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Fingerprinting industrial CO2 and testing noble gas and clumped isotope tracers and the Carbon Management Canada Field Research Station Enquiry

Fingerprinting industrial CO2 and testing noble gas and clumped isotope tracers and the Carbon Management Canada Field Research Station Enquiry
对工业二氧化碳进行指纹识别并测试稀有气体和团块同位素示踪剂以及加拿大碳管理实地研究站查询
批准号:
2188484
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2016
资助国家:
英国
项目状态:
已结题
起止时间:
2016 至 --

项目摘要

项目成果

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中文摘要
翻译
该项目将产生与监测安全二氧化碳储存和识别从工程储存地点计划外二氧化碳迁移相关的全球问题的新知识。它包括稳定、团块和稀有气体同位素地球化学测量技术的培训,并对英国工业过程中捕获的co2进行采样和分析。这些指纹技术被用于追踪注入加拿大碳管理现场研究站的二氧化碳,并利用这些技术来确定注入现场的二氧化碳的命运。该项目的初始阶段将以上述最近的工作为基础,对包括制氢、钢铁制造和水泥生产在内的工业过程中捕获的二氧化碳进行取样和惰性气体以及C和O稳定和团块同位素分析。这些指纹将与从发电厂捕获的二氧化碳的现有测量结果进行比较,以确定燃料来源和工业过程的温度如何控制天然示踪指纹。这些分析的结果将用于评估这些自然指纹在确定注入二氧化碳在不同工程储存库中的命运以及追踪二氧化碳在储存库外的计划外迁移方面的有效性。该项目的第二部分将建立在爱丁堡大学的研究人员和加拿大碳管理(CMC)之间现有的合作基础上,后者在加拿大阿尔伯塔省开发了实地研究站(FRS)设施,联邦政府投资了490万美元。FRS的设计目的是将二氧化碳注入两个相对较浅的层位(300米和500米深),从而可以大规模研究二氧化碳从较深的二氧化碳储存地点迁移后的行为。现场设计允许在不同深度取样地下流体,我们将对注入现场的二氧化碳进行惰性气体和团块同位素分析,并将其与迁移二氧化碳样品的测量结果进行比较。这些测量将用于确定稀有气体和注入二氧化碳的聚集指纹在地下运移过程中的保留程度,并确定注入二氧化碳的捕获机制和捕获效率程度。研究的最后阶段将对稀有气体和团块同位素数据与FRS将使用的其他监测技术(例如稳定同位素测量)进行比较。这将与项目初始阶段在工业二氧化碳中测量的指纹相结合,并允许确定工业二氧化碳中的固有指纹在追踪二氧化碳注入工程储存地点时的迁移和命运方面的有效性。
英文摘要
This project will generate new knowledge relevant to the worldwide problem of monitoring secure CO2 storage and identifying unplanned CO2 migration from an engineered storage site. It includes training in stable, clumped and noble gas isotope geochemical measurement techniques and undertake sampling and analysis of captured COifrom industrial processes in the UK. These fingerprinting techniques are applied to tracing CO2 injected into the Carbon Management Canada Field Research Station and use these to identify the fate of the CO2 injected into the site. The initial phase of the project will build on the recent work outlined above and undertake sampling and noble gas and C and O stable and clumped isotope analysis of CO2 captured from industrial processes including hydrogen production, steel manufacturing and cement production. These fingerprints will be compared to existing measurements of captured CO2 from power plants to establish how the fuel source, and temperature of the industrial process controls the natural tracer fingerprint. The results of these analysis will then be used to assess how effective these natural fingerprints will be in determining the fate of the injected CO2 in different engineered storage reservoirs and in tracing unplanned migration of the CO2 out of the storage site. he second portion of the project will build on an existing collaboration between researchers at the University of Edinburgh, and Carbon Management Canada (CMC) who have developed the field research station (FRS) facility in Alberta, Canada, following a $4.9-million investment by the Federal Government. The FRS is designed to inject CO2 into two relatively shallow horizons (300 and 500 m depth), enabling a large scale study of how CO2 may behave if it migrates from a deeper CO2 storage site. The site design permits sampling of subsurface fluids at various depths, and we will perform noble gas and clumped isotope analysis on the CO2 injected into the site and compare it to measurements made in migrated CO2 samples. These measurements will be used to establish how well the noble gas and clumped fingerprint of the injected CO2 is retained as it migrates through the subsurface and identify trapping mechanisms and degree of trapping efficiency of the injected CO2. The final phase of the study will perform a comparison of this noble gas and clumped isotope data to other monitoring techniques which will be utilised at the FRS (e.g. stable isotope measurements). This will be combined with the fingerprints measured in industrial CO2 from the initial phase of the project and allow determination of how effective inherent fingerprints within industrial CO2 will be at tracing the migration and fate of that CO2 when it is injected into an engineered storage site.
期刊论文(1)
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会议论文
Resolving the Baseline Isotopic Fingerprints of Carbon Dioxide (Co2) and Methane (Ch4) at Carbon Management Canada Research Institutes Field Research Station, Canada
加拿大碳管理研究所实地研究站解析二氧化碳 (Co2) 和甲烷 (Ch4) 的基线同位素指纹
DOI: --
发表时间: 2019
期刊:
影响因子: --
作者: [Utley, R.E]
通讯作者: Utley, R.E
海外基金