劉保雙

劉保雙

劉保雙,副教授,現為南開大學環境科學與工程學院教師。

工作經歷,代表性論文(*為通訊作者),科研項目,授權專利,

工作經歷

2024.12 —至今南開大學環境科學與工程學院 副教授
2019.2—2024.12 南開大學環境科學與工程學院 助理研究員

代表性論文(*為通訊作者)

1. Wu, Y.T., Liu, B.S.*, Meng, H., Wang, F.Q., Li, S., Xu, M., Shi, L.Y., Zhang, S.F., Feng, Y.C., Hopke, P.K., 2024. Unexpected changes in source apportioned results derived from different ambient VOC metrics. Environment International, 190, 108910.
2. Cui, Y.Q., Liu, B.S.*, Yang, Y.F., Kang, S.C., Wang, F.Q., Xu, M., Wang, W., Feng, Y.C., Hopke, P.K., 2024. Primary and oxidative source analyses of consumed VOCs in the atmosphere. Journal of Hazardous Materials, 476, 134894.
3. Liu, B.S.*, Gu, Y., Wu, Y.T., Dai, Q.L., Song, S.J., Feng, Y.C.*, Hopke, P.K., 2024. Review of source analyses of ambient volatile organic compounds considering reactive losses: methods of reducing loss effects, impacts of losses, and sources. Atmospheric Chemistry and Physics, 24, 12861–12879.
4. Diao, LL., Xu, Z.Z., Song, D.R.*, Zhu, C., Li, X.C., Zhou, X.Y., Jing, X.D., Yu, L.M., Liu, B.S.*, 2024. Dry deposition fluxes and inhalation risks of toxic elements in total suspended particles in the Bohai Rim region: Long-term trends and potential sources. Journal of Hazardous Materials, 474, 134692.
5. Liu, B.S.*, Yang, T., Kang, S.C., Wang, F.Q., Zhang, H.X., Xu, M., Wang, W., Bai, J.R., Song, S.J., Dai, Q.L., Feng, Y.C., Hopke, P.K., 2025. Changes in factor profiles deriving from photochemical losses of volatile organic compounds: insight from daytime and nighttime positive matrix factorization analyses. Journal of Environmental Sciences, 151, 627–639.
6. Gu, Y., Liu, B.S.*, Meng, H., Song, S.J., Dai, Q.L., Shi, L.Y., Feng, Y.C., Hopke, P.K., 2023. Source apportionment of consumed volatile organic compounds in the atmosphere. Journal of Hazardous Materials, 459, 132138.
7. Wu, Y.T., Liu, B.S.*, Meng, H., Dai, Q.L., Shi, L.Y., Song, S.J., Feng, Y.C., Hopke, P.K., 2023. Changes in source apportioned VOCs during high O3 periods using initial VOC-concentration-dispersion normalized PMF. Science of The Total Environment, 896, 165182.
8. Liu, B.S., Yang, Y., Yang, T., Dai, Q.L., Zhang, Y.F.*, Feng, Y.C., Hopke, P.K., 2023. Effect of photochemical losses of ambient volatile organic compounds on their source apportionment. Environment International, 172, 107766.
9. Liu, B.S., Wang, Y.Y., Meng, H., Dai, Q.L., Diao, L.L., Wu, J.H., Shi, L.Y., Wang, J., Zhang, Y.F.*, Feng, Y.C.*, 2022. Dramatic changes in atmospheric pollution source contributions for a coastal megacity in northern China from 2011 to 2020. Atmospheric Chemistry and Physics, 22, 8597–8615.
10. Yang, T., Liu, B.S.*, Yang, Y., Dai, Q.L., Zhang, Y.F., Feng, Y.C., Hopke, P.K., 2022. Improved positive matrix factorization for source apportionment of volatile organic compounds in vehicular emissions during the Spring Festival in Tianjin, China. Environmental Pollution, 303, 119122.
11. Yang, Y., Liu, B.S.*, Hua, J., Yang, T., Dai, Q.L., Wu, J.H., Feng, Y.C., Hopke, P.K., 2022. Global review of source apportionment of volatile organic compounds based on highly time-resolved data from 2015 to 2021. Environment International, 165, 107330.
