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首页> 外文期刊>Water Environment Research >Influence of impressed current cathodic protection systems on chemical characteristics of underground water
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Influence of impressed current cathodic protection systems on chemical characteristics of underground water

机译:压印电流阴极保护系统对地下水化学特性的影响

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摘要

Despite well‐known corrosion inhibition behavior of cathodic protection (CP) system, this process might be a potential hazard to surrounding ecosystem resulted mostly from continuous electrical current which is applied to the adjacent environment and metallic anode dissolution as well. In this research, deepwater CP wells at different locations of Golestan province, Iran, were taken into consideration to evaluate the impact of these protective systems on underground waters from viewpoint of chemical and physicochemical characteristics resulted from anode dissolution. For this purpose, concentration of metallic constituents of the anode as well as the amount of pH, total dissolved solids (TDS), electrical conductivity (EC), and total hardness were determined. On the basis of obtained results, the concentration of Mn, Cr, and Fe in CP well located nearby an industrial district (i.e., 0.087, 0.475, and 8.5 mg/L, respectively) was higher than both WHO and USEPA standards. This fact can be resulted from the position where the well was dug as well as the CP anode dissolution within the deep CP water wells. Practitioner points The impact of impressed current cathodic protection (ICCP) system on chemical and physicochemical characteristics of underground water has been evaluated. Anode dissolution of ICCP systems influences the water characteristics nearby the anodes. Despite low dissolution rate of high silicon cast iron anodes, their long‐term utilization might be harmful for adjacent ecosystem. The amount of heavy metals in underground waters was demonstrated to be influenced by the employment of ICCP system. Both anode dissolution and the geological properties of the Earth`s crust surrounding the wellbore might be responsible for significant increase of heavy metals concentration. Influence of impressed current cathodic protection on nearby water environment.
机译:尽管具有众所周知的阴极保护(CP)系统的腐蚀行为,但该过程可能是对周围生态系统的潜在危害,主要来自施加到相邻环境和金属阳极溶解的连续电流。在本研究中,考虑到伊朗古尔斯坦省不同地点的深水CP井,从阳极溶解导致的化学和物理化学特性,评估这些保护系统对地下水域的影响。为此目的,测定阳极的金属成分的浓度以及pH值,总溶解固体(TDS),导电性(EC)和总硬度。在获得的结果的基础上,CP井的Mn,Cr和Fe井位于工业区(即0.087,0.475和8.5 mg / L)高于WHO和USEPA标准。这一事实可以由井被挖出的位置以及深层CP水井内的CP阳极溶解来产生。从业者指出了深入的电流阴极保护(ICCP)系统对地下水的化学和物理化学特性的影响。 ICCP系统的阳极溶解对阳极附近的水特性影响。尽管高硅铸铁阳极溶出速率低,但它们的长期利用可能对邻近生态系统有害。地下水中的重金属的数量被证明受到国际公然交会委员会的影响。阳极溶解和地球围绕井筒周围地壳的地质特性可能是负责重金属浓度的显着增加。压印电流阴极保护对附近水环境的影响。

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