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1)  ferrocyanide ascorbic acid system
亚铁氰化钾/抗坏血酸体系
2)  ferrous-L-ascorbate
L-抗坏血酸亚铁
1.
Synthesis and characterization of ferrous-L-ascorbate;
L-抗坏血酸亚铁的合成及表征
3)  POTASSIUM FERROCYANIDE 99%
氰亚铁酸钾
4)  potassium ferrocyanide
亚铁氰化钾
1.
Based on the reaction between metoclopramide,alkaline luminol and potassium ferrocyanide to produce chemiluminescence,a new chemiluminescence system with flow injection technology for the determination of metoclopramide has been proposed in this paper.
基于在碱性条件下,甲氧氯普胺能够与鲁米诺和亚铁氰化钾产生化学发光的现象,结合流动注射技术,建立了测定甲氧氯普胺的化学发光新体系。
2.
The quantitative determination method of potassium ferrocyanide in edible salt is described in the paper.
本方法采用蒸馏食用盐中亚铁氰化钾 ,吸收氰根 ,吡啶 -吡唑啉酮显色定量测定。
3.
The catalytic action of mercury(Ⅱ ) on the colour reaction between potassium ferrocyanide and 4, 7-diphenyl-1, 10-phenanthrolihe has been studied, The addition of thiourea will further increase the sensitivity of the reaction.
本文研究了汞催化亚铁氰化钾与4,7-二苯基-1,10-菲啰啉显色反应体系,硫脲的加入显著提高了体系的灵敏度,摩尔吸光系数ε=4。
5)  Potassium Ferrouscyanide
亚铁氰化钾
1.
Then,reduce the remaining Ferric ion content under the H 2O 2 oxidation condition with Potassium Ferrouscyanide or,under the recovery condition,use Potassium Ferricyanideagain to complete the ferrous ion reduction.
硫酸铝母液在 pH =3左右时 ,先用铁氰化钾除去母液的亚铁离子 ,在H2 O2 氧化的条件下 ,再用亚铁氰化钾继续除去剩余的铁 (或在还原的条件下 ,继续用铁氰化钾除去剩余的铁 ) ,取得很好的效果 ,结果表明除铁后的硫酸铝母液中总铁含量小于 0 。
6)  K4Fe(CN)6
亚铁氰化钾
1.
Based on the catalytic effect of silver on the chromatic reaction of K4Fe(CN)6 and O - phen, a new spectrophotometric method for determining trace silver has been developed.
本文研究了银(Ⅰ)对亚铁氰化钾与邻菲罗啉(O-phen)显色反应的催化效应。
2.
The influences of K4Fe(CN)6 on the deposit composition,resistivity,structure,morphology and the electrochemical reactions of hypophosphite(oxidation) and cupric ion(reduction) were investigated.
研究亚铁氰化钾对化学镀铜沉积速度、镀层成分、电阻率、微观结构、表面形貌和化学镀铜过程中氧化还原反应的影响。
补充资料:亚铁氰化钾剂量计
分子式: [Fe(CN)6]4-
CAS号:

性质:离子在电离辐射作用下被氧化成[Fe(CN)6)]3-离子,[Fe(CN)6]4-离子在波长420nm处有最大吸收峰,摩尔吸光系数ε([Fe(CN)6]3-)420=1000mol-1•cm-1。这样[Fe(CN)6]3-离子浓度的变化可用分光光度计测定,如果G([Fe(CN)6]3-)已知,则可计算出吸收剂量。

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