电话:64355111-6575
邮箱:lxl@sjtu.edu.cn
办公地点:东部行政楼1102003-2007 上海交通大学,博士
1996-2003 西安建筑科技大学,本科、硕士
2024.4月- 上海交通大学,yl88858永利集团,副教授
2017.6-9月 新加坡国立大学,CREATE实验室, 学术访问
2011-2024 上海交通大学,机械与动力工程学院,助理研究员、副教授
2009-2010 意大利国家研究委员会,燃烧研究所,博士后
一、碳捕集技术开发与应用(1.针对船舶、化工等CO2源,开展相变吸收、旋转填料、电化学等新型低能耗碳捕集技术开发和应用;2.针对环境空气、室内空间等CO2源,开展MOF、多孔碳等固体吸附剂及吸/脱附工艺的开发和应用)
二、Ai+能源材料(1. 基于机器学习吸收剂、吸附剂筛选;2.自动化吸收剂、吸附剂制备)
碳源、碳汇与碳中和
上海市科委新能源项目:船载相变型CO2捕集关键技术开发与应用示范 负责人
上海市科委探索者项目:固态胺吸附剂低浓度CO2非能动吸附机理研究 负责人
上海市重大科技专项子课题:高效空气直接捕集CO2研究 负责人
上海市科委重点项目:公交车机外氧化催化转化器研究 交大负责人
国家自然科学基金项目:O2和NO2化碳烟颗粒(颗粒层)的过程规律研究 负责人
国家自然科学基金项目:燃料分子结构对GDI汽油机微粒生成的影响规律研究 负责人
国家自然科学基金项目:燃料特性对柴油机缸内微粒生成和演化历程的影响规律研究 负责人
国家自然科学基金重大国际合作项目:柴油机颗粒物生成及演变机理 主要完成人
科技部政府间国际科技合作重点专项:PM2.5、SOx和NOx气体净化 课题负责人
科技部港澳台科技合作专项:机动车碳质颗粒排放特及其大气环境效应 主要完成人
河南能源化工集团项目:煤化工高浓度CO2尾气碳捕集纯化技术研究 负责人
上海交通大学晨星奖励计划项目:柴油燃烧过程硝基多环芳烃生成规律研究 负责人
上海交通大学医工交叉项目:机动车尾气细颗粒和超细颗粒和胰岛素抵抗的实验研究 主要完成人
Su Huihui, Liu Yihang, Li Yi, Takeshi Hagio, Li Xinling*, Huang Zhen*. Promising solid adsorbents for CO₂ capture: MOFs, zeolites, and POPs.Journal of Environmental Chemical Engineering. 2026,14:124181.
Yang Liu, Dong Yukun, Fang Zhenchang, Liu Yihang, Li Xinling*, Huang Zhen*. Development of physical solvent-based biphasic absorbents for CO2 capture: Component construction criteria and mechanisms for phase separation. Separation and Purification Technology. 2026, 405:139010.
Yang Xiaoyong, Ji Suyang, Du Shilong, Zhu Yong*, Li Xinling*. Enhancement mechanism of Taylor reactor during CO2 adsorption process by amine solution. Fuel. 2026,405:136455.
Lin Chenyang, Wang Yijun, Liu Yihang, Hagio Takeshi, Zhou Baowen, Li Xinling*, Zhen Huang. Performance of PEI-modified fumed silica monoliths with honeycomb structure for direct air capture of CO2. Gas Science and Engineering. 2026,146:205836.
Fang Zhenchang, Dong Xinyu, Yang Liu, Qiao Xinqi, Li Xinling*, Huang Zhen. Micro-mechanism of CO2 absorption enhancement in rotating packed beds:Dynamics and mass transfer of droplet impact on a single wire. Chemical Engineering Journal. 2025, 525:170599.
Liu Yihang, Wang Yuxuan, Wang Yijun, Yang Liu, Hagio Takeshi, Qiao Xinqi, Li Xinling*, Huang Zhen. Pore-modified mesoporous-carbon-based supported amine adsorbents for direct air capture: Adsorption performance and concerted reaction mechanism. Separation and Purification Technology. 2025,378:134535.
Yang Liu, Ma Ning, Fang Zhenchang, Jiang Kaijia, Hagio Takeshi, Li Xinling*, Huang Zhen*. The general pattern for intramolecular diamine with primary and tertiary amino groups showing phase separation behavior after flue gas CO2 absorption. Separation and Purification Technology. 2025,372:133490.
Wei Zhidong, Zhang Yuchen, Huang Huoshuai, Liu Junying, Zhang Yiran, Xinling Li, Shangguan Wenfeng, HuangZhen. Revealing the Spatial shielding effect of interfacial water molecules in photocatalytic CO2 reduction from overall water splitting. Inorganic Chemistry. 2025,64:12277-12285.
Li Xinling, Zhao Pengcheng. Effect of exhaust gas recirculation (EGR) on diesel engine carbonaceous PM emissions. Environmental Science and Pollution Research. 2025,32:14086–14096.
Li Xinling, Zhao Pengcheng. Effect of butanol addition in diesel and biodiesel fuels on OC, EC, particulate PAH, and alkyl-PAH emissions from a common-rail diesel engine. Air Quality Atmosphere and Health. 2025,18:129360.
