数字农科院2.0

Co-Culture Of Rice And Aquatic Animals: An Integrated System To Achieve Production And Environmental Sustainability

文献类型: 外文期刊

作者: Bashir, MA; Liu, J; Geng, YC; Wang, HY; Pan, JT; Zhang, D; Rehim, A; Aon, M; Liu, HB

作者机构:

关键词: Rice-Animal Co-Culture; Sustainability; N Loss In Paddy Field; Ghg Emission; Rice Production; Aquaculture

期刊名称: JOURNAL OF CLEANER PRODUCTION

ISSN: 0959-6526

年卷期: 2020 年 249 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: Rice (Oryza sativa L.) is a staple food for three billion people and paddy fields contribute greatly to greenhouse gases (GHG) emission and environmental nitrogen losses. Rice paddies need to be managed in a novel and sustainable way to promote production. Here, we critically review the potential benefits and constrains of a novel rice production system, the co-culture of rice and aquatic animals. The review helps to answer important questions: how would the co-culture affect farm profitability, water quality, and GHG emission? What are the major benefits and constraints for adopting the co-culture system? The review revealed that rice-animal co-culture provided ecological, economic, and social benefits such as increasing farm productivity and greater resource utilization efficiencies, and that the system could increase biodiversity, improve water and soil quality, and reduce GHG emissions. However, despite its potential benefits, the adoption of the system has been constrained by the lack of science-based extension programs and the farmers' concerns over drought-related production risks. Moreover, misusing the system by adopting unpractically high culture density (high animal feed input) and/or in undesirable field conditions may lead to deteriorating water quality and lowering farm profitability. The review suggests that more research is needed to evaluate the impacts of the rice-animal co-culture system under variable climate and field conditions and to identify factors controlling their negative impacts. Furthermore, a strong extension program, with policy and technological guidance from the government and non-governmental organizations, is needed to achieve the wide adoption of the co-culture practice. (C) 2019 Elsevier Ltd. All rights reserved.

分类号:

  • 相关文献

[1]Optimal Coupling Of Straw And S.ynthetic Fertilizers Incorporation On S oil Properties, Active Fe Dynamics, And Greenhouse Gas Emission In Jasminum Sambac (L.) Field In Southeastern China. Wang, C, Min, QW, Abid, AA, Sardans, J, Wu, HH, Lai, DYF, Penuelas, J, Wang, WQ. 2019

[2]Impact Of Rice-Catfish/Shrimp Co-Culture On N.utrients Fluxes Across Sediment-Water I nterface In Intensive Aquaculture Ponds. Qin Lin,Ji Long,Zhou Xiyue,Xu Chunchun,Li Fengbo,Fang Fuping,Liu Yaobin,Feng Jinfei,Li Fengbo,Chen Zhongdu. 2019

[3]Impact Of Rice-Catfish/Shrimp Co-Culture On Nutrients Fluxes Across Sediment-Water I nterface In Intensive Aquaculture Ponds. Liu, YB, Qin, L, Li, FB, Zhou, XY, Xu, CC, Ji, L, Chen, ZD, Feng, JF, Fang, FP. 2019

[4]Modeling Climate Change Impacts On Rice Growth And Yield Under Global Warming Of 1.5 And 2.0 Degrees C In The Pearl River Delta, China. Guo, Yahui,Bryant, Christopher Robin,Wu, Wenxiang,Liu, Xiaoxuan,Wu, Wenxiang,Guo, Yahui,Bryant, Christopher Robin,Liu, Xiaoxuan,Du, Mingzhu,Guo, Yahui,Wang, Jingzhe. 2019

[5]Contribution Of Rice Variety Renewal And Agronomic Innovations To Yield Improvement And Greenhouse Gas Mitigation In China. Zhang, Y, Jiang, Y, Tai, APK, Feng, JF, Li, ZJ, Zhu, XC, Chen, J, Zhang, J, Song, ZW, Deng, AX, Lal, R, Zhang, WJ. 2019

