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Study on the Determination of Trace Ni(II) by the Catalytic Kinetic Spectrophotometric Method
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作者 JI Hongwei CAO Hengxia XIN Huizhen LI Shuang 《Journal of Ocean University of China》 SCIE CAS 2010年第1期25-30,共6页
A new kinetic spectrophotometric method has been developed for the determination of trace Ni (Ⅱ in natural water. The method is based on the catalytic effect of Ni (Ⅱ) on the oxidation of weak acid brilliant blue... A new kinetic spectrophotometric method has been developed for the determination of trace Ni (Ⅱ in natural water. The method is based on the catalytic effect of Ni (Ⅱ) on the oxidation of weak acid brilliant blue dye (RAWL) by KIO4 in acid medium. The concentration of nickel (Ⅱ) can be determined spectrophotometrically by measuring the decrease of absorbance of RAWL at λ = 626 nm using the fix-time method. The influencing factors are investigated by the orthogonal experimental design. The obtained optimum analytical conditions are: pH = 2.00, CRAWL = 5.00×10^-5 mol·L^-1, c KlO4 = 2.00× 10^-5 mol·L^-1, the reaction time t= 10min and the temperature T = 25 ℃. Under the optimum conditions, the developed method allows the measurement of Ni (Ⅱ) in a range of 0 - 40.0ngmL1. The standard deviation of eleven independent measurements of blank reaction is S = 3.08× 10^-3 and the limit of detection is 2.20ng·mL^-1. The relative standard deviations (RSDs) in six replicate determinations of 5 ngmL-1 and 8 ngmL1 Ni (Ⅱ) are 2.87% and 1.11%, respectively. Moreover, the experiments show few cations and anions can interfere with the measurement of Ni (Ⅱ). The recovery efficiencies of this method are in a range of 97.0%-102.5% in freshwater samples. But there is a decreasing effect, which is about 0.2 times the added Ni (Ⅱ) in seawater medium. After reasonable calibration this processing method is used for the determination of Ni (Ⅱ) in seawater samples successfully. The results show this developed method has high accuracy and precision, high sensitivity, large range of linearity and high speed. The method can, therefore, be employed at room temperature. 展开更多
关键词 Ni(Ⅱ) kinetic-spectrophotometry catalytic effect weak acid brilliant blue dye (RAWL) potassium periodate decreasing effect
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国家科技项目专利产出绩效评估分析——以“水专项”专利产出绩效评估为例
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作者 高继平 翟丽华 《科技导报》 CAS CSCD 北大核心 2024年第15期104-116,共13页
针对应用研究类国家科技项目定位于解决产业共性关键技术,且其主要产出的科技成果是技术发明的特点,从技术特征的视角设计了专利产出的表征方式,通过聚类分析方法识别相关的技术领域,通过知识图谱的方法设计了专利技术领域的对标计量分... 针对应用研究类国家科技项目定位于解决产业共性关键技术,且其主要产出的科技成果是技术发明的特点,从技术特征的视角设计了专利产出的表征方式,通过聚类分析方法识别相关的技术领域,通过知识图谱的方法设计了专利技术领域的对标计量分析模型。针对科技项目绩效考评的重点是产出、效果和影响3个维度,从专利产出数、有效发明数、产出模式、实施许可、被引次数、科学关联度、同族专利数量、Top10%高被引专利、技术影响力指数、代表性专利等角度设计了相关指标体系,并以国家科技项目“水专项”为例,从产出、效果和影响3个维度,以国内水平和国际水平为比较对象,进行了对标计量分析。研究发现,经过多年的技术积累和升级,“水专项”的技术影响力显著提升,到了“十二五”和“十三五”时期,已经远远超过国际和国内的技术影响力指数。同时,全面覆盖水方面相关研究的7个技术领域,其中,水净化仪器、装备技术领域是主要由“水专项”资助技术专利形成的特色性领域。 展开更多
关键词 应用研究 国家科技项目 项目评价 绩效评估 对标计量 专利计量
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