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机构地区:[1]北京市通州区疾病预防控制中心理化检验科,北京101100
出 处:《环境与职业医学》2010年第7期429-431,共3页Journal of Environmental and Occupational Medicine
摘 要:[目的]探讨水杨酸盐分光光度法测定空气中氨的方法。[方法]用装有酸性溶液的大型气泡吸收管采集空气样品,以水杨酸盐为显色剂,采用722N型分光光度计,于波长690 nm处测定光密度比色定量。[结果]该方法的检出限为0.02μg/mL,日间精密度和日内精密度的相对标准偏差为0.5%-2.1%,样品加标回收率在96.0%-103.0%之间。标准参考物质的测定值在标准值范围内,测定结果与国标法(纳氏试剂分光光度法)比较,差异无统计学意义(P〉0.05)。[结论]空气中氨的水杨酸盐分光光度法操作简单,干扰少,具有良好的选择性和重现性,适合在基层推广应用。[Objective] To develop an approach to determining ammonia in air by salicylate spectrophotometry.[Methods] To collect air samples by large air-bubble absorption tube containing acidic solution;apply salicylate as chromogenic reagent and use 722N spectrophotometer in 690 nm wave-length to measure absorbency;determine the quantities of ammonia in air samples by colorimetric analysis.[Results] The detection limit of this approach was 0.02 μg/mL;the relative standard deviations between inter-day precision and intra-day precision ranged between 0.5% to 2.1%;the spike recovery rates of samples ranged from 96.0% to 103.0%.The determined results of standard samples were within standard range.There were no significant differences between the results determined by salicylate spectrophotometry and GB method(Nessler's reagent method)(P〉 0.05).[Conclusion] The approach to determining ammonia in air by salicylate spectrophotometry is easily operated and less interfered.Therefore,it can be easily selected and replicated at the grassroots level.
分 类 号:R122.11[医药卫生—环境卫生学]
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