教授/教授级高工/研究员

张延玲

教授

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    张延玲
      职       称: 教授
      职       务: 博士生导师
      办公地点:  冶金楼1108
      办公电话:  010-82375191
      传       真: 010-82375191
      电子邮件: zhangyanling@metall.ustb.edu.cn
      研究方向:铁矿资源高效利用,特殊钢冶金

  介
张延玲,女,1972年8月生,教授,博士生导师,中国金属学会冶金反应工程分会秘书长。致力于特殊钢冶金工艺及基础理论、铁矿资源/二次资源综合利用等方面的研究工作。主持国家"十三五"重大专项课题1项,主持国家自然科学基金重点资助项目、面上项目、青年科学基金项目共计5项,企业合作项目多项。科学研究中,极为注重完整知识体系的建设,与团队合作从基础理论研究技术放大、再到工业转化,形成系列成果。在本领域TOP期刊发表论文100篇,获知名国际学术会议最佳论文奖,获冶金科学技术奖三等奖(第一完成人)。获得授权发明专利二十余项,产学研合作成果显著。科学研究与人才培养密切结合,主讲课程荣获"国家精品课程"等荣誉称号。


教育背景
1. 2005年12月,日本东北大学(博士后)。
2. 2003年4月,北京科技大学钢铁冶金专业(博士),获博士学位。
3. 1997年7月,北京科技大学钢铁冶金专业(硕士),获硕士学位。
4. 1995年9月,北京科技大学钢铁冶金专业(本科),获学士学位。

主讲课程
本科生
《冶金物理化学》;
研究生
特殊钢冶金


在研项目
1. 国家级 ,含铬固废资源化利用基础理论及关键技术(U1960201),2020-2023 .负责人
2. 国家级 ,钢铁难处理渣尘泥综合利用技术基础与生态链接体系构建(2019YFC1905701),2020-2023 ,负责人.
3. 国家级 ,Cr的存在价态对熔渣基础物性及其渣金两相分配行为的影响机理(51674022),2017-2020 ,负责人
4. 企业(宝武低碳创新基金) 铬铁矿氢基还原焙烧预处理技术及理论基础研究(BWLCF202204)2023-2025 .
5. 企业级 ,15-5PH不锈钢产品夹杂物控制与冶金工艺研究,2019-2021 .

6. 企业级,30432不锈钢夹杂物与冶金工艺研究,2022-2024.

7.企业级,炉外脱磷剂制备及转炉冶炼工艺集成技术开发,2022-2024

8.企业级,轧辊锻件产品夹杂物控制与冶金工艺研究,2021-2023

著作

张延玲.[炼钢过程典型案例分析]..ISBN:.2017.

张延玲.[冶金工程数学模型及应用基础]..ISBN:.2014.


代表性论文

Zhang S, Zhang Y, Wu S, et al. Feasibility of using Cr-containing vitrification product as cement admixture: Structural evolution and chromium immobilization[J]. Journal of Cleaner Production, 2023: 138055.

Zhang S, Zhang Y, Wu S. Effects of ZnO, FeO and Fe2O3 on the spinel formation, microstructure and physicochemical properties of augite-based glass ceramics[J]. International Journal of Minerals, Metallurgy and Materials, 2023, 30(6): 1207-1216.

Zhang S, Zhang Y, Wu S, et al. Long-term leaching mechanism of chromium-containing slag after vitrification and heat treatment[J]. Ceramics International, 2022, 48(9): 13366-13378.

Zhang S, Zhang Y, Wu S, et al. The preparation of inorganic materials to consume and stabilize chromium-containing waste: a review[J]. Jom, 2022, 74(4): 1360-1375.

Wu S, Zhang Y, Zhang S, et al. Cement/Cementitious Material Prepared by Roasting Argon Oxygen Decarburization Slag with Calcium Oxide[J]. JOM, 2022: 1-10.

Wu S, Zhang S, Zhao Z, et al. Crystallization behaviors and kinetic of argon oxygen decarburization slag via various SiO2 content: Conditions for obtaining amorphous state[J]. Journal of Non-Crystalline Solids, 2022, 597: 121926.

Wu S, Zhang S, Zhang Y, et al. Reuse of vitrified argon oxygen decarburization slag as supplementary cementitious materials: Comprehensive performance and chromium immobilization mechanism[J]. Construction and Building Materials, 2022, 348: 128647.

Zhang S, Zhang Y, Qu Z. Effects of soluble Cr2O3 doping on the glass structure, microstructure, crystallization behavior, and properties of MgO–Al2O3–SiO2 sapphirine glass ceramics[J]. Materials Chemistry and Physics, 2020, 252: 123115.

Zhang S, Zhang Y, Gao J, et al. Effects of Cr2O3 and CaF2 on the structure, crystal growth behavior, and properties of augite-based glass ceramics[J]. Journal of the European Ceramic Society, 2019, 39(14): 4283-4291.

Zhang Y, Li F, Yu K: Using Red Mud-based Flux in Steelmaking for High Phosphorus Hot Metal[J]. ISIJ International, 2018: ISIJINT-2018-339.

Li F, Zhang Y, Guo Z:Experimental study on hot metal desulfurization using sintered red mud-based flux[J]. JOM, 2017, 69(9): 1632-1638.

