师资队伍
 
张同生
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导师简介:

张同生,工学博士、研究员、博士研究生导师,入选国家优青、广东省特支计划科技创新青年拔尖人才、广州市珠江科技新星,兼任中国硅酸盐学会固废分会理事、中国建筑学会水泥与混凝土制品分会大体积混凝土应用技术分会委员、广东省硅酸盐学会常务理事等。主要开展水泥生产污染物控制、替代原燃料、低碳胶凝材料、工业与建筑废弃物综合利用、高性能与功能建筑材料等基础理论与关键技术研究,承担国家自然科学基金、国家重点研发计划课题、广东省科技计划项目等国家省部级项目20余项,在Cement and Concrete Composites、Journal of Cleaner Production、Construction and Building Materials等期刊发表论文80余篇(SCI收录40余篇),申请或授权发明专利30余项。自主研发的低熟料复合水泥、水泥窑烟气催化复合脱硫、高强高透水混凝土等多项技术应用于200多条水泥生产线及工程,产生经济效益近百亿元,环境和社会效益巨大。


教育经历:

2008.09 至 2012.06  华南理工大学,材料学专业,博士研究生;

2005.09 至 2008.06  济南大学,材料学专业,硕士研究生;

2001.09 至 2005.06  济南大学,材料科学与工程专业,本科。


工作经历:

2019.09 至今             华南理工大学,材料科学与工程学院,研究员, 博士生导师;
2017.07 至 2018.07   伦敦大学学院(UCL),访问学者;
2014.10 至 2019.08   华南理工大学,材料科学与工程学院,副研究员,硕士生导师;
2012.07 至 2014.09   华南理工大学从事博士后研究工作;


荣誉与获奖:

1、2021年9月    中国硅酸盐学会青年科技奖
2、2021年9月    国家自然科学基金优秀青年基金获得者;
3、2019年1月  《新型干法水泥窑烟气催化复合脱硫技术》获中国建筑材料联合会2018年度科技进步一等奖(排名第二)
4、2017年6月    获2016年度学生科技创新优秀指导教师;
5、2016年8月    获华南理工大学兴业奖教金;
6、2015年5月    入选广东省特支计划科技创新青年拔尖人才;
7、2016年5月    入选广州市珠江科技新星;
8、2015年5月    华南理工大学“杰出青年基金”获得者。


科研情况简介:

水泥生产过程中环境影响研究:水泥窑烟气脱硫、脱硝基本理论与技术,CO2捕集与封存研究,水泥窑协同处置废弃物过程中重金属的迁移转化行为研究。
辅助性胶凝材料:工业固体废弃物的物理、化学性质及其对水泥混凝土基本性能的影响,科学高效、环境友好地利用固体废弃物生产水泥混凝土等建筑材料。
功能建筑材料:高抗蚀水泥基材料、透水净水混凝土等功能水泥基材料。

基于上述研究,主持/参与国家自然科学基金、“973计划课题、国家重点研发计划课题等国家省部级项目20余项。研究成果获得了多位国际权威同行专家的高度评价、认可和引用,累计被引1000余次,google scholar H-index 19。研发的高性能复合水泥、高强高透水混凝土、水泥窑催化复合脱硫等研究成果得到了大规模工业化应用。


招生专业与类型:

学术博士:材料学     工程博士:材料与化工

学术硕士:材料学     工程硕士:材料工程


联系方式:

Office: 14号楼104;Tel:  (020) 87111646, 18998365385;   

Email:  mstszhang@scut.edu.cn


近年来主持(参与)的部分科研项目:

1、水泥绿色制备与高效应用(国家自然科学基金优秀青年基金,编号:5212200502),2022.1-2024.12,负责人;

2、再生微粉多元胶凝组分颗粒级配与水化进程调控再生砂粉性能提升关键技术及功能性外加剂(十三五国家重点研究计划子课题,编号:2020YFC1909902-4),2020.11-2024.10,负责人;

3、低氧、高CO2环境中SO2的催化氧化、快速捕获及固化机制(国家自然科学基金面上项目,编号:51872096),2019.1-2022.12, 负责人;

4、生物质热裂解动力学调控技术及其用于水泥工业烟气脱硝的应用研究(广东省省级科技计划项目,编号:2021A0505030008),2021.1-2022.12,负责人;

