姓名:赵昕悦
性别:女
出生年月:1990-04-10
职称:教授
办公电话:15046781068
工作单位:东北农业大学,资源与环境学院
E-mail:zhaoxy@neau.edu.cn
开设研究生课程情况
课程编号 课程名称 课程级别 学时
102117 博士专业英语 博士 4
202414 现代酶工程技术与环境修复 硕士 32
03600818x 水污染控制工程 本科 32
03600211x 蛋白质与酶工程 本科 32
102219 博士论文写作指导 博士 4
202297 硕士论文写作指导 硕士 4
近五年主持科研项目概况

主要从事人工湿地环境微生物生态修复及环境可持续性评估研究。近5年主持国家自然科学基金、中国博士后科学基金特别资助等国家及省部级科研项目10项,主要参与完成科研项目8项:

 

(1)    国家自然科学基金(青年基金)昼夜交替下人工湿地根际微生物响应机制研究:以生活污水脱氮为例2023.01-2025.1230万元,主持人:赵昕悦

(2)    中国博士后科学基金(特别资助)基于人工湿地处理农村畜禽养殖废水脱氮的根际微生物响应机制研究2023.07-2026.0618万元,主持人:赵昕悦

(3)    黑龙江省自然科学基金(优秀青年) “铁氮循环角度下纳米塑料暴露对人工湿地污水脱氮影响机制研究2024.07-2026.0710万元,主持人:赵昕悦

(4)    中国水产科学研究院黑龙江水产研究所 “水生渔业生态浮游动植物及水体水质检测横向课题2023.11-2026.129万元,主持人:赵昕悦

(5)    中国博士后科学基金(面上项目)基于LCA生态设计的技术参数与多维目标的互作机制研究:以生物强化人工湿地为例2020.11-2023.108万元,主持人:赵昕悦

(6)    黑龙江省自然科学基金(联合引导项目)基于LCA的多元方法耦合联动生态设计体系搭建及其在低温生物炭基人工湿地生物强化中的应用2020.07-2023.1210万元,主持人:赵昕悦

(7)    黑龙江省博士后科学基金(面上项目)基于生命周期评价的污水处理生态设计机制及其案例研究2020.11-2023.107万元,主持人:赵昕悦

(8)    黑龙江省高等教育教学改革研究项目“科教融汇并融合AI教学的研究生培养模式探索研究—以《现代酶工程与环境修复》为例”,2024.01-2025.12,主持人:赵昕悦

(9)    东农学者计划学术骨干项目 “低温人工湿地系统生物强化脱氮及生态设计研究2018.12-2023.1120万元,主持人:赵昕悦

(10)  2022年东北农业大学课程思政试点课程 “水污染控制工程2022.04-2024.030.5万元,主持人:赵昕悦

近五年项目获奖概况

12024年,第七届黑龙江省高校青年教师教学竞赛” 工科组一等奖

22024年,第十一届黑龙江省高校青年教师多媒体课件制作大赛” 二等奖

32024年,第十三届东北农业大学资源与环境学院青年教师教学竞赛” 一等奖

42024年,第十三届东北农业大学青年教师教学竞赛” 一等奖

52021年,第十二届东北农业大学资源与环境学院青年教师教学竞赛一等奖

62023年,第二届东北农业大学课程思政” 优秀案例

72022年,东北农业大学教案设计大赛” 二等奖

82022年,东北农业大学教学创新大赛” 二等奖

92021年,第十二届东北农业大学青年教师教学竞赛” 二等奖

近五年代表性著作、论文

毕业于哈尔滨工业大学环境科学与工程专业,曾赴荷兰代尔夫特理工大学进行为期18个月访学,作为校引进人才,曾获得"黑龙江优青"、“东农学术英才”、“东农学术骨干等荣誉称号。发表SCI等论文70余篇,其中,以第一作者/通讯作者发表论文48篇,包括SCI收录论文40篇(中科院一区SCI论文35篇、ESI高被引论文6篇,篇均影响因子>10)、EI收录论文4篇,单篇最高被引100余次。作为副主编出版国家级教材一部,出版专著(独著)一部。

 

代表性论文:

(1)      Mengran Guo, Yunan Wang, Lan Wei, Guohua Duan, Lixin Li, Baiwen Jiang*, Xinyue Zhao*, Photoperiod-driven optimization of microbial iron-nitrogen cycle for improved nitrogen removal efficiency in constructed wetlands. ACS ES&T water. Accept. (SCI, IF=4.800,中科院一区)

