科研产出
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21Simultaneous Quantitative Determination of Residues of Pyriproxyfen and Its Metabolites in Tea and Tea Infusion Using Ultra-Performance Liquid Chromatography-Tandem Mass Spectrometry
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来源:AGRONOMY-BASEL
关键词: tea; pyriproxyfen; metabolite; residue analysis; UPLC-MS/MS
年份:2022
22Residue degradation, transfer and risk assessment of pyriproxyfen and its metabolites from tea garden to cup by ultra performance liquid chromatography tandem mass spectrometry
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来源:JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE
关键词: pyriproxyfen; tea; metabolite; processing; risk assessment; maximum residue limit
年份:2022
23Uptake, translocation, and metabolism of anthracene in tea plants
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来源:SCIENCE OF THE TOTAL ENVIRONMENT
关键词: Anthracene; 9, 10-anthraquinone; Uptake; Translocation; Transformation; Tea (Camellia sinensis)
年份:2022
24Establishment of a QuEChERS-UPLC-MS/MS Method for Simultaneously Detecting Tolfenpyrad and Its Metabolites in Tea
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来源:AGRONOMY-BASEL
关键词: pesticide residue; analytical method; metabolites; tea
年份:2022
25Concentrations, generation and risk characterization of phthalimide in tea-derived from folpet or not?
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来源:SCIENCE OF THE TOTAL ENVIRONMENT
关键词: Folpet; Phthalimide; Tea; Manufacturing process; Generation; Risk assessment
年份:2022
26Two Duplicated Ptpn6 Homeologs Cooperatively and Negatively Regulate RLR-Mediated IFN Response in Hexaploid Gibel Carp
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来源:FRONTIERS IN IMMUNOLOGY
关键词: Gibel carp; SHP1; negative regulator; autophagy; MITA; interferon
年份:2021
27Residue behavior and risk assessment of afidopyropen and its metabolite M440I007 in tea
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来源:FOOD CHEMISTRY
关键词: Afidopyropen; Tea; Residue; Processing; Infusion
年份:2023
28CRISPR/Cas9 revolutionizes Macleaya cordata breeding: a leap in sanguinarine biosynthesis
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来源:HORTICULTURE RESEARCH
年份:2024
29Insight into the fate of tolfenpyrad in tea plant (Camellia sinensis L.) from root uptake
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来源:SCIENCE OF THE TOTAL ENVIRONMENT
关键词: Tolfenpyrad; Tea plant; Root uptake; Transport; Metabolism; Distribution
年份:2024
30A ratiometric fluorescence and colorimetry dual-signal sensing strategy based on o-phenylenediamine and AuNCs for determination of Cu2+ and glyphosate
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来源:MICROCHIMICA ACTA
关键词: Fluorescence detection; Visual sensing; GSH-AuNCs; Cu2+; Glyphosate
年份:2024