碳酸盐矿物质量定量与热重力学分析-质谱学量测量每百万分之一
Madeline F Bartels1,2, Quin R S Miller1, Ruoshi Cao1
1Energy and Environment Directorate, Pacific Northwest National Laboratory, Richland, Washington 99354, United States.
Analytical chemistry
|February 26, 2024
概括
一种新的热重力测量分析质谱法 (TGA-MS) 方法可以准确量化地质样本中的低碳酸盐水平 (<100 ppm). 这促进了矿产化项目的碳捕获监测,验证和报告 (MRV).
科学领域:
- 地质化学 地质化学
- 环境科学 环境科学
- 材料科学 材料科学 材料科学
背景情况:
- 气候变化需要有效的碳捕获和储存 (CCS) 技术.
- 地质碳矿化项目需要强有力的监测,验证和报告 (MRV).
- 精确量化低度碳酸盐对于评估CCS可行性至关重要.
研究的目的:
- 开发一种先进的热重力测量分析-质谱学 (TGA-MS) 方法.
- 为了使碳酸盐矿物质在百万分之100以下的度下 (ppm) 的量化.
- 为地质碳矿产化项目增强MRV能力.
主要方法:
- 扩展的TGA-MS校准曲线用于石量化.
- 采用了石-玉合金混合物,以实现更高的测量分辨率,以进化CO2.
- 将开发的TGA-MS方法应用于哥伦比亚河岩集团 (CRBG) 的井口切割.
主要成果:
- 首次成功证明了TGA-MS对低于100ppm的碳酸盐矿物质的量化.
- 在CRBG样本中确定的平均碳酸盐含量:在鱼中为0.050重量%,在水库中为0.400重量%.
- 建立了使用TGA-MS的碳酸盐矿物质的新的下定量限值.
结论:
- 新的TGA-MS方法显著改善了碳酸盐量化检测极限.
- 增强对像CRBG这样的地形环境中的地下碳酸盐的理解.
- 扩展的MRV能力支持大规模碳矿产化项目的部署.
相关概念视频
Volatilization
386
Volatilization gravimetry is an analytical technique that measures the mass lost due to the volatilization of the substance. This technique is used to estimate the amount of volatile material in a sample. To perform this method, heat a known amount of the sample to a high temperature in a crucible or other suitable vessel. The volatile substance in the sample evaporates, and the vapor is completely expelled from the crucible either by heating the sample or bubbling a stream of inert gas through...
386
Gravimetry: Overview
5.9K
Gravimetric analysis is a quantitative method where the analyte is isolated and weighed directly or after conversion into a substance of known composition. Gravimetric analysis can be classified as precipitation, electrogravimetry, volatilization, and particulate gravimetry, based on the method used to isolate the analyte.
In precipitation gravimetry, the analyte is converted into a precipitate and weighed. For example, the silver content in a sample can be estimated by precipitating and...
In precipitation gravimetry, the analyte is converted into a precipitate and weighed. For example, the silver content in a sample can be estimated by precipitating and...
5.9K
Mass Spectrum: Interpretation
1.2K
An unknown compound can be established by identifying the molecular ion peak in the mass spectrum. The molecular ion peak is often weak or absent due to the predominance of fragmentation in high-energy electron beams. In such cases, a low-energy electron beam can be used to scan the spectrum to enhance the intensity of the molecular ion peak. Additionally, chemical ionization, field ionization, and desorption ionization spectra are used to obtain a relatively intense molecular ion peak.
To...
To...
1.2K
Gas Chromatography–Mass Spectrometry (GC–MS)
4.2K
Gas chromatography–mass spectrometry (GC–MS) is the combination of analytical techniques of gas chromatography and mass spectrometry in a single instrument for analyzing a mixture of compounds. The gas chromatograph separates the compounds in the mixture, and the mass spectrometer analyzes each compound separately to determine the molecular masses and molecular structures.
A gas chromatograph consists of a long, narrow capillary column with a polysiloxane coating on the inner wall....
A gas chromatograph consists of a long, narrow capillary column with a polysiloxane coating on the inner wall....
4.2K


