Exploiting Co-Benefits of Increased Rice Production and Reduced Greenhouse Gas Emission through Optimized Crop and Soil Management
文献类型: 外文期刊
第一作者: Fan, Mingsheng
作者: Fan, Mingsheng;Zhang, Fusuo;Christie, Peter;Jiang, Rongfeng;Yang, Jianchang;Huang, Jianliang;Guo, Shiwei;Shi, Xiaojun;Tang, Qiyuan;Peng, Jianwei;Zhong, Xuhua;Sun, Yixiang;Lv, Shihua;Dobermann, Achim
作者机构:
期刊名称:PLOS ONE ( 影响因子:3.24; 五年影响因子:3.788 )
ISSN: 1932-6203
年卷期: 2015 年 10 卷 10 期
页码:
收录情况: SCI
摘要: Meeting the future food security challenge without further sacrificing environmental integrity requires transformative changes in managing the key biophysical determinants of increasing agronomic productivity and reducing the environmental footprint. Here, we focus on Chinese rice production and quantitatively address this concern by conducting 403 on-farm trials across diverse rice farming systems. Inherent soil productivity, management practices and rice farming type resulted in confounded and interactive effects on yield, yield gaps and greenhouse gas (GHG) emissions (N2O, CH4 and CO2-equivalent) with both trade-offs and compensating effects. Advances in nitrogen, water and crop management (Best Management Practices-BMPs) helped closing existing yield gaps and resulted in a substantial reduction in CO2-equivalent emission of rice farming despite a tradeoff of increase N2O emission. However, inherent soil properties limited rice yields to a larger extent than previously known. Cultivating inherently better soil also led to lower GHG intensity (GHG emissions per unit yield). Neither adopting BMPs only nor improving soils with low or moderate productivity alone can adequately address the challenge of substantially increasing rice production while reducing the environmental footprint. A combination of both represents the most efficient strategy to harness the combined-benefits of enhanced production and mitigating climate change. Extrapolating from our farm data, this strategy could increase rice production in China by 18%, which would meet the demand for direct human consumption of rice by 2030. It would also reduce fertilizer nitrogen consumption by 22% and decrease CO2-equivalent emissions during the rice growing period by 7% compared with current farming practice continues. Benefits vary by rice-based cropping systems. Single rice systems have the largest food provision benefits due to its wider yield gap and total cultivated area, whereas double-rice system (especially late rice) contributes primarily to reducing GHG emissions. The study therefore provides farm-based evidence for feasible, practical approaches towards achieving realistic food security and environmental quality targets at a national scale.
分类号:
- 相关文献
作者其他论文 更多>>
-
Manure application maintained the CO2 fixation activity of soil autotrophic bacteria but changed its ecological characteristics in an entisol of China
作者:Wei, Wanling;Shi, Xiaojun;Wang, Mingxia;Zhou, Zhifeng;Shi, Xiaojun;Wei, Wanling
关键词:Manure application; RubisCO activity; cbbl abundance; Community ofcbbl-carrying bacteria
-
Effects of plant tissue permeability on invasion and population bottlenecks of a phytopathogen
作者:Jiang, Gaofei;Shi, Xiaojun;Chen, Xinping;Ding, Wei;Zhang, Yong;Jiang, Gaofei;Zhang, Yuling;Jousset, Alexandre;Zhao, Fang-Jie;Xu, Yangchun;Shen, Qirong;Wei, Zhong;Chen, Min;Zhang, Yong;Ramoneda, Josep;Han, Liangliang;Shi, Yu;Peyraud, Remi;Wang, Yikui;Hikichi, Yasufumi;Ohnishi, Kouhei;Dini-Andreote, Francisco;Dini-Andreote, Francisco;Dini-Andreote, Francisco
关键词:
-
Major drivers of soil acidification over 30 years differ in paddy and upland soils in China
作者:Xu, Donghao;Ros, Gerard H.;de Vries, Wim;Xu, Donghao;Zhu, Qichao;Zhang, Fusuo;Xu, Minggang;Wen, Shilin;Cai, Zejiang
关键词:Paddy; Upland; Soil acidification; Agricultural management
-
Natural Contamination of Rice with Ustiloxins and the Connection with Climate Conditions in Southern China
作者:Miao, Xuexue;Zheng, Huabin;Tang, Qiyuan;Miao, Xuexue;Tao, Shuhua;Kuang, Na;Wang, Jiemin;Miao, Ying;Liu, Yang
关键词:ustiloxins; rice; LC-MS/MS; agroclimatic conditions; food safety
-
Influence of different substrates on bacterial communities in coral reefs and surrounding environments of a coastal bay
作者:Wu, Peng;Wu, Peng;Shi, Xiaojun;Xiong, Xiaofei;Zhang, Jinghuai;Wu, Peng;Shi, Xiaojun;Xiong, Xiaofei;Zhang, Jinghuai;Shi, Xiaojun;Xiong, Xiaofei;Zhang, Jinghuai
关键词:Bacterial community; Core bacteria; Coastal sea; Environmental factor; Substrate type
-
Co-benefits for net carbon emissions and rice yields through improved management of organic nitrogen and water
作者:Liu, Bin;Guo, Chaoyi;Xu, Jie;Wang, Xiaozhong;Zhao, Huanyu;Fang, Linfa;Shi, Xiaojun;Chen, Xinping;Li, Zhaolei;Liu, Bin;Guo, Chaoyi;Xu, Jie;Lakshmanan, Prakash;Wang, Xiaozhong;Zhao, Huanyu;Fang, Linfa;Li, Shiyang;Ma, Lin;Shi, Xiaojun;Zhang, Fusuo;Chen, Xinping;Li, Zhaolei;Liu, Bin;Zhao, Qingyue;Guan, Xilin;Chen, Xuanjing;Cui, Zhenling;Zhang, Fusuo;Chadwick, David;Gao, Xiaopeng;Zhou, Feng;Lakshmanan, Prakash;Lakshmanan, Prakash;Bai, Zhaohai;Ma, Lin;Chen, Xinping;Li, Zhaolei
关键词:
-
Organic waste recycling for green and sustainable nitrogen management of fruit production systems in China
作者:Wang, Jiale;Lali, Mohammad Naeem;Xiong, Huaye;Wang, Yuheng;Zhao, Li;Wang, Xiaozhong;Shi, Xiaojun;Zhang, Yueqiang;Wang, Jiale;Xiong, Huaye;Wang, Yuheng;Zhao, Li;Wang, Xiaozhong;Shi, Xiaojun;Lakshmanan, Prakash;Zhang, Yueqiang;Lali, Mohammad Naeem;Dong, Zhihao;Zhao, Jingkun;Shi, Xiaojun;Zhang, Yueqiang;Shi, Xiaojun;Zhang, Yueqiang;Lakshmanan, Prakash;Lakshmanan, Prakash
关键词:Organic fertilizer; Fruit; Yield; Fruit quality; Soil quality; Meta-analysis