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化学絮凝-分光光度法用于焦化废水中氰化物的检测
引用本文:李红岩,郑蓓,李春甫,陈星,高迎新,郑佳乐. 化学絮凝-分光光度法用于焦化废水中氰化物的检测[J]. 中国给水排水, 2020, 0(6): 118-122
作者姓名:李红岩  郑蓓  李春甫  陈星  高迎新  郑佳乐
作者单位:中国科学院生态环境研究中心饮用水科学与技术重点实验室;合肥工业大学工业装备与技术研究院;中国科学院大学
基金项目:国家水体污染控制与治理科技重大专项(2014ZX07201005-001)。
摘    要:建立了化学絮凝-分光光度法分析焦化废水中氰化物的新型技术,与传统蒸馏-分光光度法相比,简化了操作步骤,提高了检测灵敏度。方法验证结果表明,絮凝剂硫酸亚铁(FS)和聚合硫酸铁(PFS)复合投加可以使焦化废水中氰化物检测相对误差达到1%以内;对9个模拟水样进行检测的精密度结果为0. 56%~0. 98%,准确度为0. 97%~2. 01%,加标回收率为82. 87%~99. 56%;对实际水样的检测加标回收率为98. 6%,均达到了分析化学要求。

关 键 词:焦化废水  氰化物分光光度法  化学絮凝

Determination of Cyanide in Coking Wastewater by Chemical Flocculation and Spectrophotometry
LI Hong-yan,ZHENG Bei,LI Chun-fu,CHEN Xing,GAO Ying-xin,ZHENG Jia-le. Determination of Cyanide in Coking Wastewater by Chemical Flocculation and Spectrophotometry[J]. China Water & Wastewater, 2020, 0(6): 118-122
Authors:LI Hong-yan  ZHENG Bei  LI Chun-fu  CHEN Xing  GAO Ying-xin  ZHENG Jia-le
Affiliation:(Key Laboratory of Drinking Water Science and Technology,Research Center for Eco-Environmental Science,Chinese Academy of Sciences,Beijing 100085,China;Institute of Industrial Equipment and Technology,Hefei University of Technology,Hefei 230009,China;University of Chinese Academy of Sciences,Beijing 100049,China)
Abstract:A new detection technique for cyanide in coking wastewater by chemical flocculation and spectrophotometry was established.The operation steps were simplified and the detection sensitivity was improved compared with traditional distillation-spectrophotometry.The results of method verification showed that the compound addition of ferrous sulfate(FS)and polymerized ferrous sulfate(PFS)which were flocculants could make the relative error of cyanide in the coking wastewater be within 1%;the precision results of the 9 simulated water samples be 0.56%-0.98%,the accuracy be 0.97%-2.01%,and the standard-added recovery rate be 82.87%-99.56%;the standard-added recovery rate of the samples tested for the actual water samples be 98.6%,all of which could reach the analytical chemistry requirements.
Keywords:coking wastewater  cyanide spectrophotometry  chemical flocculation
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