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,52104397,2022-2024,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,ZR2020QE150,2021-2023,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;(项目牵头主持单位:天津大学 陈冠益教授团队) 4. 中国科协智库青年人才计划,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. 冶金渣热质综合利用团队,山东省高等学校优秀青年创新团队,2025-2027,团队负责人; 6.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; 7. 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,2022-2023,主持; 8. 钢铁工业环境保护全国重点实验室 开放课题(重点项目),2026-2027,主持; 9. 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; 10. 电力系统频率稳定问题研究,企业委托,主持; 11. 风储协同技术研究,企业委托,主持; 12. 提升风电场频率响应技术研究,企业委托,主持 13. 高炉安全长寿智能诊断平台,企业委托,主持; 14. 电感与滤波板温度场数值模拟,企业委托,主持; 15. 电路板焚烧熔炼技术研发,企业委托,参与; 16. 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; 17. 液态熔渣高效热回收与资源化利用技术(国家重点研发计划课题,2017-2020,520万), 核心参与(项目牵头主持单位:重庆大学 廖强教授团队)。 代表性论文(第一作者/通讯作者): 截至2026年3月,累计发表SCI期刊论文60余篇,其中第一作者/通讯作者60余篇,其中Top期刊论文10余篇(Chemical Engineering Journal,Energy,Renewable Energy, International Journal of Hydrogen Energy),国际TMS最佳论文1篇,ESI高被引论文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] 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)(硕士生一作) [10] 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) [11]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) [12] Feng Yan, Zuo Zongliang*, 程占军(天津大学), 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)(硕士生一作) [13] 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) [14] 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, 林晓青(浙江大学). 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) [15]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.(中文核心) [16] 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).(中文核心,本科学生一作) [17] 风电高渗透率下豫西电力系统节点频率稳定性研究. 电工技术,2023, 7: 33-38. [18] 风储联合运行系统在电力系统调频中的研究进展与展望[J].洁净煤技术,1-16. [19] 基于双PWM变换器的DFIG系统动态功率追踪及矢量控制研究 [J]. 洁净煤技术, 2025, 31 (S1): 343-350. (中文核心) [20] 基于混合储能协同控制的风光储直流微电网建模及动态特性研究[J]. 洁净煤技术, 2026. (中文核心) [21] Dong Xinjiang, Wang Junzhi, Yang Li*, Liu Fang, Zuo Zongliang*. Mechanistic insights into copper slag as a thermal carrier and catalyst in lignite steam gasification: Experimental and DFT study[J]. Energy,2025, 335: 138310. (SCI, 1区, IF: 9.4)(博士生一作) [22] Zongxu Liu, Hui Guo, Yingshuai Zhang, Zongliang Zuo*. A comprehensive review of wind power prediction based on machine learning: models, applications, and challenges. Energies, 2025, 18, 350. (SCI, 4区, IF: 3.252)(ESI高被引) 累计申请国家发明专利20余项,授权8项,代表性专利如下: [1]左宗良,等. 一种基于光伏最大功率追踪的改进扰动观察算法,2026-02-04(公开) [2]董鑫江,左宗良,等. 一种基于炭刻蚀的富微孔冶金渣颗粒制备技术及方法,2025.12(授权) [2]左宗良,董鑫江,等.一种冶金渣余热高效回收及多孔颗粒制备装置系统及方法,2026.03(授权) [4] 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]. 2023-04-07.(授权) [5] 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]. 2021-07-13. (授权) [6] 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].2021-05-11. (授权) [7]一种基于炭刻蚀的富微孔冶金渣颗粒制备技术及方法(授权) [8] 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].,2019-11-26. (授权) [8] 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]. 2018-05-29. (授权) [9] 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]. 2017-03-01. (授权) |