李超恩简介
李超恩,男,1990年生,博士,讲师,2021年毕业于同济大学土木工程专业。浙江省土木建筑学会会员。
多年以来,一直从事土木工程材料与智慧交通相关的教学与科研工作,先后浙江省自然科学基金项目1项,宁波市重点研发计划1项,先后获得2023年度宁波市科学技术进步奖二等奖(第三名),2023年度发明创业奖创新奖二等奖(第五名)。在国内外学术刊物上发表学术论文20余篇,其中SCI索引18篇,H指数22。授权发明专利3项。
研究方向:
绿色建材、相变材料、建筑节能、智慧交通
科研获奖情况:
1.夏热冬冷地区相变储热墙体材料高性能化与低碳设计基础研究,宁波市科技进步奖,2024年,二等奖,3
2.滨海城市综会管廊绿色建造成套技术及应用,发明创业奖创新奖,2023,二等奖,5
代表性科研成果:
1.Two-phase immersion liquid cooling system for 4680 Li-ion battery thermal management,Journal of Energy Storage,1/12,2024,97,SCI Q1
2.A novel biogenic porous core/shell-based shape-stabilized phase change material for building energy saving,Journal of Energy Storage,1/12,2024,95,SCI Q1
3.基于浸没式液冷的锂电池热管理研究进展,暖通空调,2/5(通讯作者),2024,54(2),中文核心
4.Experimental studies on two-phase immersion liquid cooling for Li-ion battery thermal management,Journal of Energy Storage,2/12(通讯作者),2023,72,SCI Q1
5.Copper-Based Sorbents and Catalysts for Elemental Mercury Removal from Gas Stream: A Review,Industrial & Engineering Chemistry Research,1/5,2023,62,SCI Q2
6.服务器浸没式液冷技术研究进展,暖通空调,2/8(通讯作者), 2023,53(53),中文核心
7.Elemental mercury removal using cobalt oxides and sulfides: A review,Journal of the Energy Institute,1/5,2023,109,SCI Q2
8.Phase change material for passive cooling in building envelopes: A comprehensive review,Journal of Building Engineering,2023,65,1/5,SCI Q1
9.SnO2 Coupled Cobalt Pyrite for Hg0 Removal from Simulated Flue Gas,Chemical Physics,1/3,2023,569,SCI Q3
10.Energy performance of buildings with composite phase-change material wall- boards in different climatic zones of China,Energy and Buildings,2022,273,1/9,SCI Q1
11.Preparation and Thermophysical Performance of Diatomite-Based Composite PCM Wallboard for Thermal Energy Storage in Buildings,Journal of Building Engineering,2/9(通讯作者),2020,32,SCI Q1
12.Optimization of the phase-change wallboard test method: Experimental and numerical investigation,Journal of Energy Storage,2/5(共同一作),2020,30,SCI Q1
13.Experimental thermal performance of wallboard with hybrid microencapsulated phase change materials for building application,Journal of Building Engineering,1/8,2020,28,SCI Q1
14.A N-octadecane/hierarchically Porous TiO2 Form-Stable PCM for Thermal Energy Storage,Renewable Energy,1/5,2020,145,SCI Q1
15.Novel hybrid micro encapsulated phase change materials incorporated wallboard for year-long year energy storage in buildings,Energy Conversion and Management,1/4,2019,183,SCI Q1
16.Experimental investigation of thermal performance of microencapsulated PCM-contained Wallboard by two measurement modes,Energy and Buildings,1/3,2019,184,SCI Q1
17.Preparation and characterization of PMMA/TiO2 hybrid shell microencapsulated PCMs for thermal energy storage,Energy,1/3,2019,167,SCI Q1
18.Synthesis and characterization of PEG/ZSM-5 composite phase change materials for latent heat storage,Renewable Energy,1/4,2018,121,SCI Q1
19.Photocatalytic oxidation of gas-phase Hg00 by carbon spheres supported visible-light-driven CuO-TiO2,Journal of Industrial and Engineering Chemistry,2/12,2017,46,SCI Q1
20.Photocatalytic oxidation of gas-phase Hg0 by CuO/TiO2,Applied Catalysis B: Environmental,2/8,2015,76,SCI Q1
在研科研项目:
1.季节适应型相变储能围护结构的热工性能与传热特性研究,LQ22EO80011,浙江省自然科学基金,2022.09-2025.09
2.城市智能交通基础设施重大场景应用技术攻关,2022Z230,宁波市重点研发计划,2023.01-2025.12
3.膨胀石墨/单壁碳纳米管复合相变材料制备及其热电性能研究,Y202456505,省教育厅(理)/科研计划,2024.10-2026.10
4.基于协同调控的再生集料/氯氧镁水泥界面性能与机理研究,2024-ZJ-969,其他类/其他省级(科研),2024.01-2026.12
联系方式:
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