Lee Jason S, Ray Richard I, Lowe Kristine L, Jones-Meehan Joanne, Little Brenda J
Naval Research Laboratory/Code 7303/7330, Stennis Space Center, MS 39529, USA.
Biofouling. 2003 Apr;19 Suppl:151-60. doi: 10.1080/0892701031000078149.
Glycol/seawater mixtures containing > 50% glycol inhibit corrosion of 316L stainless steel and do not support bacterial growth. The results indicate bacteria are able to use low concentrations of glycol (10%) as a growth medium, but bacterial growth decreased with increasing glycol concentration. Pitting potential, determined by anodic polarization, was used to evaluate susceptibility of 316L SS to corrosion in seawater-contaminated glycol. Mixture containing a minimum concentration of 50% propylene glycol-based coolant inhibited pitting corrosion. A slightly higher minimum concentration (55%) was needed for corrosion protection in ethylene glycol mixtures.
乙二醇含量超过50%的乙二醇/海水混合物可抑制316L不锈钢的腐蚀,且不支持细菌生长。结果表明,细菌能够利用低浓度的乙二醇(10%)作为生长培养基,但随着乙二醇浓度的增加,细菌生长会减少。通过阳极极化测定的点蚀电位用于评估316L不锈钢在受海水污染的乙二醇中发生腐蚀的敏感性。含有最低浓度为50%的丙二醇基冷却液的混合物可抑制点蚀。乙二醇混合物的腐蚀防护需要略高的最低浓度(55%)。