(2)      Zhao Xinyue*, Shi Yibo, Yang Lan, Ho Shih-Hsin*. Microbial Iron Utilization Pathways in Constructed Wetlands: Analysis of Substrates Affecting Iron Transformation, Absorption, and Utilization. ACS ES&T Engineering. 2025, 5(2): 366-376. (SCI, IF=7.400,中科院一区)

(3)      Yang Jinyi, Zhang Tuoshi, Ma Shengjun, Shang Jiacheng, Li Lixin, Ning Yucui, Zhao, Xinyue*. Enhancing microplastic removal and nitrogen mitigation in constructed wetlands: An earthworm-centric perspective. Journal of Hazardous Materials2025, 489:137540. (SCI, IF=12.200,中科院一区)

(4)      Zhao Xinyue, Meng Xiangwei, Li Qinglin, Ho Shih-Hsin*. Nitrogen metabolic responses of non-rhizosphere and rhizosphere microbial communities in constructed wetlands under nanoplastics disturbance. Journal of Hazardous Materials2024, 484:136777. (SCI, IF=12.200,中科院一区)

(5)      Zhang Chi, Zhou Mingwei, Zhang Yiming, Li Dapeng, Hou Ning, Zhao Xinyue*. Novel strategies for enhancing energy metabolism and wastewater treatment in algae-bacteria symbiotic system through carbon dots-induced photogenerated electrons: The definitive role of accelerated electron transport. Chemical Engineering Journal2024, 500: 157016. (SCI, IF=13.400,中科院一区)

(6)      Zhao Xinyue, Zhang Tuoshi, Jin MingSha AiqiLi Wei, Hou Ning*. Adaptive shifts in constructed wetland microbial communities and GHG emissions under different NPs concentrations disturbances. Chemical Engineering Journal2024, 497: 154616. (SCI, IF=13.400,中科院一区)

(7)      Zhao Xinyue, Zhang Tuoshi, Yang Jinyi, Zhang Han, Yang Lan, Li Qinglin, Hou Ning*. Recovery capacity of constructed wetlands in response to multiple disturbances: Microbial interaction perspective. Bioresource Technology2024, 408: 131155. (SCI, IF=9.700,中科院一区)

(8)      Zhou Xue, Yang Jixian, Sha Aiqi, Zhuang Zhixuan, Bai Shunwen, Sun Huihang Zhao Xinyue*. Enhancing environmental and economic benefits of constructed wetlands through plant recovery: A life cycle perspective. Science of the total environment. 2024, 951: 175784. (SCI, IF=8.200,中科院一区)

(9)      Hao Qirui, Lyu Xiaonan, Qin Dongli, Du Ningning, Wu Song, Bai Shuyan, Chen Zhongxiang, Wang Peng, Zhao Xinyue*. Synergistic mechanisms of denitrification in FeS2-based constructed wetlands: Effects of organic carbon availability under day-night alterations. Bioresource Technology2024, 406: 131066. (SCI, IF=9.700,中科院一区)

(10)   Xinyue Zhao, Mengran Guo, Yunan Wang, Ming Jin, Ning Hou, Haiming Wu*. Toxic effects of Nanoplastics on biological nitrogen removal in constructed wetlands: evidence from Iron utilization and metabolism. Water Research2024, 256:121577. (SCI, IF=12.800,中科院一区)

(11)   Xiangwei Meng, Mengran Guo, Yunan Wang, Yan Liu, Ming Jin, Yufei Meng, Shunwen Bai, Ning Hou, Xinyue Zhao*. Response mechanism of microalgae-based constructed wetland to day-night alternations. Chemical Engineering Journal2024, 487: 150544. (SCI, IF=15.100,中科院一区)

(12)   Tuoshi Zhang, Yibo Shi, Yan Liu, Jinyi Yang, Mengran Guo, Shunwen Bai, Ning Hou, Xinyue Zhao*. A study on microbial mechanism in response to different nano-plastics concentrations in constructed wetland and its carbon footprints analysis. Chemical Engineering Journal2024, 480:148023. (SCI, IF=15.100, 中科院一区

(13)   Huang Linlin, Zhang Xuwen, Liu Tingting, Wang Lin, Li Lixin, Li Da, Sheng Tao, Dong Zilong, Xinyue Zhao*. Adsorption of Orange G on Activated Porous Carbon Derived from Coal Tar Pitch: Experimental and DFT Study. Langmuir2024,40(48): 25471-25482. (SCI, IF=3.700,中科院二区)

(14)   Xinyue ZhaoMengran Guo, Tuoshi Zhang, Shunwen Bai*, Yufei Meng, Yushi Tian, Jixian Yang, Fang Ma. Spatiotemporal dynamics of root exudates drive microbial adaptation mechanisms under day-night alterations in constructed wetlands. Chemical Engineering Journal2023, 477:147311. (SCI, IF=16.744,中科院一区)

