leaves, stems, seeds, and fruits of the plants for aluminum alloy in acid solutions in the past decade. Weight loss and electrochemical approaches are among the most often utilized methods to measure corrosion rate and to evaluate the effectiveness of green corrosion inhibitors. The relevance of the area prompted the further study, leading to a large number of substances being evaluated.
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酸性介质中铝的可持续绿色抑制剂综述
金属腐蚀是工业问题中一个重要的、不断发展的研究领域,在绿色化学领域已经找到了富有成效的研究基础。在过去的十年里,绿色化学一直强调保护人类和环境健康的重要性,以经济上有利的方式,旨在避免减少废物,有害毒素和污染物。由于危险化学品的使用而普遍面临的金属降解问题在化学研究领域变得非常相关和有用。尽管对自然友好的绿色清洁抑制剂这一主题已经进行了多次实验,发表了几篇研究文章,但为了人类与自然相互关联的可持续生态生存,在这一领域还有很多东西需要探索。本研究的主要目的是总结和描述过去在研究文献中使用生态友好型缓蚀剂的真实研究,特别是在过去的十年中,从植物的叶子、茎、种子和果实中提取酸溶液中的铝合金。失重和电化学方法是测量腐蚀速率和评估绿色缓蚀剂有效性的最常用方法。该领域的相关性促使进一步研究,导致对大量物质进行评估。
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来源期刊
AIMS Environmental Science
AIMS Environmental Science ENVIRONMENTAL SCIENCES-
CiteScore
2.90
自引率
0.00%
发文量
31
审稿时长
5 weeks
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