Lee Jungeun, Kang Yeji, Kim Jin-Suk, Park Jongdeuk, Lee Jae-Joon, Kim Byung-Kwon
Department of Chemistry, Sookmyung Women's University, Seoul 04310, Republic of Korea.
Technical Research Laboratories, POSCO, Pohang 37859, Republic of Korea.
ACS Omega. 2020 Jun 19;5(25):15709-15714. doi: 10.1021/acsomega.0c02163. eCollection 2020 Jun 30.
Oxide scales often formed on the surface of stainless steel, and it is of high interest to descale the surface oxide effectively and environment-friendly during steel smelting and engineering processing. It is generally done by treating the oxide layer under strong and harsh mixed acid (HNO + HF) conditions or in a strong molten salt (NaOH + NaNO) environment at high temperatures, while the generation of very harmful and environmentally hazardous gases, such as NO , is inevitable. A novel, simple, fast, and environment-friendly electrochemical method at ambient temperature is proposed in this research to remove the oxide scale from the stainless steel surface using an ionic liquid with a small amount of HCl. It was found that the optimized electrochemical anodization treatment in an ionic liquid environment could significantly improve the descaling efficiency at least 50 times faster than the simple passive and slow dissolution in a mixture of an ionic liquid and a concentrated acid.
不锈钢表面常常会形成氧化皮,在钢铁冶炼和工程加工过程中,如何高效且环保地去除表面氧化皮备受关注。通常的做法是在强酸性混合酸(硝酸+氢氟酸)条件下或在高温的强熔盐(氢氧化钠+亚硝酸钠)环境中处理氧化层,但不可避免会产生如一氧化氮等非常有害且对环境有危害的气体。本研究提出了一种新颖、简单、快速且环保的常温电化学方法,使用含有少量盐酸的离子液体去除不锈钢表面的氧化皮。研究发现,在离子液体环境中进行优化的电化学阳极氧化处理,其除垢效率比在离子液体和浓酸混合物中简单的钝化和缓慢溶解至少快50倍。