海洋腐蚀与防护

张瑞永,男,研究员,博士生导师,中南大学兼职教授、亚美尼亚科学院生物技术中心兼职PI。德国杜伊斯堡-埃森大学博士、德国联邦地球科学与自然资源研究所(BGR)博士后,2021年入选国家海外高层次青年人才项目,建立和完善了一套嗜酸热古菌的培养方法和生物膜原位观测及成分鉴定的凝集素标记分析技术,在硫化矿/元素硫腐蚀/浸出机制及深地高压、微生物铁硫代谢及生物腐蚀方面有创新研究成果。主持和参与了欧盟“地平线2020计划”(Horizon 2020)子课题、国家自然科学基金、德国原材料管理局(DERA)、中国科学院特别交流计划、德国科学基金(DFG)及德国联邦教研部(BMBF)等科研项目,发表SCI论文60余篇、出版编著2部。兼任中国海洋湖沼学会海洋腐蚀与污损专业委员会秘书长、山东省暨青岛市腐蚀与防护学会理事、新侨创新创业青岛联盟理事、国际生物湿法冶金大会(IBS)学术委员会委员、《Frontiers in Microbiology》副主编(Associate Editor),担任《Nano Materials Science》、《Journal of Materials Science & Technology》、《中国有色金属学报》(中、英文版)、《中国腐蚀与防护学报》、《矿产保护与利用》、《Journal of Central South University》青年编委。

一、研究领域  

   海洋腐蚀与防护;环境与地球微生物学               

二、招生专业及方向

海洋腐蚀与防护,海洋金属腐蚀与防护、海洋生物腐蚀与污损方向;

环境工程,海洋环境工程方向

三、研究室及联系方式       

研究室:海洋环境腐蚀与生物污损重点实验室

电话:0532-82898851

邮箱:ruiyong.zhang@qdio.ac.cn

四、承担的主要科研项目

1.海洋微生物腐蚀,山东省科技厅领军人才项目, 2023-01 至 2027-12,

 主持

2. 海水生物浸出金属矿渣研究,中国科学院特别交流计划,2022-01至2023-12,主持

3. 海洋微生物腐蚀,中科院BR-B人才项目,2020-12至2025-12,主持

4. Exploring reaction mechanisms of dissimilatory ferric reduction-coupled sulfur oxidation (DIRSO) by acidophilic prokaryotes and its relevance for bioleaching and acid mine drainage formation,德国科学基金会,2019-01至2021-12,参与

5. Bioprocessing Options for Extraction of Valuable Metals from Mine Tailings in Chile,德国原材料管理局,2017-12至2020-12,主持

6. New mining concept for extracting metals from deep ore deposits using biotechnology, European Union Horizon 2020 sub-projects,2016-08至2018-01,主持

7. 生物浸出过程中胞外多聚物关键组分及其作用机理研究,国家自然科学基金委员会面上项目,2015-01至2018-12,参与

8. Biogenic sulfuric acid corrosion of cementitious material,德国弗劳恩霍夫应用研究促进协会/法国圣戈班/荷兰皇家壳牌,2014-12至2016-07,主持

9. Armenia Bioleaching Microorganisms,德国联邦教育与研究部,2013-08至2014-08,参与               

五、研究成果及奖励         

(1) Frontiers in Microbiology 优秀副主编(2023

(2) 山东省腐蚀与防护学会青年创新人才奖(2022

(3)欧洲微生物学会联合会(FEMS)青年科学家会议奖(2014年)        

六、代表性论文及著作

1. Wang Nan, Zhai Xiaofan, Guan Fang, Zhang Ruiyong, Hou Baorong, and Duan Jizhou. N-Doped Carbon/CeO2 Composite as a Biomimetic Catalyst for Antibacterial Application. International Journal of Molecular Sciences 2023. 24, 2445.

2. Hongrui Chen, Duorui Zhang, Zhenyuan Nie, Jin-Lan Xia, Qian Li, Ruiyong Zhang, Hehao Yin, Eva Pakostova. Reductive dissolution of jarosite by inorganic sulfur compounds catalyzed by Acidithiobacillus thiooxidans, Hydrometallurgy, 2022. 212(16), 105908.

3. Ruiyong Zhang, Axel Schippers. Stirred-tank bioleaching of copper and cobalt from mine tailings in Chile, Minerals Engineering, 2022. 180, 107514.

4. Yimeng Zhang, Xiaofan Zhai, Fang Guan, Xucheng Dong, Jiawen Sun, Ruiyong Zhang, Jizhou Duan, Binbin Zhang, Baorong Hou. Microbiologically influenced corrosion of steel in coastal surface seawater contaminated by crude oil, npj Materials Degradation, 2022. 6, 35.

5. Liting Xu, Fang Guan, Yan Ma, Ruiyong Zhang, Yimeng Zhang, Xiaofan Zhai, Xucheng Dong, Yanan Wang, Jizhou Duan, Baorong Hou. Inadequate dosing of THPS treatment increases microbially influenced corrosion of pipeline steel by inducing biofilm growth of Desulfovibrio hontreensis SY-21, Bioelectrochemistry, 2022. 145, 108048.

6. Ziyang Zhou, S. Pourhashem,, Zhengquan Wang, Jizhou Duan, Ruiyong Zhang, Baorong Hou. Distinctive roles of graphene oxide, ZnO quantum dots, and their nanohybrids in anti-corrosion and anti-fouling performance of waterborne epoxy coatings. Chemical Engineering Journal, 2022. 439, 135765.

7. Duorui Zhang, Hongrui Chen, Xiaojuan. Zhao, Jin-Lan Xia, Zhenyuan Nie, Ruiyong Zhang, Wensheng Shu, Eva Pakostova. Fe(II) bio-oxidation mediates red mud transformations to form Fe(III)/Al (hydr)oxide adsorbent for efficient As(V) removal under acidic conditions. Chemical Engineering Journal, 2022. 439, 135753.

8. Ruiyong Zhang, Sabrina Hedrich, Decai Jin, Anja Breuker, Axel Schippers, Sulfobacillus harzensis sp. nov., an acidophilic bacterium inhabiting mine tailings from a polymetallic mine, International Journal of Systematic and Evolutionary Microbiology, 2021. 71(7), 004871.

9. Ruiyong Zhang, Jizhou Duan, Dake Xu, Jinlan Xia, Jesus A. Munoz, Wolfgang Sand, Editorial: Bioleaching and Biocorrosion: Advances in Interfacial Processes, Frontiers in Microbiology, 2021. 12, 653029.

10. Duorui Zhang, Hongrui Chen, Jin-Lan Xia, Zhenyuan Nie, Ruiyong Zhang, Axel Schippers, Wensheng Shu, Lixiong Qian. Red mud regulates arsenic fate at acidic pH via regulating arsenopyrite bio-oxidation and S, Fe, Al, Si speciation transformation. Water Research, 2021. 203, 117539.