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作 者:李岩[1,2] 宋利群[3] 朱楠楠[4] 高希宝[1]
机构地区:[1]山东大学公共卫生学院,山东济南250012 [2]济南市槐荫区疾病预防控制中心,山东济南250022 [3]山东省职业卫生与职业病防治研究院,山东济南250062 [4]山东大学齐鲁医院,山东济南250012
出 处:《预防医学论坛》2015年第3期204-206,共3页Preventive Medicine Tribune
摘 要:目的建立分光光度法测定工作场所空气中二氧化硫含量不确定度方法。方法依照JJF 1059-1999《测量不确定度评定与表示》建立数学模型,计算各不确定度分量和合成不确定度。结果标准溶液配制引入的标准不确定度分量为1.67%,由标准曲线求得样品溶液浓度引起的标准不确定度为3.16%,样品取样与定容体积引起的标准不确定度为0.82%,仪器测量引入的不确定度为0.58%,标准采样体积引入的标准不确定度为0.54%,合成相对标准不确定度为3.8%,扩展不确定度为0.08mg/m3。结论该方法适用于分光光度法测定二氧化硫含量的不确定度评定。Objective To establish the uncertainty assessment method for determination of sulfur dioxide in air of the workplace by spectrophotometry. Methods According to the Evaluation and expression of uncertainty in measurement(JJF 1059-1999),the mathematic model was established to calculate the uncertainty components and synthesis uncertainty. Results The uncertainty component caused by standard solution preparation was 1.67%,the uncertainty caused by sample concentration which was calculated by standard curve was 3.16%,the uncertainty caused by volume of sampling and dilution was 0.82%,the uncertainty caused by measuring instrument was 0.58%,and the uncertainty caused by standard sampling volume was 0.54%.The synthesis relative uncertainty was 3.8%,and the expanded uncertainty was0.08mg/m3. Conclusion This method can be used for uncertainty evaluation in determination of sulfur dioxide by spectrophotometry.
分 类 号:R122.1[医药卫生—环境卫生学]
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