Yang Liu, Ma Ning, Fang Zhenchang, Jiang Kaijia, Li Xinling*, Huang Zhen*. Enhancing capture performance of physical solvent biphasic absorbent using TEPA as activator for efficient CO2 capture from flue gas. Separation and Purification Technology. 2025,354:129126.
Fang Zhenchang, Dong Xinyu, Lyu Zhao, Qiao Xinqi, LiXinling, Yang Kang, Wang Lintao. Simulation of DME-O2 combustion in a hollow cone impinging jet combustor for direct-fired supercritical CO2 power cycle. Combustion Science and Technology. 2025, 197:3644-3675.
Wang Yuxuan, Liu Yihang, Wang Yijun, Miao Yihe, Hagio Takeshi, Qiao Xinqi, Li Xinling*, Huang Zhen. Solid amine adsorbent with surfactant modification for Direct Air Capture (DAC) under different temperature and humidity conditions. Gas Science and Engineering.2024,131:205453.
Ma Ning, Yang Liu, Fang Zhenchang, Jiang Kaijia, Li Xinling*, Huang Zhen*. Design and performance evaluation of low-volatility and low-viscosity absorbents for CO2 capture. Reaction Chemistry & Engineering. 2025, 10:203-213.
Jiang Kaijia, Yang Liu, Fang Zhenchang, Ma Ning, Li Xinling*, Huang Zhen. Navigating towards a zero-carbon world: Research progress of chemical solvent-based shipboard carbon capture system integration and renewable energy coupling. Ocean Engineering. 2024, 309: 118585.
Tang Xincheng, Wu,Yanxiao, Fang Zhenchang, Dong Xinyu, Du Zhongxuan, Deng Bicai, Sun Chunhua, Zhou Feng, Qiao Xinqi*, Li Xinling*. Syntheses, catalytic performances and DFT investigations: A recent review of copper-based catalysts of methanol steam reforming for hydrogen production. Energy.2024,295:131091
Tang Xincheng, Fang Zhenchang, Wu Yanxiao, Yuan Zhuoer, Deng Bicai, Du Zhongxuan, Sun Chunhua, Zhou Feng, Qiao Xinqi*, Li Xinling*. Efficiency NiCu/t-zirconia catalysts for methanol steam reforming: Experimental and DFT insights. Energy.2024,297:131293
Dong Xinyu, Fang Zhenchang, Tang Xincheng, Qiao Xinqi*, Li Xinling*,Zhou Dengji, Yang Kang, Wang Lintao.Thermodynamic and exergoeconomic analysis of a dual expansion and triple recuperation supercritical CO2 power cycle driven by DME-oxygen combustor. Energy Conversion and Management.2024,303:118173.
Zhang Yiran, Zhao Shu, Li Linjia, Qiuwei, Wei Zhidong, Li Xinling, Huang Zhen, Lin He. Revealing the correlation between the performance of silica-based DAC adsorbents and their pore natures. Gas Science and Engineering.2024,123:205251.
Li Xinling, Zhao Pengcheng, Fang Mingming, Huang Zhen. Organic carbon, elemental carbon and particulate semivolatile organic compound emissions from a common-rail diesel engine: Insight into effect of fuel injection pressure at different loads. Science of the Total Environment. 2024,912:169465.
Ye Zhimu, Zhao Pengcheng, Tang Xincheng, Hagio Takeshi, Sato Katsutoshi, Nagaoka Katsutoshi, Li Xinling*. Effects of the Topological Structure of Different Cu-Zeolites on the Relationship between Soot and NOx Removal on NH3−SCRF. Energy Fuels. 2024,38: 2212–2223.
Wu Yanxiao, Li Jiaqi, Tang Xincheng, Yuan Zhuoer, Dong Xinyu, Fang Zhenchang, Sun Chunhua, Zhou Feng, Qiao Xinqi*, Li Xinling*.Optimization of simplified combustion mechanism of n-butanol based on Shuffled Frog Leaping Algorithm.Fuel. 2024,357:129810.
Yang Liu, Chen Jiaowei, Ma Ning, Fang Zhenchang, Li Xinling*, Huang Zhen*. Novel diamine DMAPA-sulfolane-water biphasic absorbent for equimolar CO2 absorption: Performance and mechanisms. Chemical Engineering Journal. 2024, 479:147903.
黄震、吕田、李新令. 机动车可吸入颗粒物排放与城市大气污染. 上海交通大学出版社 2014.
上海交通大学“SMC-晨星青年学者奖励计划”(A类) 2016
第四届中国大学出版社图书奖 2015
上海交通大学优秀班主任 2014
课题组依托黄震院士的碳捕集与利用研究中心、动力机械与工程教育部重点实验室,围绕碳捕集和Ai+能源材料领域的国家重大需求开展科学研究,欢迎优秀青年学子报名课题组博士后及报考博士、硕士研究生。
毕业研究生就业单位集中在国家重点行业龙头企业、知名高校及科研院所,主要包括:
上海交大、长江存储、国家管网、宝钢集团、中芯国际、中微半导体、中船708所、中船704所、比亚迪(上海、深圳)、航天科工、哈汽集团、携程(上海)、上汽集团、德国采埃孚 (上海)、浙江省气科所。