代表性教学科研项目: 1.国家自然科学基金青年基金,铜渣余热驱动煤定向催化气化协同还原气原位提质机理, 2022-2024,主持; 2. 山东省自然科学基金,铜渣热载体污泥浒苔共热解协同活性炭制备的机理研究, 2021-2023,主持; 3. 国家重点研发计划子课题,“生物质混合物料低氮燃烧清洁化供暖技术与示范”,2020-2022,主持;(项目主持单位:天津大学陈冠益教授团队) 4. 2022年度科技智库青年人才计划,双碳驱动下钢铁工业多能流的动态预测及节能降碳潜力研究,主持; 5. 上海交通大学(上海市固体废物处理与资源化工程研究中心)开放课题,2022-2023,主持; 6. 浙江大学(能源清洁利用国家重点实验室)开放课题面上项目B类,2022-2023,主持; 7. 昆明理工大学省部共建复杂有色金属资源清洁利用国家重点实验室开放课题,2022-2023,主持。 8. 青岛理工大学引进人才科研启动费,2019-2023,青岛理工大学,主持; 9.东北大学卓越博士生计划 甲类资助2017-2018,东北大学,主持; 10. 液态熔渣高效热回收与资源化利用技术(国家重点研发计划子课题,2017-2020,520万),核心参与;(项目主持单位:重庆大学廖强教授团队) 11. 山东省青年创新团队,核心参与。 代表性论文(第一作者/通讯作者): 截至2024年9月,累计发表SCI期刊论文50余篇,其中第一作者/通讯作者20余篇,其中Top期刊论文10余篇(Chemical Engineering Journal,Energy,Renewable Energy, International Journal of Hydrogen Energy, Energy & fuels),国际TMS最佳论文1篇。 [1] Zuo Zongliang*,Luo Siyi*,Liu Sihong,Zhang Jingkui, Yu Qingbo, Bi Xuejun. Thermokinetics of mass-loss behavior on direct reduction of copper slag by waste plastic char. Chemical Engineering Journal, 2021, 405: 126671. (Top 期刊,SCI, 1区, IF:16.744) [2] Zuo Zongliang, Feng Yan, Li Xiaoteng, Luo Siyi*, Ma Jinshuang, Sun Huiping, Bi Xuejun, Yu Qingbo, Zhou Enze, Zhang Jingkui, Guo Jianxiang, Lin Huan. Thermal-chemical conversion of sewage sludge based on waste heat cascade recovery of copper slag: mass and energy analysis. Energy, 2021,23: 121327. (Top 期刊,SCI, JCR: 1区, IF: 8.857) [3] Zongliang Zuo Yan Feng, Xinjiang Dong, Siyi Luo,..,Xiaoqing Lin. Advances in recovery of valuable metals and waste heat from copper slag. Fuel Process Technology, 2022, 235:107361. (Top 期刊,SCI, JCR: 1区, IF: 8.129) [4] Zuo Zongliang, Feng Yan,Dong Xinjiang,Luo Siyi,et al. Energy absorption characteristics and kinetics of carbonaceous solid waste gasification with copper slag as heat carrier[J]. International Journal of Hydrogen Energy, 2022, 47(46): 20076-20086. (SCI 1区,7.139) [5] Zuo Zongliang*, Luo Siyi, Zhang Jingkui, Yu Qingbo. C and CO reduction proportional fraction with copper slag by a phase equilibrium calculation model (PECM). Energy & Fuels, 2020, 34(1): 698-708. (Top 期刊,SCI, 2区, IF: 3.421) [6] Zuo Zongliang*, Yu Qingbo, Luo Siyi, Zhang Jingkui. Effects of CaO on two-step reduction characteristics of copper slag using biochar as reducer: thermodynamic and kinetics. Energy & Fuels, 2020, 34(1): 491-500. (Top 期刊,SCI, 2区, IF: 3.421) [7] Zuo, Zongliang, Feng Yan, Luo Siyi *, Dong Xinjiang, et al. Combustion characteristics of low calorific value biogas and reaction path of NOx based on sensitivity analysis. Frontiers in Chemistry. 