Home» Faculty» Scientists

ZHANG Jiguang

Source: Author: Date: 2026-07-14

English NameZhang Jiguang张继光.jpg

中文名: 张继光

Phone+86 15865580189

Fax+86 0532-88703386

Emailzhangjiguang@caas.cn

Academic TitleProfessor/PhD

SupervisorPhD Supervisor, Master Supervisor, 

DepartmentQuality and Safety Research Center

GroupTobacco Flavor Chemistry Innovation Team

Research AreaEnvironment of Tobacco Production Areas and Quality Assurance of Tobacco Leaves; Tobacco quality and safety risk assessment and controlling techniques

Publications

1. Effects of different remediation agents on soil herbicides, microbial community structure and tobacco leaf quality. Frontiers in Environmental Science. 2026, 14:1778603.

2. Effect of 3D Cornffower-like MoS2‑Assisted Peroxymonosulfate Process on Pesticide Removal and Aroma Quality Retaining for Tomato Fruits. Journal of Agricultural and. Food Chemistry. 2025, 73, 2562−2572

3. Occurrence and risk exposure assessment of multiple pesticide residues in edible mint in China. Journal of Food Composition and Analysis, 2023, 116: 105071.

4. Bedrock outcrops weakly promote rather than inhibit soil carbon sequestration after vegetation restoration. Science of the Total Environment, 2023, 858: 159470.

5. Comparative investigation on aroma profiles of five different mint (Mentha) species using a combined sensory, spectroscopic and chemometric study. Food Chemistry, 2022, 371:131104

6. Effects of biochar on heavy metal bioavailability and uptake by tobacco (Nicotiana tabacum) in two soils. Agriculture, Ecosystems & Environment, 2021, 317: 107453

7. Enhanced degradation of 2,4,6-trichlorophenol by activated peroxymonosulfate with sulfur doped copper manganese bimetallic oxides. Chemical Engineering Journal, 2021, 417(3–4): 128121

8. Wide-scope multi-residue analysis of pesticides in beef by ultra-high-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry. Food Chemistry, 2021, 351: 129345

9. Effects of sulfoxaflor on greenhouse vegetable soil N2O emissions and its microbial driving mechanism. Chemosphere, 2021, 267: 129248

10. Facile synthesis of modified carbon nitride with enhanced activity for photocatalytic degradation of atrazine. Journal of Environmental Chemical Engineering, 2021, 9: 105807