5、高抗蚀硅酸盐水泥基材料组成设计与微结构调控(十三五国家重点研究计划子课题,编号:2016YFB0303502-02),2016.7-2020.6,负责人;
6、广东特支计划科技创新青年拔尖人才(广东省科技厅,编号:2015TQ01C312),2016.1-2018.12,负责人;
7、利用淤泥制备陶粒生态、净水混凝土及其在自净化河道中的应用(广东省水利科技创新项目,编号:2016-23),2016.4-2018.12,负责人;
8、针对华南地区高硫石灰石生产水泥的窑内干法脱硫技术研究(广东省科技计划项目,编号:2016A020221009),2016.1-2018.12,负责人;
9、复合水泥浆体组成、结构优化设计及体积稳定性、抗裂性能改善机理(广州市珠江科技新星专项,编号:201610010098),2016.5-2019.4,负责人;
10、复合水泥水化产物与未水化相对体积变形的影响机理及制备高体积稳定性复合水泥的研究(青年基金,编号:51302090),结题,负责人;
11、初始堆积状态和水化进程对复合水泥浆体变形的影响机理(中国博士后科学基金特别资助,编号:2013T60802),结题,负责人;
12、矿渣基级配复合水泥水化产物组成、结构与化学收缩关系(中国博士后科学基金面上项目,编号:2012M521599),结题,负责人;
13、低环境负荷复合水泥的体积稳定性及其改善机理研究(中央高校基本科研业务费-博士启动,编号:2013ZB0002),结题,负责人;
14、基于体积稳定性、抗裂性能的复合水泥组成、结构优化设计(中央高校基本科研业务费-杰出青年基金项目,编号:2015ZJ0005),结题,负责人;
15、基于材料5R原则下水泥工业协同处置固废时有毒有害组分影响的研究(中英联合项目,编号:51461135006),结题,参与;
16、水泥熟料和辅助性性胶凝材料优化复合的化学和物理基础(科学技术部973项目,编号:2009CB623104),结题,参与;
17、复合水泥材料高效应用的基础研究(广东省联合基金重点项目,编号:U1134008),结题,参与;
18、水泥基材料多尺度结构、组成与水化效能、体积稳定性相互关系的基础研究(面上项目,编号:51072058),结题,参与;
19、钢渣重构和性能优化技术与装备(科学技术部“十一五”科技支撑计划项目,编号:2006BAF02A24),结题,参与。
20、水泥基材料核壳型纳米阻锈剂研究(科学技术部“863”计划课题,编号:2015AA034701),结题,参与。


近年来发表的部分学术论文:

