Published July 15, 2023
| Version v1
Dataset
Open
Oxidation of a commercial antioxidant is driving increasing atmospheric abundance of a novel organophosphate ester: Implication for global regulation
Authors/Creators
- Liu, Qifan1
- Liu, Runzeng2
- Zhang, Xianming3
- Li, Wenlong4
- Harner, Tom5
- Saini, Amandeep5
- Liu, Hanyang1
- Yue, Fange1
- Zeng, Lixi6
- Zhu, Ying7
- Xing, Changyue7
- Li, Li8
- Lee, Patrick5
- Tong, Shengrui9
- Wang, Weigang9
- Ge, Maofa9
- Wang, Jianjun10
- Wu, Xiaoguo11
- Johannessen, Cassandra3
- Liggio, John5
- Li, Shao-Meng12
- Hung, Hayley5
- Xie, Zhouqing1
- Mabury, Scott A.13
- Abbatt, Jonathan P. D.13
- 1. University of Science and Technology of China
- 2. Shandong University
- 3. Concordia University
- 4. Xiamen University
- 5. Environment and Climate Change Canada
- 6. Jinan University
- 7. Shanghai Jiao Tong University
- 8. University of Nevada Reno
- 9. Institute of Chemistry, Chinese Academy of Sciences
- 10. Third Institute of Oceanography, Ministry of Natural Resources
- 11. Anhui Normal University
- 12. Peking University
- 13. University of Toronto
Description
Data presented in the manuscript "Oxidation of a commercial antioxidant is driving increasing atmospheric abundance of a novel organophosphate ester: Implication for global regulation" by Liu et al. (2023).
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