12. Gu, Y., Liu, B.S.*, Dai, Q.L., Zhang, Y.F., Zhou, M., Feng, Y.C., Hopke, P.K., 2022. Multiply improved positive matrix factorization for source apportionment of volatile organic compounds during the COVID-19 shutdown in Tianjin, China. Environment International, 158, 106979.
13. Diao, L.L., Zhang, H.T., Liu, B.S.*, Dai, C.L., Zhang, Y.F., Dai, Q.L., Bi, X.H., Zhang, L.Z., Song, C.B., Feng, Y.C., 2021. Health risks of inhaled selected toxic elements during the haze episodes in Shijiazhuang, China: Insight into critical risk sources. Environmental Pollution, 276, 116664.
14. Wang, Y.Y., Liu, B.S.*, Zhang, Y.F., Dai, Q.L., Song, C.B., Duan, L.Q., Guo, L.L., Zhao, J., Xue, Z.G., Bi, X.H., Feng, Y.C., 2021. Potential health risks of inhaled toxic elements and risk sources during different COVID-19 lockdown stages in Linfen, China. Environmental Pollution, 284, 117454.
15. Huang, H.Y., Liu, B.S.*, Li, S., Choe, T.H., Dai, Q.L., Gu, Y., Diao, L.L., Zhang, S.F., Bi, X.H., Luo, Z.W., Lu, M.M., Zhang, Y.F., Feng, Y.C., 2021. An estimation method for regional transport contributions from emission sources based on a high-mountain site: a case study in Zhumadian, China. Atmospheric Environment, 263, 118664.
16. Liu, B.S., Wu, J.H.*, Wang, J., Shi, L.Y., Meng, H., Dai, Q.L., Wang, J., Song, C.B., Zhang, Y.F., Feng, Y.C., Hopke, P.K., 2021. Chemical characteristics and sources of ambient PM2.5 in a harbor area: Quantification of health risks to workers from source-specific selected toxic elements. Environmental Pollution, 268, 115926.
17. Gu, Y., Liu, B.S.*, Li, Y.F., Zhang, Y.F., Bi, X.H., Wu, J.H., Song, C.B., Dai, Q.L., Han, Y., Ren, G., Feng, Y.C., 2020. Multi-scale volatile organic compound (VOC) source apportionment in Tianjin, China, using a receptor model coupled with 1-hr resolution data. Environmental Pollution, 265, 115023.
18. Li, Y.F., Liu, B.S.*, Xue, Z.G., Zhang, Y.F., Sun, X.Y., Song, C.B., Dai, Q.L., Fu, R.C., Tai, Y.G., Gao, J.Y., Zheng, Y.J., Feng, Y.C., 2020. Chemical characteristics and source apportionment of PM2.5 using PMF modelling coupled with 1-hr resolution online air pollutant dataset for Linfen, China.Environmental Pollution, 263, 114532.
19. Liu, B.S., Li, Y.F., Wang, L., Bi, X.H.*, Dong, H.Y., Sun, X.Y., Xiao, Z.M., Zhang, Y.F., Feng, Y.C., 2020. Source directional apportionment of ambient PM2.5 in urban and industrial sites at a megacity in China. Atmospheric Research, 235, 104764.
20. Zhang, W.H., Liu, B.S.*, Zhang, Y.F., Li, Y.F., Sun, X.Y., Gu, Y., Dai, C.L., Li, N., Song, C.B., Dai, Q.L., Han, Y., Feng, Y.C., 2020. A refined source apportionment study of atmospheric PM2.5 during winter heating period in Shijiazhuang, China, using a receptor model coupled with a source-oriented model. Atmospheric Environment, 222, 117157.
21. Liu, B.S., Sun, X.Y., Zhang, J.Y., Bi, X.H.*, Li, Y.F., Li, L.W., Dong, H.Y., Xiao, Z.M., Zhang, Y.F., Feng, Y.C., 2020. Characterization and Spatial Source Apportionments of Ambient PM10 and PM2.5 during the Heating Period in Tian’jin, China. Aerosol and Air Quality Research, 20, 1–13.
22. Liu, B.S., Bi, X.H.*, Zhang, J.Y., Yuan, J., Xiao, Z.M., Dai, Q.L., Feng, Y.F., Zhang, Y.F., 2019. Insight into the critical factors determining the particle number concentrations during summer at a megacity in China. Journal of Environmental Sciences, 75, 169–180.
