Gao Yaqi, Zou Chong, She Yuan, Huang Zhengyan, Li Siqi
College of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710311, China.
Molecules. 2024 May 17;29(10):2361. doi: 10.3390/molecules29102361.
Understanding the changes in carbon structure during the mid-low-temperature pyrolysis of low-rank coal is important for efficient utilization. Raman spectroscopy is commonly used to analyze the structural order of carbonaceous materials, but traditional methods may overlook the heterogeneity of coal/char. This research explores the heterogeneity of char structure derived from low-rank coal at 700 °C through multi-point micro-Raman analysis. The analysis of parameters such as area (), intensity (), full width at half maximum (), and peak position () reveals that the carbon structure becomes less ordered as coal transforms into char due to the deposition of small molecules on the surface. The study emphasizes the benefits of multi-point detection for gaining in-depth insights into the structural evolution of carbonaceous materials. The increased standard deviation of Raman parameters indicates diverse structural characteristics resulting from pyrolysis at this temperature, which traditional methods may not capture effectively. The mapping method used in this research visually illustrates the distribution of carbon structures in the region.
了解低阶煤中低温热解过程中碳结构的变化对于高效利用至关重要。拉曼光谱常用于分析含碳材料的结构有序性,但传统方法可能会忽略煤/焦炭的异质性。本研究通过多点显微拉曼分析探讨了700℃下低阶煤衍生焦炭结构的异质性。对面积()、强度()、半高宽()和峰位()等参数的分析表明,由于小分子在表面沉积,煤转化为焦炭时碳结构的有序性降低。该研究强调了多点检测对于深入了解含碳材料结构演变的益处。拉曼参数标准偏差的增加表明该温度下热解产生了多种结构特征,而传统方法可能无法有效捕捉这些特征。本研究中使用的映射方法直观地展示了该区域碳结构的分布。