(15)   Xiangwei Meng, Ming Jin, Qianzi Feng, Aiqi Sha, Shunwen Bai, Xinyue Zhao*. Resource and energy utilization of swine wastewater treatment: recent progress and future directions. Separations2023, 10:591. (SCI, IF=2.6)

(16)   Mengran Guo, Genji Yang, Xiangwei Meng, Tuoshi Zhang, Chunyan Li, Shunwen Bai, Xinyue Zhao*. Illuminating plant-microbe interaction: How photoperiod affects rhizosphere and pollutant removal in constructed wetland? Environment International2023,179:108144. (SCI, IF=11.800,中科院一区)

(17)   Xinyue Zhao, Yan Liu, Ming Jin, Tuoshi Zhang, Wen Shi, Chunyan Li*, Rhizosphere microbial dynamics in response to Desmondesmus sp. ZM-3 and carbon footprint analysis in constructed wetland. Journal of Cleaner Production2023, 408: 137128. (SCI, IF=11.100,中科院一区)

(18)   Xinyue Zhao, Tuoshi Zhang, Xi Chen, Mengran Guo, Xiangwei Meng, Xiaohui Wang, Shunwen Bai*. Exploring the resilience of constructed wetlands to harmful algal blooms disturbances: A study on microbial response mechanisms. Bioresource Technology2023, 383: 129251. (SCI, IF=11.400,中科院一区)

(19)   Xinyue Zhao, Tuoshi Zhang, Bin Dang, Mengran Guo, Ming Jin, Chunyan Li, Ning Hou, Shunwen Bai*, Microalgae-based constructed wetland system enhances nitrogen removal and reduce carbon emissions: Performance and mechanisms. Science of the Total Environment2023, 877: 162883. (SCI, IF=9.800,中科院一区)

(20)   Xinyue Zhao, Xiangwei Meng, Bin Dang, Tuoshi Zhang, Wen Shi, Ning Hou, Qingsheng Yan, Chunyan Li*, Succession dynamics of microbial communities responding to the exogenous microalgae ZM-5 and analysis of the environmental sustainability of a constructed wetland system. Bioresource Technology2023, 371: 128642. (SCI, IF=11.889,中科院一区)

(21)   Shunwen Bai, Juntong Chen, Mengran Guo, Nanqi Ren, Xinyue Zhao*. Vertical-scale spatial influence of radial oxygen loss on rhizosphere microbial community in constructed wetland. Environment International2023, 171: 107690. (SCI, IF=13.352,中科院一区)

(22)   Xinyue ZhaoMengran Guo, Juntong Chen, Zhixuan Zhuang, Tuoshi Zhang, Xiaohui Wang, Chunyan Li, Ning Hou, Shunwen Bai*. Successional dynamics of microbial communities in response to concentration perturbation in constructed wetland system. Bioresource Technology2022, 361: 127733. (SCI, IF=11.889,中科院一区)

(23)   Xinyue Zhao, Juntong Chen, Mengran Guo, Chunyan Li, Ning Hou, Shunwen Bai*. Constructed wetlands treating synthetic wastewater in response to day-night alterations: Performance and mechanisms. Chemical Engineering Journal2022, 446:137460. (SCI, IF=16.744,中科院一区)

(24)   Xinyue Zhao, Yuting Zhang, Hanyi Jiang, Hailian Zang, Yue Wang, Shanshan Sun, Chunyan Li*, Efficient vanillin biosynthesis by recombinant lignin-degrading bacterium Arthrobacter sp. C2 and its environmental profile via life cycle assessment. Bioresource Technology2022, 347: 126434. (SCI, IF=11.889,中科院一区)

(25)   Xinyue Zhao, Xiangwei Meng, Yan Liu, Shunwen Bai, Bei Li, Hang Li, Ning Hou, Chunyan Li*, Single-cell sorting of microalgae and identification of optimal conditions by using response surface methodology coupled with life-cycle approaches. Science of the Total Environment2022, 832:155061. (SCI, IF=10.753,中科院一区)

(26)   Xianyue Li, Rongchen Wang, Chenyang Shao, Dapeng Li, Shunwen Bai, Ning Hou*, Xinyue Zhao*, Biochar and Hydrochar from Agricultural Residues for Soil Conditioning: Life Cycle Assessment and Microbially Mediated C and N Cycles. ACS Sustainable Chemistry & Engineering2022, 10, 3574-3583. (SCI, IF=9.224,中科院一区)

