中国农业气象 ›› 2023, Vol. 44 ›› Issue (02): 96-105.doi: 10.3969/j.issn.1000-6362.2023.02.002

• 农业气候资源与气候变化栏目 • 上一篇    下一篇

河北省农作物生产投入品碳排放变化特征

山楠, 肖广敏, 串丽敏,孙秀君   

  1. 1.唐山学院新材料与化学工程学院,唐山 063000;2. 河北省农林科学院农业资源环境研究所/河北省肥料技术创新中心,石家庄 050051;3. 北京市农林科学院数据科学与农业经济研究所,北京 100097
  • 收稿日期:2021-11-17 出版日期:2023-02-20 发布日期:2023-01-16
  • 通讯作者: 串丽敏,副研究员,研究方向为农业资源高效利用。 E-mail: xiaochuan200506@126.com
  • 作者简介:山楠,E-mail:shannan@tsc.edu.cn
  • 基金资助:
    国家重点研发计划(2016YFD0200103);北京市农林科学院创新能力建设专项(KJCX20200403;KJCX20200203;KJCX201913);唐山学院博创基金(1401903);河北省农林科学院科技创新专项(2022KJCXZX-ZHS-9)

Dynamics Change of Carbon Emission from Crops Production Inputs in Hebei Province

SHAN Nan, XIAO Guang-min, CHUAN Li-min, SUN Xiu-jun   

  1. 1. School of New Materials and Chemical Engineering, Tangshan University, Tangshan 063000, China; 2. Institute of Agricultural Resources and Environment, Hebei Academy of Agriculture and Forestry Science/Hebei Fertilizer Technology Innovation Center, Shijiazhuang 050051; 3. Institute of Data Science and Agricultural Economics, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097
  • Received:2021-11-17 Online:2023-02-20 Published:2023-01-16

摘要: 基于2010-2018年河北省农资投入、农作物产量、耕地面积和农作物播种面积等统计数据,计算河北省农作物生产投入品碳排放,分析河北省农作物生产投入品碳排放的动态变化和不同投入品碳排放所占比例,为农业生产节能减排,实现低碳农业提供理论依据。结果表明,2010-2018年河北省农作物生产投入品碳排放以2015年为转折点,呈现先上升后下降的趋势。研究期内河北省农作物生产碳排放总量、单位产量碳排放量和单位耕地面积碳排放量分别为2219万~2674万tCO2eq、0.21~0.30tCO2eq·t−1和3.40~4.10tCO2eq·hm−2。2018年河北省农作物生产碳排放总量、单位产量碳排放量和单位耕地面积碳排放量最低,分别比最高值降低17.0%、30.0%和17.0%。化肥、农药、农膜、柴油和灌溉用电9a平均碳排放量占比分别为38.6%、2.1%、11.5%、34.7%和13.1%。化肥和柴油是最主要的农业碳排放源,占比均在30%以上。农作物生产投入品碳排放的动态变化受国家政策影响效果明显,农作物生产碳排放应该坚持以国家政策引导为主,通过成熟的农业管理制度,加强农业技术培训和推广应用先进的栽培技术等措施,减少农业源碳排放,以促进农业绿色发展。

关键词: 农作物生产, 农资投入, 碳排放, 碳强度

Abstract: Carbon emission from crop production is one of the important sources of greenhouse gas emission in China, and it is a hot issue on agricultural ecological environment in recent years. Based on the statistical data of agricultural production input, crop yield, cultivated land area and crop sowing area in Hebei province from 2010 to 2018, this paper studied the dynamic changes of carbon emission of crop production inputs, and analyzed the proportion of carbon emission for each different crop production inputs, so as to provide a theoretical basis for energy conservation and emission reduction in agricultural production, and in the end to realize the low-carbon agriculture. The results showed that from 2010 to 2018, the carbon emission from crop production in Hebei province took 2015 as the turning point, showing a trend of increasing first and then decreasing. From 2010 to 2018, the total carbon emissions from crop production, carbon emissions per unit yield and carbon emissions per unit cultivated land area in Hebei province were 22.19×104−26.74×104tCO2 eq, 0.21−0.30tCO2eq·t−1 and 3.40−4.10tCO2eq·ha−1, respectively. The total carbon emission of crop production, carbon emission per unit yield and carbon emission per unit cultivated land area in 2018 were the lowest, decreasing by 17.0%, 30.0% and 17.0% respectively compared with the highest value. The 9-year average carbon emission of chemical fertilizer, pesticide, agricultural film, diesel fuel and irrigation electricity accounted for 38.6%, 2.1%, 11.5%, 34.7% and 13.1%, respectively. Chemical fertilizer and diesel fuel were the main sources of agricultural carbon emission, accounting for more than 30%. The dynamic change of carbon emission of crop production inputs was obviously affected by the national policies. It is suggested that the carbon emissions from agricultural production should be guided by national policies, and measures such as formulating mature agricultural management system, strengthening agricultural technology training and promoting the application of advanced cultivation techniques should be taken to reduce the carbon emissions from agricultural sources, so as to promote the green development of agriculture.

Key words: Crop production, Agricultural production input, Carbon emission, Carbon emission intensity