Trends and spatial variation in water and land footprints of meat and milk production systems in Kenya

被引:52
作者
Bosire, Caroline K. [1 ,3 ]
Ogutu, Joseph O. [4 ]
Said, Mohammed Y. [3 ]
Krol, Maarten S. [1 ]
de Leeuw, Jan [2 ]
Hoekstra, Arjen Y. [1 ]
机构
[1] Univ Twente, Twente Water Ctr, NL-7522 AE Enschede, Netherlands
[2] World AgroforestryCtr ICRAF, Nairobi 00100, Kenya
[3] ILRI, Nairobi 00100, Kenya
[4] Univ Hohenheim, Inst Crop Sci, Bioinformat Unit, D-70599 Stuttgart, Germany
关键词
Water footprint; Land footprint; Livestock production; Meat and milk; Kenya; ECOLOGICAL FOOTPRINT; CATTLE PRODUCTION; METHODOLOGY; CAPACITY; AUSTRIA; AFRICA; DEMAND; GREEN; BLUE;
D O I
10.1016/j.agee.2015.02.015
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Global consumption of livestock products is increasing steadily due to human population growth, poverty reduction and dietary changes raising the demand for already scarce freshwater and land resources. Here, we analyze the changes associated with direct and indirect use of freshwater and land for meat and milk production in three production systems in Kenya between the 1980s and 2000s. We use two resource use indicators, the water footprint (m(3)/year) and land footprint (ha), to assess changes in freshwater and land use for cattle, goats, sheep and camels in arid, semi-arid and humid production systems. We estimate actual water and land use using Kenya-wide data for yields, feed composition and feed conversion efficiencies. Our results show that the amounts of freshwater and land resources used for production are determined mainly by production volumes and feed conversion efficiencies. Total water and land footprints of milk production increased for goats, sheep and camels but decreased by half for cattle in arid and semi-arid production systems, in correspondence with similar changes in the total numbers of each livestock species. Green water and grazing land footprints dominated in all production systems due to the predominance of indirect use of water to support forage production. The per unit meat footprint for cattle increased significantly between the 1980s and 2000s in all production systems, due to adverse trends in feed conversion efficiency, while changes in the water and land footprints of other animal products were small, due to modest changes in all influencing factors. In contrast, national average footprints per unit of beef and milk show a modest decrease due to a relative shift of production to the more resource-efficient humid production system. Given the potential increase in demand for livestock products and limited freshwater and land availability, feed conversion efficiencies should be improved by rehabilitating degraded rangelands, adopting improved breeds and using appropriate feed composition. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:36 / 47
页数:12
相关论文
共 63 条
[1]  
[Anonymous], 2002, COMMUNITY BASED ANIM
[2]  
[Anonymous], 2010, E AFR DAIR DEV PROJ
[3]  
[Anonymous], 2010, GREEN BLUE GREY WATE
[4]  
Bac D, 2011, ACTUAL PROBL ECON, P281
[5]   Smallholder dairy systems in the Kenya highlands: cattle population dynamics under increasing intensification [J].
Bebe, BO ;
Udo, HMJ ;
Rowlands, GJ ;
Thorpe, W .
LIVESTOCK PRODUCTION SCIENCE, 2003, 82 (2-3) :211-221
[6]  
Behnke Roy., 2011, The Contribution of Livestock to the Kenyan Economy
[7]  
Bertzky B., 2012, PROTECTED PLANET REP
[8]   Accounting for demand and supply of the biosphere's regenerative capacity: The National Footprint Accounts' underlying methodology and framework [J].
Borucke, Michael ;
Moore, David ;
Cranston, Gemma ;
Gracey, Kyle ;
Iha, Katsunori ;
Larson, Joy ;
Lazarus, Elias ;
Morales, Juan Carlos ;
Wackernagel, Mathis ;
Galli, Alessandro .
ECOLOGICAL INDICATORS, 2013, 24 :518-533
[9]   Exploring changes in world ruminant production systems [J].
Bouwman, AF ;
Van der Hoek, KW ;
Eickhout, B ;
Soenario, I .
AGRICULTURAL SYSTEMS, 2005, 84 (02) :121-153
[10]   Multiple methods in the study of driving forces of land use and land cover change: A case study of SE Kajiado District, Kenya [J].
Campbell, DJ ;
Lusch, DP ;
Smucker, TA ;
Wangui, EE .
HUMAN ECOLOGY, 2005, 33 (06) :763-794