SlideShare une entreprise Scribd logo
1  sur  23
Ograniczenie emisji CO2 w
rolnictwie.
Reduction of CO2 emissions in agriculture.
Nowadays farmers have to protect the ecosystem.
He has to be a landscape engineer.
I represent a farm witch has 250 year tradition.
My ancestors started farming there in 1785.
Therefore we need to think about future generations
Crop structure on our farm.
95 hectare

250 hectare

Corn

175 hectare

Canola
Wheat
It is hilly, undulating area with very good
loess soil.
There is a risk of water erosion.
Taken from: http://www.fao.org/docrep/006/y5146e/y5146e08.htm
Considering one hectare of land we should farm as
much as it is necessary and as little as it is possible.

This type of farming, protect soil from water
erosion and acumulate water.
Taken from: Anna Cudzik, Włodzimierz Białczyk, Jarosław Czarnecki, Marek Brennensthul, Adam
Kaus, ANALIZA WYBRANYCH WŁAŚCIWOŚCI GLEBY W RÓŻNYCH TECHNOLOGIACH
UPRAWY, Inżynieria Rolnicza 4(129)/2011
0-20 cm
N,P + Ca

N,P,K

20-35 cm
N,P,K +
microelements
+
CaO + MgO

Plow pan

Air canal
This leads us to the conclusion that
new, innovative, ecologically friendly technologies
enable farmers to lead intensive corn production and
sustainable farming.
Fertilizers application in big depth partly reduces
drought, because roots in this type of farming are
longer and the surface drought doesn’t stop the plant
from nutrients uptake.
We have decided to use strip tillage method for
rape, corn, soya and wheat (two stages of
cultivation).
Our farm has 520 hectares of land, our tractors have
870HP altogether, what gives 1,7 HP per hectare,
and that is enough to farm 800 hectares of land.
Rodzaj
uprawki,
wydajność ha/h

Rodzaj nakładu

Wysiew
nawozów na
ściernisko 12
ha/h

Praca ciągnika i
rozsiewacza
Zużycie paliwa

Talerzowanie
roli 5 ha/h
Orka siewna 2,2
ha/h
Siew zestawem
uprawowo siewnym 4 ha/h

Razem:

Nakład
bezpośredni
na 1 ha

Nakład energii
( MJ ) na
1 h pracy

1 ha

5 min

155,0
-

36,0

Robocizna

5 min

80,0

6,7

Praca ciągnika i talerzówki
Zużycie paliwa
Robocizna
Praca ciągnika i pługa
Zużycie paliwa
Robocizna
Praca ciągnika i agregatu
uprawowo - siewnego

12 min
6 l/ha
12 min
27 min
18 l/ha
27 min

450,7
80,0
251,2
80,0

90,1
240,0
16,0
113,0
720,0
36,0

15 min

588,5

9 l/ha
15 min

80,0

360,0
20,0

Rodzaj
nakładu

Nakład
bezpośredni
na 1 ha

Nakład energii
(MJ ) na

Razem
nakłady
energii
MJ/ha

147,1

Zużycie paliwa
Robocizna/labour

Rodzaj
uprawki,
wydajność ha/h

12,9

0,9 l/ha

Razem
nakłady
energii
MJ/ha

1 h pracy

60 min
34 l/ha

346,1

869,0

( Strip - Till )
gleby
kombajnem
uprawowo siewnym,
wysiew nawozów
N, P, K i
mikroelementów,
siew nasion

Praca
ciągnika i
kombajnu
uprawowo siewnego

Zużycie
paliwa/ fuel
consumption

20 min

409,8

163,9

13 l/ha

-

520,0

20 min

Uprawa pasowa
55,6

1 ha

66,6

26,6

710,5

Robocizna/la
bour

527,1

1797,8

N,P,K
0-20 cm
N,P + Ca
20-35 cm
N,P,K +
microeleme
nts +
CaO + MgO

Plow pan

Air canal
Thank you for your attention.

