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The Influence of Flow Rate on Corrosion Behavior of X65 Carbon Steel in Water-saturated Supercritical CO2/H2S System

机译:流速对水饱和超临界CO2 / H2S系统X65碳钢腐蚀行为的影响

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The influence of flow rate on corrosion behavior of X65 carbon steel in water-saturated supercritical CO2 phase containing 1000 ppmv H2S impurity was studied at 35 °C and 8 MPa from 0 m/s to 1.5 m/s.Weight loss tests showed that the general corrosion rate reached maximum at the flow rate of 1 m/s and then decreased with flow rate to 1.5 m/s.Turtle pattern corrosion morphology was observed on the sample surface when the flow rate exceeded 1 m/s.The corrosion product mainly consisted of FeCO3 and FeS,and the average size of spherical corrosion product changed with flow rate.Besides,the percentage composition of FeS presented the same change trend as the average size of spherical corrosion product.In supercritical CO2 phase,wall shear stress was not big enough to cause mechanical damage on corrosion film but can affect the formation process and the characteristics of the corrosion film of X65 carbon steel.
机译:在35℃和8MPa的水饱和超临界CO2中X65碳钢对X65碳钢腐蚀行为对含有1000ppmVH2S杂质的影响,从0 m / s至1.5 m / s.重量损失试验显示一般腐蚀速率在1m / s的流速下达到最大值,然后在流量超过1米/秒的流速上观察到样品表面上观察到的流速下降到1.5m / s.tturtle模式腐蚀形态。腐蚀产品主要是由FECO3和FE组成,球形腐蚀产品的平均尺寸随流速而变化。基于FES的百分比组成呈现与球形腐蚀产品的平均尺寸相同的变化趋势。超临界CO2相,壁剪应力不是足够大以引起腐蚀薄膜的机械损伤,但可以影响形成过程和X65碳钢腐蚀膜的特性。

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