ASTM C1474-2000(2011)
四极感应耦合等离子质谱法分析核纯级燃料中铀的同位素组分的标准验方法

Standard Test Method for Analysis of Isotopic Composition of Uranium in Nuclear-Grade Fuel Material by Quadrupole Inductively Coupled Plasma-Mass Spectrometry


ASTM C1474-2000(2011) 中,可能用到以下仪器设备

 

M6单四极杆气相色谱质谱联用仪

M6单四极杆气相色谱质谱联用仪

北京普析通用仪器有限责任公司

 

M7单四极杆气相色谱质谱联用仪

M7单四极杆气相色谱质谱联用仪

北京普析通用仪器有限责任公司

 

M8四极杆气相色谱-质谱联用仪

M8四极杆气相色谱-质谱联用仪

北京普析通用仪器有限责任公司

 

GC-MS 7000系列

GC-MS 7000系列

江苏天瑞仪器股份有限公司

 

FULI-Chromatec Crystal系列气相色谱-质谱联用仪

FULI-Chromatec Crystal系列气相色谱-质谱联用仪

浙江福立分析仪器股份有限公司

 

GCMS-QP2010 Ultra气相色谱/质谱联用仪

GCMS-QP2010 Ultra气相色谱/质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

GCMS-QP2010 SE气相色谱/质谱联用仪

GCMS-QP2010 SE气相色谱/质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

DFS 高分辨率磁式质谱系统

DFS 高分辨率磁式质谱系统

赛默飞色谱与质谱

 

岛津Off-Flavor异味分析系统

岛津Off-Flavor异味分析系统

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

多维GC/GCMS系统 MDGC/GCMS

多维GC/GCMS系统 MDGC/GCMS

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

GCMS-TQ8030三重四极杆气相色谱质谱联用仪

GCMS-TQ8030三重四极杆气相色谱质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

GCMS-TQ8040 NX三重四极杆型气相色谱质谱联用仪

GCMS-TQ8040 NX三重四极杆型气相色谱质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

赛默飞 TSQ DUO 气质联用仪

赛默飞 TSQ DUO 气质联用仪

赛默飞色谱与质谱

 

7010A三重四极杆 GC-MS/MS

7010A三重四极杆 GC-MS/MS

安捷伦科技公司

 

GCMS-QP 2020 NX单四极杆型气相色谱质谱联用仪

GCMS-QP 2020 NX单四极杆型气相色谱质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

Q Exactive GC Orbitrap气质质联用仪

Q Exactive GC Orbitrap气质质联用仪

赛默飞色谱与质谱

 

Agilent 7010B 三重四极杆 GC/MS

Agilent 7010B 三重四极杆 GC/MS

安捷伦科技公司

 

GCMS-TQ8050 NX 三重四极杆气质联用仪

GCMS-TQ8050 NX 三重四极杆气质联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

赛默飞Exactive GC Orbitrap GC-MS 系统

赛默飞Exactive GC Orbitrap GC-MS 系统

赛默飞色谱与质谱

 

岛津5D Ultra-e五维超能分离质谱系统

岛津5D Ultra-e五维超能分离质谱系统

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

TSQ 9000 三重四极杆 GC-MS/MS 系统

TSQ 9000 三重四极杆 GC-MS/MS 系统

赛默飞色谱与质谱

 

Xevo TQ-GC气相色谱串联四极杆质谱联用仪

Xevo TQ-GC气相色谱串联四极杆质谱联用仪

沃特世科技(上海)有限公司Waters

 

岛津Py-Screener RoHS筛查系统

岛津Py-Screener RoHS筛查系统

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

Clarus SQ 8气相色谱/质谱联用仪

Clarus SQ 8气相色谱/质谱联用仪

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

iTOFMS-1G快速气相色谱—飞行时间质谱联用仪

iTOFMS-1G快速气相色谱—飞行时间质谱联用仪

江苏天瑞仪器股份有限公司

 

MASTER TOF-MS飞行质谱

MASTER TOF-MS飞行质谱

博赛德科技有限公司BCT

 

EVOQ TQ三重四极杆气质联用系统

EVOQ TQ三重四极杆气质联用系统

美国布鲁克道尔顿公司(Bruker Daltonic Inc.)