23. Liu, B.S., Cheng, Y., Zhou, M., Liang, D.N., Dai, Q.L., Wang, L., Jin, W., Zhang, L.Z., Ren, Y.B., Zhou, J.B., Dai, C.L., Xu, J., Wang, J., Feng, Y.C.*, Zhang, Y.F.*, 2018. Effectiveness evaluation of temporary emission control action in 2016 in winter in Shijiazhuang, China. Atmospheric Chemistry and Physics, 18, 7019–7039.
24. Liu, B.S., Zhang, J.Y., Wang, L., Liang, D.N., Cheng, Y., Wu, J.H.*, Bi, X.H., Feng, Y.C.*, Zhang, Y.F., Yang, H.H., 2018. Characteristics and sources of the fine carbonaceous aerosols in Haikou, China. Atmospheric Research, 199, 103–112.
25. Liu, B.S., Wu, J.H.*, Zhang, J.Y., Wang, L., Yang, J.M., Liang, D.N., Dai, Q.L., Bi, X.H., Feng, Y.C., Zhang, Y.F., Zhang, Q.X., 2017. Characterization and source apportionment of PM2.5 based on error estimation from EPA PMF 5.0 model at a medium city in China. Environmental Pollution, 222, 10–22.
26. Liu, B.S., Yang, J.M., Yuan, J., Wang, J., Dai, Q.L, Li, T.K., Bi, X.H.*, Feng, Y.C.*, Xiao, Z.M., Zhang, Y.F., Xu, H., 2017. Source apportionment of atmospheric pollutants based on the online data by using PMF and ME2 models at a megacity, China. Atmospheric Research, 185, 22–31.
27. Liu, B.S., Li, T.K., Yang, J.M., Wu, J.H.*, Gao, J.X., Bi, X.H., Feng, Y.C., Zhang, Y.F., Yang, H.H., 2017. Source apportionment and a novel approach of estimating regional contributions to ambient PM2.5 in Haikou, China. Environmental Pollution, 223, 334–345.
28. Liu, B.S., Song, N., Dai, Q.L., Mei, R.B., Sui, B.H., Bi, X.H.*, Feng. Y.C., 2016. Chemical composition and source apportionment of ambient PM2.5 during the non-heating period in Taian, China. Atmospheric Research, 170, 23–33.
29. Liu, B.S., Liang, D.N., Yang, J.M., Dai, Q.L., Bi, X.H.*, Feng, Y.C., Yuan, J., Xiao, Z.M., Zhang, Y.F., Xu, H., 2016. Characterization and source apportionment of volatile organic compounds based on 1-year of observational data in Tianjin, China. Environmental Pollution, 218, 757–769.
30. Liu, B.S., Bi, X.H.*, Feng, Y.C., Dai, Q.L., Xiao, Z.M., Li, L.W., Wu, J.H., Yuan, J., Zhang Y.F., 2016. Fine carbonaceous aerosol characteristics at a megacity during the Chinese Spring Festival as given by OC/EC online measurements. Atmospheric Research, 181, 20–28.
31. 段麗琴, 吳雨彤, 劉保雙*.臨汾市臭氧污染時期VOCs來源解析研究. 中國環境科學, 2025,45(1): 78~92.
32. 孟赫,任曉潔,王桂霞,劉保雙*. 青島沿海地區2021年典型沙塵回流—霾污染過程氣溶膠垂直分布特徵. 環境科學學報, 2024, 44(1): 37–46.
33. 孔翠麗, 吳雨彤, 顧瑤, 宋江邦, 孟赫, 石來元, 劉保雙*. 基於化學損耗矯正的青島膠州市環境VOCs來源解析. 環境科學, 2023, 44(12): 6551–6563.
34. 賈智海, 顧瑤, 孔翠麗, 宋江邦, 孟赫, 石來元, 吳建會, 劉保雙*. 青島市臭氧污染與非污染期間VOCs化學特徵及來源解析. 環境科學, 2023, 44(4): 1962–1973.
35. 李藝, 華靜, 劉保雙*, 張裕芬, 馮銀廠. 大氣污染物監測數據異常值判別方法研究. 環境科學學報, 2022, 42(12): 341–352.
36. 張子禕, 劉保雙*, 孟赫, 石來元, 王靜, 吳建會, 馮銀廠. 青島市港口區域PM2.5污染特徵及來源解析研究. 環境科學學報, 2022, 42(11): 293–307.
37. 王藝璇, 劉保雙*, 吳建會, 張裕芬, 馮銀廠. 天津市郊夏季VOCs化學特徵及其時間精細化的來源解析. 環境科學, 2021, 42(12): 5644–5655.
38. 刁劉麗, 李森, 劉保雙*, 李亞菲, 張晴, 高翔, 畢曉輝, 張裕芬, 馮銀廠.駐馬店市區採暖季PM2.5時間和空間來源解析研究. 環境科學研究, 2021, 34(1): 79–91.
39. 羅瑞雪, 劉保雙*, 梁丹妮, 畢曉輝, 張裕芬, 馮銀廠. 天津市郊夏季的臭氧變化特徵及其前體物VOCs的來源解析. 環境科學, 2021, 42(1): 75–87.
40. 程淵, 劉保雙*, 吳建會, 畢曉輝, 張勤勛, 馮銀廠, 張裕芬. 菏澤市夏季PM10和 PM2.5中水溶性離子組分污染特徵. 環境化學, 2019, 38(4): 729–737.
41. 元潔, 劉保雙*, 程淵, 肖致美, 徐虹, 關玉春. 2017年1月天津市區PM2.5化學組分特徵及高時間解析度來源解析研究. 環境科學學報, 2018, 38(3): 1090–1101.
42. 王露, 畢曉輝, 劉保雙*, 吳建會, 張裕芬, 馮銀廠, 張勤勛. 菏澤市PM2.5源方向解析研究. 環境科學研究, 2017, 30(12): 1849–1858.

