仇浩(Qiu Hao)
Professor
New Environmental Building 625
haoqiu@sjtu.edu.cn
基本介绍
仇浩,江苏兴化人,中国农工民主党党员。上海交通大学教授,博士生导师,土壤地下水污染修复技术研究所副所长。国家重点研发计划青年首席科学家(2023)、全国农业科研杰出人才及其创新团队负责人(2021)、国家优秀青年科学基金获得者(2020)、上海市青年科技启明星(2020)。荷兰莱顿大学博士,比利时鲁汶大学博士后。主要研究方向为土壤生态健康评估与调控、水土污染界面过程与机制。先后主持国家重点研发计划项目、国家自然科学基金项目、上海市科技创新行动计划项目、比利时联邦科学政策中心BELSPO国际合作项目等10余项科研项目。迄今已在Science, Nature Protocols, Science Bulletin, ACS Nano, Environ. Sci. Technol., Water Res.等环境领域顶尖及主流期刊发表SCI论文160余篇,编撰英文专著2部;申请国家专利6项,已授权4项。荣获中国土壤学会优秀青年学者奖(2022)、教育部科学技术进步奖一等奖(2020)、中国土壤学会科学技术奖一等奖(2019)、广东省土壤学会科学技术奖一等奖(2019)、广东省环境保护科学技术奖一等奖(2018)。兼任中国生态学学会污染生态专业委员会委员(2022-至今)、中国土壤学会国际合作与交流工作委员会委员(2025-至今)、中国职业安全健康协会工业防毒专业委员会委员(2021-至今)等职。
论文信息
  • Nat. Protoc.: Preparing and characterizing environmentally aged microplastics
  • Sci. Bull.: Smart 6S roadmap for deciphering the migration and risk of heavy metals in soil and groundwater systems at brownfield sites nationwide in China
  • ACS Nano: Temporal dynamics of copper-based nanopesticide transfer and subsequent modulation of the interplay between host and microbiota across trophic levels
  • ACS Nano: Surface defects regulate the in vivo bioenergetic response of earthworm Eisenia fetida coelomocytes to molybdenum disulfide nanosheets
  • Environ. Sci. Technol.: Diverse perspectives illuminate the intestinal toxicity of traditional and biodegradable agricultural film microplastics to Eisenia fetida under varying exposure sequences
  • Environ. Sci. Technol.: Differential leaf-to-root movement, trophic transfer, and tissue-specific biodistribution of metal-based and polymer-based nanoparticles when present singly and in mixture
  • Environ. Sci. Technol.: Two-dimensional layered nano-MoS₂ induces earthworm immune cell apoptosis by regulating lysosomal maintenance and function: Towards unbiased screening and validation of suspicious pathways
  • Environ. Sci. Technol.: Foliar exposure of deuterium stable isotope labeled nanoplastics to lettuce: Quantitative determination of foliar uptake, transport, trophic transfer in a terrestrial food chain
  • Environ. Sci. Technol.: Earthworm coelomocyte internalization of MoS₂ nanosheets: Multiplexed imaging, molecular profiling, and computational modeling
  • Environ. Sci. Technol.: Coupled lipidomics and digital pathology as an effective strategy to identify novel adverse outcome pathways in Eisenia fetida exposed to MoS₂ nanosheets and ionic Mo
  • Environ. Sci. Technol.: Commonwealth of soil health: how do earthworms modify the soil microbial responses to CeO2 nanoparticles
  • Environ. Sci. Technol.: Effective modeling framework for quantifying the potential impacts of coexisting anions on the toxicity of arsenate, selenite, and vanadate
  • Environ. Sci. Technol.: Elucidating toxicodynamic differences at the molecular scale between ZnO nanoparticles and ZnCl₂ in Enchytraeus crypticus via nontargeted metabolomics
  • Environ. Sci. Technol.: Nanospecific phytotoxicity of CuO nanoparticles in soils disappeared when bioavailability factors were considered
  • Environ. Sci. Technol.: Interactions and toxicity of Cu-Zn mixtures to Hordeum vulgare in different soils can be rationalized with bioavailability-based prediction models
  • Environ. Sci. Technol.: Predicting copper toxicity to different earthworm species using a multi-component Freundlich model
  • Environ. Int.: Intergenerational neurotoxicity of polystyrene nanoplastics in offspring mice is mediated by dysfunctional microbe-gut-brain axis
  • Water Res.: Overlooked yet critical pathways for microplastics input to soil and groundwater system: Transport mechanisms and simulation predictions in landfill environments
  • Water Res.: Impact of CeO2 nanoparticles on the aggregation kinetics and stability of polystyrene nanoplastics: Importance of surface functionalization and solution chemistry
  • Sustain. Horiz.: Plant intelligence in a rapidly changing world: implementation of plant-plant communications in managed plant systems
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