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Concentration of Corrosive Impurities Due to Early Condensation - Effect of pH and Their Concentration in Steam

机译:由于早期缩合导致腐蚀性杂质的浓度 - pH的效果及其在蒸汽中的浓度

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The concentration ratio of corrosive impurities due to early condensation was measured using our experimental early condensation device presented at IWC-'97. In this paper we report the behavior of NaCl and NH_4Cl as an impurity in steam. In the case of NaCl the concentration ratio increased with lowering the concentrations in steam. With NH_4Cl we confirmed also its concentration in early condensate. The dependecy of concentration ratio on NH_4Cl concentration was similar to that of NaCl. Even though the impurities concentration in steam was several order of magnitude higher than that in power plant steam, we could estimate the concentration ratio roughly, extrapolating the relation curve. This suggests that the ratio could go up to several orders of magnitude. On the contrary, in the case of NFL as an impurity, the concentration peak was not observed. This is understandable because of its high volatility. When pH of sample water containing NaCl was adjusted to about 10 with ammonia, we could not observed the concentration peak due to early condensation. This was quite different from the behaivior of neutral steam containing NaCl, in which case the peak was clearly observed. In the ammoniacal water three intermediats of impurities such as NaOH, NaCl and NH_4Cl could exist in steam. As NaOH of them has largest affinity for H_2O, this was preferentially dissolved in early condensates. This might be the reason for that the ammoniacal water behaved similarly to NaOH water in the early condensate process.
机译:使用在IWC-97上呈现的实验性早期冷凝装置测量引起的早期缩合引起的腐蚀性杂质的浓度比。在本文中,我们将NaCl和NH_4CL的行为报告为蒸汽中的杂质。在NaCl的情况下,浓度比随降低蒸汽中的浓度而增加。使用NH_4CL,我们还在早期冷凝物中确认其浓度。 NH_4Cl浓度的浓度比的稠度与NaCl的浓度相似。尽管蒸汽中的杂质浓度比发电厂蒸汽高的几个数量级,但我们可以大致估计浓度比,推断关系曲线。这表明该比率可以高达几个数量级。相反,在NFL作为杂质的情况下,未观察到浓度峰。这是可以理解的,因为它的波动性很高。当用氨将含有NaCl的样品水的pH调节至约10时,我们无法观察到由于早期缩合引起的浓度峰值。这与含有NaCl的中性蒸汽的代表性有很大不同,在这种情况下,峰清楚地观察到峰值。在氨水中,在蒸汽中可能存在诸如NaOH,NaCl和NH_4Cl等杂质的三种中间体。由于它们的NaOH对H_2O具有最大的亲和力,这优先溶解在早期的缩合物中。这可能是在早期冷凝水过程中与NaOH水相似的氨水的原因。

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