科研項目

1.國家自然科學基金面上項目(42477101),環境空氣VOCs化學損耗的定量及來源研究,2025—2028,主持;
2.國家重點研發計畫項目子課題(2023YFC3705801),顆粒物化學組分質控與自洽技術研究,2023—2027,主持;
3.大氣重污染成因與防治攻關項目(DQGG202103),石家莊市細顆粒物和臭氧來源解析技術服務,2023—2024,主持;
4.大氣重污染成因與防治攻關項目(DQGG202152-3),石河子市秋冬季大氣污染協同防控示範研究,2021—2024,主持;
5.中國博士後科學基金面上項目(2019M660986),基於頻譜分析的大氣污染監測數據時間序列分解方法研究,2020—2021,主持;
6.中央高校基本科研項目(63211074),大氣複合污染成因綜合分析技術體系,2021—2021,主持;
7.中央高校基本科研項目(63201121),大氣污染線上多組分數據的質控方法及有效性評估研究,2020—2020,主持;
8.橫向套用項目,“烏-昌-石”區域顆粒物組分分析服務項目,2023—2023,主持;
9.橫向套用項目,顆粒物來源解析資金項目,2019—2020,主持;
10.橫向套用項目,空氣顆粒物來源解析研究,2019—2020,主持;
11.橫向套用項目,2020年臭氧污染防治能力建設項目,2020—2021,主持;
12.橫向套用項目,膠州市PM2.5來源解析及O3污染成因研究項目,2021—2022,主持;
13.橫向套用項目,天津市河西區大氣污染現狀、成因分析及對策建議,2020—2021,主持;
14.國家自然科學基金面上項目(42177085),耦合多維先驗信息的新型大氣顆粒物來源解析方法研究,2022—2025,項目骨幹;
15.國家重點研發計畫項目課題(2016YFC0208502),大氣污染多組分線上源解析集成技術,2016—2019,項目骨幹;
16.國家重點研發計畫項目課題(2022YFC3703001),環境空氣品質評估與標準制修訂關鍵技術及套用,2022—2026,項目骨幹;
17.大氣重污染成因與防治攻關項目(DQGG2021301),臭氧來源解析技術研究,2021—2022,項目骨幹;
18.大氣重污染成因與防治攻關項目(DQGG0105-01),主要污染源和污染過程的示蹤信息識別及篩選技術,2017—2019,項目骨幹;
19.天津市生態環境治理科技重大專項(18ZXSZSF00160),天津市大氣複合污染精準解析及防治方案研究,2018—2021,項目骨幹。

授權專利

1. 劉保雙, 顧瑤, 張裕芬, 馮銀廠. 一種基於大氣擴散-輻射標準化的環境VOCs來源解析方法. 專利號: ZL 202110836417.1, 國家發明專利;
2. 劉保雙, 楊濤, 張裕芬, 馮銀廠. 一種基於初始濃度和實測源譜限制的VOCs來源解析方法. 專利號: ZL 202210188395.7, 國家發明專利。

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