Shanghai Land & Resources, Volume. 46, Issue 2, 137(2025)
The impact of land-saving and intensive-use policy on urban industrial carbon total factor productivity
[1] [1] WANG Y, FAN H, WANG H M, et al. High-carbon expansion or low-carbon intensive and mixed land-use? Recent observations from megacities in developing countries: a case study of Shanghai, China[J]. Journal of Environmental Management, 2023, 348: 119294.
[3] [3] TAN S K, HU B X, KUANG B, et al. Regional differences and dynamic evolution of urban land green use efficiency within the Yangtze River Delta, China[J]. Land Use Policy, 2021, 106: 105449.
[9] [9] CHEN W, NING S, CHEN W, et al. Spatial-temporal characteristics of industrial land green efficiency in China: evidence from prefecture-level cities[J]. Ecological Indicators, 2020, 113: 106256.
[10] [10] CHEN W, SHEN Y, WANG Y N, et al. The effect of industrial relocation on industrial land use efficiency in China: a spatial econometrics approach[J]. Journal of Cleaner Production, 2018, 205: 525-535.
[12] [12] WEI S, YANG L I, DAI W, et al. The efficiencies and their changes of China's resources-based cities employing DEA and Malmquist index models[J]. Journal of Geographical Sciences, 2012, 22(3): 509-520.
[13] [13] ZHANG N, CHOI Y. Total-factor carbon emission performance of fossil fuel power plants in China: a metafrontier non-radial Malmquist index analysis[J]. Energy Economics, 2013, 40: 549-559.
[14] [14] WANG X, XIAO Z. Regional eco-efficiency prediction with support vector spatial dynamic MIDAS[J]. Journal of Cleaner Production, 2017, 161: 165-177.
[15] [15] ZHOU Y, XING X, FANG K, et al. Environmental efficiency analysis of power industry in China based on an entropy SBM model[J]. Energy Policy, 2013, 57: 68-75.
[16] [16] LIU Y, ZHANG Z, ZHOU Y. Efficiency of construction land allocation in China: an econometric analysis of panel data[J]. Land Use Policy, 2018, 74: 261-272.
[17] [17] HUANG Z, HE C F, ZHU S J. Do China's economic development zones improve land use efficiency? The effects of selection, factor accumulation and agglomeration[J]. Landscape & Urban Planning, 2017, 162: 145-156.
[18] [18] PENG C, XIAO H, LIU Y, et al. Economic structure and environmental quality and their impact on changing land use efficiency in China[J]. Frontiers of Earth Science, 2017, 11(2): 372-384.
[19] [19] CHANG C Y, WEI Y D, HUANG X J, et al. Economic transition, spatial development and urban land use efficiency in the Yangtze River Delta, China[J]. Habitat International, 2017, 63: 67-78.
[22] [22] WANG A P, LIN W F, LIU B, et al. Does smart city construction improve the green utilization efficiency of urban land?[J]. Land, 2021, 10(6), 657.
[23] [23] ZHANG R, WEN L J, JIN Y, et al. Synergistic impacts of carbon emission trading policy and innovative city pilot policy on urban land green use efficiency in China[J]. Sustainable Cities and Society, 2025, 118: 105955.
[24] [24] WANG Y, HUI E C. Are local governments maximizing land revenue? Evidence from China[J]. China Economic Review, 2017, 43: 196-215.
[26] [26] HAN L B, LU M. Housing prices and investment: an assessment of China's inland-favoring land supply policies[J]. Journal of the Asia Pacific Economy, 2016, 22(1): 106-121.
[27] [27] LICHTENBERG E, DING C R. Local officials as land developers: Urban spatial expansion in China[J]. Journal of Urban economics, 2009, 66: 57-64.
[31] [31] DU J, LIANG L, ZHU J. A slacks-based measure of super-efficiency in data envelopment analysis: a comment[J]. European Journal of Operational Research, 2010, 204(3): 694-697.
[32] [32] LI S, SUN Z L, WEN R B, et al. Spatiotemporal patterns and the influence mechanism of urban landscape pattern on carbon emission performance: Evidence from Chinese cities[J]. Sustainable Cities and Society, 2025, 118: 106042.
[34] [34] HE G J, PAN Y H, TANAKA T. The short-term impacts of COVID-19 lockdown on urban air pollution in China[J]. Nature Sustainability, 2020, 3: 1005-1011.
[36] [36] SHAO W B, CHEN Y F, ZHU H. Does the “Braking” of China's land finance facilitate economic “Shift Gears”? Evidence from investment decisions of real firms[J]. Structural Change and Economic Dynamics, 2025, 73: 223-237.
[37] [37] LI S, SUN Z L, WEN R B, et al. Spatiotemporal patterns and the influence mechanism of urban landscape pattern on carbon emission performance: evidence from Chinese cities[J]. Sustainable Cities and Society, 2025, 118: 106042.
[41] [41] YANG B, CHEN X, WANG Z Q, et al. Analyzing land use structure efficiency with carbon emissions: a case study in the middle reaches of the Yangtze River, China[J]. Journal of Cleaner Production, 2020, 274: 123076.
[43] [43] XIAO Y, ZHONG J L, ZHANG Q F, et al. Exploring the coupling coordination and key factors between urbanization and land use efficiency in ecologically sensitive areas: a case study of the Loess Plateau, China[J]. Sustainable Cities and Society, 2022, 86: 104148.
[45] [45] LI W M, CAI Z Y, JIN L S. Urban green land use efficiency of resource-based cities in China: multidimensional measurements, spatial-temporal changes, and driving factors[J]. Sustainable Cities and Society, 2024, 104, 105299.
[53] [53] ZHANG B B, YU L, SUN C W. How do the national eco-industrial demonstration parks affect urban total factor energy efficiency? Evidence from a quasi-natural experiment[J]. Energy Economics, 2023, 126, 107018.
[56] [56] CHEN W X, WANG G Z, XU N, et al. Promoting or inhibiting? New-type urbanization and urban carbon emissions efficiency in China[J]. Cities, 2023, 140: 104429.
Get Citation
Copy Citation Text
SU Wu, CHE Yue, WANG Yao. The impact of land-saving and intensive-use policy on urban industrial carbon total factor productivity[J]. Shanghai Land & Resources, 2025, 46(2): 137
Received: Apr. 27, 2024
Accepted: Aug. 25, 2025
Published Online: Aug. 25, 2025
The Author Email: WANG Yao (wangyao@usst.edu.cn)