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Updated: Jan 12, 2026

Design and Construction of an Urban Runoff Research Facility
Published on: August 8, 2014
Urban expansion drives both loss and compensation in city vegetation productivity
Xinyue Liu1, Tianshan Zha1, Charles P-A Bourque2
1State Key Laboratory of Efficient Production of Forest Resources, Beijing Forestry University, Beijing 100083, China; School of Soil and Water Conservation, Beijing Forestry University, Beijing 100083, China; Beijing Engineering Research Center of Soil and Water Conservation, Beijing Forestry University, Beijing 100083, China.
Abstract:
Urbanization alters vegetation productivity by both direct (ωd) and indirect (ωi) effects. The direct effect is from the change of vegetated area indicated by impervious surface intensity (ISI), while indirect effects arise from changes in urban environmental factors, such as near-surface air temperatures, precipitation, urban heat island (UHI) intensity, and population density (POP). The respective contributions of ωd and ωi to vegetation net primary productivity (NPP) under various phases of urbanization are not well quantified. Using multisource remote-sensing data from 1990 to 2020, we analyzed the spatiotemporal variation in urban expansion and the effect that ωd and ωi had on NPP in the megalopolis of Beijing, China, over 5-year intervals. During this period, Beijing underwent significant planar expansion rates of about 58.9 km2/yr. Annual mean loss of NPP by ωd was estimated to be about 77.1 g C/(m2·yr) during the 1990-2020 period, while annual mean improvement to NPP by ωi amounted to an increase of 28.9 g C/(m2·yr). The NPP losses were partially offset by NPP improvements in the order of 18.6 %-69.3 %. The impact of forcing variables on NPP varied spatially. Air temperature, precipitation, UHI, POP, and ISI explained about 13.8 %, 23.2 %, 23.7 %, 14.7 %, and 24.6 % of the spatial variation in NPP. The impact of air temperature on NPP was related to available moisture, negatively affecting NPP in regions with water deficits. Our findings demonstrate the dual impact of urbanization on vegetation and underscore the necessity for spatially adaptive ecological management strategies in regions experiencing rapid urban growth.
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