[6]Rice Production And Climate Change I.n Northeast China: Evidence O f Adaptation Through Land Use Shifts. Hu, YN, Fan, LL, Liu, ZH, Yu, QY, Liang, SF, Chen, S, You, LZ, Wu, WB, Yang, P. 2019

[7]Technical efficiency of chemical fertilizer use and its influencing factors in china’s rice production. Sun Zhilu,Li Xiande. 2021

[8]Impact of fertilization schemes with different ratios of urea to controlled release nitrogen fertilizer on environmental sustainability, nitrogen use efficiency and economic benefit of rice production: A study case from Southwest China. Yanfeng Lyu,Xiangdong Yang,Hengyu Pan,Xiaohong Zhang,Haoxing Cao,Sergio Ulgiati,Jun Wu,Yanzong Zhang,Guiyin Wang,Yinlong Xiao. 2021

[9]Responses Of Indica Rice Yield A.nd Quality To Extreme H igh And Low Temperatures During The Reproductive Period. Siddik, MA, Zhang, J, Chen, J, Qian, HY, Jiang, Y, Raheem, AK, Deng, AX, Song, ZW, Zheng, CY, Zhang, WJ. 2019

[10]Small Hydropower Development In Tibet: I.nsights From A Survey I n Nagqu Prefecture. Zhang, Lixiao,Xu, Kaipeng,Wang, Changbo,Pang, Mingyue,Wang, Changbo,Bahaj, AbuBakr S.,Hao, Yan. 2018

[11]Social-Optimal Household Food Waste: Taxes A.nd Government Incentives. Katare, B, Serebrennikov, D, Wang, HH, Wetzstein, M. 2017

[12]Challenges And Responses To Ongoing A.nd Projected Climate Change F or Dryland Cereal Production Systems Throughout The World. O'Leary, GJ, Aggarwal, PK, Calderini, DF, Connor, DJ, Craufurd, P, Eigenbrode, SD, Han, X, Hatfield, JL. 2018

[13]A Review Of Agricultural Technology Transfer In Africa: Lessons From Japan And China Case Projects In Tanzania And Kenya. Mgendi, G, Mao, SP, Xiang, C. 2019

[14]The potential of dairy manure and sewage management pathways towards a circular economy: A meta-analysis from the life cycle perspective. Junyan Zhang,Mengmeng Wang,Changbin Yin,Thomas Dogot. 2021

[15]Policies And Regulations For Promoting Manure Management For Sustainable Livestock Production In China: A Review. Wei Sha,Zhu Zhiping,Zhao Jing,Chadwick David R.,Dong Hongmin. 2021

[16]Performance comparison of cement production before and after implementing heat recovery power generation based on emergy analysis and economic evaluation: A case from China. Xiaohong Zhang,Ni Xiang,Hengyu Pan,Xiangdong Yang,Jun Wu,Yanzong Zhang,Hongbing Luo,Changlian Xu. 2021

[17]Prospects For The Sustainability Of S.ocial-Ecological Systems (Ses) On T he Mongolian Plateau: Five Critical Issues. Chen, JQ, John, R, Sun, G, Fan, PL, Henebry, GM, Fernandez-Gimenez, ME, Zhang, YQ, Park, H, Tian, L, Groisman, P, Ouyang, ZT, Allington, G, Wu, JG, Shao, CL, Amarjargal, A, Dong, G, Gutman, G, Huettmann, F, Lafortezza, R, Crank, C, Qi, JG. 2018

[18]An Emergy Evaluation Of The S.ewage Sludge Treatment System W ith Earthworm Compositing Technology In Chengdu, China. Zhang, XH, Xiang, N, Wang, WL, Liao, WJ, Yang, XD, Shui, W, Wu, J, Deng, SH. 2018

[19]Agriculture And Crop Science In C.hina: Innovation And Sustainability. Xu, YB, Li, JY, Wan, JM. 2017

[20]Agriculture and crop science in China: Innovation and sustainability. Yunbi Xu,,Jiayang Li,,Jianmin Wan. 2017

作者其他论文 更多>>