ASTM E2330-2012
使用法医比对用电感耦合等离子体质量色谱法 (ICP-MS) 测定玻璃样品中元素含量的标准试验方法

Standard Test Method for Determination of Concentrations of Elements in Glass Samples Using Inductively Coupled Plasma Mass Spectrometry (ICP-MS) for Forensic Comparisons


ASTM E2330-2012 中,可能用到以下仪器设备

 

ICPMS-2030电感耦合等离子体质谱仪

ICPMS-2030电感耦合等离子体质谱仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

普析通用ELEXPLORER电感耦合等离子体质谱

普析通用ELEXPLORER电感耦合等离子体质谱

北京普析通用仪器有限责任公司

 

天瑞ICP-MS 2000电感耦合等离子体质谱仪

天瑞ICP-MS 2000电感耦合等离子体质谱仪

江苏天瑞仪器股份有限公司

 

SPECTRO MS双聚焦ICP-MS等离子质谱仪

SPECTRO MS双聚焦ICP-MS等离子质谱仪

德国斯派克分析仪器公司SPECTRO Analytical Instruments GmbH & Co.KG

 

NexION 350系列电感耦合等离子体质谱仪ICP-MS

NexION 350系列电感耦合等离子体质谱仪ICP-MS

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

耶拿PlasmaQuant  MS  电感耦合等离子体质谱仪

耶拿PlasmaQuant MS 电感耦合等离子体质谱仪

德国耶拿分析仪器股份公司

 

NexION 1000 电感耦合等离子体质谱仪

NexION 1000 电感耦合等离子体质谱仪

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

天瑞ICP-MS 2000E电感耦合等离子体质谱仪

天瑞ICP-MS 2000E电感耦合等离子体质谱仪

江苏天瑞仪器股份有限公司

 

NexION 2000电感耦合等离子体质谱仪(ICP-MS)

NexION 2000电感耦合等离子体质谱仪(ICP-MS)

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

LC-ICP-MS形态分析解决方案LC-ICP-MS联用系统

LC-ICP-MS形态分析解决方案LC-ICP-MS联用系统

德国耶拿分析仪器股份公司

 

德国耶拿PQMS Elite电感耦合等离子体质谱仪

德国耶拿PQMS Elite电感耦合等离子体质谱仪

德国耶拿分析仪器股份公司

 

NexION 5000 多重四极杆ICP-MS

NexION 5000 多重四极杆ICP-MS

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

PerkinElmer NexION 1000G ICP-MS

PerkinElmer NexION 1000G ICP-MS

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

iCAP RQ ICP-MS电感耦合等离子体质谱仪

iCAP RQ ICP-MS电感耦合等离子体质谱仪

北京携测技术有限公司

 

ICP-oTOFMS OptiMass 9600 等离子体飞行时间质谱仪

ICP-oTOFMS OptiMass 9600 等离子体飞行时间质谱仪

北京东西分析仪器有限公司

 

SDX HPLD自动稀释系统

SDX HPLD自动稀释系统

北京携测技术有限公司

 

NWR-FEMTO飞秒激光剥蚀进样系统

NWR-FEMTO飞秒激光剥蚀进样系统

上海凯来仪器有限公司

 

NWR213灵活的激光固体进样系统

NWR213灵活的激光固体进样系统

上海凯来仪器有限公司

 

NWR193HE 高能量准分子激光剥蚀系统

NWR193HE 高能量准分子激光剥蚀系统

上海凯来仪器有限公司

 

NWR193准分子激光剥蚀系统

NWR193准分子激光剥蚀系统

上海凯来仪器有限公司

 

NWR266-MACRO激光剥蚀进样系统

NWR266-MACRO激光剥蚀进样系统

上海凯来仪器有限公司

 

NWR-Auto 自动化的激光剥蚀系统

NWR-Auto 自动化的激光剥蚀系统

上海凯来仪器有限公司

 

NWRimage 生物成像激光剥蚀系统

NWRimage 生物成像激光剥蚀系统

上海凯来仪器有限公司

 

New Wave MicroMill 微取样装置

New Wave MicroMill 微取样装置

上海凯来仪器有限公司

 

TOFWERK 电感耦合等离子体-飞行时间质谱

TOFWERK 电感耦合等离子体-飞行时间质谱

上海凯来仪器有限公司

 

ESI seaFAST全自动海水进样系统

ESI seaFAST全自动海水进样系统

上海凯来仪器有限公司

 

ESI MicroFAST-MC微量进样系统

ESI MicroFAST-MC微量进样系统

上海凯来仪器有限公司

 

ESI PrepFAST 在线稀释自动进样系统

ESI PrepFAST 在线稀释自动进样系统

上海凯来仪器有限公司

 

ESI APEX omage高效膜去溶系统

ESI APEX omage高效膜去溶系统

上海凯来仪器有限公司

 

 

 

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标准号
ASTM E2330-2012
发布日期
2012年
实施日期
废止日期
国际标准分类号
71.040.40 (Chemical analysis); 81.040.10 (Raw mate
发布单位
US-ASTM
适用范围

This technique is destructive, in that the glass fragments may need to be crushed, and must be digested in acid.

Although the concentration ranges of the calibration curves shown in Appendix X1 are applicable to soda lime and borosilicate glass, this method is useful for the accurate measurement of element concentrations from a wide variety of glass samples.

The determination of the element concentrations in glass yields data that can be used to compare fragments.

It should be recognized that the method measures the bulk concentration of the target elements. Any extraneous material present on the glass that is not removed before digestion may result in inaccurate concentrations of the measured elements.

The precision and accuracy of the method should be established in each laboratory that employs the method.

1.1 One objective of a forensic glass examination is to compare glass samples to determine if they can be discriminated using their physical, optical or chemical properties (for example, color, refractive index (RI), density, elemental composition). If the samples are distinguishable in any of these observed and measured properties, it may be concluded that they did not originate from the same source of broken glass. If the samples are indistinguishable in all of these observed and measured properties, the possibility that they originated from the same source of glass cannot be eliminated. The use of an elemental analysis method such as inductively coupled plasma mass spectrometry yields high discrimination among sources of glass.

1.2 This test method covers a procedure for quantitative determination of the concentrations of magnesium (Mg), aluminum (Al), iron (Fe), titanium (Ti), manganese (Mn), rubidium (Rb), strontium (Sr), zirconium (Zr), barium (Ba), lanthanum (La), cerium (Ce), neodymium (Nd), samarium (Sm), and lead (Pb) in glass samples.

1.3 This procedure is applicable to irregularly shaped samples as small as 200 micrograms, for the comparison of fragments of a known source to the recovered fragments from a questioned source. These elements are present in soda lime and borosilicate glass in ppb to % levels

1.4 This procedure is applicable to other elements, other types of glass, and other concentration ranges with appropriate modifications of the digestion procedure (if needed for full recovery of the additional elements), calibration standards and the mass spectrometer conditions. Calcium and potassium, for example, could be added to the list of analytes in a modified analysis scheme. Alternative methods for the determination of concentrations of elements in glass are listed in the references.

1.5 For any given glass, approximately 40 elements are likely to be present at detectable concentrations using this procedure with minor modifications. The element set stated here is an example of some of these elements that can be detected in glass and used for forensic comparisons.

1.6 This guide cannot replace knowledge, skill, or ability acquired through appropriate education, training, and experience and should be used in conjunction with sound professional judgment.

1.7 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.8 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.


ASTM E2330-2012 中可能用到的仪器设备





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