 

天瑞GC-MS 6800气相色谱质谱联用仪

天瑞GC-MS 6800气相色谱质谱联用仪

江苏天瑞仪器股份有限公司

 

AxION® iQT™ GC/MS/MS

AxION® iQT™ GC/MS/MS

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

天瑞GC-MS 6800S 气相色谱质谱联用仪

天瑞GC-MS 6800S 气相色谱质谱联用仪

江苏天瑞仪器股份有限公司

 

Pegasus HT-C GC-TOF MS

Pegasus HT-C GC-TOF MS

美国力可公司

 

Pegasus 4D GCxGC-TOFMS

Pegasus 4D GCxGC-TOFMS

美国力可公司

 

GC-MS3100气相色谱(四极)-质谱联用仪

GC-MS3100气相色谱(四极)-质谱联用仪

北京东西分析仪器有限公司

 

MSQ 8100四极杆气质联用仪

MSQ 8100四极杆气质联用仪

上海舜宇恒平科学仪器有限公司

 

FasTOF全二维气相色谱-高分辨飞行时间质谱

FasTOF全二维气相色谱-高分辨飞行时间质谱

北京普立泰科仪器有限公司

 

GC-MS3110型车载气相色谱-四极质谱联用仪

GC-MS3110型车载气相色谱-四极质谱联用仪

北京东西分析仪器有限公司

 

SCION 436/456-GC-SQ

SCION 436/456-GC-SQ

天美仪拓实验室设备(上海)有限公司

 

GC-MS 3200型气相色谱(四极)质谱联用仪

GC-MS 3200型气相色谱(四极)质谱联用仪

北京东西分析仪器有限公司

 

 

 

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标准号
ASTM C1474-2000(2011)
发布日期
2000年
实施日期
废止日期
中国标准分类号
F46
国际标准分类号
27.120.30 (Fissile materials and nuclear fuel tech
发布单位
US-ASTM
适用范围

Nuclear-grade reactor fuel material must meet certain criteria, such as those described in Specifications C 753, C 776, C 778, and C 833. Included in these criteria is the uranium isotopic composition. This test method is designed to demonstrate whether or not a given material meets an isotopic requirement and whether the effective fissile content is in compliance with the purchaserrsquo;specifications.

1.1 This test method is applicable to the determination of the isotopic composition of uranium (U) in nuclear-grade fuel material. The following isotopic weight percentages are determined using a quadrupole inductively coupled plasma-mass spectrometer (Q-ICP-MS): 233U, 234U, 235U, 236U, and 238U. The analysis can be performed on various material matrices after acid dissolution and sample dilution into water or dilute nitric (HNO3) acid. These materials include: fuel product, uranium oxide, uranium oxide alloys, uranyl nitrate (UNH) crystals, and solutions. The sample preparation discussed in this test method focuses on fuel product material but may be used for uranium oxide or a uranium oxide alloy. Other preparation techniques may be used and some references are given. Purification of the uranium by anion-exchange extraction is not required for this test method, as it is required by other test methods such as radiochemistry and thermal ionization mass spectroscopy (TIMS). This test method is also described in ASTM STP 1344 .

1.2 The 233U isotope is primarily measured as a qualitative measure of its presence by comparing the 233U peak intensity to a background point since it is not normally found present in materials. The example data presented in this test method do not contain any 233U data. A 233U enriched standard is given in Section 8, and it may be used as a quantitative spike addition to the other standard materials listed.

1.3 A single standard calibration technique is used. Optimal accuracy (or a low bias) is achieved through the use of a single standard that is closely matched to the enrichment of the samples. The intensity or concentration is also adjusted to within a certain tolerance range to provide good statistical counting precision for the low-abundance isotopes while maintaining a low bias for the high-abundance isotopes, resulting from high-intensity dead time effects. No blank subtraction or background correction is utilized. Depending upon the standards chosen, enrichments between depleted and 97 % can be quantified. The calibration and measurements are made by measuring the intensity ratios of each low-abundance isotope to the intensity sum of 233U, 234U, 235U, 236U, and 238U. The high-abundance isotope is obtained by difference.

1.4 The values stated in SI units are to be regarded as the standard. The values given in parentheses are for information only. The instrument is calibrated and the samples measured in units of isotopic weight percent (Wt %). For example, the 235U enrichment may be stated as Wt % 235U or as g 235U/100 g of U. Statements regarding dilutions, particularly for ug/g concentrations or lower, are given assuming a solution density of 1.0 since the uranium concentration of a solution is not important when making isotopic ratio measurements other than to maintain a reasonably consistent intensity within a tolerance range.

1.5 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 appli......


ASTM C1474-2000(2011) 中可能用到的仪器设备





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