<p>The effects of multilayer sea sand particles of varying sizes and <i>Shewanella algae</i> (<i>S. algae</i>) on the corrosion behavior of 316 stainless steel (SS) were investigated. The findings reveal that in a sterile environment, sand hinders the diffusion of dissolved oxygen, thereby impeding the growth of the passive film and enhancing the corrosion of 316 SS. The promotion effect intensifies as the particle size of the sand decreases. In a non-sterile environment, in the absence of sand, <i>S. algae</i> accelerates the corrosion by consuming dissolved oxygen, and expediting the breakdown of passive film. The corrosion acceleration caused by <i>S. algae</i> is markedly greater than that induced by sand. When sand is present, it markedly reduces the effective attachment of <i>S. algae</i>, thereby mitigating the corrosion-accelerating effect of <i>S. algae</i>. Additionally, a reduction in sand particle size leads to a decrease in <i>S. algae</i> attachment and an enhancement in corrosion inhibition.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Influence of multilayer sea sand and Shewanella algae on the corrosion behavior of 316 SS

  • Yufeng Shen,
  • Rongyao Ma,
  • Changgang Wang,
  • Junhua Dong,
  • Dake Xu

摘要

The effects of multilayer sea sand particles of varying sizes and Shewanella algae (S. algae) on the corrosion behavior of 316 stainless steel (SS) were investigated. The findings reveal that in a sterile environment, sand hinders the diffusion of dissolved oxygen, thereby impeding the growth of the passive film and enhancing the corrosion of 316 SS. The promotion effect intensifies as the particle size of the sand decreases. In a non-sterile environment, in the absence of sand, S. algae accelerates the corrosion by consuming dissolved oxygen, and expediting the breakdown of passive film. The corrosion acceleration caused by S. algae is markedly greater than that induced by sand. When sand is present, it markedly reduces the effective attachment of S. algae, thereby mitigating the corrosion-accelerating effect of S. algae. Additionally, a reduction in sand particle size leads to a decrease in S. algae attachment and an enhancement in corrosion inhibition.