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X-荧光分析技术在石灰石验收中的应用 被引量:1
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作者 魏楠 张声强 梁诗铭 《广东化工》 CAS 2019年第4期40-41,共2页
利用X-荧光分析技术对石灰石中氧化钙和氧化镁含量分析,与传统的人工分析相比,具有操作简单、数据分析快,稳定性高,重复性好等优点。在石灰石验收过程中,能够快速实时化验出吸收剂石灰石的氧化钙和氧化镁含量指标,减少船舶滞留时间,提... 利用X-荧光分析技术对石灰石中氧化钙和氧化镁含量分析,与传统的人工分析相比,具有操作简单、数据分析快,稳定性高,重复性好等优点。在石灰石验收过程中,能够快速实时化验出吸收剂石灰石的氧化钙和氧化镁含量指标,减少船舶滞留时间,提高工作效率。同时也减少了减少有毒有害化学药品的使用,更符合绿色,健康,环保的政策要求。 展开更多
关键词 x-荧光分析技术 石灰石 氧化钙 氧化镁
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X-射线荧光元素分析技术快速筛查化妆品中铅、汞、砷、锑 被引量:10
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作者 朱俐 刘明理 +1 位作者 尹利辉 王瑾 《药物分析杂志》 CAS CSCD 北大核心 2014年第10期1842-1846,共5页
目的:用X-射线荧光元素分析技术建立快速筛查化妆品中铅、汞、锑、砷的方法。方法:本方法采用便携式X射线荧光元素分析仪,研究了乳液、霜及粉底对待测元素的基体影响,研究了元素间的干扰,考察了测量模式、测试时间和样品厚度对测量结果... 目的:用X-射线荧光元素分析技术建立快速筛查化妆品中铅、汞、锑、砷的方法。方法:本方法采用便携式X射线荧光元素分析仪,研究了乳液、霜及粉底对待测元素的基体影响,研究了元素间的干扰,考察了测量模式、测试时间和样品厚度对测量结果的影响。结果:样品不需预处理,采用校正工作曲线法,均获得了非常好的线性,铅、汞、锑、砷回收率分别为98.3%、94.0%、89.1%、102.6%,检出限为铅2 mg·kg-1、砷2 mg·kg-1、汞3 mg·kg-1、锑4 mg·kg-1。对12种市售样品进行检测,并与ICP-AES数据比较,数据结果 t检验分别为0.107、0.134,大于0.05,2种方法无显著性差异。结论:该方法适用于快速筛查化妆品中的铅、汞、砷、锑。 展开更多
关键词 x-射线荧光元素分析技术 重金属 乳液 粉底 快速检验
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A Comparison between Neutron Activation Analysis and X-Ray Fluorescence Methods in Analyzing the Granite Samples
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作者 Hayder Salah Naeem Pegah Moradi Khaniabadi Eid Mahmoud Eid 《Journal of Chemistry and Chemical Engineering》 2013年第9期803-807,共5页
This study focused on the performance of where elements analysing techniques were used to detect the elements in granite stones. These techniques are NAA (neutron activation analysis) and XRF (X-ray fluorescence).... This study focused on the performance of where elements analysing techniques were used to detect the elements in granite stones. These techniques are NAA (neutron activation analysis) and XRF (X-ray fluorescence). They were applied to detect the elements in samples which had been chosen from different areas of Pulua Penang in Malaysia collected by geophysics group which helped to describe and identify the elements found in the granite stone that were used in the study procedures to control the analytical results. The integration of both methods has enabled the researcher to determine 40 elements in the samples. The numbers of elements detected by XRF analysis method are 12 elements (Ar, K, Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu and Zn); while, the elements detected by NAA method have three folds of elements with XRF analysis method were 35 elements (Na, AI, Si, K, Ca, Sc,Ti, Mn, Fe, Co, Ga, Ce, As, Br, Rb, Zr, Sb, I, Cs, Ba, La, Nd, Sm, Eu,Tb, Dy, Yb, Lu, Hf, Ta, W, Au, Pa and Np). Seven common elements were detected in both techniques: K, Sc, Ti, V, Mn, Fe and Co. Si has a higher concentration in NAA technique which is 331.8 ppm. Sc has a lower concentration in XRF technique which is 0.25 ppm. Nd has a lower concentration in NAA technique which is 3.09 - 10-5 ppm. Finally, it is found that the NAA is better to detect the elements than XRF. 展开更多
关键词 Radiation science radiation physics NAA XRF analyzing methods.
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