EAPSI: Investigating the potential release of trace elements and heavy metal contaminants during drilling for shale oil and gas
EAPSI: Investigating the potential release of trace elements and heavy metal contaminants during drilling for shale oil and gas
批准号:
1415090
负责人:
Jon Yang
金额:
$0.51万
依托单位:
依托单位国家:
美国
项目类别:
Fellowship Award
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-06-01 至 2015-05-31
中文摘要
随着这些深埋岩层中蕴藏的大量自然资源的实现,黑色页岩最近已经走到了能源组合的前列。相对较新的水平钻井和水力压裂等钻井技术应用于黑色页岩系统,使得开采天然气和石油在经济上是可行的。然而,对这些钻井作业过程中发生的化学变化以及重金属污染物(如砷)和其他痕量金属(如稀土元素)释放的可能性知之甚少。作为了解页岩油气钻探过程中可能发生的化学变化的一步,该项目将评估黑色页岩样品的热成熟度(即生产天然气/天然气的潜力),以便在钻探开始之前对系统进行评估。这项研究将与韩国地质矿产研究所的金智勋博士合作进行。金博士是从能源利用的角度表征有机碳含量的专家,也精通深海沉积岩心成岩过程中的稀土元素系统学。该项目将表征约100个陆相黑色页岩样品中的有机质含量,这些样品对于能源行业开发页岩气具有重要意义。此外,来自海洋沉积物的约60个样品将用于为解释黑色页岩数据提供背景和指导。有机质含量将使用LECO CHN-900和LECO SC-132仪器进行总碳、氮、硫含量的分析,并使用Rock-Eval 6仪器进行总有机碳含量和有机质特性的分析。该NSF EAPSI奖是与韩国国家研究基金会合作资助的。
英文摘要
Black shales have recently come to the forefront of the energy portfolio with the realization of the vast natural resources contained within these deeply buried rock formations. The relatively recent application of drilling technologies such as horizontal drilling and hydraulic fracturing to the black shale system have made accessibility to the natural gas and oil economically viable. However, relatively little is known of the chemical changes occurring during these drilling operations and the potential for heavy metal contaminants (e.g. arsenic) and other trace metals (e.g. rare earth elements (REEs)) to be released. As a step towards understanding the potential chemical changes occurring during shale oil/gas drilling, this project will evaluate the thermal maturity (i.e. potential to produce natural oil/gas) of black shale samples to evaluate the system before drilling occurs. This research will be conducted in collaboration with Dr. Ji-Hoon Kim at the Korean Institute for Geological and Mineral Resources. Dr. Kim is an expert in characterizing organic carbon content in terms of energy utilization and is also well-versed in REE systematics during diagenesis of deep-sea sediment cores.This project will characterize the organic matter content in ~100 samples of continental black shales which are of interest to the energy industry for shale gas development. Additionally, ~60 samples from marine sediments will be used to provide context and guidance for interpretations of the black shale data. Organic matter content will be analyzed using LECO CHN-900 and LECO SC-132 instruments for total carbon, nitrogen, sulfur contents and using a Rock-Eval 6 instrument for total organic carbon content and organic matter character. This NSF EAPSI award is funded in collaboration with the National Research Foundation of Korea.
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