Contenu connexe

Plus de CIFOR-ICRAF

Exploitation minière artisanale, moyens de subsistance et déforestation dans ...
Exploitation minière artisanale, moyens de subsistance et déforestation dans ...Exploitation minière artisanale, moyens de subsistance et déforestation dans ...
Exploitation minière artisanale, moyens de subsistance et déforestation dans ...CIFOR-ICRAF
 
Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...
Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...
Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...CIFOR-ICRAF
 
Industries miniéres et justice climatique en Afrique centrale : étude de droi...
Industries miniéres et justice climatique en Afrique centrale : étude de droi...Industries miniéres et justice climatique en Afrique centrale : étude de droi...
Industries miniéres et justice climatique en Afrique centrale : étude de droi...CIFOR-ICRAF
 
Enjeux de la future politique forestière de la République Démocratique du Congo
Enjeux de la future politique forestière de la République Démocratique du CongoEnjeux de la future politique forestière de la République Démocratique du Congo
Enjeux de la future politique forestière de la République Démocratique du CongoCIFOR-ICRAF
 
Incentive Scheme for Smallholders
Incentive Scheme for Smallholders Incentive Scheme for Smallholders
Incentive Scheme for Smallholders CIFOR-ICRAF
 
Capacity Building in oil palm trade and sustainability
Capacity Building in oil palm trade and sustainabilityCapacity Building in oil palm trade and sustainability
Capacity Building in oil palm trade and sustainabilityCIFOR-ICRAF
 
Monitoring songbirds' online market
Monitoring songbirds' online market Monitoring songbirds' online market
Monitoring songbirds' online market CIFOR-ICRAF
 
Supporting Farmer Transition to Produce Deforestation-Free Coffee
Supporting Farmer Transition to Produce Deforestation-Free CoffeeSupporting Farmer Transition to Produce Deforestation-Free Coffee
Supporting Farmer Transition to Produce Deforestation-Free CoffeeCIFOR-ICRAF
 
Pathways to sustainable trade and system dynamic simulation
Pathways to sustainable trade and system dynamic simulationPathways to sustainable trade and system dynamic simulation
Pathways to sustainable trade and system dynamic simulationCIFOR-ICRAF
 
Cenários de desmatamento para o Brasil Plataforma REDD BRASIL
Cenários de desmatamento para o Brasil Plataforma REDD BRASILCenários de desmatamento para o Brasil Plataforma REDD BRASIL
Cenários de desmatamento para o Brasil Plataforma REDD BRASILCIFOR-ICRAF
 
A Plataforma REDD+ Brasil: contexto
A Plataforma REDD+ Brasil: contexto   A Plataforma REDD+ Brasil: contexto
A Plataforma REDD+ Brasil: contexto CIFOR-ICRAF
 
Research priorities in seagrass ecosystems to enhance blue carbon as Natural...
Research priorities in seagrass ecosystems to enhance blue carbon  as Natural...Research priorities in seagrass ecosystems to enhance blue carbon  as Natural...
Research priorities in seagrass ecosystems to enhance blue carbon as Natural...CIFOR-ICRAF
 
The role of mangrove blue carbon research to support national climate mitigat...
The role of mangrove blue carbon research to support national climate mitigat...The role of mangrove blue carbon research to support national climate mitigat...
The role of mangrove blue carbon research to support national climate mitigat...CIFOR-ICRAF
 
Mangrove restoration – where to restore & can we monitor? case for Indonesia
Mangrove restoration – where to restore & can we monitor? case for IndonesiaMangrove restoration – where to restore & can we monitor? case for Indonesia
Mangrove restoration – where to restore & can we monitor? case for IndonesiaCIFOR-ICRAF
 
Trees, forests and landscapes for people and the planet
Trees, forests and landscapes for people and the planetTrees, forests and landscapes for people and the planet
Trees, forests and landscapes for people and the planetCIFOR-ICRAF
 
Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...
Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...
Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...CIFOR-ICRAF
 
Academic Framework of Blue Carbon Ecosystems (BCE)
Academic Framework of Blue Carbon Ecosystems (BCE)Academic Framework of Blue Carbon Ecosystems (BCE)
Academic Framework of Blue Carbon Ecosystems (BCE)CIFOR-ICRAF
 
Kebijakan Blue Carbon dalam operasionalisasi global
Kebijakan Blue Carbon dalam operasionalisasi globalKebijakan Blue Carbon dalam operasionalisasi global
Kebijakan Blue Carbon dalam operasionalisasi globalCIFOR-ICRAF
 
Blue Carbon Dialogue: From science-based policy to implementation
Blue Carbon Dialogue: From science-based policy to implementationBlue Carbon Dialogue: From science-based policy to implementation
Blue Carbon Dialogue: From science-based policy to implementationCIFOR-ICRAF
 
The evolution of REDD+ finance in DRC across the years: The rise of private R...
The evolution of REDD+ finance in DRC across the years: The rise of private R...The evolution of REDD+ finance in DRC across the years: The rise of private R...
The evolution of REDD+ finance in DRC across the years: The rise of private R...CIFOR-ICRAF
 

Plus de CIFOR-ICRAF (20)

Exploitation minière artisanale, moyens de subsistance et déforestation dans ...
Exploitation minière artisanale, moyens de subsistance et déforestation dans ...Exploitation minière artisanale, moyens de subsistance et déforestation dans ...
Exploitation minière artisanale, moyens de subsistance et déforestation dans ...
 
Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...
Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...
Qu'est-ce qui influence l'efficacité des interventions de conservation des fo...
 
Industries miniéres et justice climatique en Afrique centrale : étude de droi...
Industries miniéres et justice climatique en Afrique centrale : étude de droi...Industries miniéres et justice climatique en Afrique centrale : étude de droi...
Industries miniéres et justice climatique en Afrique centrale : étude de droi...
 
Enjeux de la future politique forestière de la République Démocratique du Congo
Enjeux de la future politique forestière de la République Démocratique du CongoEnjeux de la future politique forestière de la République Démocratique du Congo
Enjeux de la future politique forestière de la République Démocratique du Congo
 
Incentive Scheme for Smallholders
Incentive Scheme for Smallholders Incentive Scheme for Smallholders
Incentive Scheme for Smallholders
 
Capacity Building in oil palm trade and sustainability
Capacity Building in oil palm trade and sustainabilityCapacity Building in oil palm trade and sustainability
Capacity Building in oil palm trade and sustainability
 
Monitoring songbirds' online market
Monitoring songbirds' online market Monitoring songbirds' online market
Monitoring songbirds' online market
 
Supporting Farmer Transition to Produce Deforestation-Free Coffee
Supporting Farmer Transition to Produce Deforestation-Free CoffeeSupporting Farmer Transition to Produce Deforestation-Free Coffee
Supporting Farmer Transition to Produce Deforestation-Free Coffee
 
Pathways to sustainable trade and system dynamic simulation
Pathways to sustainable trade and system dynamic simulationPathways to sustainable trade and system dynamic simulation
Pathways to sustainable trade and system dynamic simulation
 
Cenários de desmatamento para o Brasil Plataforma REDD BRASIL
Cenários de desmatamento para o Brasil Plataforma REDD BRASILCenários de desmatamento para o Brasil Plataforma REDD BRASIL
Cenários de desmatamento para o Brasil Plataforma REDD BRASIL
 
A Plataforma REDD+ Brasil: contexto
A Plataforma REDD+ Brasil: contexto   A Plataforma REDD+ Brasil: contexto
A Plataforma REDD+ Brasil: contexto
 
Research priorities in seagrass ecosystems to enhance blue carbon as Natural...
Research priorities in seagrass ecosystems to enhance blue carbon  as Natural...Research priorities in seagrass ecosystems to enhance blue carbon  as Natural...
Research priorities in seagrass ecosystems to enhance blue carbon as Natural...
 
The role of mangrove blue carbon research to support national climate mitigat...
The role of mangrove blue carbon research to support national climate mitigat...The role of mangrove blue carbon research to support national climate mitigat...
The role of mangrove blue carbon research to support national climate mitigat...
 
Mangrove restoration – where to restore & can we monitor? case for Indonesia
Mangrove restoration – where to restore & can we monitor? case for IndonesiaMangrove restoration – where to restore & can we monitor? case for Indonesia
Mangrove restoration – where to restore & can we monitor? case for Indonesia
 
Trees, forests and landscapes for people and the planet
Trees, forests and landscapes for people and the planetTrees, forests and landscapes for people and the planet
Trees, forests and landscapes for people and the planet
 
Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...
Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...
Blue Carbon Dialogue: Bridging Science and Policy for Effective Implementatio...
 
Academic Framework of Blue Carbon Ecosystems (BCE)
Academic Framework of Blue Carbon Ecosystems (BCE)Academic Framework of Blue Carbon Ecosystems (BCE)
Academic Framework of Blue Carbon Ecosystems (BCE)
 
Kebijakan Blue Carbon dalam operasionalisasi global
Kebijakan Blue Carbon dalam operasionalisasi globalKebijakan Blue Carbon dalam operasionalisasi global
Kebijakan Blue Carbon dalam operasionalisasi global
 
Blue Carbon Dialogue: From science-based policy to implementation
Blue Carbon Dialogue: From science-based policy to implementationBlue Carbon Dialogue: From science-based policy to implementation
Blue Carbon Dialogue: From science-based policy to implementation
 
The evolution of REDD+ finance in DRC across the years: The rise of private R...
The evolution of REDD+ finance in DRC across the years: The rise of private R...The evolution of REDD+ finance in DRC across the years: The rise of private R...
The evolution of REDD+ finance in DRC across the years: The rise of private R...
 

