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Interpretation of Double-Peak Endotherm on DSC Heating Curves of Bitumen

机译:解释双峰吸收对沥青DSC加热曲线的解释

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摘要

Since the late 1960s, differential scanning calorimetry (DSC) has been used to characterize petroleum bitumen, in particular, for the determination of the crystallized fraction (CF) content. This procedure is based on the construction of a baseline after identifying the CF dissolution endotherm on the heating curve. However, many bitumens commonly exhibit double-peak endotherms during a DSC heating scan. In this case, the task of constructing the corresponding baseline does not have a unique solution because the interpretation of the heat flow profile is ambiguous. Several interpretations have been proposed earlier to explain the origins of the double-peak endotherm. However, the double-peak endotherm is currently still not fully understood, and a comprehensive consensus has not been achieved. If the determination of the baseline location is incorrect, the CF content can be over- or underestimated by 20-30%. In the current work, double-peak endotherm behavior was investigated by temperature modulation DSC. All of the earlier explanations were critically considered. The origin of the double-peak endotherm was discussed in detail, and a probable descriptive model for the formation of the double-peak endotherm was suggested. The endotherm pattern is assumed to be governed by three overlapping thermal events: a broad endothermic background and a twin "recrystallization exotherm-dissolution endotherm" pair. The onset of the recrystallization exotherm and the intensity of both events depend on the annealing temperature and time. The study promotes a better understanding of the relationship between the thermal effects on the DSC curves and the structural changes of bitumen. A correct interpretation of the double-peak endotherm can provide a more exact determination of the CF content in bitumen.
机译:自20世纪60年代后期以来,差示扫描量热法(DSC)已经用于表征石油沥青,特别是用于测定结晶级分(CF)含量。该程序基于在识别加热曲线上吸收的CF溶解后构建基线。然而,许多沥青通常在DSC加热扫描期间表现出双峰吸收。在这种情况下,构建相应基线的任务没有具有唯一解决方案,因为对热流分布的解释是模糊的。提前提出了几种解释来解释双峰吸食的起源。但是,目前尚未完全理解双峰吸收,并且尚未实现全面的共识。如果基线位置的测定不正确,则CF含量可以过度或低估20-30%。在当前的工作中,通过温度调制DSC研究了双峰吸热行为。所有先前的解释都受到严格考虑。详细讨论了双峰吸入器的起源,提出了用于形成双峰吸热的可能描述模型。假设吸热模式由三个重叠的热事件管辖:广泛的吸热背景和双“再结晶放热放热吸收吸热”对。再结晶放热的发作和两种事件的强度取决于退火温度和时间。该研究促进了对DSC曲线对热效应与沥青的结构变化之间的关系的更好理解。对双峰吸收的正确解释可以提供更精确的沥青中CF含量的确定。

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  • 来源
    《Energy & fuels》 |2020年第3期|3960-3968|共9页
  • 作者单位

    Dept Chem Technol Petr & Gas Proc Kazan 420015 Russia;

    RAS Arbuzov Inst Organ & Phys Chem FRC Kazan Sci Ctr Lab Petr Chem & Geochem Kazan 420088 Russia;

    Dept Chem Technol Petr & Gas Proc Kazan 420015 Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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