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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Impact of seawater reverse osmosis (SWRO) product remineralization on the corrosion rate of water distribution pipeline materials
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Impact of seawater reverse osmosis (SWRO) product remineralization on the corrosion rate of water distribution pipeline materials

机译:海水反渗透产品再矿化对配水管道材料腐蚀速率的影响

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Remineralization of desalinated water as part of the post-treatment has attracted great attention lately because of the need for high quality water and for pipeline protection. This study was conducted to examine the effect of various remineralization options on the stabilities of pipeline materials (ductile iron, cast iron and cement lined ductile iron) under tropical conditions. Red dust was found deposited at the reactor bottom in which the iron coupons were suspended. For treatments with Ca~(2+) or CO_3~(2-) additions, white CaCO3 sediment was observed. Remineralization of SWRO water with Ca~(2+) and alkalinity resulted in less corrosion than the other treatments. The lowest corrosion rate occurred with cement lined ductile iron (2.69-6.02 mpy) and the highest with cast iron (5.44-8.38 mpy) in all post-treatments. As results of cement dissolution in the water with cement lined ductile iron, the total alkalinity and total hardness increased from 0-100 to 55-250 mg/L as CaCO3 and the calcium carbonate precipitation potential (CCPP) was raised from-10.5-4.6 to 38-427. Other water quality parameters such as pH, total dissolved solids, conductivity and Ca~(2+) concentration also increased significantly. XRD analysis indicated that corrosion products included FeO(OH), Fe(OH)3, FeO and other iron compounds. Calcium compounds were also detected in the water with Ca~(2+) ions.
机译:由于需要高质量的水和管道保护,脱盐水的再矿化作为后处理的一部分最近引起了广泛的关注。进行这项研究是为了检验各种再矿化选项对热带条件下管道材料(球墨铸铁,铸铁和衬有水泥的球墨铸铁)的稳定性的影响。发现红色尘土沉积在反应器底部,铁试片悬挂在该反应器底部。对于添加Ca〜(2+)或CO_3〜(2-)的处理,观察到白色CaCO3沉积物。与其他处理相比,用Ca〜(2+)和碱度对SWRO水进行再矿化可减少腐蚀。在所有后处理中,衬有水泥的球墨铸铁的腐蚀速率最低(2.69-6.02 mpy),而铸铁的腐蚀速率最高(5.44-8.38 mpy)。水泥衬里球墨铸铁在水中溶解的结果是,随着CaCO3的增加,总碱度和总硬度从0-100增加到55-250 mg / L,碳酸钙沉淀势(CCPP)从-10.5-4.6提高至38-427。其他水质参数,例如pH,总溶解固体,电导率和Ca〜(2+)浓度也显着增加。 XRD分析表明腐蚀产物包括FeO(OH),Fe(OH)3,FeO和其他铁化合物。水中的钙化合物也被Ca〜(2+)离子检测到。

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