[1] R Chen, TS Zhang*, YQ Guo, JW Wang, JX Wei, QJ Yu*. Recent advances in simultaneous removal of SO2 and NOx from exhaust gases: Removal process, mechanism and kinetics. Chemical Engineering Journal, 2021, 415:127588.
[2] YQ Guo,
TS Zhang*, JP Du, C Wang, JX Wei*, QJ Yu. Evaluating the chloride diffusion coefficient of cement mortars based on the tortuosity of pore structurally-designed cement pastes. Microporous and Mesoporous Materials, 2021, 317: 111018.
[3] A Bogush, JA Stegemann*, QZ Zhou, ZY Wang, B Zhang,
TS Zhang, WS Zhang, JX Wei. Co-processing of raw and washed air pollution control residues from energy-from-waste facilities in the cement kiln. Journal of Cleaner Production, 2020, 254: 119924.
[4] XG Xie,
TS Zhang*, ZY Lin, JX Wei, QJ Yu. Mixture proportion design of pervious concrete based on the relationships between fundamental properties and skeleton structures. Cement and Concrete Composites. 2020, 113: 103693.
[5] YM Yang,
TS Zhang*, ZH Li, KX Zhao, JX Wei, QJ Yu. Corrosion resistance of steel bar and chloride binding capacity of cementitious materials with internal chloride: A comparative study on Portland cement, geopolymer, inter-ground and gap-graded blended cements. Journal of Thermal Analysis and Calorimetry. 2020, 139: 1903–1914.
[6]
TS Zhang*, C Wu, B Li, JW Wang, C Wang, XZ Chen, JX Wei, QJ Yu*. Clarifying the decomposition process of pyrite and SO2 release in the cyclone preheater of a dry rotary cement kiln system. Journal of Cleaner Production, 2019, 241: 118422.
[7]
TS Zhang*, C Wu, B Li, JW Wang, R Ravat, XZ Chen, JX Wei, QJ Yu*. Linking the SO2 emission of cement plants to the sulfur characteristics of their limestones: A study of 80 NSP cement lines in China. Journal of Cleaner Production, 2019, 220: 200-211.
[8]
TS Zhang*, WL Tian, YQ Guo, A Bogush, E Khayrulina, JX Wei, QJ Yu. The volumetric stability, chloride binding capacity and stability of the Portland cement-GBFS pastes: An approach from the viewpoint of hydration products. Construction and Building Materials. 2019, 205: 357-367.
[9] ZH Li; YD Xu;
TS Zhang; J Hu; JX Wei*; QJ Yu. Effect of MgO calcination temperature on the reaction products and kinetics of MgO-SiO2-H2O system. Journal of the American Ceramic Society, 2019, 102(6): 3269–3285.
[10] YQ Guo,
TS Zhang*, WL Tian, JX Wei, QJ Yu. Physically and chemically bound chlorides in hydrated cement pastes: A comparison study of the effects of silica fume and metakaolin, Journal of Materials Science, 2018, 54(3): 2152-2169.
[11] XG Xie,
TS Zhang*, YM Yang, ZY Lin, JX Wei, QJ Yu. Maximum paste coating thickness without voids clogging of pervious concrete and its relationship to the rheological properties of cement paste. Construction and Building Materials, 2018, 168: 732–746.
[12] YQ Guo,
TS Zhang*, XY Liu, WL Tian, P Chen, JX Wei, QJ Yu. The pore fillability of cementitious materials and its application in predicting compressive strength of gap-graded blended cements. Construction and Building Materials, 2018, 168: 805–817.
[13] SL Liu,
TS Zhang*, YQ Guo, JX Wei, QJ Yu. Effects of SCMs particles on the compressive strength of micro-structurally designed cement paste: Inherent characteristic effect, particle size refinement effect, and hydration effect. Powder Technology, 2018, 330: 1–11.
[14] B Zhang, A Bogush, JX Wei*,