Reduction of CO2 emissions in agriculture

  • 1. Ograniczenie emisji CO2 w rolnictwie. Reduction of CO2 emissions in agriculture.
  • 2.
  • 3. Nowadays farmers have to protect the ecosystem.
  • 4. He has to be a landscape engineer.
  • 5. I represent a farm witch has 250 year tradition. My ancestors started farming there in 1785. Therefore we need to think about future generations
  • 6. Crop structure on our farm. 95 hectare 250 hectare Corn 175 hectare Canola Wheat
  • 7. It is hilly, undulating area with very good loess soil.
  • 8. There is a risk of water erosion.
  • 10. Considering one hectare of land we should farm as much as it is necessary and as little as it is possible. This type of farming, protect soil from water erosion and acumulate water.
  • 11. Taken from: Anna Cudzik, Włodzimierz Białczyk, Jarosław Czarnecki, Marek Brennensthul, Adam Kaus, ANALIZA WYBRANYCH WŁAŚCIWOŚCI GLEBY W RÓŻNYCH TECHNOLOGIACH UPRAWY, Inżynieria Rolnicza 4(129)/2011
  • 12.
  • 13. 0-20 cm N,P + Ca N,P,K 20-35 cm N,P,K + microelements + CaO + MgO Plow pan Air canal
  • 14. This leads us to the conclusion that new, innovative, ecologically friendly technologies enable farmers to lead intensive corn production and sustainable farming.
  • 15. Fertilizers application in big depth partly reduces drought, because roots in this type of farming are longer and the surface drought doesn’t stop the plant from nutrients uptake.
  • 16. We have decided to use strip tillage method for rape, corn, soya and wheat (two stages of cultivation).
  • 17. Our farm has 520 hectares of land, our tractors have 870HP altogether, what gives 1,7 HP per hectare, and that is enough to farm 800 hectares of land.
  • 18.
  • 19.
  • 20.
  • 21.
  • 22. Rodzaj uprawki, wydajność ha/h Rodzaj nakładu Wysiew nawozów na ściernisko 12 ha/h Praca ciągnika i rozsiewacza Zużycie paliwa Talerzowanie roli 5 ha/h Orka siewna 2,2 ha/h Siew zestawem uprawowo siewnym 4 ha/h Razem: Nakład bezpośredni na 1 ha Nakład energii ( MJ ) na 1 h pracy 1 ha 5 min 155,0 - 36,0 Robocizna 5 min 80,0 6,7 Praca ciągnika i talerzówki Zużycie paliwa Robocizna Praca ciągnika i pługa Zużycie paliwa Robocizna Praca ciągnika i agregatu uprawowo - siewnego 12 min 6 l/ha 12 min 27 min 18 l/ha 27 min 450,7 80,0 251,2 80,0 90,1 240,0 16,0 113,0 720,0 36,0 15 min 588,5 9 l/ha 15 min 80,0 360,0 20,0 Rodzaj nakładu Nakład bezpośredni na 1 ha Nakład energii (MJ ) na Razem nakłady energii MJ/ha 147,1 Zużycie paliwa Robocizna/labour Rodzaj uprawki, wydajność ha/h 12,9 0,9 l/ha Razem nakłady energii MJ/ha 1 h pracy 60 min 34 l/ha 346,1 869,0 ( Strip - Till ) gleby kombajnem uprawowo siewnym, wysiew nawozów N, P, K i mikroelementów, siew nasion Praca ciągnika i kombajnu uprawowo siewnego Zużycie paliwa/ fuel consumption 20 min 409,8 163,9 13 l/ha - 520,0 20 min Uprawa pasowa 55,6 1 ha 66,6 26,6 710,5 Robocizna/la bour 527,1 1797,8 N,P,K 0-20 cm N,P + Ca 20-35 cm N,P,K + microeleme nts + CaO + MgO Plow pan Air canal
  • 23. Thank you for your attention.