Zhang S, Zhang Y, Gao J, et al:Effects of Cr2O3 and CaF2 on the structure, crystal growth behavior, and properties of augite-based glass ceramics[J]. Journal of the European Ceramic Society, 2019, 39(14): 4283-4291.

Zhang Y, Li F, Wang R, et al:Application of Bayer Red Mud‐Based Flux in the Steelmaking Process[J]. steel research international, 2017, 88(2): 1600140.

Wu T, Yuan F, Zhang Y:Viscosity Measurements of CaO–SiO2–CrO Slag[J]. ISIJ International, 2018, 58(2): 367-369.

Zhang S, Zhang Y, Qu Z:Effect of soluble Cr2O3 on the silicate network, crystallization kinetics, mineral phase, microstructure of CaO-MgO-SiO2-(Na2O) glass ceramics with different CaO/MgO ratio[J]. Ceramics International, 2019, 45(9): 11216-11225.

Li Q, Yang S, Zhang Y, et al:Effects of MgO, Na2O, and B2O3 on the viscosity and structure of Cr2O3-bearing CaO–SiO2–Al2O3 slags[J]. ISIJ International, 2017, 57(4): 689-696.

Zhao C, Zhang Y, Cao H, et al:Lithium carbonate recovery from lithium-containing solution by ultrasound assisted precipitation[J]. Ultrasonics sonochemistry, 2019, 52: 484-492.

Zhang S, Zhang Y, Wu T:Effect of Cr2O3 on the crystallization behavior of synthetic diopside and characterization of Cr-doped diopside glass ceramics[J]. Ceramics International, 2018, 44(9): 10119-10129.

Li Q, Gao J, Zhang Y, et al:Viscosity measurement and structure analysis of Cr 2 O 3-bearing CaO-SiO 2-MgO-Al 2 O 3 slags[J]. Metallurgical and Materials Transactions B, 2017, 48(1): 346-356.

Li F, Zhang Y, Guo Z:Pilot-Scale Test of Dephosphorization in Steelmaking Using Red Mud-Based Flux[J]. JOM, 2017, 69(9): 1624-1631.

Li F, Li X, Yang S, et al:Distribution ratios of phosphorus between CaO-FeO-SiO2-Al2O3/Na2O/TiO2 slags and carbon-saturated iron[J]. Metallurgical and Materials Transactions B, 2017, 48(5): 2367-2378.

An Z, Zhang Y, Li Q, et al:Effect of particle shape on the apparent viscosity of liquid–solid suspensions[J]. Powder technology, 2018, 328: 199-206.

Wu T, Zhang Y, Zhao Z, et al:Effects of Fe2O3 on Reduction Process of Cr-Containing Solid Waste Self-Reduction Briquette and Relevant Mechanism[J]. Metals, 2019, 9(1): 51.

Zhang Y, Wu T, Jia X, et al:Three different methods for smelting treatment of stainless steel dust[J]. Metallurgical Research & Technology, 2017, 114(2): 207.

Zhang S, Zhang Y, Qu Z:Physicochemical property and chromium leaching behavior in different environments of glass ceramics prepared from AOD stainless steel slag[J]. Journal of Alloys and Compounds, 2019, 805: 1106-1116.


授权专利
1. 发明专利.一种高铁赤泥用作炼钢造渣剂的回收再利用方法.ZL201410176170.5.2017 .
2. 发明专利.带桨叶型转子的旋转粘度计及其测量颗粒流体粘度的方法.ZL201310466944.3.2015 .

3. 发明专利. 一种高铁赤泥用作炼钢造渣剂/脱磷剂的回收再利用方法. ZL201410176170.5.

4. 发明专利. 一种辉石基铸石及其制备方法. ZL201910907935.0.

5. 发明专利.利用直接还原结合电炉双渣法冶炼高磷铁精矿的工艺. ZL202010906732.2.

6. 发明专利.以高磷铁矿为原料冶炼钢水的工艺. ZL2020109067144.

7. 发明专利.METHOD FOR TREARING CR-CONTAINING OICKING SLUDGE IN SLAG BATH. Pn2021102982.

8. 发明专利.一种铁水罐脱磷-转炉单脱碳的炼钢方法. ZL202111215651.9.

9. 发明专利.一种处理不锈钢酸洗污泥并制备矿渣水泥的方法. ZL202111215501.8.

10. 发明专利.RED MUD-BASED COMPOSITE CALCIUM FERRITE AND PREPARATION METHODAND USE THEREOF. 17/964,973.

11. 发明专利.METHOD OF MAKING STEEL BY DEEPLY DEPHOSPHORIZATION lN HOT METAL TANK AND DECARBURIZATION USING SEMI-STEEL WITHNEARLY ZERO PHOSPHORUS LOAD IN CONVERTER. 17/953,832.

12. 发明专利.一种改性AOD渣及其制备方法和应用、建筑材料. ZL202210196768.5.

所获奖励
1. 国家级,日本资源素材学会最佳论文奖(第一作者)
2. 国家级,主讲课程《冶金物理化学》,获“国家精品课程”荣誉称号。

3. 省部级,冶金科学技术奖三等奖(第一完成人)