TS Zhang, WT Xu, QJ Yu. Influence of sulfur on the fate of heavy metals during clinkerization. Construction and Building Materials, 2018, 182: 144–155.
[15] B Zhang; A Bogush; JX Wei*; WT Xu; ZX Zeng;
TS Zhang; QJ Yu; J Stegemann. Influence of chlorine on the fate of Pb and Cu during clinkerization. Energy and Fuels, 2018, 32(7): 7718–7726.
[16] P Gao,
TS Zhang, JX Wei*, QJ Yu. Evaluation of RRSB distribution and lognormal distribution for describing the particle size distribution of graded cementitious materials. Powder Technology, 2018, 331: 137–145.
[17] YQ Guo,
TS Zhang*, JX Wei, QJ Yu, SX Ouyang. Evaluating the distance between particles in fresh cement paste based on the yield stress and particle size. Construction and Building Materials, 2017, 142: 109–116.
[18] PH Gao, JX Wei,
TS Zhang, J Hu, QJ Yu. Modification of chloride diffusion coefficient of concrete based on the electrical conductivity of pore solution. Construction and Building Materials, 2017, 145: 361–366.
[19] B Zhang, A Bogush, JX Wei*,
TS Zhang, J Hu, FX Li, QJ Yu. Reversible carbon dioxide capture at high temperatures by tetraethylenepentamine acetic acid and polyethylene glycol mixtures with high capacity and low viscosity. Fuel & Energy, 2017, 31(4): 4237–4244.
[20] SR Yu, B Zhang, JX Wei*,
TS Zhang, QJ Yu, WS Zhang. Effects of chlorine on the volatilization of heavy metals during the co-combustion of sewage sludge. Waste Management, 2017, 62: 204–210.
[21] YM Yang, ZH Li,
TS Zhang, JX Wei, QJ Yu*. Bond-slip behavior of basalt fiber reinforced polymer bar in concrete subjected to simulated marine environment: Effects of BFRP bars size, corrosion age, and concrete strength. International Journal of Polymer Science, 2017(6): 1–9.
[22] W Zhu, JX Wei, FX Li,
TS Zhang, Y Chen, J Hua, QJ Yu. Understanding restraint effect of coarse aggregate on the drying shrinkage of self-compacting concrete. Construction and Building Materials, 2016, 114:458–463.
[23] W Zhu, Y Chen, FX Li,
TS Zhang, J Hu, JX Wei*, QJ Yu. Design and preparation of high elastic modulus self-compacting concrete for pre-stressed mass concrete structures. Journal of Wuhan University of Technology-Materials Science Edition, 2016, 31(3): 563–573.
[24] ZM Huang,
TS Zhang*, ZY Wen. Proportioning and characterization of Portland cement-based ultra-lightweight foam concretes. Construction and Building Materials, 2015, 79: 390–396.
[25] SH Yin, YF Yang,
TS Zhang*, GF Guo, F Yu. Effect of carbonic acid water on the degradation of Portland cement paste: Corrosion process and kinetics. Construction and Building Materials, 2015, 91: 39–46.
[26] ZH Li,
TS Zhang, J Hu, Y Tang, YF Niu, JX Wei, QJ Yu. Characterization of reaction products and reaction process of MgO–SiO2–H2O system at room temperature. Construction and Building Materials, 2014, 61: 252–259.
[27] P Gao,
TS Zhang, RF Luo, JX Wei, QJ Yu*. Improvement of autogenous shrinkage measurement for cement paste at very early age: Corrugated tube method using non-contact sensors. Construction and Building Materials, 2014, 55: 57–62.
[28]
TS Zhang, XY Liu, JX Wei, QJ Yu*. Influence of preparation method on the performance of ternary blended cements. Cement and Concrete Composites, 2014, 52: 18–26.
[29]
