数字农科院2.0

Spatiotemporal expansion and methane emissions of rice-crayfish farming systems in Jianghan Plain, China

文献类型: 外文期刊

作者: Haodong Wei;Zhiwen Cai;Xinyu Zhang;Jingya Yang;Junjun Cao;Ke Meng;Liangzhi You;Hao Wu;Qiong Hu

作者机构:

关键词: CH4 emission mitigation;DNDC model;Landsat satellite data;Rice-crayfish farming system;Spatiotemporal expansion

期刊名称: Agricultural and Forest Meteorology

ISSN: 0168-1923

年卷期: 2024 年 347 卷

页码:

收录情况: SCIE(2024版)

摘要: The rice-crayfish field (i.e., RCF), a recently emerged rice cultivation pattern, has experienced remarkable growth in China over the last decade due to its significant socioeconomic advantages. However, the impacts of expanding RCF areas on the regional-scale ecological environment, particularly concerning methane (CH4) emissions, remain unclear. A major obstacle in addressing this knowledge gap is the absence of accurate and up-to-date spatial distribution information on RCF across years. Here, we selected Jianghan Plain which has the largest RCF area in China as the study area. First, we developed a phenology-based identification algorithm using Landsat-7/8 satellite data, which considered the distinctive flooding signatures of RCF during the rice fallow periods, to identify RCF at the regional scale. Second, we employed the DeNitrification–DeComposition (DNDC) model to simulate the CH4 fluxes of various rice cropping systems, including RCF, rice monoculture (RM), rice-rapeseed rotation (RR), and rice-wheat rotation (RW). Finally, the effects of RCF expansion during 2014–2019 on regional CH4 emissions were analyzed by comparing six scenarios that simulated the conversion of different rice cropping systems to RCF. Results showed the phenology-based algorithm performed well in extracting RCFs, achieving an overall accuracy >92 % for all years based on 1025 RCF and 2096 non-RCF validation samples. RCF generated the least CH4 flux, followed by RM, RR, and RW. Moreover, shifting from traditional rice cropping systems to RCF reduced CH4 emissions across all cases, with mitigation rates ranging from 4.82 % to 21.85 %, indicating RCF's substantial CH4 mitigation potential. These findings significantly improve our understanding of the ecological effects of RCF cultivation, which is critical for advancing land use planning and decision-making for sustainable agricultural development in China. Our presented evaluation method of integrating the remote sensing mapping algorithm and DNDC model can be easily generalized for other crop types in other regions.

分类号:

  • 相关文献

[1]Modeling Soil Organic Carbon Storage and Its Dynamics in Croplands of China. Tang Hua-jun,Qiu Jian-jun,Wang Li-gang,Li Hu,Li Chang-sheng,van Ranst, Eric. 2010

[2]Calibration of DNDC model for nitrate leaching from an intensively cultivated region of Northern China. Li, Hu,Wang, Ligang,Qiu, Jianjun,Gao, Maofang,Gao, Chunyun,Li, Hu,Wang, Ligang,Qiu, Jianjun,Gao, Maofang,Gao, Chunyun,Li, Hu,Wang, Ligang,Qiu, Jianjun,Gao, Maofang,Gao, Chunyun,Li, Changsheng. 2014

[3]GIS-model based estimation of nitrogen leaching from croplands of China. Qiu, Jianjun,Li, Hu,Wang, Ligang,Tang, Huajun,Li, Changsheng,Van Ranst, Eric.

[4]Estimations of soil organic carbon storage in cropland of China based on DNDC model. Tang, Huajun,Qiu, Jianjun,Van Ranst, Eric,Li, Changsheng. 2006

[5]Modeling the Impacts of Soil Organic Carbon Content of Croplands on Crop Yields in China. Qiu Jian-jun,Wang Li-gang,Li Hu,Tang Hua-jun,Li Chang-sheng,Van Ranst, Eric. 2009

[6]Exploring management strategies to improve yield and mitigate nitrate leaching in a typical radish field in northern China. Zhang J.,He W.,Smith W.N.,Grant B.B.,Ding W.,Jiang R.,Zou G.,Chen Y.,He P.. 2021

[7]Estimating The Impacts Of Climate C.hange On Crop Yields A nd N2O Emissions For Conventional And No-Tillage In Southwestern Ontario, Canada. He, WT, Yang, JY, Drury, CF, Smith, WN, Grant, BB, He, P, Qian, B, Zhou, W, Hoogenboom, G. 2018

[8]Exploring Management Strategies To Improve Maize Yield And Nitrogen Use Efficiency In Northeast China Using The Dndc And Dssat Models. Jiang, R, He, WT, Zhou, W, Hou, YP, Yang, JY, He, P. 2019

[9]Using dndc and whcns_veg to optimize management strategies for improving potato yield and nitrogen use efficiency in Northwest China. Lingling Jiang,Wentian He,Rong Jiang,Jun Zhang,Yu Duan,Ping He. 2021

[10]Modeling nitrogen transport and leaching process in a greenhouse vegetable field [设施菜地土壤氮素运移及淋溶损失模拟评价]. Lei H.,Li G.,Ding W.,Xu C.,Wang H.,Li H.. 2021

[11]Modeling nitrogen transport and leaching process in a greenhouse vegetable field [设施菜地土壤氮素运移及淋溶损失模拟评价]. Lei H.,Li G.,Ding W.,Xu C.,Wang H.,Li H.. 2021

[12]Soil Organic Carbon Storage in Australian Wheat Cropping Systems in Response to Climate Change from 1990 to 2060. Li Q.,Gao M.,Li Z.-L.. 2022

[13]Modelling adaptation measures to improve maize production and reduce soil N2O emissions under climate change in Northeast China. Fan D.,Song D.,Jiang R.,He P.,Shi Y.,Pan Z.,Zou G.,He W.. 2024

[14]Opportunities or Risks: Economic Impacts of Climate Change on Crop Structure Adjustment in Ecologically Vulnerable Regions in China. Mingying Ma,Delin Huang,Syed Shoyeb Hossain. 2023

[15]Exploring management strategies to improve yields and reduce reactive nitrogen emissions in a summer maize-winter wheat cropping system under long-term climate variability. Shaohui Huang,Junfang Yang,Suli Xing,Wenfang Yang,Yunma Yang,Liangliang Jia,Ping He. 2024

[16]Effects of the long-term rice expansion on ecosystem carbon budget in the typical agricultural area of Northeast China. Fen Zhao,Peng Yang,Qingzhu Gao,Lang Xia,Lingling Fan,Mengmeng Hu. 2024

作者其他论文 更多>>