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用内标单标准法的瞬发伽马射线中子活化分析对大型陨石样品进行非破坏性元素分析。

Non-destructive elemental analysis of large meteorite samples by prompt gamma-ray neutron activation analysis with the internal mono-standard method.

机构信息

Department of Chemistry, Tokyo Metropolitan University, Hachioji, Tokyo, 192-0397, Japan.

出版信息

Anal Bioanal Chem. 2013 Nov;405(27):8749-59. doi: 10.1007/s00216-013-7331-1. Epub 2013 Sep 14.

Abstract

Prompt gamma-ray neutron activation analysis (PGNAA) using the internal mono-standard method was tested for its applicability to analyzing large solid samples including irregularly shaped meteorite samples. For evaluating the accuracy and precision of the method, large quantities of the Geological Survey of Japan standardized rock powders (JB-1a, JG-1a, and JP-1) were analyzed and 12 elements (B, Na, Mg, Al, Cl, K, Ca, Ti, Mn, Fe, Sm, and Gd) were determined by using Si as an internal standard element. Analytical results were mostly in agreement with literature values within 10 %. The precision of the method was also shown to be within 10 % (1σ) for most of these elements. The analytical procedure was then applied to four stony meteorites (Allende, Kimble County, Leedey, Lake Labyrinth) and four iron meteorites (Canyon Diablo, Toluca (Mexico), Toluca (Xiquipilco), Squaw Creek) consisting of large chunks or single slabs. For stony meteorites, major elements (Mg, Al, Si, S, Ca, and Ni), minor elements (Na and Mn) and trace element (B, Cl, K, Ti, Co, and Sm) were determined with adequate accuracy. For iron meteorites, results for the Co and Ni mass fractions determined are all consistent with corresponding literature values. After the analysis, it was confirmed that the residual radioactivity remaining in the sample after PGNAA was very low and decreased down to the background level. This study shows that PGNAA with the internal mono-standard method is highly practical for determining the elemental composition of large, irregularly shaped solid samples including meteorites.

摘要

内标法的瞬发伽马中子活化分析(PGNAA)被测试用于分析包括不规则形状的陨石样品在内的大型固体样品,以评估其适用性。为了评估该方法的准确性和精密度,分析了大量日本地质调查局标准化岩石粉末(JB-1a、JG-1a 和 JP-1),并使用 Si 作为内标元素确定了 12 种元素(B、Na、Mg、Al、Cl、K、Ca、Ti、Mn、Fe、Sm 和 Gd)。分析结果与文献值的一致性在 10%以内。该方法的精密度对于大多数这些元素也在 10%(1σ)以内。然后将分析程序应用于四个石陨石(Allende、Kimble County、Leedey、Lake Labyrinth)和四个铁陨石(Canyon Diablo、Toluca(墨西哥)、Toluca(Xiquipilco)、Squaw Creek),这些陨石由大块或单个平板组成。对于石陨石,主要元素(Mg、Al、Si、S、Ca 和 Ni)、次要元素(Na 和 Mn)和微量元素(B、Cl、K、Ti、Co 和 Sm)的测定具有足够的准确性。对于铁陨石,所确定的 Co 和 Ni 质量分数的结果均与相应的文献值一致。分析后证实,PGNAA 分析后样品中残留的放射性非常低,降至背景水平。这项研究表明,使用内标法的 PGNAA 对于分析包括陨石在内的大型不规则形状固体样品的元素组成非常实用。

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