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Effect of corrosion inhibitors on corrosiveness of palm biodiesel

机译:缓蚀剂对棕榈生物柴油腐蚀性的影响

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The present study aims to investigate the effect of two organic corrosion inhibitors, i.e. benzotriazole and adenine on the corrosion behaviour of copper and mild steel upon exposure to palm biodiesel. Static immersion tests were conducted by exposing copper and mild steel coupons to palm biodiesel (B100) in the presence and absence of two different corrosion inhibitors at room temperature (25-27 degrees C) for 60 days. Benzotriazole and adenine were added to palm biodiesel at 100, 200, 300 ppm concentrations. In molarity, these concentrations will be 0.72, 1.44, 2.16 mol L-1 and 0.64, 1.27, 1.90 mol L-1 for benzotriazole and adenine respectively. Exposed metal surfaces were characterised by SEM, EDS and atomic force microscopy analysis. Results showed that mild steel surface has degraded comparatively less than that of copper surface in palm biodiesel without corrosion inhibitors. However, benzotriazole was found to be more effective in corrosion inhibition of copper and mild steel than that of adenine in palm biodiesel.
机译:本研究旨在研究两种有机腐蚀抑制剂,即苯并三唑和腺嘌呤,在接触棕榈生物柴油后对铜和低碳钢的腐蚀行为的影响。通过在存在和不存在两种不同腐蚀抑制剂的情况下,在室温(25-27摄氏度)下将铜和低碳钢试样暴露于棕榈生物柴油(B100)中进行60天的静态浸没测试。将苯并三唑和腺嘌呤以100、200、300 ppm的浓度添加到棕榈生物柴油中。以摩尔计,对于苯并三唑和腺嘌呤,这些浓度分别为0.72、1.44、2.16mol L-1和0.64、1.27、1.90mol L-1。通过SEM,EDS和原子力显微镜分析对暴露的金属表面进行表征。结果表明,在没有腐蚀抑制剂的情况下,棕榈生物柴油中的低碳钢表面的降解程度比铜表面的降解程度要低。但是,在棕榈生物柴油中,发现苯并三唑对铜和低碳钢的腐蚀抑制作用比腺嘌呤更有效。

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