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杨丙桥
2018-02-28 09:51 郑浩然 

教师个人简介

杨丙桥,博士,副教授,硕士生导师

湖北省杰青、入选2023年度全球前2%顶尖科学家榜单

地址:武汉市雄楚大街693号,太阳成集团的官方网站太阳集团欢迎您     

邮编:430074

Emailyanglin538@163.com; bqyang@wit.edu.cn   

  

教育背景

2011.08-2015.08    墨西哥圣路易斯波托西自治大学,工程学院,矿物加工,工学博士

2008.09-2011.06    武汉科技大学,资源与环境工程学院,矿物加工,工学硕士

                                            

工作履历

2018.1-至今       太阳成集团的官方网站,太阳集团欢迎您,副教授   

2016.06-2018.01  太阳成集团的官方网站,资源与土木工程学院,讲师

2015.10-2016.04 墨西哥圣路易斯波托西自治大学冶金研究所,博士后

  

                                          

研究领域:

矿物胶体与界面化学、硫化矿和磷矿浮选药剂与理论、微细粒矿物浮选理论与工艺

   

  

学术成果:

l科研项目:

[1] 国家自然科学基金面上项目No.52374272,硅钙质胶磷矿短流程分选浮选药剂分子靶向设计基础研究,2024.01-2027.1250万,主持

[2] 国家自然科学基金面上项目No.52074196,基于非均质棱界面靶向调控的微细粒辉钼矿浮选研究,2021.01-2024.1258万,主持

[3] 湖北省自然科学基金杰出青年基金No.2023AFA047,2024.01-2026.1230万,主持

[4] 自然资源部战略性矿产综合利用工程技术创新中心开放基金项目No. CCUM-KY-01,2023.10-2024.10,10万,主持

[5] 国家自然科学基金中德合作项目(德国优青)No.GZ1693微细粒磷灰石疏水聚团和聚团浮选研究,2022.01-2024.1244.9万,主持

[6] 国家自然科学基金青年基金No.51704212,基于氧化方式选择性抑制黄铜矿的铜钼浮选分离基础研究,2018.01-2021.1225万,主持

[7] 企业委托项目“一种白云石的抑制剂及其使用方法”发明专利技术转让,2022年,10万,主持

[8] 湖北省自然科学基金面上项目No.2017CFB2802017-20195万,主持

[9] 太阳成集团的官方网站科学研究基金K201733,新型高效黄铜矿抑制剂开发及其在铜钼分离中应用,2017.1-2018.125万,主持

[10] 企业委托项目,尾矿资源综合利用-氢氧化镁粉体改性制备高性能阻燃剂的研究,2017.04-2020.0420万,主持

[11] 湖北省重点科研计划项目No.2022BCA062,熔剂性鲕状赤铁矿低碳选冶关键技术研究与应用,2022-2025100万,主要参入


 

 

  

l代表性论文:

[1] R. Ge, B. Yang*, Bing Deng, Hui Shao, Yimei Xiao, Rudolph Martin, H. Luo, H. Zhang, 2024, The interaction mechanism of a novel polymer depressant with apatite and dolomite surface and its implication on flotation: Experimental tests and DFT calculation, Applied Surface Science, 643:158675 (IF 6.7)

[2] R. Ge, B. Yang*, R. Martin, H. Luo, D. He, M. Corona Arroyo, 2023, The application of poly (sodium 4-styrene sulfonate) as an efficient dolomite depressant in the direct flotation of apatite from dolomite, Powder Technology, 425:118583 (IF 5.2)

[3] J. Wu, J. Feng, B. Yang, R. Martin, S. Song, M. Quintana, F. Jia, X. Tian, 2023, The anisotropic adsorption of potassium cetyl phosphate on molybdenite surface and its implication for improving the flotation of molybdenite fines, Journal of Molecular Liquids, 378: 121616 (IF 6.1)

[4] H. Zhu, B. Yang*, J. Feng, 2021, Evaluation of 1-hydroxyethylidene-1,1-diphosphonic acid as an efficient and low-toxic sphalerite depressant in the selective flotation of galena from sphalerite, Journal of Cleaner Production, 329: 129612 (IF 11.072)

[5] J. Wu, B. Yang, R. Martin, S. Song, M. Quintana, F. Jia, H. Luo, F. Zhou, 2024, Anisotropic adsorption of xanthate species on molybdenite faces and edges and its implication on the flotation of molybdenite fines, Minerals Engineering, 207:108571 (IF:4.80)

