[1] Long Ding, Yunlong Feng, Hexi Zhao, Lixin Qian*, Jinbo Wu, Hongming Long, Chunbao Xu. Leaching characteristics and solidification mechanism of vanadium in preparation of titanium-containing pellets using spent SCR catalyst, Chemical Engineering Journal, 2023, 477, 147035. [2] Hexi Zhao, Xiangyang Xu, Junzhe Zhang, Weiming Huang, Lixin Qian*, Hongming Long*, Co-treatment of biological sludge by iron ore sintering process: Effects of flue gas pollutants and production quality indexes, Process Safety and Environmental Protection, 196, 2025, 106922. [3] Lei Ni, Xiangjie Gao, Lixin Qian*, Long Ding, Hongming Long*, Poisoning mechanism of potassium salts on catalytic oxidation of CO over CeMnOx catalysts in sintering flue gas, Journal of Environmental Chemical Engineering, 2025, 13(05), 117612. [4] Long Ding, Hexi Zhao, Ke Cheng, Lixin Qian*, Pengyu Qi, Qi Shi, Hongming Long*. Low-temperature deNOx performance and mechanism: a novel FeVO4/CeO2 catalyst for iron ore sintering flue gas. J. Iron Steel Res. Int., 2024, 31:2110–2121. [5] Hongming Long, Long Ding, Jian Yang, Lixin Qian*, Jiajie Tao, Tao Yang, Qingmin Meng, Chunbao Charles Xu*. Novel resource utilization approach of spent catalyst from flue gas denitrification: Preparing high quality titanium-bearing pellets, Fuel, 2023, 340, 127581. [6] Lixin Qian, Bojun Zhao, Haoyu Wang, Guangda Bao, Yulin Hu, Chunbao Charles Xu*, Hongming Long*. Valorization of the spent catalyst from flue gas denitrogenation by improving bio-oil production from hydrothermal liquefaction of pinewood sawdust. Fuel 2022; 312:122804. [7] Lixin Qian, Tao Yang, Hongming Long*, Long Ding, Chunbao Charles Xu*. Recycling of waste V2O5–WO3/TiO2 catalysts in the iron ore sintering process via a preballing approach. ACS Sustainable Chemistry & Engineering, 2021, 9, 48, 16373–16383. [8] Lixin Qian, Yifan Wang, Mingliang Liu, Yulin Hu, Tiejun Chun*, Qingmin Meng, Hongming Long*, Ya Wang. Performance evaluation of urea injection on the reduction of PCDD/Fs emission from a commercial municipal solid waste incinerator. Process Safety and Environmental Protection, 2021, 146: 577-585. [9] 龙红明, 丁龙, 钱立新*, 春铁军, 张洪亮, 余正伟. 烧结烟气中NOx和二噁英的减排现状及发展趋势. 化工进展. 2022, 41(07): 3865-3876. [10] 钱立新, 丁龙, 魏进超, 杨本涛, 张洪亮, 龙红明*, 王宏涛. Ti/Sn掺杂CeMn基催化剂的低温脱硝活性及抗水性能. 过程工程学报, 2022, 22(12): 1691-1701. |
[1] 钱立新; 丁龙; 龙红明; 陶家杰; 王毅璠; 刘自民; 肖俊军; 黄嘉奇; 吴金波; 余正伟; 春铁军;王平; 王宏涛. 一种掺混失效钒钨钛催化剂强化高炉喷吹煤粉燃烧性能的方法, ZL 2023 1 0116292.4,授权日期:2024.3.26 [2] 钱立新, 龙红明, 王毅璠, 丁龙, 杨涛, 余正伟, 孟庆民, 雷杰, 春铁军, 王宏涛. 一种球团及其制备方法及一种铁水. ZL2021102143353, 授权日期:2023-5-12 [3] 钱立新; 龙红明; 丁龙; 杨涛; 章裕东; 汪名赫; 罗云飞; 王毅璠; 余正伟; 孟庆民; 春铁军; 丁成 义; 雷杰 ; 一种基于铁矿烧结工序的废弃催化剂资源化处理方法, 2022-3-8, 中国, ZL 202010354577.8, 2022-3-8 [4] 钱立新, 孟庆民, 龙红明, 春铁军, 李家新, 余正伟, 王平, 狄瞻霞, 魏汝飞, 李宁, 王毅璠, 王凯祥. 一种基于电信号变化判断铁矿粉同化温度的方法. ZL201710676858.3, 2020-02-14 [5] 钱立新, 王欢, 龙红明,春铁军, 李家新, 余正伟, 王平, 孟庆民, 狄瞻霞, 魏汝飞, 李杰民, 王毅璠, 刘在春. 一种铁矿粉同化温度的检测方法. ZL201710255900.4, 2018-07-03 [6] 龙红明, 钱立新, 章裕东, 李宁, 罗云飞, 春铁军, 孟庆民, 李家新, 余正伟, 王平, 狄瞻霞, 魏汝飞, 丁龙. 一种降低铁矿烧结碳素消耗及排放的配矿方法. ZL201811448515.2, 2020-05-12 [7] 龙红明, 钱立新, 春铁军, 李家新, 余正伟, 王平, 孟庆民, 狄瞻霞, 魏汝飞, 李杰民, 刘在春, 李东升, 李宁. 一种基于位移突变检测铁矿粉同化温度的装置. ZL201710252610.4, 2018-02-23 [8] 龙红明, 王欢, 钱立新, 余正伟, 春铁军, 李家新, 王平, 孟庆民, 狄瞻霞, 魏汝飞, 王凯祥, 王毅璠, 李宁. 一种基于铁矿粉温度-电信号曲线检测同化温度的方法. ZL201710676248.3, 2021-02-05 [9] 龙红明; 钱立新;王毅璠;杨涛;丁龙;汪名赫;孟庆民 余正伟;春铁军;雷杰;王宏涛;丁成义. 一种抑制烧结过程SO2、NOx的多层复合球团. ZL 2020 1 1369856.8, 授权日期:2023-10-24 |