2021,830329. (SCI, 2区, IF: 5.545) [8] Zuo Zongliang, Yu Qingbo*, Xie Huaqing, Wang Kun, et al. Mechanical and reduction characteristics of cold-pressed copper slag pellets composited within biomass and lignite. Renewable Energy, 2018, 125: 206-224. (Top 期刊,SCI, 1区, IF: 6.274) [9] Zuo, Zongliang, Feng Yan, Luo Siyi*, Xinjiang Dong, Xiaoteng Li, Ren Dongdong, Yu Qingbo, Guo Jianxiang. Element distribution and migration behavior in the copper slag reduction and separation process. Frontiers in Energy Research. 2021, 760312. (SCI, 2区, IF: 4.008) [10] Zuo Zongliang, Yu Qingbo*, Xie Huaqing, Yang Fan, et al. Direct reduction of copper slag-carbon composite pellets by coal and biochar. Environmental Technolgy, 2018: 1479-1487x. (SCI, 3区, IF: 1.918) [11] Zuo Zongliang, Yu Qingbo*, Xie Huaqing, Duan Wenjun, et al. Thermogravimetric analysis of the biomass pyrolysis with copper slag as heat carrier. Journal of Thermal Analysis and Calorimetry, 2017, 129(2): 1233-1241. (SCI, 2区, IF: 2.209) [12] Zuo Zongliang, Yu Qingbo*, Xie Huaqing, Yang Fan, et al. Thermodynamic analysis of reduction in copper slag by biomass molding compound based on phase equilibrium calculating model. Journal of Thermal Analysis and Calorimetry, 2018, 132(2): 1277-1289. (SCI, 2区, IF: 2.471) [13] Zuo Zongliang, Yu Qingbo*, Xie Huaqing, Liu Sihong, et al. Thermodynamic analysis on molten slag waste heat cascade recovery method (MS-WHCR). Journal of Thermal Analysis and Calorimetry, 2018, 134(3): 2171-2181. (SCI, Q2, IF: 2.471) [14] Zuo Zongliang, Yu Qingbo*, Liu Sihong, Xie Huaqing, et al. Thermodynamic analysis of thermal energy recovery and direct reduction (TER-DR) system for molten copper slag. Journal of Thermal Analysis and Calorimetry, 2017, 131(2): 1691-1698. (SCI, 2区, IF: 2.209) [15] Zuo Zongliang, Yu Qingbo*, Wei Mengqi, Xie Huaqing, et al. Thermogravimetric study of the reduction of copper slag by biomass. Journal of Thermal Analysis and Calorimetry, 2016, 126(2): 481-491. (SCI, 2区, IF: 1.953) [16] Zuo, Zongliang, Yu Qingbo*, Liu Junxiang, Qin Qin, et al. Effects of CaO on reduction of copper slag by biomass based on ion and molecule coexistence theory and thermogravimetric experiments. ISIJ International, 2017, 57(2): 220-227. (SCI, 2区, IF: 1.350) [17] Feng Yan, Yang Qianhui, Zuo Zongliang *, Luo Siyi, Ren Dongdong, Huan Lin. Study on preparation of oxygen carrier using copper slag as precursor. Frontiers in Energy Research. 2021, 78914.