Measurement of Cationic Polyelectrolyte Concentration by Continuous Flow Collid Titration

Studies were made in which a continuous flow analysis was applied in colloid titration to measure cationic polyelectrolytes. For establishing the dosage at the end point of titration, a dual-frequency photometric cell was used. Effects caused by dissolved salinity and turbidity were also investigate...

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Published inJapan journal of water pollution research Vol. 14; no. 1; pp. 31 - 37,29
Main Author IGARASHI, Chiaki
Format Journal Article
LanguageJapanese
Published Japan Society on Water Environment 1991
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ISSN0387-2025
DOI10.2965/jswe1978.14.31

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Abstract Studies were made in which a continuous flow analysis was applied in colloid titration to measure cationic polyelectrolytes. For establishing the dosage at the end point of titration, a dual-frequency photometric cell was used. Effects caused by dissolved salinity and turbidity were also investigated. Results obtained were as follows. 1) It was possible to use the colloid titration end point as the set value, wherein a constant-fold value of the difference in the transmitted light intensity just before adding the titrant is defined as the titration end point, and whereby the transition reaction of a toluidine blue indicator is detected through the difference in the transmitted light intensity at each frequency subject to measurement. 2) It was possible to measure samples whose ionic strength was less than approximately 0.04 as they were not diluted, provided that the said constant was 0.8 and that the titration end point was defined as the region where the transition reaction of the indicator began. 3) The effect of turbidity on this measurement method could be neglected, provided that the turbidity of samples were below approximately 150 units. 4) The continuous flow analysis testing system were determined to have favorable responsibility and accuracy within a range of 00.1meq·l-1.
AbstractList Studies were made in which a continuous flow analysis was applied in colloid titration to measure cationic polyelectrolytes. For establishing the dosage at the end point of titration, a dual-frequency photometric cell was used. Effects caused by dissolved salinity and turbidity were also investigated. Results obtained were as follows. 1) It was possible to use the colloid titration end point as the set value, wherein a constant-fold value of the difference in the transmitted light intensity just before adding the titrant is defined as the titration end point, and whereby the transition reaction of a toluidine blue indicator is detected through the difference in the transmitted light intensity at each frequency subject to measurement. 2) It was possible to measure samples whose ionic strength was less than approximately 0.04 as they were not diluted, provided that the said constant was 0.8 and that the titration end point was defined as the region where the transition reaction of the indicator began. 3) The effect of turbidity on this measurement method could be neglected, provided that the turbidity of samples were below approximately 150 units. 4) The continuous flow analysis testing system were determined to have favorable responsibility and accuracy within a range of 00.1meq·l-1.
Author IGARASHI, Chiaki
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References 4) 岩倉義雄(1962)高分子物質の化学構造と物理的性質, 高分子, 11,961-1065.
5) 玉手徳太郎, 高橋昭, 松前鼎一(1978)水質管理計器の概要, 水道協会雑誌, 523, 84-112.
2) 五十嵐千秋, 郷田昭一, 衛藤正徳, 鈴木英友(1987)下水汚泥のベルトプレス脱水操作におけるカチオン性有機高分子凝集剤添加率の制御指標の検討, 化学工学論文集, 13,392-398.
6) 田中浩雄(1983)コロイド滴定におよぼす塩類の影響, 紙パルプ技術協会誌37,939-948.
1) 五十嵐千秋, 佐藤広昭, 鈴木英友(1986)し尿処理汚泥の有機高分子凝集剤処理における凝集剤の吸着と凝集汚泥の脱水性, 化学工学論文集, 12,694-700.
3) 五十嵐千秋(1988)コロイド滴定法によるカチオン性有機高分子凝集剤の定量に及ぼす溶存塩類及び濁度の影響, 水質汚濁研究, 11,774-782.
7) 田中浩雄(1983)コロイド滴定における塩類の影響の除去法, 紙パルプ技術協会誌, 37, 1005-1010.
8) 桐栄恭二, 河田清(1972)コロイド滴定試剤の検討, 分析化学, 21, 1510-1515.
References_xml – reference: 2) 五十嵐千秋, 郷田昭一, 衛藤正徳, 鈴木英友(1987)下水汚泥のベルトプレス脱水操作におけるカチオン性有機高分子凝集剤添加率の制御指標の検討, 化学工学論文集, 13,392-398.
– reference: 7) 田中浩雄(1983)コロイド滴定における塩類の影響の除去法, 紙パルプ技術協会誌, 37, 1005-1010.
– reference: 5) 玉手徳太郎, 高橋昭, 松前鼎一(1978)水質管理計器の概要, 水道協会雑誌, 523, 84-112.
– reference: 1) 五十嵐千秋, 佐藤広昭, 鈴木英友(1986)し尿処理汚泥の有機高分子凝集剤処理における凝集剤の吸着と凝集汚泥の脱水性, 化学工学論文集, 12,694-700.
– reference: 6) 田中浩雄(1983)コロイド滴定におよぼす塩類の影響, 紙パルプ技術協会誌37,939-948.
– reference: 3) 五十嵐千秋(1988)コロイド滴定法によるカチオン性有機高分子凝集剤の定量に及ぼす溶存塩類及び濁度の影響, 水質汚濁研究, 11,774-782.
– reference: 4) 岩倉義雄(1962)高分子物質の化学構造と物理的性質, 高分子, 11,961-1065.
– reference: 8) 桐栄恭二, 河田清(1972)コロイド滴定試剤の検討, 分析化学, 21, 1510-1515.
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Snippet Studies were made in which a continuous flow analysis was applied in colloid titration to measure cationic polyelectrolytes. For establishing the dosage at the...
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StartPage 31
SubjectTerms cationic polyelectrolyte
colloid titration
continuous flow
ionic strength
turbidity
Title Measurement of Cationic Polyelectrolyte Concentration by Continuous Flow Collid Titration
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Volume 14
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