Laboratory Investigation of Washing Practices and Bio-Based Additive for Mitigating Metallic Corrosion by Magnesium Chloride Deicer

Laboratory Investigation of Washing Practices and Bio-Based Additive for Mitigating Metallic Corrosion by Magnesium Chloride Deicer
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用于减轻氯化镁除冰剂金属腐蚀的洗涤方法和生物基添加剂的实验室研究

DOI:
10.1061/(asce)mt.1943-5533.0001727
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发表时间:
2017
影响因子:
3.2
通讯作者:
Yongxin Li
Yongxin Li
中科院分区:
工程技术3区
文献类型:
--
作者:
Xianming Shi;Emily Jackson;Yan Zhang;Yongxin Li

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摘要本工作评估了管理氯化镁基除冰剂对设备机队金属部件腐蚀作用的最佳做法。本研究的第一部分评估了除盐剂对裸金属的洗涤效果。采用浸干试验模拟了现场条件。在测试程序中使用碳钢(C1010)、铝合金(Al1100)和不锈钢(SS304L)来评估水、肥皂水和商业除盐剂在洗涤实践中的使用情况。利用线性极化和电化学阻抗谱测量研究了金属的腐蚀行为。数码照片和扫描电镜显示了腐蚀片的表面形貌。除盐剂能显著提高碳钢和不锈钢在重量比为30%的MgCl2溶液中的耐蚀性,但对铝合金的耐蚀性没有显著提高。进一步的研究集中在评价一种创新的甜菜副产品…
AbstractThis work evaluates best practices for managing the corrosive effect of magnesium-chloride-based deicers on the metallic components of equipment fleets. The first part of this study evaluates the effectiveness of salt remover for washing bare metals. A dip-dry test was employed to simulate the field conditions. Carbon steel (C1010), aluminum alloy (Al1100), and stainless steel (SS304L) were used in the test program to evaluate the use of water, soapy water, and a commercial salt remover in washing practices. The corrosion behavior of metals was studied using linear polarization and electrochemical impedance spectroscopy measurements. Digital photos and scanning electron microscopy revealed the surface morphology of corrosion coupons. The salt remover could significantly enhance the corrosion resistance of carbon steel and stainless steel in a 30%-by-weight MgCl2 solution, but not that of the aluminum alloy. Further investigation focused on the evaluation of an innovative sugar beet by-product for ...
DOI: 10.1016/j.porgcoat.2008.09.003
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