宋慧平,女,山西文水人,教授,博导。
黄河流域资源增效减碳教育部工程研究中心主任,山西省黄河实验室副主任,山西省教育领域“三晋英才”青年优秀人才,山西省硅酸盐学会副理事长,政协第十三届山西省委员会智库专家,中国化工学会无机酸碱盐领域智库专家,中国硅酸盐学会固废分会青年委员会委员,《无机盐工业》和《涂料工业》青年编委。
主要从事煤炭废弃物资源化利用和矿区生态修复研究。以煤基固废为主要填料的水性功能涂料:煤矿井下瓦斯封堵涂料、建筑外墙隔热保温涂料、相变涂料、自洁净超疏水涂料、以及水分散粉末涂料等;以煤基固废为主要原料的生态修复材料:多孔材料、复合修复材料、地质聚合物及污染物控制等方面的研究。主持国家自然科学基金青年/面上项目、国家重点研发-政府间国际合作项目、国家科技支撑计划项目课题、山西省揭榜招标项目计划项目、山西省留学人员科技活动择优资助项目等20余项;发表学术论文100余篇;主编著作1部,授权专利24件(国际专利5件),参编标准5项;参编标准等9项;荣获国家科技进步二等奖和国家级教学成果二等奖各1项。
联系方式:
邮箱: songhp@sxu.edu.cn
教授课程:
本科生:环境工程原理
研究生:高等环境工程原理
承担的科研项目:
[1]国家重点研发计划-政府间国际科技创新合作-中国和蒙古政府间联合研究项目:多源固废耦合制备生态修复材料的研究与示范(2023YFE0100700),2023.7-2026.6
[2]国家自然科学基金面上项目:动态微裂隙环境中自适应型煤基固废复合注浆材料研究(22378241), 2024.1-2027.12
[3]国家自然科学基金面上项目:粉煤灰型水性密封涂料中界面相容性的非稳态时变规律及其机理研究 (51874194),2019.1-2022.12
[4]国家科技支撑计划项目课题:煤矿井下瓦斯减排技术开发及应用示范(2013BAC14B05),2013.6-2016.6
[5]山西省首批揭榜招标项目计划项目:煤基固废制生态修复材料及其应用技术与示范(20191101007),2019.9-2022.8
[6]山西省煤基重点科技攻关项目课题:年产2.4亿块折标粉煤灰绿色墙材示范生产线(MC2014-06-02),2014.10-2019.12
[7]山西省留学人员科技活动择优资助项目:面向消解致霾污染物的粉煤灰基超疏水光净涂料研究(20230005),2023.7-2025.7
[8]山西省高等学校科技创新项目:粉煤灰基密封涂料的制备及其性能强化(2017106),2017.5-2019.5
[9]山西省应用基础研究计划面上青年基金项目:粉煤灰基密封涂料中有机-无机界面相容机理研究(201801D221327),2018.12-2020.12
[10]山西交控生态环境股份有限公司横向项目:低阶煤制盐碱土改良材料研究(2023-YF5),2023.1-2024.12
[11]山西焦煤集团有限责任公司横向项目:煤矸石土地复垦生态修复技术开发(2022-448),2022.11-2023.10
[12]山西省黄河实验室科技攻关项目:固废基防污防腐粉末涂料的技术研发(YRL-202112),2021.11-2023.10
代表性论文(第一作者/通讯作者):
[1]Enhancement mechanism of In-situ self-growing calcium sulfate on fly ash-based sealing coatings,Construction and Building Materials,2023,396:132294
[2]Preparation, characterization, and rheological analysis of eco-friendly geopolymer grouting reinforcement materials based on CFBFA, CS and FGDG,Journal of Building Engineering,2023,78:107451
[3]Study on the Influence Mechanism of Flue Gas Desulfurization Gypsum on Solid Wastes Based Geopolymer Grouting Materials,Construction and Building Materials,2023,403:133137
[4]Hydration mechanism of solid waste-based artificial stone prepared by hot pressing,Construction and Building Materials,2022,357:129317
[5]Effect of Rheological additives on rheological properties of fly ash-based sealing coating, Construction and Building Materials, 2022,326: 126734
[6]Effects of solid waste-based soil conditioner and arbuscular mycorrhizal fungi on crop productivity and heavy metal distribution in foxtail millet ( Setaria italica ), Journal of Environmental Management, 2022, 313: 114974.
[7]Experimental study on foam glass prepared by hydrothermal hot pressing-calcination technique using waste glass and fly ash,Ceramics International, 2021, 47:28603–28613
[8]Preparation of environment-friendly ultrafine fly ash based superhydro-phobic demolding coating, Applied Surface Science, 2021, 566: 150688
[9]Experimental Study on Coal Fly Ash-Based Gas-Sealing Coating Used for Coal Mine Roadway Walls, Coatings, 2020, 863: 1-14
[10]Experimental investigation of CO2 absorption and desorption on multi-type amines loaded HZSM-5 zeolites, Chemical Engineering Journal, 2021, 406: 126882
[11]Preparation of ultrafine fly ash-based auperhydrophobic composite coating and its application to foam concrete, Polymers 2020, 12:2187
[12]Improvement of dispersion stability of filler based on fly ash by adding sodium hexametaphosphate in gas-sealing coating, Journal of Cleaner Production, 2019, 235: 259-271.
