个人简介
单佳佳,副教授。毕业于日本京都大学,2015年毕业后进入大连理工大学盘锦校区工作,现为大连理工大学海洋科学与技术学院副教授。主持国家自然科学基金青年科学基金一项,中国环境科学研究院开放基金一项,基本科研业务费一项,参与多项国家自然科学基金项目。目前指导研究生已经发表Environmental Science & Technology、Environmental pollution 、Journal of hazardous materials、Food Chemistry等高影响因子文章数篇,共发表SCI论文40余篇。
科研领域:
环境监测,光谱分析,微塑料快速检测及降解机理的研究。现阶段主要研究致力于将人工智能技术引入到传统环境科学领域,通过大数据分析,寻找环境各因子之间的相互作用关系,追溯污染物的来源。主要包括以下几个领域:(1)环境污染物实时监控技术;(2)环境中痕量污染物的快速检测技术;(3)新型污染物(如微塑料)的快速检测;(4)微塑料及其吸附污染物的相互作用机理;(5)微塑料降解机理的研究;(6)环境大数据与深度学习。
科研项目:
1. 国家自然科学基金青年基金项目, 31701691, 基于“空-谱”融合的空间聚类对草鱼高光谱降维机理及模型优化的研究, 2018/01-2020/12, 24万,在研,主持。
2. 大连理工大学基本科研业务费专项项目,DUT20JC06, 固相微萃取结合SERS技术检测鸡蛋中氟苯尼考残留,2020/1-2021/12, 10万,在研,主持。
3.中国环境科学院环境基准与风险评估国家重点实验室开放基金,SKLECRA2017OFP02,基于光谱技术的环境介质中微塑料检测方法的研究,2017/10-2019/10, 8万,在研,主持。
4. 国家自然科学基金青年基金项目,21707014,基于MOFs-石墨烯的分子印迹电化学传感器检测酚类内分泌干扰物,2018/01-2020/12,25万元,在研,参与。
5.大连理工大学人才引进专项项目,DUT17RC(4)41,基于高光谱技术的冷藏鱼肉品质检测及其空间分布可视化,2017/07-2018/12,5万,结题,主持。
6.国家自然科学基金青年基金项目,41603069,利用微波技术快速诊断金属污染物对微生物群落的影响,2017/01-2019/12,20万元,结题,参与。
学生培养:
本人对培养学生具有较大的热情,培养4名学生继续攻读博士学位(其中一名学生已经在大学任教,哈工大深圳校区1名,南京大学1名,华东师范大学1名)。培养的学生获得多项荣誉:校优秀研究生,专项奖学金,大连理工大学优秀硕士论文,校三好学生,市三好学生等荣誉。培养本科生有多人进入中国农业大学,大连理工大学,日本京都大学等国内外知名高校,同时,指导多项创新计划,依托于创新计划本科生获得攀登杯二等奖,并且以第一作者身份发表SCI论文(Food Packaging and Shelf Life,Q1, IF:8.5)。希望以后对于快速检测技术、微塑料讲解机理、环境大数据与深度学习等方向感兴趣的同学可以联系我,热切欢迎对于科研真正具有热情的同学进组学习。
科研成果:
目前共发表科研论文40余篇。代表性论文列表如下:
代表性论文:
1. Yituo Zhang, Xue Wang, Jiajia Shan*, Junbo Zhao, Wei Zhang, Lifen Liu, Fengchang Wu. Hyperspectral Imaging-Based Method for Rapid Detection of Microplastics in the Intestinal Tracts of Fish. Environmental Science & Technology. 2019,53(9):5151-5158.
2. Li Y L, Wang X, Zhang H, Wang Q, Cao X, Gong R Y, Guo, J L, Shan J J*. Tracing Microplastic Aging Processes Using Multimodal Deep Learning: A Predictive Model for Enhanced Traceability . Environmental Science & Technology, 2024. (Cover paper)
3. Shan, Jiajia; Zhang, Yituo; Wang, Jian; Ren, Tao; Jin, Mengke; Wang, Xue; Microextraction based on microplastic followed by SERS for on-site detection of hydrophobic organic contaminants, an indicator of seawater pollution. Journal of hazardous materials. 2020, 400: 123202
4. Wang J, Zhou H, Li X J, Wu M H, Wang X, Shan J J. Rapid screening of benzyl dodecyl dimethyl ammonium bromide co-metabolic degrading bacteria based on NIR hyperspectral imaging technology . Journal of hazardous materials, 2023, 456.
