
地址:遼寧省沈陽市沈河區(qū)文化路72號(hào)中國科學(xué)院沈陽應(yīng)用生態(tài)研究所
郵編:110016
郵箱:pency@outlook.com
植物功能性狀;生態(tài)系統(tǒng)服務(wù);微生物群落演替;城市植被生長
2018.09~2023.06,中南林業(yè)科技大學(xué),生態(tài)學(xué),博士,導(dǎo)師:劉曙光
2015.09~2018.06,中南林業(yè)科技大學(xué),生態(tài)學(xué),碩士,導(dǎo)師:閆文德
2011.09~2015.06,中南林業(yè)科技大學(xué),生態(tài)學(xué),本科,導(dǎo)師:閆文德 教授
2023/07-至今,中國科學(xué)院沈陽應(yīng)用生態(tài)研究所,特別研究助理(博士后)
1. 湖南省教育廳,湖南省研究生科技創(chuàng)新項(xiàng)目,CX20200703,湘江微塑料環(huán)境行為與微生物群落互作機(jī)制研究,2020.07-2022.07,1萬元,結(jié)題,主持
2. 湖南省教育廳,湖南省研究生科技創(chuàng)新項(xiàng)目,CX20210858,助力碳達(dá)峰/碳中和:湖南省陸地生態(tài)系統(tǒng)固碳供給能力研究,2021.07-2023.07,1萬元,在研,參與
3. 國家自然科學(xué)基金聯(lián)合基金項(xiàng)目,U20A2089,洞庭湖流域生態(tài)服務(wù)時(shí)空演變與調(diào)控機(jī)制研究,2021.01-2024.12,264萬元,在研,參與
4. 國家自然科學(xué)基金面上項(xiàng)目,41971152,湘江流域物質(zhì)橫向遷移對(duì)C、N、P循環(huán)的影響,2020.01-2023.12,68萬元,在研,參與
5. 國家自然科學(xué)基金青年項(xiàng)目,31600355,杉木葉脈特征與比葉性狀的關(guān)聯(lián)分析及過程調(diào)控研究,18萬元,結(jié)題,參與
1. Peng, X., Jiang, S., Liu, S., Valbuena, R., Smith, A., Zhan, Y., et al., 2023. Long-term satellite observations show continuous increase of vegetation growth enhancement in urban environment. Science of The Total Environment, 898, 165515.
2. Peng, X., Zhao, M., Liu, S. and Yan, W. 2021. Half-leaf width symmetric distribution reveals buffering strategy of Cunninghamia lanceolata. BMC Plant Biology 21(1), 1-11.
3. Peng, X., Zhao, M., Liu, S. and Yan, W. 2023. Leaf traits of Chinese fir (Cunninghamia lanceolata) do not support the well-accepted ‘flux trait network’ hypothesis. Journal of Plant Ecology 16(2), rtac030.
4. 彭曦,閆文德, 王鳳琪, 王光軍, 玉昉永,趙梅芳 2018. 基于葉干質(zhì)量比的杉木比葉面積估算模型的構(gòu)建. 植物生態(tài)學(xué)報(bào) 42(2), 209-219.
5. 彭曦,閆文德, 王光軍,趙梅芳 2018. 杉木葉形態(tài)特征與葉面積估算模型. 生態(tài)學(xué)報(bào) 38(10).
6. Feng, S., Liu, S., Huang, Z., Jing, L., Zhao, M., Peng, X., Yan, W., Wu, Y., Lv, Y. and Smith, A.R. 2019. Inland water bodies in China: Features discovered in the long-term satellite data. Proceedings of the National Academy of Sciences 116(51), 25491-25496.
7. Shi, Y., Liu, S., Yan, W., Zhao, S., Ning, Y., Peng, X., Chen, W., Chen, L., Hu, X. and Fu, B. 2021. Influence of landscape features on urban land surface temperature: Scale and neighborhood effects. Science of the Total Environment 771, 145381.
8. Jiang, Y., Liu, S., Liu, M., Peng, X., Liao, X., Wang, Z. and Gao, H. 2022. A systematic framework for continuous monitoring of land use and vegetation dynamics in multiple heterogeneous mine sites. Remote Sensing in Ecology and Conservation 8(6), 793-807.
9. Zhan, Y., Liu, F., Peng, X., & Wang, G. (2020). The effects of different burning intensities on soil properties during recovery stage of forests in subtropical China. Journal of Soil and Water Conservation, 75(2), 166-176.
10. Tang, W., Liu, S., Kang, P., Peng, X., Li, Y., Guo, R., Jia, J., Liu, M. and Zhu, L. 2021. Quantifying the lagged effects of climate factors on vegetation growth in 32 major cities of China. Ecological Indicators 132, 108290.
11. Gao, H., Liu, S., Feng, S., Peng, X., Ning, Y., Shi, Y., Wang, Z., Wei, B. and Yan, W. 2023. Nonlinear imprints of forest coverage on the relationships between gross primary production (GPP) and landscape patterns. Ecological Indicators 146, 109783.
12. Shu, Y., Liu, S., Wang, Z., Xiao, J., Shi, Y., Peng, X., Gao, H., Wang, Y., Yuan, W. and Yan, W. 2022. Effects of Aerosols on Gross Primary Production from Ecosystems to the Globe. Remote Sensing 14(12), 2759.
13. Gao, H., Liu, S., Lu, W., Smith, A.R., Valbuena, R., Yan, W., Wang, Z., Xiao, L., Peng, X. and Li, Q. 2021. Global analysis of the relationship between reconstructed solar-induced chlorophyll fluorescence (SIF) and gross primary production (GPP). Remote Sensing 13(14), 2824.
14. Wang, Z., Liu, S., Wang, Y.-P., Valbuena, R., Wu, Y., Kutia, M., Zheng, Y., Lu, W., Zhu, Y., Zhao, M., Peng, X., Gao, H., Feng, S., and Shi, Y. 2021. Tighten the Bolts and Nuts on GPP Estimations from Sites to the Globe: An Assessment of Remote Sensing Based LUE Models and Supporting Data Fields. Remote Sensing 13(2), 168.