TS Zhang, P Gao, RF Luo, JX Wei, QJ Yu*. Volumetric deformation of gap-graded blended cement pastes with large amount of supplementary cementitious materials. Construction and Building Materials, 2014, 54: 339–347.
[30]
TS Zhang, P Gao, RF Luo, YQ Guo, JX Wei, QJ Yu*. Measurement of chemical shrinkage of cement paste: Comparison study of ASTM C 1608 and an improved method. Construction and Building Materials, 2013, 48: 662–669.
[31]
TS Zhang, P Gao, PH Gao, JX Wei, QJ Yu*. Effectiveness of novel and traditional methods to incorporate industrial wastes in cementitious materials–An overview. Resources, Conservation and Recycling, 2013, 74: 134–143.
[32]
TS Zhang, QJ Yu*, JX Wei, PP Zhang, CC Gong. Effect of simulative pore solution on the hydration kinetics of GGBFS. Advances in Cement Research, 2013, 24(5): 283–290.
[33]
TS Zhang, QJ Yu, JX Wei*, JX Li. Investigation on mechanical properties, durability and micro-structural development of steel slag blended cements. Journal of Thermal Analysis and Calorimetry, 2012, 110(2): 633–639.
[34]
TS Zhang, QJ Yu*, JX Wei, PP Zhang, PX Chen. Improvement of surface cementitious properties of coarse fly ash by dehydration and rehydration processes. Journal of Thermal Analysis and Calorimetry, 2012, 109(1): 265–271.
[35]
TS Zhang, QJ Yu, JX Wei*, P Gao, PP Zhang. Study on optimization of hydration process of blended cement. Journal of Thermal Analysis and Calorimetry, 2012, 107(2): 489–498.
[36]
TS Zhang, QJ Yu*, JX Wei, P Gao, PX Chen, J Hu. Micro-structural development of gap-graded blended cement pastes containing high amount of supplementary cementitious materials. Cement and Concrete Composites, 2012, 34(9): 1024–1032.
[37]
TS Zhang, QJ Yu*, JX Wei, PP Zhang. Efficient utilization of cementitious materials to produce sustainable blended cement. Cement and Concrete Composites, 2012, 34(5): 692–699.
[38]
 TS Zhang, QJ Yu, JX Wei*, PP Zhang. A new gap-graded particle size distribution and resulting consequences on properties of blended cement. Cement and Concrete Composites, 2011, 33(5): 543–550.
[39]
TS Zhang, QJ Yu*, JX Wei, PP Zhang, PX Chen. A gap-graded particle size distribution for blended cements: Analytical approach and experimental validation. Powder Technology, 2011, 214(2): 259–268.
[40]
TS Zhang, QJ Yu*, JX Wei, JX Li, PP Zhang. Preparation of high performance blended cements and reclamation of iron concentrate from basic oxygen furnace steel slag. Resources, Conservation and Recycling, 2011, 56(1): 48–55.
[41]
TS Zhang, QJ Yu*, JX Wei, PP Zhang. Effects of size fraction on composition and fundamental properties of Portland cement. Construction and Building Materials, 2011, 25(7): 3038–3043.
[42]
TS Zhang, QJ Yu, JX Wei*, PP Zhang. Effect of size fraction on composition and pozzolanic activity of high calcium fly ash. Advances in Cement Research, 2011, 23(6): 299–307.
[43]
 TS Zhang, QJ Yu*, JX Wei, PP Zhang, S Li. Effect of size fraction of ground granulated blast furnace slag on its strength contribution and hydraulic activity. Advanced Science Letters, 2011, 4(3): 1286–1291.
[44] JX Li, QJ Yu, JX Wei*,
TS Zhang. Structural characteristics and hydration kinetics of modified steel slag. Cement and Concrete Research, 2011, 41(3): 324–329.
[45]
TS Zhang, FT Liu, SQ Liu, ZH Zhou, X Cheng*. Factors influencing the properties of a steel slag composite cement. Advances in Cement Research, 2008, 20(3): 145–150.


