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USING LOW-FIELD NMR TO UNDERSTAND FINES BEHAVIOUR

机译:使用低场NMR了解罚款行为

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An increasing amount of the oil recovered today originates from oil sands.The recovery efficiency from oil sands is dependent on the fines content,however the relationship between fines content and oil recovery is not well understood.This paper proposes using low field nuclear magnetic resonance(NMR) as a tool to understand the correlation between the grade of the ore(i.e.,the degree of ease to separate oil from the sand) and the fines content.First,synthetic samples with different clay,sand,brine and heavy oil contents were created to simulate ores of varying recovery grades.The NMR results showed that brine in montmorillonite is distinct from brine in illite or kaolinite,a fact that could be exploited in using NMR for clay identification.The results from the synthetic samples were used to create nomographs correlating NMR parameters and clay content. Second,field ore samples underwent Dean-Stark extraction and the solids were resaturated and re-measured in the NMR.The results were compared to those obtained from synthetic samples with similar compositions and it appears the results from the two types of samples are similar,despite having significantly different particle size distributions.This work shows that it is possible to determine fines content from NMR. Upon creating a more general model,these findings may be used towards determining clay type and content from NMR logs.This information may also be used towards refining the cut-off method for more accurately determining oil reserves.
机译:今天恢复的含油量源于油砂。来自油砂的恢复效率取决于罚款含量,然而,罚款含量与石油恢复之间的关系并不适当地理解。本文建议使用低现场核磁共振(作为了解矿石等级之间的相关性的工具(即,从砂中分离油的易于单独的油)和细粒含量。首先,具有不同粘土,砂,盐水和重油含量的合成样品创建以模拟变化的回收等级。NMR结果表明,蒙脱石的盐水不同于野生盐或高岭石的盐水,这是可以利用NMR用于粘土鉴定的事实。使用合成样品的结果用于产生规定标记关联NMR参数和粘土含量。其次,现场矿石样品接受了Dean-Stark提取和固体在NMR中重新饱和并重新测量。将结果与由具有类似组合物的合成样品获得的结果进行比较,并且它看起来是两种样品的结果相似,尽管具有显着不同的粒度分布。这项工作表明,可以从NMR测定细粒含量。在创建更一般的模型时,这些发现可以用于从NMR日志确定粘土类型和内容。本信息也可以用于改进截止方法,以便更准确地确定油储存。

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