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流场形全固态电极和3D打印流通池测定铁含量

Determination of iron content by means of flow-field shaped solid electrode and 3D-printed flow cell

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【作者】 贺小云王济奎金栋洪颖吕丹丹杨晓露张建枚陈国松

【Author】 He Xiaoyun;Wang Jikui;Jin Dong;Hong Ying;Lü Dandan;Yang Xiaolu;Zhang Jianmei;Chen Guosong;College of Chemistry and Molecular Engineering,Nanjing Technology University;Changzhou Yabang Pharmaceutical Co.,Ltd.;China Special Equipment Inspection and Research Institute;Nanjing Entry-Exit Inspection and Quarantine Bureau;Water Treatment Reagent Assessment Center of China National Petroleum Corporation;

【机构】 南京工业大学化学与分子工程学院常州亚邦制药有限公司中国特种设备检测研究院南京出入境检验检疫局中石化水处理药剂评定中心

【摘要】 首次提出流场形全固态(FFSS)电极的概念,设计并制备了FFSS丝网印刷电极,结合3D打印薄层流通池(TLFC),在流动状态下对邻菲啰啉-二价铁络合物进行循环伏安法(CV)扫描。结果表明,该体系对铁的测量灵敏度高、重现性好,线性范围为0.02~2.0 mg/L,检出限0.006 mg/L,比邻菲啰啉分光光度法更适用于水质的日常监测。该方法成功用于对循环冷却水中总铁的测定,加标回收率为97%~102%。

【Abstract】 The concept of flow field shaped solid(FFSS)electrode is put forward for the first time. The FFSS screen-printed electrode has been designed and prepared,combining with a 3D-printed thin-layer flow cell(TLFC). Underflow state,the Fe[(phen)3]2+ complex is scanned by cyclic voltammetry(CV). The results show that the developedsystem shows high measuring sensitivity and good reproducibility for iron. Its linear range is 0.02 to 2.0 mg/L anddetection limit is 0.006 mg/L. Compared with Phenanthroline spectrophotometry,it is more suitable for dailymonitoring of water quality. This method has successfully been used for the determination of the total iron incirculating cooling water. Its tagged recovery rate is in the range of 97% to 102%.

【基金】 973国家重点基础研究发展计划资助项目(2013CB733504);国家质检总局科研项目(2015IK129,2016IK138,2016KJ24)
  • 【文献出处】 工业水处理 ,Industrial Water Treatment , 编辑部邮箱 ,2017年03期
  • 【分类号】O657.1;X832
  • 【下载频次】62
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