[6] B. Yang*, H. Yan, M. Zeng, H. Zhu, 2021, Tiopronin as a novel copper depressant for the selective flotation separation of chalcopyrite and molybdenite, Separation and Purification Technology, 266: 118576 (IF: 9.136)

[7] B. Yang*, H. Zhu, J. Feng, L. Zeng, H. Luo, 2021, An environmental-friendly sphalerite depressant (2-HydroxyphosphonoaceticAcid) for the selective flotation separation of sphalerite from galena, Journal of Molecular Liquids, 343: 117614 (IF 6.633)

[8] M. Zeng, B. Yang*, Z. Guan, L. Zeng, H. Luo, 2021, The selective adsorption of xanthan gum on dolomite and its implication in the flotation separation of dolomite from apatite, Applied Surface Science, 551: 149301 (IF:6.7)

[9] J. Feng, B. Yang*, H. Zhu, H. Zhang, M. Zeng, 2021, The utilization of 2-phosphonobutane-1,2,4-tricarboxylic acid (PBTCA) as a novel sphalerite depressant in the selective flotation of galena from sphalerite, Applied Surface Science, 569:150950 (IF: 6.7).

[10] J. Wu, B. Yang*, S. Song, M. Quintana, F. Jia, X. Tian*, 2022, The efficient recovery of molybdenite fines using a novel collector: Flotation performances, adsorption mechanism and DFT calculation, Minerals Engineering,188:107848 (IF 5.479)

[11] Y. Xiao, J. Feng, B. Yang*, H. Luo, F. Zhou, 2024, The combination of calcium hypochlorite and fulvic acid as an efficient arsenopyrite depressant in Cu-As separation, Minerals Engineering, 206:10784978 (IF 5.479)

[12] B. Yang*, P. Huang, Q An, 2022, An efficient chalcopyrite depressant for Cu-Mo separation and its interaction mechanism: Adsorption configuration and DFT calculations, Journal of Molecular Liquids, 345: 118171 (IF 6.633).

[13] B. Yang*, M. Zeng, H. Zhu, P. Huang, Z. Li, S. Song, 2021, Selective depression of molybdenite using a novel eco-friendly depressant in Cu-Mo sulfides flotation system, Colloids and Surfaces APhysicochemical and Engineering Aspects, 622:126683 (IF:5.518).

[14] Y. Hu, Z. Zhao, L. Lu, H. Zhu, W. Xiong, Y. Zhu, S. Luo, X. Zhang, B. Yang*, 2021, Investigation on a novel galena depressant in the flotation separation from molybdenite, Minerals, 4:410 (IF:2.818).

[15] H. Yan, B. Yang*, H. Zhu, P. Huang, 2021, Selective flotation of Cu-Mo sulfides using dithiothreitol as an environmental-friendly depressant, Minerals Engineering, 168:106929 (IF:5.479)

[16] M. Zeng, B. Yang*, H. Yan, H. Qu, Y. Hu, 2020, Efficient recovery of Ag(I) from aqueous solution using MoS2nanosheets: adsorption study and DFT calculation, Chemical Physics Letters, 757:137865 (IF:2.719)

[17] B. Yang*, H. Yan, M. Zeng, P. Huang, F. Jia, A. Teng, 2020, A novel copper depressant for selective flotation of chalcopyrite and molybdenite, Minerals Engineering,151: 106309 (IF: 5.479).

[18] H. Yan, B. Yang*, M. Zeng, P. Huang, A. Teng, 2020, Selective flotation of Cu-Mo sulfides using xanthan gum as a novel depressant, Minerals Engineering,156:106486 (IF: 5.479).

[19] Q. Zhang, H. Zhu, B. Yang*, F. Jia, H. Yan, M. Zeng, H. Qu, 2019, Effect of Pb2+ on the flotation of molybdenite in the presence of sulfide ion, Results in Physics, 14:102361(IF:4.565).

[20] B. Yang*, D. Wang, T. Wang, H. Zhang, F. Jia, S. Song, 2019, Effect of Cu2+ and Fe3+ on the depression of molybdenite in flotation, Minerals Engineering, 130:101-109 (IF: 5.479).