(27)   Xinyue Zhao, Juntong Chen, Xiangwei Meng, Lanqing Li, Xue Zhou, Jianguo Li, Shunwen Bai*, Environmental profile of natural biological vanillin production via life cycle assessment. Journal of Cleaner Production2021, 308: 127399. (SCI, IF=11.072,中科院一区)

(28)   Xinyue Zhao, Yuting Zhang, Yi Cheng, Hongliang Sun, Shunwen Bai*, Chunyan Li*. Identifying environmental hotspots and improvement strategies of vanillin production with life cycle assessment. Science of the Total Environment. 2021, 769:144771. (SCI, IF=10.753,中科院一区)

(29)   Xinyue Zhao, Shunwen Bai*, Yinan Tu, Xuedong Zhang, Henri Spanjers. Parameter optimization of environmental technologies using a LCA-based analysis scheme: a bioaugmentation case study. Science of the Total Environment2020, 737:140284. (SCI, IF=10.753,中科院一区

(30)   Xinyue Zhao, Chaofan Zhang, Shunwen Bai*. Eco-Efficiency of end-of-pie systems: An extended environmental cost efficiency framework for wastewater treatment. Water2020, 12(2): 454. (SCI, IF=3.530) 

(31)   Xinyue Zhao, Shunwen Bai, Chunyan Li*, Jixian Yang, Fang Ma. Bioaugmentation of atrazine removal in constructed wetland: performance, microbial dynamics, and environmental impacts. Bioresource Technology2019, 289: 121618. (SCI, IF=11.889,中科院一区) 

(32)   Xinyue Zhao, Shunwen Bai*, Xuedong Zhang. Establishing a decision-support system for eco-design of biological wastewater treatment: a case study of bioaugmented constructed wetland. Bioresource Technology2019, 274: 425-429.(SCI, IF=11.889,中科院一区

(33)  Xinyue Zhao, Li Wang, Fang Ma, Jixian Yang*. Characterisation of an efficient atrazine-degrading bacterium, Arthrobacter sp. ZXY-2: an attempt to lay the foundation for potential bioaugmentation applications. Biotechnology for Biofuels2018, 11(113):1-10. (SCI, IF=7.670,中科院一区)


近五年授权的专利等情况

基于已有研究成果获得授权专利13项:


(1)一株产油小球藻ZM-5及其应用(ZL202111021380.3

(2)一株乌拉尔菌HC6及其低温生产2,3-丁二醇的应用(ZL202310526702.2

(3)一种节杆菌C2及其重组节杆菌在降解木质素中的应用(ZL202310527459.6

(4)一种低温堆肥微生物复合菌剂及其制备方法和应用(ZL202011091765.2

(5)一株高效阿特拉津降解菌及其应用以及筛选方法(ZL201610026144.3

(6)阿特拉津降解菌ZXY-2的培养基(ZL201610338985.8

(7)一种菌根强化水生美人蕉降解水中污染物的方法(ZL201610179628.1

(8)一株高效阿特拉津降解菌及其筛选方法以及在农田废水中阿特拉津的生物降解的应用(ZL201510335229.5

(9) 一种布水均匀的人工湿地装置(ZL201520332923.7

(10)一种人工湿地模拟系统出水调节装置(ZL201520090938.7

(11)一种内置多电极体系的导流板式微生物电解池及其使用方法(ZL201410001377.9

(12)一种降解生活污水复合菌剂的制备方法(CN103540549A

(13)生物炭耦合协同降解TCC微生物菌剂及其制备方法(CN115537366A


其他获奖及荣誉称号

(1)    Separations》客座编辑

(2)    《当代化工研究》编委

(3)    iMeta》青年编委

(4)    Chinese Chemical Letters》青年编委

(5)    Eco-Environment & Health》青年编委

(6)    Water Emerging Contaminants & Nanoplastics》青年编委

(7)    《中国给水排水》青年编委

(8)    《市政技术》青年编委

(9)    《湿地科学与管理》青年编委

(10)  《水生态学杂志》青年编委

(11)    国家科技部专家库成员

(12)    深圳市标准技术研究院农业专家库成员

(13)    国家自然科学基金函评专家

(14)    Water ResearchChemical Engineering JournalResources, Conservationand Recycling Journal of Hazardous Materials、                            Bioresource Technology等环境领域高水平 SCI Top 期刊审稿人

(15)    农业农村部生猪养殖设施工程重点实验室成员

(16)    住房建设部智慧海绵城市重点实验室成员

(17)    国际水协会(IWA)会员

(18)    引文分析平台(RCA)会员

(19)    东北农业大学 东农学者学术英才

(20)    东北农业大学 东农学者学术骨干