近年来申请的部分专利:

[1] 张同生, 汪伟, 郭奕群, 韦江雄, 余其俊. 局部钙循环与纯氧燃烧耦合的水泥生产碳捕集装置及工艺. 申请号: 202110375622.2, 申请日期: 2021.04.08.

[2] 张同生, 汪伟, 郭奕群, 韦江雄, 余其俊. 废弃物协同处置的水泥生产碳捕集装置及工艺. 申请号: 202110375520.0, 申请日期: 2021.04.08.
[3] 张同生, 汪伟, 郭奕群, 韦江雄, 余其俊. 离线式分解炉与钙循环耦合的水泥生产碳捕集装置及工艺. 申请号: 202110375618.6, 申请日期: 2021.04.08.
[4] 张同生, 汪伟, 郭奕群, 韦江雄, 余其俊. 局部钙循环耦合废弃物处置的水泥生产碳捕集装置及工艺. 申请号: 202110375533.8, 申请日期: 2021.04.08.
[5] 张同生, 黄照明, 杜传健, 庞欢欣, 欧剑河, 罗文英, 卢倩仪. 一种轻质夹芯墙板及其制备方法. 申请号:202110386118.2, 申请日期: 2021.04.12.
[6] 张同生, 庞欢欣, 黄照明, 郭奕群, 李方贤, 韦江雄, 余其俊. 一种轻质复合保温隔音板及其制备方法. 申请号: 202110368676.6, 申请日期: 2021.04.06.
[7] 张同生; 汪超; 黄朝; 缪可偏; 谢晓庚; 韦江雄; 余其俊. 一种超高强、高透水混凝土砌块及其制备方法. 申请号: 201910772858.2, 申请日期: 2019.08.21.
[8] 张同生, 李斌, 谢晓庚, 韦江雄, 余其俊. 一种研究旋风预热器内含硫矿物分解的实验装置及方法. 申请号: 201710498252.5, 申请日期: 2017.06.27. (发明专利)
[9] 张同生, 庞欢欣, 郭奕群, 韦江雄, 余其俊. 一种基于胶凝材料的高抗海水侵蚀复合水泥的制备方法. 申请号: 201910454718.0, 申请日期: 2019.5.29.
[10] 张同生, 田文立, 郭奕群, 韦江雄, 余其俊. 一种高抗蚀复合硅酸盐水泥及其制备方法. 申请号: 201810942103.8, 申请日期: 2018.8.17.
[11] 郭奕群, 张同生, 杜俊朋, 李嘉豪, 韦江雄, 余其俊,韩宇栋,丁小平. 一种有机硅缓释型粉末憎水剂及其制备方法. 申请号: 202011482783.3, 申请日期: 2020.12.16.
[12] 郭奕群, 张同生, 杜俊朋, 李嘉豪, 王洪泰, 韦江雄, 余其俊. 一种低润湿、高耐久复合硅酸盐水泥及其制备方法. 申请号: 202011482774.4, 申请日期: 2020.12.16.
[13] 郭奕群, 张同生, 杜俊朋, 汪伟, 马婷, 韦江雄, 余其俊. 一种高分散有机-无机复合粉末憎水剂及其制备方法. 申请号: 202011482781.4, 申请日期: 2020.12.16.
[14] 余其俊, 郭奕群, 张同生, 庞欢欣, 韦江雄. 一种高抗裂、超抗氯离子侵蚀的硅酸盐水泥基材料. 申请号: 201910454737.3, 申请日期: 2019.5.29.
[15] 余其俊, 郭奕群, 张同生, 田文立. 一种水泥浆体化学固化氯离子数量的测试方法. 申请号: 201810940938.X, 申请日期: 2018.8.17.
[16] 张同生, 吴畅, 陈新智, 韦江雄, 余其俊. 一种烟气脱硫催化剂及在新型干法水泥窑分解炉烟气脱硫中的应用. 申请号: ZL201810447738.0, 授权日期: 2021.04.09.
[17] 张同生, 吴畅, 郭奕群, 韦江雄, 余其俊.一种水泥回转窑用高效固硫剂及其使用方法. 授权号: ZL201810942837.6, 授权日期: 2020.10.23.
[18] 张同生, 田文立, 郭奕群, 陈鹏, 王晓宇, 韦江雄, 余其俊. 一种水泥基材料氯离子结合稳定性的评价方法. 授权号: ZL201810228573.8, 授权日期: 2020.2.18.
[19] 张同生, 谢晓庚, 吴畅, 韦江雄, 余其俊. 一种基于骨架结构的高强、高透水混凝土配合比设计方法. 专利号: ZL201811069962.7, 授权日期: 2020.2.18.
[20] 张同生, 谢晓庚, 杨永民, 林梓宇, 韦江雄, 余其俊, 罗宏鹏, 乔瑞龙, 颜华君, 龙坤明. 透水混凝土中骨料表面浆体最大包裹层厚度的测试方法. 授权号: ZL201711292890.8, 授权日期: 2019.11.15.
[21] 张同生, 李斌, 谢晓庚, 杨永民, 韦江雄, 余其俊, 乔瑞龙, 练镜扬, 林梓宇, 许业滔. 一种基于浆体流变的透水混凝土工作性能的检测方法. 授权号: ZL201711293197.2, 授权日期: 2020.2.18.
[22] 张同生, 谢晓庚, 吴畅, 韦江雄, 余其俊, 武翔宇, 许业滔, 潘越, 林梓宇, 胡志永. 一种高强、高透水混凝土的成型方法. 授权号: ZL201711292713.X, 授权日期: 2019.6.18.
[23] 张同生, 李斌, 谢晓庚, 韦江雄, 余其俊. 一种研究旋风预热器内含硫矿物分解的实验装置. 授权号: ZL201720753401.3, 授权日期: 2018.04.10. (实用新型专利)
[24] 张同生, 陶从喜, 刘瑞芝, 阎旻, 梅金平, 贺文良, 荣新. 一种水泥窑用钙基催化脱硫剂. 授权号: ZL201610131518.8, 授权日期: 2018.08.17.
[25] 余其俊, 张同生, 韦江雄, 张平平. 专利名称: 一种低熟料用量、高折压比复合水泥的制备方法. 授权号: ZL201010265181.2, 授权日期: 2012.12.05.
[26] 陈新智, 刘宁, 张同生, 贺文良, 伍家纬. 一种烟气脱硫脱硝工艺. 授权号: ZL201610421022.4, 授权日期: 2018.06.29.
[27] 陈新智, 刘宁, 张同生, 贺文良, 伍家纬. 一种燃煤烟气的深度净化工艺. 授权号: ZL201610421159.X, 授权日期:2018.06.29.