Potential analytical interferences when measuring Tmax during temperature programmed pyrolysis of hydrothermally altered volcanoclastic sediment

S. Bowden, Y. Kobayashi, Ogheneworo E. Offeh, M. Tsang, Yuzuru Yamamoto
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Abstract

Abstract The temperature of maximum pyrolysis yield (known as Tmax) can be used to determine the level of thermal alteration in sedimentary organic matter; higher Tmax values represent higher thermal alteration. Tmax is commonly measured on petroleum source rocks or similar sediments with high organic carbon contents. It would be desirable to measure the Tmax of volcanic sediments because they can have complex patterns of thermal alteration. However, volcanic sediments often have low total organic carbon contents and consequently are susceptible to analytical interferences. Despite this, it can be shown that meaningful Tmax measurements can still be made in sediment with organic carbon contents as low as 0.2% and that interference caused by bitumen or ionizable salts can be mitigated by solvent extraction and rinsing with water. Thus, it is reasonable to use temperature programmed pyrolysis to assess levels of thermal alteration in even low total organic carbon volcanoclastic sediments.
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热液蚀变火山碎屑沉积物程序升温热解过程中Tmax测量的潜在分析干扰
最大热解产率温度(Tmax)可以用来判断沉积有机质的热蚀变程度;Tmax值越高,热蚀变越大。Tmax通常是在有机碳含量高的烃源岩或类似沉积物上测量的。由于火山沉积物具有复杂的热蚀变模式,因此测量火山沉积物的Tmax是可取的。然而,火山沉积物通常具有较低的总有机碳含量,因此容易受到分析干扰。尽管如此,可以证明在有机碳含量低至0.2%的沉积物中仍然可以进行有意义的Tmax测量,并且沥青或可电离盐引起的干扰可以通过溶剂提取和用水冲洗来减轻。因此,即使在低总有机碳的火山碎屑沉积物中,应用程序升温热解法评价热蚀变水平也是合理的。
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