代表性成果 一、期刊论文 1. Liu LH*, Wang S, Xu ZJ, Yu TJ, Esterle J.S., Golding S.D., Xi YF, Liu QF*. In-situ sulfur isotope characteristic and genesis of sedimentary pyrite with varying crystal morphologies in coal-bearing strata in North China, Sedimentary Geology, 2025, 476: 106805. 2. Liu LH, Liu QF*, Zhang S, Li YK, Yang LT. The thermal transformation behavior and products of pyrite during coal gangue combustion. Fuel, 2022, 324, 124803. 3. Liu LH, Liu QF*, Zhang KN, Zhang S, Li JT, Peng GY. Thermal decomposition and oxidation of pyrite with different morphologies in the coal gangue of North China. Journal of Thermal Analysis and Calorimetry, 2023, 148(5): 2023-2038. 4. Liu LH, Liu QF*, Li YK, Cao HY, Kang XJ. Occurrence of iron in the minerals of Carboniferous coal gangue of the Pingshuo open-pit mine, North China. Clays and Clay Minerals, 2022, 70: 695-711. 5. Liu LH, Zhang S, Liu QF*, Liu LS, Deng YJ. Palaeoclimate, palaeosalinity and redox conditions control palygorskite claystone formation: An example from the Yangtaiwatan Basin, northwest China. Clay Minerals, 2021, 56(3): 210-221. 6. Zhang S*, Liu LH, Liu QF*, Zhang BJ, Qiao ZC, Teppen B.J. Genesis of palygorskite in the Neogene baiyanghe formation in Yangtaiwatan basin, Northwest China, based on the mineralogical characteristics and occurrence of enriched trace elements and REE. Clays and Clay Minerals, 2021, 69: 23-37. 7. Zhang KN, Liu LH, Liu LS, Yang YJ, Liu QF*. Iron removal from kaolinitic coal gangue via magnetic separation after oxidizing calcination with the crystal structure of kaolinite protected. Materials Today Communications, 2023, 107175. 8. Li YK, Liu QF*, Liu LS, Liu LH, Hou DS, Wu YK. Effect of original crystal size of kaolinite on the formation of intercalation compounds of coal-measure kaolinite. Materials Today Communications, 2023, 35: 106130. 9. Liu LS, Chen XY, Li K, Li YK, Liu LH, Liu, QF*. Paleoclimatic reconstruction during the North China Craton drifting: Evidence from hydrogen and oxygen isotope composition of kaolinite in coal-bearing strata claystone. Palaeogeography, Palaeoclimatology, Palaeoecology, 2022, 605: 111241. 10. Yang YJ, Zhang H, Zhang KN, Liu LH, Ji LB, Liu QF*. Vulcanization, interfacial interaction, and dynamic mechanical properties of in-situ organic amino modified kaolinite/SBR nanocomposites based on latex compounding method. Applied Clay Science, 2020, 185. 11. 刘莉辉, 刘钦甫*. 平朔露天矿太原组煤矸石在热处理过程中相变特征研究. 2021年中国地球科学联合学术年会, 2775. 12. 张帅*, 刘莉辉, 乔志川, 刘钦甫. 临泽县杨台洼滩新近系白杨河组凹凸棒石的成因. 矿物学报, 2019, 39(06): 690-696. 二、专利 1. 刘莉辉, 刘钦甫, 张克楠, 张帅, 李锦涛. 一种利用煤矸石制备黄钾铁矾的方法. 发明专利. 专利号ZL 202210612087.2. 2. 刘莉辉, 刘钦甫. 一种利用煤系固废中的黄铁矿制备纳米赤铁矿的方法. 发明专利. 专利号CN202111207035.9. 3. 张克楠, 刘钦甫, 刘莉辉. 一种保留高岭石结构的煤矸石低温焙烧-磁选提取铁的方法. CN118357062A. |