[21] J. Wu, E. Mario, B. Yang*, C. Liu, F. Jia, S. Song, 2018, Efficient removal of Hg2+ in aqueous solution with fishbone charcoal as adsorbent, Environmental Science and Pollution Research, 25(8): 7709-7718 (IF:5.190).

[22] B. Yang*, P. Huang, S. Song, H. Luo, Y. Zhang, 2018, Hydrophobic agglomeration of apatite fines induced by sodium oleate in aqueous solutions, Results in Physics, 9:970-977 (IF:4.565).

[23] W. Xu, B. Yang*, F. Jia, T. Chen, L. Lang, S. Song, 2018, Removal of As(V) from aqueous solution by using cement-porous hematite composite granules as adsorbent, Results in Physics, 11:23-29 (IF:4. 565).

[24] J. Ni, B. Yang*, F. Jia, Y. She, S. Song, M. Quintana, 2018, Theoretical investigation of the sensing mechanism of the pure graphene and AL, B, N, P doped mono-vacancy graphene-based methane, Chemical Physics Letters, 710:221-225 (IF:2.719).

[25] Y. Zhang, H. Chen, B. Yang*, S. Fu, J. Yu, Z. Wang, 2018, Prediction of phosphate concentrate grade based on artificial neural network modeling, Results in Physics, 11:625-628 (IF: 4. 565).

[26] 严海,杨丙桥*,曾梦媛,冯金婵,朱环宇,基于过硫酸铵氧化的铜钼分离研究[J].中国有色金属学报,2021,已收录.

[27] 黄鹏亮,杨丙桥*,严海,曾梦媛,氧化预处理对铜钼分离的影响[J].矿冶工程, 2021,已收录.

[28] 关智文,杨丙桥*,胡杨甲,一种新型辉钼矿抑制剂及其在铜钼浮选分离中的机理研究[J].有色金属(选矿部分),2021,已收录.

[29] 黄鹏亮,杨丙桥*,胡杨甲,严海,腾爱萍,铜钼分离技术研究进展[J].有色金属(选矿部分), 2019(05):50-55.

[30] 杨丙桥*,黄鹏亮,张汉泉,贾菲菲,微细粒辉钼矿疏水聚团及聚团浮选研究[J].金属矿山,2018(10):86-91.


 

 

                                          

l国家发明专利:

[1] 一种酰胺类化合物作为硫化矿抑制剂的用途授权CN201910795639.6

[2] 一种非铜硫化矿抑制剂及其应用(授权)CN202010019995.1(已转让)

[3] 一种铜钼分离抑制剂及其用途和使用方法授权CN201910975101.3

[4] 一种二维纳米白云母的制备方法授权CN201410734481.9

[5] 一种非钼硫化矿浮选抑制剂及其应用授权CN201910687200.1

[6] 一种铅锌硫化矿浮选分离抑制剂及其应用方法授权CN202011477960.9

[7] 一种磷矿正浮选脱镁抑制剂及其使用方法授权CN202010164777.7

[8] 一种白云石的抑制剂及其使用方法授权CN202010164781.3(已转让)

[9] 一种白云石抑制剂及其应用方法授权CN202011469855.0

[10] 一种闪锌矿抑制剂及其应用方法公开 CN202011613347.5

[11] 一种用于硫化铅锌矿浮选分离过程中的闪锌矿抑制剂、其应用及硫化铅锌矿浮选分离方法(授权)CN202210437359.X

[12] 一种正丁基硫代磷酸三胺的应用及微细粒辉钼矿的浮选方法(授权)CN202210141791.4

 

 

                                        

l获奖情况

[1] 2023年,太阳成集团的官方网站青年拔尖人才

[2] 2023年,太阳成集团的官方网站十佳优秀青年

[3] 2021年,太阳成集团的官方网站科研工作先进个人

[4] 2021年,太阳成集团的官方网站优秀导师

[5] 2020年,太阳成集团的官方网站优秀班主任

[6] 2016年,墨西哥科技部研究水平1


 

l学生工作:

[1] 指导学生获全国高等学校矿物加工学生实践作品大赛一等奖1项,二等奖3    

[2] 指导2名本科生获硕士研究生推免资格    

[3] 指导3名硕士研究生获研究生生国家奖学金    

[4] 指导2名本科生获太阳成集团的官方网站优秀硕士论文



 

 

 

                                          

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