黄朋

发布时间:2026年01月04日 15:24       作者:    责任编辑: 庄子豪   (点击:)

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黄朋

职称:讲师

邮箱:huangpeng@xaut.edu.cn

研究方向:环境污染与健康;环境毒理学;环境风险评价


一、个人及工作简历

20139- 20176月 桂林理工大学环境科学与工程学院,学士

20179- 20236月 同济大学环境科学与工程学院,博士

202310  今 西安理工大学水利水电学院,讲师

二、教学工作

主讲研究生《环境毒理与健康风险》课程。

主讲本科生《水工艺设备基础》课程。

 

三、科研工作

(一)主持与参与的项目:

1、国家自然科学基金面上项目,基于均匀设计与全局敏感性分析识别诱导混合物毒性的关键组分,2022,参与人员,在研;

2、国家自然科学基金面上项目,个人护理品时间依赖Hormesis及在混合物中的传递规律与机理探索,2020,研究骨干,结题;

3、国家重点研发计划项目子课题,混合污染物联合作用剂量-效应评价模型研究,2018,研究骨干,结题。

(二)代表性成果:

1. Huang, P., Wang, Y., Liu, S.-S.*, Wang, Z.-J., Xu, Y.-Q.. SAHmap: Synergistic-antagonistic heatmap to evaluate the combined synergistic effect of mixtures of three pesticides on multiple endpoints of Caenorhabditis elegans. Environmental Pollution, 2022, 315: 120378.

2. Huang, P., Liu, S.-S.*, Wang, Z.-J., Ding, T.-T., Xu, Y.-Q.. Deriving the predicted no effect concentrations of 35 pesticides by the QSAR-SSD method. Chemosphere, 2022, 298: 134303.

3. Huang, P., Liu, S.-S.*, Xu, Y.-Q., Wang, Y.,Wang, Z.-J.. Combined lethal toxicities of pesticides with similar structures to Caenorhabditis elegans are not necessarily concentration additives. Environmental Pollution, 2021, 286: 117207.

4. Huang, P., Li, K., Xu, Y.-Q., Wang, Z.-J., Liu, S.-S.*. Genetically modified Caenorhabditis elegans may lead to inaccurate toxicity evaluation of mixtures. Environmental Sciences Europe, 2020, 32(1): 63.

5. Huang, P., Liu, S.-S.*, Wang, Z.-J., Ding, T.-T., Tao, M.-T.. Study on the characterization of pesticide mode of action similarity and the multi-endpoint combined toxicity of pesticide mixtures to Caenorhabditis elegans. Science of the Total Environment, 2022

6. Ding, T.-T., Liu, S.-S.*, Wang, Z.-J., Huang, P., Gu, Z.-W., Tao, M.-T., . A novel equal frequency sampling of factor levels (EFSFL) method is applied to identify the dominant factor inducing the combined toxicities of 13 factors. Environment international, 2023, 175: 107940.

7. Xu, Y.-Q., Li, K.,Wang, Z.-J., Huang, P., Liu, S.-S.*. Transfer pattern of hormesis into personal care product mixtures from typical hormesis-inducing compounds. Science of the total environment, 2023, 855: 158981.

8. Lu, S., Huang, P., Liu, S.-S.*, Wang, Z.-J.. Introduction of Flavor Chemical Eugenol Attenuating the Synergistic Toxicological Interactions of Flavor Mixtures. ACS Omega, 2022, 7(36): 32238-32249.

9. Wang, Z.-J., Liu, S.-S.*, Huang, P., Xu, Y.-Q.. Mixture predicted no-effect concentrations derived by independent action model vs concentration addition model based on different species sensitivity distribution models. Ecotoxicology and Environmental Safety, 2021, 227: 112898

10. Wang, Z.-J., Zheng, Q.-F., Liu, S.-S.*, Huang, P., Ding, T.-T., Xu, Y.-Q.. New methods of top-to-down mixture toxicity prediction: A case study of eliminating of the effects of cosolvent from binary mixtures. Chemosphere, 2022, 289: 133190.