Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China.
Department of Land and Environment, Shenyang Agricultural University, Shenyang 110866, China.
Ying Yong Sheng Tai Xue Bao. 2021 Nov 15;32(11):3856-3864. doi: 10.13287/j.1001-9332.202111.019.
Facility agriculture, a typical agricultural production management mode, could affect carbon cycle due to its unique production environmental conditions and highly intensive utilization. With the five main sources as accounting objects, including agricultural film investment, energy consumption, pesticide and fertilizer application, CO fertilizer application, and facility soil, we estimated the amount and intensity of carbon emission of three facility agriculture (continuous greenhouse, solar greenhouse, and plastic greenhouse) in 31 provinces in 2018. The results showed that the total carbon emission of facility agriculture in China was 210.3817 million t COe, with the three facility agriculture types of plastic greenhouse, solar greenhouse, and continuous greenhouse accounting for 60.2%, 37.4% and 2.4%, respectively. Carbon emission of facility agriculture was mainly contributed by soil greenhouse gas, agricultural film and supplies investment. Carbon emission per unit area of continuous greenhouses was significantly lower than that of solar and plastic greenhouses. The scientific capital allocation rate and facility agriculture scale were the two main factors influencing the carbon emission in facility agriculture. Based on all the results, we presented the carbon emission reduction path from the three perspectives of improving the scientific investment, material consumption utilization rate, and facility area utilization rate of facility agriculture.
设施农业是一种典型的农业生产管理模式,由于其独特的生产环境条件和高度集约化利用,可能会影响碳循环。以农业地膜投入、能源消耗、农药化肥施用、CO2 肥施用和设施土壤 5 个主要来源为核算对象,估算了 2018 年中国 31 个省(区、市)3 种设施农业(连栋温室、日光温室和塑料大棚)的碳排放量及其强度。结果表明,中国设施农业碳排放量为 21038.17 万 t COe,其中塑料大棚、日光温室和连栋温室分别占 60.2%、37.4%和 2.4%。设施农业碳排放量主要来源于土壤温室气体、农业地膜及农资投入。连栋温室单位面积碳排放量显著低于日光温室和塑料大棚。科学资本配置率和设施农业规模是影响设施农业碳排放量的两个主要因素。基于研究结果,从提高设施农业科学投资、物质消耗利用率和设施面积利用率 3 个方面提出了设施农业减排路径。