[13] Composite phase-change coating with coal-fly-ash-based zeolite as carrier,Progress in Organic Coatings,2019, 136: 105238
[14]Heavy metal fixing and heat resistance abilities of coal fly ash-waste glass based geopolymers by hydrothermal hot pressing,Advanced Powder Technology,2018, 29: 1487-1492.
[15]Effect of surfactants on the properties of a gas sealing coating modified with fly ash and cement, Journal of Materials Science, 2018, 53:15142–15156.
[16]Converting waste coal fly ash into effective adsorbent for the removal of ammonia nitrogen in water, Journal of Materials Science,2018, 53:12731–12740.
[17]粉煤灰防腐涂料研究进展,化工进展,2023,42(9):4894-4904
[18]固废基土壤调理剂的制备及其矿区生态修复效应,环境工程,2022,40(12):187-195,230.
[19]水分散型超细粉煤灰基粉末涂料,涂料工业,2020,50(4):41-45.
[20]煤矸石提铝提硅废液制备免烧砖试验研究,洁净煤技术,2020,6(6):70-76.
[21]粉煤灰陶粒的研究进展,洁净煤技术,2020,26(6):11-22.
授权专利:
[1] Solid waste-based porous materials, methods for preparing the same, and methods of ecological restoration of coal gangue hills by applying the same, 美国专利授权号:US11572319B2,2023.02.07
[2] Method for ecological filling with mixed coal gangue and fly ash,美国专利授权号:US 11795106B2,2023.10.24
[3] Solid waste-based porous materials, methods for preparing the same, and methods of ecological restoration of coal gangue hills by applying the same, 欧亚专利授权号:042800,2023.03.27
[4] Method for ecological filling with mixed coal gangue and fly ash,荷兰专利授权号:2028366,2022.08.31
[5] Dual permeation-proof method based on coal-based solid wastes,荷兰专利授权号:2028365,2022.08.31
[6] 一种基于煤基固废的双重防渗方法,ZL 202110119446.6,2022.06.03
[7] 一种固废基多孔材料、制备及用于煤矸石山生态修复方法,ZL 202110119396.1,2021.11.30
[8] 一种用于浇筑模具的易脱模涂层及其涂装方法,ZL 201811300314.8, 2021.09.10
[9] 一种固废基超疏水涂层及其涂装方法,ZL 201811300114.2,2020.10.23
[10] 一种建筑外墙隔热保温涂料, ZL 201410021246.7,2016.09.28.
[11] 一种矿井巷道壁面瓦斯涌出量的检测方法,ZL 201510078373.5,2017.07.28
[12] 煤壁涂料的气密性测试装置及其气密性测试方法,ZL 201611191098.9,2023.03.28
[13] 煤壁涂料的气密性测试装置, ZL 201621413167.1,2017.8.8)
[14] 一种矿井巷道内壁面瓦斯涌出量的贴壁式检测装置,ZL 201510078372.0,2018.05.01
[15] 一种发泡混凝土砌块的制备方法,ZL 201710286032.6,2020.02.11
[16] 一种矿井巷道壁面瓦斯封堵涂料,ZL 201510078403.2,2017.07.04
[17] 一种矿用移动式连续喷涂设备, ZL 201420427396.3,2014.12.10
[18] 高纯度甲醇的精馏工艺及设备,ZL 200610014321.2,2008.04.02
[19] 甲醇双效精馏节能设备及方法, ZL 200510015658.0,2007.05.23
[20] 甲醇双效精馏节能节水系统及工艺,ZL 200610013269.9,2007.07.25
[21] 一种煤矸石和粉煤灰混合生态填充方法,ZL 202110119415.0,2022.06.03
[22] 一种煤基固废用于煤矸石山修复治理的方法,ZL 202110119389.1,2022.07.01
[23] 一种高效气液分离净化装置,202023302151.2,2022.01.25
[24] 一种生态修复菌剂播撒装置,ZL 202220557874.7,2022.09.09
论著:
[1]宋慧平,薛芳斌,樊飙,桑颖慧,吴海滨,粉煤灰基功能涂料,冶金工业出版社,普通高等教育“十四五”规划教材,2022
所获荣誉奖励:
[1]煤矸石煤泥清洁高效利用关键技术及应用,2020年国家科学技术进步奖二等奖,排名5/10
[2]面向能源环境领域的“四位一体”研究生育人生态探索与实践,2022年高等教育(研究生)国家级教学成果二等奖,排名10/15
地址:山西省太原市小店区南中环东街63号 邮编:030031电话:0351-7018533传真:0351-7018533