ASTM C1672-2007(2014)
用热电离质谱分光计通过总数蒸发法测定铀或钚同位素组成或浓度的标准试验方法

Standard Test Method for Determination of Uranium or Plutonium Isotopic Composition or Concentration by the Total Evaporation Method Using a Thermal Ionization Mass Spectrometer


ASTM C1672-2007(2014) 中,可能用到以下耗材

 

Thermo Scientific™ Matrix™ ScrewTop 2D储存管

Thermo Scientific™ Matrix™ ScrewTop 2D储存管

赛默飞实验室耗材产品

 

Thermo Scientific™ Nunc™ Edge 96 孔板

Thermo Scientific™ Nunc™ Edge 96 孔板

赛默飞实验室耗材产品

 

Thermo Scientific™ QSP™ 医用运输管

Thermo Scientific™ QSP™ 医用运输管

赛默飞实验室耗材产品

 

Thermo Scientific™ Nunc™ 10 / 11 mL 离心管

Thermo Scientific™ Nunc™ 10 / 11 mL 离心管

赛默飞实验室耗材产品

 

Thermo Scientific™ Nunc™ 微孔板板盖

Thermo Scientific™ Nunc™ 微孔板板盖

赛默飞实验室耗材产品

 

Thermo Scientific™ NALGENE™ 容量瓶

Thermo Scientific™ NALGENE™ 容量瓶

赛默飞实验室耗材产品

 

Thermo Scientific™ QSP™ 带滤芯吸头

Thermo Scientific™ QSP™ 带滤芯吸头

赛默飞实验室耗材产品

 

Thermo Scientific™ Nunc™ 微孔板及深孔板

Thermo Scientific™ Nunc™ 微孔板及深孔板

赛默飞实验室耗材产品

 

Thermo Scientific™ PCR 耗材

Thermo Scientific™ PCR 耗材

赛默飞实验室耗材产品

 

Thermo Scientific™ NALGENE™ 容量瓶

Thermo Scientific™ NALGENE™ 容量瓶

赛默飞实验室耗材产品

 

Thermo Scientific™ Nunc™ Lmmuno™ 洗板器

Thermo Scientific™ Nunc™ Lmmuno™ 洗板器

赛默飞实验室耗材产品

 

Thermo Scientific™ NALGENE™ 圆形罐衬袋

Thermo Scientific™ NALGENE™ 圆形罐衬袋

赛默飞实验室耗材产品

 

Thermo Scientific™ NALGENE™ 彩色冻存盒

Thermo Scientific™ NALGENE™ 彩色冻存盒

赛默飞实验室耗材产品

 

Thermo Scientific™ Finntip™ 20 吸头

Thermo Scientific™ Finntip™ 20 吸头

赛默飞实验室耗材产品

 

Thermo Scientific™ 安全试剂瓶搬运篮

Thermo Scientific™ 安全试剂瓶搬运篮

赛默飞实验室耗材产品

 

Thermo Scientific™ 磁性细口大瓶搅拌器

Thermo Scientific™ 磁性细口大瓶搅拌器

赛默飞实验室耗材产品

 

Thermo Scientific™ Finntip™ 10 吸头

Thermo Scientific™ Finntip™ 10 吸头

赛默飞实验室耗材产品

 

Thermo Scientific™ QSP™ 医用培养管

Thermo Scientific™ QSP™ 医用培养管

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Thermo Scientific™ Finntip™ Flex 10 吸头

Thermo Scientific™ Finntip™ Flex 10 吸头

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Thermo Scientific™ Nunc™ 细胞培养皿

Thermo Scientific™ Nunc™ 细胞培养皿

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Thermo Scientific™ NALGENE™ 容量瓶

Thermo Scientific™ NALGENE™ 容量瓶

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Thermo Scientific™ Nunc™ 传统细胞工厂

Thermo Scientific™ Nunc™ 传统细胞工厂

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Thermo Scientific™ SAV-IT Closure

Thermo Scientific™ SAV-IT Closure

赛默飞实验室耗材产品

 

ASTM C1672-2007(2014)



标准号
ASTM C1672-2007(2014)
发布日期
2007年
实施日期
废止日期
国际标准分类号
27.120.30 (Fissile materials and nuclear fuel tech
发布单位
US-ASTM
代替标准
KS B ISO 11149-2013
适用范围

5.1x00a0;The total evaporation method is used to measure the isotopic composition of uranium and plutonium materials, and may be used to measure the elemental concentrations of the two elements when employing the IDMS technique.

5.2x00a0;Uranium and plutonium compounds are used as nuclear reactor fuels. In order to be suitable for use as a nuclear fuel the starting material must meet certain specifications, such as found in Specifications C757, C833, C753, C776, C787, C967, C996, C1008, or as specified by the purchaser. The uranium and/or plutonium concentration and isotopic abundances are measured by mass spectrometry following this method.

5.3x00a0;The total evaporation method allows for a wide range of sample loading with no loss in precision or accuracy, and is also suitable for trace-level loadings with consequent loss of precision. Typical uranium analyses are conducted using sample loadings between 10 nanograms and several micrograms. Plutonium analyses are generally conducted using between five and 200 nanograms of plutonium per filament. The total evaporation method and modern instrumentation allow for the measurement of minor isotopes using ion counting detectors, while the major isotopes are simultaneously measured using Faraday cup detectors.

5.4x00a0;New generations of miniaturized ion counters now allow extremely small samples, in the picogram to femtogram range, to be measured via total evaporation methods. The method may be employed for measuring environmental or safeguards inspection samples containing very small quantities of uranium or plutonium. Very small loadings require special sample handling and analysis techniques, and careful evaluation of measurement uncertainty contributors.

1.1x00a0;This method describes the determination of the isotopic composition and/or the concentration of uranium and plutonium as nitrate solutions by the thermal ionization mass spectrometric (TIMS) total evaporation method. Purified uranium or plutonium nitrate solutions are loaded onto a degassed metal filament and placed in the mass spectrometer. Under computer control, ion currents are generated by heating of the filament(s). The ion beams are continually measured until the sample is exhausted. The measured ion currents are integrated over the course of the run, and normalized to a reference isotope ion current to yield isotopic ratios.

1.2x00a0;In principle, the total evaporation method should yield isotopic ratios that do not require mass bias correction. In practice, some samples may require this bias correction. When compared to the conventional TIMS method, the total evaporation method is approximately two times faster, improves precision from two to four fold, and utilizes smaller sample sizes.

1.3x00a0;The total evaporation method may lead to biases in minor isotope ratios due to peak tailing from adjacent major isotopes, depending on sample characteristics. The use of an electron multiplier equipped with an energy filter may eliminate or diminish peak tailing effects. Measurement of instrument abundance sensitivity may be used to ensure that such biases are negligible, or may be used to bias correct minor isotope ratios.

1.4x00a0;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 C1672-2007(2014) 中可能用到的仪器设备





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