Organic dairy farming in developing countries

Author(s):  
Gidi Smolders ◽  
◽  
Mette Vaarst ◽  
2016 ◽  
Vol 32 (2) ◽  
pp. 133-143 ◽  
Author(s):  
Denis Kucevic ◽  
Snezana Trivunovic ◽  
Vladan Bogdanovic ◽  
Ksenija Cobanovic ◽  
Dobrila Jankovic ◽  
...  

Possible differences between composition of raw milk due to dairy farming system (organic vs conventional) as well as seasonal variations were investigated. The samples were analysed during one year. A total of 6.782 samples of raw milk were collected (4.496 from organic farming). Dairy farms were located in the northern part of Republic of Serbia (Province of Vojvodina). The principle of analysis of raw milk samples was in accordance with the methodology by midinfrared spectrometry and flow cytometry. The fixed effect of system of farming and season (winter, spring, summer and fall) have shown a high statistical significance (P < 0.01) on all examined milk parameters except fat, total solids and somatic cell count, where the impact was slightly lower (P < 0.05). Significant difference wasn't found in number of bacterial colonies (P > 0.05). Composition of milk is also affected by a number of other factors, therefore it is recommended to involve factors such as nutrition of dairy cows, breed and farm management.


2017 ◽  
Author(s):  
John Moran ◽  
Philip Chamberlain

Blueprints for Tropical Dairy Farming provides insight into the logistics, infrastructure and management required for the development of small and large dairy farms in tropical developing countries. Farmers will learn how to improve the welfare, milk quality and productivity of their dairy herds. This book complements author John Moran’s five previous books on the principles of tropical dairy farming. The manual covers a wide range of topics related to ensuring the sustainability of dairy production systems in tropical developing countries, such as South and East Asia, Africa and Central America. It also provides guidelines for the best management practices of large-scale, more intensive dairy systems. While smallholder farms are the major suppliers of milk in the tropics, many larger farms are becoming established throughout the tropics to satisfy the increasing demands for fresh milk. Blueprints for Tropical Dairy Farming will be a valuable resource for farmers and stockpeople who want to improve the productive performance of their dairy herds, farm advisers who can assist farmers to achieve this aim, educators who develop training programs for farmers or who train dairy advisers in the basics of dairy production technology, and other stakeholders in tropical dairy production, such as local agribusiness, policy makers and research scientists. National and international agencies will learn new insights into the required long-term logistics for regional dairy development, while potential investors will acquire knowledge into intensive tropical dairy farming.


2007 ◽  
Vol 94 (2) ◽  
pp. 205-219 ◽  
Author(s):  
K.J. van Calker ◽  
P.B.M. Berentsen ◽  
I.J.M. de Boer ◽  
G.W.J. Giesen ◽  
R.B.M. Huirne

2007 ◽  
Vol 22 (3) ◽  
pp. 223-232 ◽  
Author(s):  
G. Haas ◽  
C. Deittert ◽  
U. Köpke

AbstractOrganic farms are characterized as low external input agro-ecosystems. Currently, some organic dairy farmers feed higher amounts of concentrates and succulent feed, some of which is purchased, to increase the dairy performance of their cows. To assess the environmental impact of this practice, nutrient balances at the farm-gate level of 26 organic dairy farms located in two different regions in Germany were compiled and analysed. The farms are characterized by different production features and feeding intensity levels [0–2.72 t dry matter (DM) of concentrates per cow and year, which was 0–378 g kg−1 milk] yielding 5150–8790 kg milk on average per cow and year. The area- and product (milk)-related farm-gate nutrient budgets for P and K are almost balanced [mean −3 kg P ha−1, range (R): −14 to 4 kg P ha−1; −0.5 g P kg−1 milk, R: −2.8 to 0.9 g P kg−1 milk and 1 kg K ha−1, R: −13 to 15 kg K ha−1; 0.1 g K kg−1 milk, R: −2.4 to 3.9 g K kg−1 milk]. The N surplus averages only 43 kg ha−1 (R: 8–85 kg N ha−1) and 8.2 g kg−1 milk (R: 2.1–17.1 g kg−1 milk), but the correlation between the amount of feed purchased on a net basis and N surplus is significant (r=0.56, P=0.003). Average area-related nutrient use efficiency for all farms calculated as the proportion of input to output is high for N (45%), P (164%) and K (91%). The share of nutrient input and output components and correlations between parameters are presented. To classify the results, investigations comparing organic and conventional dairy farming in Europe are listed, indicating an N surplus for organic farms, which is often only half or a third of the surplus of conventional farms. However, intensification in organic dairy farming has, in some cases, significant impacts that need to be assessed to determine its environmental performance and profile.


In Practice ◽  
2012 ◽  
Vol 34 (8) ◽  
pp. 446-453 ◽  
Author(s):  
Alastair Hayton

Author(s):  
Saikat Maji ◽  
B. S. Meena ◽  
Pampi Paul ◽  
Vishwatej Rudroju

Dairy farming has the potential for providing additional income to the farmers along with achieving major goal of organic farming i.e. diversified production and supporting biological cycle within farming system. India presently is the largest producer of milk in world supported by an astonishing growth rate in dairy sector. Apart from this due to increasing consumer awareness there has been an increased concern voiced over quality of milk and milk products including contamination, pollutant and the residual effect of various chemicals. Interest inorganic dairy farming is increasing at rapid pace worldwide as an alternative solution. Recent years have seen a sharp rise in demand of organic milk and milk products. Under Indian condition, rapid spread of organic dairy farming is possible because of some key geographical, cultural and economic advantages like traditional nature of farming and indigenous technical knowledge and practices followed by Indian farmers etc. But prevalence of small dairy farmers also poses many challenges for faster proliferation of organic dairy farming along with some other shortcomings. Present article provide some insight on strengths, weaknesses opportunities and threats of organic dairy farming in the country along with some potential ways to overcome these weaknesses and threats.


2005 ◽  
Vol 53 (1) ◽  
pp. 19-34 ◽  
Author(s):  
W.J. Nauta ◽  
A.F. Groen ◽  
R.F. Veerkamp ◽  
D. Roep ◽  
T. Baars

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