硫酸あるいは硝酸溶液添加時のCaあるいはMgの水酸化物から調製したCaあるいはMg含有水溶液の緩衝作用

It has been suggested that the eluate from steelmaking slag has a buffering effect. However the mechanism of the buffering action has not been elucidated. The slag eluate contains various elements such as Ca, Mg, Si, Al, and so on. CO2 in air influence pH. Therefore, in this study, we performed a mo...

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Published in鉄と鋼 Vol. 106; no. 11; pp. 851 - 857
Main Authors 安池, 俊也, 笹野, 順司, 世山, 奨大, 横山, 誠二
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本鉄鋼協会 2020
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ISSN0021-1575
1883-2954
DOI10.2355/tetsutohagane.TETSU-2020-019

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Abstract It has been suggested that the eluate from steelmaking slag has a buffering effect. However the mechanism of the buffering action has not been elucidated. The slag eluate contains various elements such as Ca, Mg, Si, Al, and so on. CO2 in air influence pH. Therefore, in this study, we performed a model experiment in which an aqueous solution of sulfuric acid or nitric acid, which is a representative acid of the acid rain, was added to an aqueous solution containing Ca or Mg in Ar. Its solution was prepared from its hydroxide and ultrapure water. The pH behavior of the solution was investigated to clarify the factors which determined the pH. When the acid solution was added to the solution containing Ca or Mg, pH decreased gradually. At a certain amount of addition of the acid solution, the pH decreased steeply, and, subsequently, decreased gradually. The pH of the solution containing Ca or Mg was determined by the charge balance of ions in the solution. Those two gradual decreases in pH corresponded buffering action. This was caused by the reaction of water dissociation. The equivalence point was the point where concentration of Ca2+ or Mg2+ was equal to the concentration of SO42–, or twice that of NO3–. The pH at this point was seven. The sharp pH change occurred at pH of approximately seven.
AbstractList It has been suggested that the eluate from steelmaking slag has a buffering effect. However the mechanism of the buffering action has not been elucidated. The slag eluate contains various elements such as Ca, Mg, Si, Al, and so on. CO2 in air influence pH. Therefore, in this study, we performed a model experiment in which an aqueous solution of sulfuric acid or nitric acid, which is a representative acid of the acid rain, was added to an aqueous solution containing Ca or Mg in Ar. Its solution was prepared from its hydroxide and ultrapure water. The pH behavior of the solution was investigated to clarify the factors which determined the pH. When the acid solution was added to the solution containing Ca or Mg, pH decreased gradually. At a certain amount of addition of the acid solution, the pH decreased steeply, and, subsequently, decreased gradually. The pH of the solution containing Ca or Mg was determined by the charge balance of ions in the solution. Those two gradual decreases in pH corresponded buffering action. This was caused by the reaction of water dissociation. The equivalence point was the point where concentration of Ca2+ or Mg2+ was equal to the concentration of SO42–, or twice that of NO3–. The pH at this point was seven. The sharp pH change occurred at pH of approximately seven.
Author 横山, 誠二
安池, 俊也
世山, 奨大
笹野, 順司
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References_xml – reference: 1) Kankyousyo Reiwa Gannnennbann Kankyouhakusyo Junnkanngatasyakaihakusyo Seibututayouseihakusyo (White paper of Environment, Sustainable society, and Biodiversity), Ministry of the Environment, Government of Japan, Tokyo, (2019), 231 (in Japanese).
– reference: 6) X. Zhang, H. Matsuura and F. Tsukihashi: ISIJ Int., 52(2012), 928. https://doi.org/10.2355/isijinternational.52.928
– reference: 10) S.Yokoyama, A.Suzuki, H.B.M.N.Nik, H.Kanematsu, A.Ogawa, T.Takahashi, M.Izaki and M.Umemoto: Tetsu-to-Hagané, 96(2010), 698 (in Japanese). https://doi.org/10.2355/tetsutohagane.96.698
– reference: 13) W.L.Lindsay: Chemical Equilibria in Soils, John Wiley &Sons, (1979), 89.
– reference: 4) W.M. Mayes, P.L. Younger and J. Aumônier: Environ. Sci. Technol., 40(2006), 1237. https://doi.org/10.1021/es051304u
– reference: 2) T.A. Clair and A. Hindar: Environ. Rev., 13(2005), 91. https://doi.org/10.1139/a05-009
– reference: 12) T. Takahashi and S. Yokoyama: ISIJ Int., 56(2016), 1497. https://doi.org/10.2355/isijinternational.ISIJINT-2015-539
– reference: 7) X. Zhang, H. Matsuura and F. Tsukihashi: J. Sustain. Metall., 2(2016), 123. https://doi.org/10.1007/s40831-015-0040-6
– reference: 14) R.Inoue: Monitoring Artificial Materials and Microbes in Marine Ecosystems, Interactions and Assessments Methods, ed. by T.Takahashi, Bentham Science Publishers, Singapore, (2020), 214.
– reference: 8) S.Yokoyama, A.Suzuki, M.Izaki and M.Umemoto: Tetsu-to-Hagané, 95(2009), 434 (in Japanese). https://doi.org/10.2355/tetsutohagane.95.434
– reference: 3) Iron and Steel Slag 2018 ver., (2019), Nippon Slag Association, Tokyo, (2019), (in Japanese).
– reference: 11) S. Yokoyama, T. Shimomura, M.N.N. Hisyamudin, T. Takahashi and M. Izaki: J. Phys. Conf. Ser., 352(2012), 012051. https://doi.org/10.1088/1742-6596/352/1/012051
– reference: 15) H.Matsuura: Monitoring Artificial Materials and Microbes in Marine Ecosystems, Interactions and Assessments Methods, ed. by T.Takahashi, Bentham Science Publishers, Singapore, (2020), 243.
– reference: 9) S. Yokoyama, A. Suzuki, N.H.B.M. Nor, H. Kanematsu, A. Ogawa, T. Takahashi, M. Izaki and M. Umemoto: ISIJ Int., 50(2010), 630. https://doi.org/10.2355/isijinternational.50.630
– reference: 5) A. Hayashi, H. Tozawa, K. Shimada, K. Takahashi, R. Kaneko, F. Tsukihashi, R. Inoue and T. Ariyama: ISIJ Int., 51(2011), 1919. https://doi.org/10.2355/isijinternational.51.1919
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Snippet It has been suggested that the eluate from steelmaking slag has a buffering effect. However the mechanism of the buffering action has not been elucidated. The...
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SubjectTerms buffering action
charge balance
dissociation of water
Title 硫酸あるいは硝酸溶液添加時のCaあるいはMgの水酸化物から調製したCaあるいはMg含有水溶液の緩衝作用
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