5. Shan, Jiajia; Wang, Jian; Zhan, Jingjing; Liu, Lifen; Wu, Fengchang; Wang, Xue; Sorption behaviors of crude oil on polyethylene microplastics in seawater and digestive tract under simulated real-world conditions. Chemosphere, 2020 257: 127225.
6. Yang W Q, Li Y L, Wang X, Zhen Y, Li D D, Zhao X, Yang X J, Shan J J*. One-stop quantification of microplastics and nanoparticles based on meniscus self-assembly technology. Science of Total Environment, 2024, 949.
7. Jing, Wang; Qu, Yihe; Shan, Jiajia; Alam, Md. Asraful; Russel, Mohammad;Wenchao, Wu; Zhang, Dayong; Zhou, Yong.Isolating Fistulifera pelliculosa from the northern Bohai Sea and analyzing biochemical composition, antibacterial and nutrient removal potential. Science of Total Environment, 2023, 162002.
8. Gong, R.Y., Wang, J., Wang, X., Liu, Y., Shan, J.J.* Analysis of microplastics release from rice package in combination with machine learning and hyperspectral imaging technique. Food packaging and Shelf Life, 2023, 39,101152.
9. Shan, Jiajia; Li, Xinjing ; Han, Shuqing; Ren, Tao; Jin, Mengke; Wang, Xue*. Gap-enhance Raman tags (GERTs) competitive immunoassay based Raman imaging for the quantitative detection of trace florfenicol in milk. Food chemistry, 2022, 391, 133233.
10. Jiajia Shan*; Junbo Zhao; Yituo Zhang; Lifen Liu; Fengchang Wu; Xue Wang. Simple and Rapid Detection of Microplastics in Seawater using Hyperspectral Imaging Technology. Analytica Chimica Acta, 2019, 1050: 161-168.
11. Mohammad Russel*, Xiaomeng Li, Jiajia Shan, Lifen Liu, Subpiramaniyam Sivakumar, Jun Yao, Hongkui Cui. Isolation of crude oil-degrading and glycolipid bio-surfactant yieldable indigenous strain, and study the influence of cadmium on their growth metabolism. Special issue of Environmental Science and Pollution Research. 2017 International Symposium on Mining Area Pollution Control and Ecological Restoration, in Beijing from October 27 to 29, 2017.
12. Mohammad Russel, Sophocleous Marios, Shan JiaJia, Weiping Xu, Lehui Xiao, Thomas Maskow, Md. Mahbub Alam, Julius Georgiou. High-Frequency, dielectric spectroscopy for the detection of electrophysiological/biophysical differences in different bacteria types and concentrations. Analytica Chimica Acta, 2018,1028:86-95.
13. Jiajia Shan*, Junbo Zhao, Lifen Liu, Yituo Zhang, Xue Wang, Fengchang Wu. A Novel Way to Rapidly Monitor Microplastics in Soil by Hyperspectral Imaging Technology and Chemometrics, Environmental Pollution, 2018, 238:121-129.
14. Jiajia Shan*, Tetsuhito Suzuki, Yuichi Ogawa, Naoshi Kondo, Coffee roasting degree prediction in terms of weight loss with selected wavebands based on Near infrared spectroscopy, Engineering in Agriculture, Environment and Food, 2015, 8(4): 195-199.
15. Jiajia Shan*, Tetsuhito SUZUKI, Diding Suhandy, Yuichi Ogawa, Naoshi Kondo. Chlorogenic Acid (CGA) Determination in Roasted Coffee Beans by Near Infrared (NIR) Spectroscopy, Engineering in Agriculture, Environment and Food, 2014, 7(4): 139-142.
教育经历
[1] 2011.10-2015.3
京都大学 | 地域环境科学专攻 | 博士
工作经历
[1] 2015.5-至今
大连理工大学
|
Ocean Science and Technology
|
讲师
研究方向
Analysis of microplastics in environment and food
spectroscopy and chemometrics
Hyperspectral imaging analysis