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首页> 外文期刊>British Journal of Applied Science and Technology >Biocorrosion Study of Mild Steel in DumpsiteLeachates
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Biocorrosion Study of Mild Steel in DumpsiteLeachates

机译:垃圾渗滤液中低碳钢的生物腐蚀研究

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Biocorrosion due to dumpsite leachates can lead to rupture and failure of engineering materials such as mild steel. This study was carried out to assess the effect of dumpsite leachates in corrosion process of mild steel. Mild steel coupons were prepared and immersed completely in leachates from Olusosun dumpsite (A), Ewu Elepe dumpsite (B) and Abule Egba dumpsite (C). The following parameters were measured at regular interval in each of the leachate: Total Dissolved Solids (TDS), Conductivity, pH, Temperature and Dissolved Oxygen (DO) using a multi – parameter water quality monitor and Total Bacterial Count (TBC) using standard method for biological analysis of water flood injection water. The corrosion rate was determined using weight loss method. The results revealed that the weight loss varied between 0.27 and 0.58 g in leachate A, between 0.05 and 0.29 g in leachate B and between 0.02 and 0.50 g in leachate C. Corrosion rate varied between 2.35 and 7.61 mm/yr in leachate A, between 1.15 and 1.48 mm/yr in leachate B and between 1.48 and 7.03 mm/yr in leachate C. Leachate A has the highest range of TDS ranging between 18, 686 and 125, 856 mg/L as well as highest range of Conductivity ranging between 8.62 and 57.75 μS/cm. Moreover, leachate A has the highest range of pH ranging between 5.11 and 5.34 while it has the least range of DO varying between 2.94 and 3.59 mg/L. Leachate B has the highest range of temperature varying between 27.60 and 32.30°C. Leachate C has the least range of TBC ranging between 100 x 103 and 126 x 103 Cfu/ml. The leachates from dumpsites have the potential to cause corrosion of mild steel due to the presence of bacterial in the leachates. It was recommended that dumpsites should not be cited where there are pipelines.
机译:垃圾场渗滤液引起的生物腐蚀可导致工程材料(例如低碳钢)破裂和失效。本研究旨在评估垃圾渗滤液在低碳钢腐蚀过程中的作用。制备了低碳钢试样,并将其完全浸入来自Olusosun垃圾场(A),Ewu Elepe垃圾场(B)和Abule Egba垃圾场(C)的渗滤液中。在每个渗滤液中定期测量以下参数:使用多参数水质监测器的总溶解固体(TDS),电导率,pH,温度和溶解氧(DO)和采用标准方法的总细菌数(TBC)用于注水注水的生物学分析。使用失重法确定腐蚀速率。结果表明,渗滤液A的失重在0.27至0.58 g之间,渗滤液B的失重在0.05至0.29 g之间,渗滤液C的失重在0.02至0.50 g之间。渗滤液A的腐蚀速率在2.35至7.61 mm / yr之间变化。渗滤液B中的1.15和1.48毫米/年,渗滤液C中的1.48和7.03毫米/年。渗滤液A的TDS最高范围介于18、686和125、856 mg / L之间,电导率的最高范围介于15、686和125之间。 8.62和57.75μS/ cm。此外,渗滤液A的pH范围最高,介于5.11和5.34之间,而DO的最小范围介于2.94和3.59 mg / L之间。渗滤液B的最高温度范围在27.60至32.30°C之间。渗滤液C的TBC最小范围为100 x 103至126 x 103 Cfu / ml。由于垃圾渗滤液中存在细菌,垃圾场的渗滤液有可能引起低碳钢的腐蚀。建议不要在有管道的地方引用垃圾场。

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