ポリイミド樹脂中銅,鉄,カリウム,ナトリウムの原子吸光分析法による定量
スポンサーリンク
概要
- 論文の詳細を見る
Polyimide resins (polyimide-isoindoloquinazolinc-dione) were decomposed by a dry ashing technique and analyzed for the four elements by flame (air-acety-lene) atomic absorption spectrometry. A specially designed quartz ashing vessel was used to control the temperature and atmospheric composition for the ashing. Recoveries of four elements decreased with increasing ashing temperature, being dependent on crucible niaterials. The recoveries of copper and sodium were not satisfactory when the platinum and quartz crucible were used, respectively. These losses were attributed to the retention of respective metal on the crucible used, which was demonstrated by radioisotopic tracer method. The increase of oxygen content in atmospheric gases resulted in a slight increase of temperature and shortened the ashing time. In practice volatile organic solvent in the resin was first removed by increasing the heating temperature from 100 to 500℃ and then the oxidant gases consisting of oxygen and air in equivalent volume was supplied to the ashing vessel at a flow rate of 1.2 l/min. The temperature was raised to 600℃ to complete the ashing for one hour. The ash was dissolved in 1 ml of nitric acid and stored in 2 N nitric acid, followed by atomic absorption measurements. The standard deviation of (3.3〜7.9) % came out.
- 社団法人日本分析化学会の論文
- 1979-03-05
著者
関連論文
- 陰極スパッタリングによる金属試料の直接原子吸光分析
- 還元気化原子吸光法による水銀及びヒ素の逐次定量
- 蛍光ランプの品質管理における微量試料中のアルカリ土類タングステン塩酸,酸化タングステンの化学分析(品質管理・工程管理のための分析化学)
- 無炎原子吸光法における原子化装置排出ガスの分析 : 鉛の分析における塩化物の干渉現象に対する一考察
- ジルコニウム含浸黒鉛管を用いる黒鉛炉原子吸光法によるガリウムの定量
- 改良黒鉛管を用いる溶媒抽出-黒鉛炉原子吸光法によるバナジウムの定量
- 黒鉛炉原子吸光法によるポリイミド樹脂中の銅,鉄,マンガンの迅速定量
- Application of a New High Frequency Barium Discharge Lamp to Atomic Absorption Spectrometry
- Determination of Nickel by Non-Dispersive Atomic Fluorescence Spectrometry Using a Graphite Furnace Atomizer and a High Frequency Discharge Lamp
- ポリイミド樹脂中銅,鉄,カリウム,ナトリウムの原子吸光分析法による定量
- パイロリティックグラファイト被覆管を用いる黒鉛炉原子吸光法による希土類及びアルカリ土類元素の分析
- 黒鉛炉原子吸光分析におけるバリウムのイオン化