(SCI, 2区, IF: 4.008)(硕士学生一作) [18] Zuo, Zongliang, Yu Qingbo*, Xie Huaqing, Qin Qin, Wei Mengqi. Direct reduction of copper slag composite pellets within lignite using biomass as binder. Energy Technology, 2018: 65-75. (Conference paper, EI) [19]Zongliang Zuo *,†, Tian Jing, Jinmeng Wang †, Xinjiang Dong , Yishan Chen, Siyi Luo*, Weiwei Zhang. Sludge gasification using iron bearing metallurgical slag as heat carrier: characteristics and kinetics. Energies, 2022, 15(23): 9223. (SCI, 2区, IF: 3.252) [20] Feng Yan, Zuo Zongliang*, Cheng Zhanjun, Luo Siyi, Annaland MVS, Xie Huaqing, Editorial: Pollutant emission control in energy conversion process. Frontiers in Energy Research. 2023, 11:1118785. (SCI, 2区, IF: 3.400)(硕士学生一作) [21] Zuo Zongliang, Dong Xinjiang, Luo Siyi*, Yu Qingbo*. Waste heat recovery from converter gas by a filled bulb regenerator: heat transfer characteristics. processes, 2023,11(3), 915. (SCI, 2区, IF: 3.500) [22] Xinjiang Dong, Zongliang Zuo *, Hanqi Yang, Siyi Luo**, Dongdong Ren, Zhanjun Cheng, Kaijie Liu. Water gas shift reaction mechanism with copper slag as heat carrier and catalyst. International Journal of Hydrogen Energy, 2023, 48: 36707-36721. (SCI 1区,7.139) (硕士学生一作) [23] Hanqi Yang, Xinjiang Dong, Zongliang Zuo*, Siyi Luo*, Zhanjun Cheng*, Junzhi Wang. The effect of CaO on coal gasification reaction with high-temperature copper slag as catalyst. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2023, 45(3): 9450-9464. (SCI 3区,2.902)(硕士学生一作) [24] Zhong Wenjun, Dong Xinjiang, Feng Yan, Zuo Zongliang*, Wang Qian, Xiaoqing Lin. Phase reconstitution and reaction performance of oxygen carrier prepared from copper slag. Journal of Thermal Analysis and Calorimetry, 2024, 149: 63-74. (SCI 3区,4.755)(本科学生一作) [25]左宗良, 罗思义*, 于庆波, 张敬奎. 以含碳固废为还原剂的铜渣颗粒直接还原正交实验[J]. 矿产综合利用, 2022(05): 46-51. [26] 陈怡珊,左宗良,高鹏,董玉亮,罗思义,邹资生. 电路板焚烧熔炼渣物理改性及吸放氧性能研究[J]. 矿产综合利用, 2025(04).(本科学生一作) 累计申请国家发明专利20余项,PCT/国际专利8项,代表性专利如下: [1] 一种含铁冶金渣粒梯级余热回收及直接还原系统及方法, 2020-11-16, 国内发明专利,国际PCT专利申请号:PCT/CN2020/128914. [2] 利用固体热载体热解气化的梯级余热回收装置及方法, 2020-11-16,,国际PCT专利申请号,PCT/CN2020/128913. [3] 左宗良,冯焰,罗思义等. 用于含碳固废化学链气化的载氧体制备工艺及方法[P]. 山东省:CN111732990B,2023-04-07.(授权) [4] 左宗良,张敬奎,罗思义等. 利用固体颗粒热载体热解气化的梯级余热回收装置及方法[P]. 山东省:CN110872531B,2021-07-13. (授权) [5] 左宗良,张敬奎,罗思义等. 一种含铁冶金渣粒梯级余热回收及直接还原系统及方法[P]. 山东省:CN110923387B,2021-05-11. (授权) [6] 于庆波,左宗良,秦勤. 一种电弧炉双室铁浴煤气化的电网调峰系统及方法[P]. CN106753573B,2019-11-26. (授权) [7] 于庆波,左宗良,王拓,闫子文,秦勤. 一种回收铜渣余热并直接还原提铁的系统及方法[P]. CN106086276B, 2018-05-29. (授权) [8] 于庆波,左宗良,段文军,秦勤. 一种从熔融铜渣中分步还原回收铁及煤气化回收余热的系统及方法[P]. CN104846209B,2017-03-01. (授权) |