Implications of no-tillage versus soil preparation on sustainability of agricultural production

被引:0
作者
Derpsch, R [1 ]
Moriya, K [1 ]
机构
[1] Deutsch Gesell Tech Zusammenarbeit GmbH, Soil Conservat Project, Asuncion, Paraguay
来源
TOWARDS SUSTAINABLE LAND USE, VOLS I & II: FURTHERING COOPERATION BETWEEN PEOPLE AND INSTITUTIONS | 1998年 / 31卷
关键词
no-tillage; tillage and soil degradation; soil quality; agricultural sustainability; erosion; organic matter; tropical agriculture;
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The key problem of tropical agriculture is the steady decline in soil fertility, which is closely correlated to duration of soil use. This is due primarily to soil erosion and the loss of organic matter associated with conventional tillage practices, that leave the soil base and unprotected in times of heavy rainfall and heat. The implications of soil preparation on soil erosion and the sustainability of agricultural production was studied with special reference to experience and projects carried out in Paraguay, Brazil and Argentina under tropical and subtropical conditions. Scientific data show that under tropical and subtropical conditions, tillage generally has a detrimental effect on chemical, physical and biological soil properties. Investigations also show that erosion damage is enhanced when the soil is bare. Water infiltration rates are increased and consequently erosion is reduced when mulch covers the soil in a no-tillage system. Tillage also. releases considerable amounts of CO2 into the atmosphere contributing to global warming. In order, to achieve sustainable agriculture in the tropics and avoid global warming, soil tillage has to be reduced to a minimum or avoided completely and the soil has to stay as long as possible covered with mulches, sod and growing crops. No-tillage in mulches of previous crops or green manures in combination with adequate crop rotations is the production system of the future if sustainable agriculture is to be achieved.
引用
收藏
页码:1179 / 1186
页数:4
相关论文
共 50 条
[31]   Soil structural quality restoration by no-tillage system of a Hapludalf [J].
Flores, Carlos Alberto ;
Reinert, Dalvan Jose ;
Reichert, Jose Miguel ;
Albuquerque, Jackson Adriano ;
Pauletto, Eloy Antonio .
CIENCIA RURAL, 2008, 38 (08) :2164-2172
[32]   Impact of no-tillage agricultural systems on sediment yield in two large catchments in Southern Brazil [J].
Didone, Elizeu Jonas ;
Gomes Minella, Jean Paolo ;
Reichert, Jose Miguel ;
Merten, Gustavo Henrique ;
Dalbianco, Leandro ;
Peixoto de Barrros, Claudia Alessandra ;
Ramon, Rafael .
JOURNAL OF SOILS AND SEDIMENTS, 2014, 14 (07) :1287-1297
[33]   Mitigation of clayey soil compaction managed under no-tillage [J].
Nunes, Marcio Renato ;
Denardin, Jose Eloir ;
Pauletto, Eloy Antonio ;
Faganello, Antonio ;
Spinelli Pinto, Luiz Fernando .
SOIL & TILLAGE RESEARCH, 2015, 148 :119-126
[34]   MODELLING OF SOIL PENETRATION RESISTANCE FOR AN OXISOL UNDER NO-TILLAGE [J].
Tavares Fiho, Joao ;
Matsuda Feltran, Clarissa Tieme ;
de Oliveira, Jose Francirlei ;
de Almeida, Edinei .
REVISTA BRASILEIRA DE CIENCIA DO SOLO, 2012, 36 (01) :89-95
[35]   Terracing increases soil available water to plants in no-tillage [J].
Freitas, Letieri da Rosa ;
Gubiani, Paulo Ivonir ;
Mulazzani, Rodrigo Pivoto ;
Minella, Jean Paolo Gomes ;
Londero, Ana Lucia .
REVISTA BRASILEIRA DE CIENCIA DO SOLO, 2021, 45
[36]   DEEP, SHALLOW AND NO-TILLAGE EFFECTS ON SOIL COMPACTION PARAMETERS [J].
Sarauskis, Egidijus ;
Buragiene, Sidona ;
Romaneckas, Kestutis ;
Masilionyte, Laura ;
Kriauciuniene, Zita ;
Sakalauskas, Antanas ;
Jasinskas, Algirdas ;
Karayel, Davut .
13TH INTERNATIONAL SCIENTIFIC CONFERENCE ON ENGINEERING FOR RURAL DEVELOPMENT, 2014, :31-36
[37]   Effect of No-tillage on Soil Aggregates in Farmland:A Meta Analysis [J].
Xu Y.-P. ;
Rao Y.-Y. ;
Meng Y. ;
Wen Y. ;
Meng W.-W. ;
Wang X.-Q. ;
Li Z.-X. ;
Liu K.-C. ;
Dai H.-C. .
Huanjing Kexue/Environmental Science, 2024, 45 (02) :952-960
[38]   NO-TILLAGE IMPACTS ON SOIL ORGANIC CARBON IN A BLACK SOIL IN NORTHEAST CHINA [J].
Chen, Xuewen ;
Shi, Xiuhuan ;
Zhang, Xiaoping ;
Liang, Aizhen ;
Jia, Shuxia ;
Fan, Ruqin ;
Wei, Shoucai .
FRESENIUS ENVIRONMENTAL BULLETIN, 2011, 20 (12) :3199-3205
[39]   Impact of no-tillage agricultural systems on sediment yield in two large catchments in Southern Brazil [J].
Elizeu Jonas Didoné ;
Jean Paolo Gomes Minella ;
José Miguel Reichert ;
Gustavo Henrique Merten ;
Leandro Dalbianco ;
Cláudia Alessandra Peixoto de Barrros ;
Rafael Ramon .
Journal of Soils and Sediments, 2014, 14 :1287-1297
[40]   No-tillage mulch with green manure retention can mitigate carbon emissions, increase crop productivity, and promote agricultural sustainability [J].
Wang, Yulong ;
Yu, Aizhong ;
Lyu, Hanqiang ;
Shang, Yongpan ;
Wang, Pengfei ;
Wang, Feng ;
Yang, Xuehui ;
Yin, Bo ;
Liu, Yalong ;
Zhang, Dongling ;
Chai, Qiang .
EUROPEAN JOURNAL OF AGRONOMY, 2024, 161