Transcript
Page 1: Soil Restoration for Ecosystem Services · PDF file1 Carbon Management and Sequestration Center Soil Restoration for Ecosystem Services Rattan Lal Carbon Management and Sequestration

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Carbon Management and Sequestration Center

Soil Restoration for Ecosystem Services

Rattan Lal Carbon Management and Sequestration Center

The Ohio State University Columbus, OH 43210 USA

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Carbon Management and Sequestration Center

ECOSYSTEM SERVICES

Multitude of resources and benefits that are supplied by natural ecosystems

•  “A framework for structuring and synthesizing biophysical understanding of ecosystem processes in terms of human well being”.

…Mooney and Ehrlich (1997)

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Carbon Management and Sequestration Center

NATURAL CAPITAL VS. ECOSYSTEM SERVICES

SOC Pool

•  Soil Conservation •  INM •  Farming Systems

•  Food Security •  Climate Change Mitigation •  Water Quality •  Biodiversity

Agronomic Productivity

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Carbon Management and Sequestration Center

SOILS AND ECOSYSTEM SERVICES

Soils are the basic substrate for natural ecosystems, but have not been adequately emphasized in sustainable development nor in sustainable management of natural resources.

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Carbon Management and Sequestration Center

Ecosystem Functions •  Elemental Cycling •  NPP •  Soil Formation

Eco

syst

em

Ser

vice

s Provisioning •  Food •  Feed •  Fiber •  Fuel •  Minerals

Regulating •  Climate •  Water •  Nutrients •  Biodiversity •  Gene pool

Cultural •  Aesthetic •  Cultural •  Recreational •  Scenic •  Spiritual

INTER-CONNECTIVITY OF ECOSYSTEM SERVICES AND

FUNCTIONS

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Carbon Management and Sequestration Center

SOME ECOSYSTEM SERVICES PROVIDED BY SOILS

1.  Climate Change Moderation 2.  Carbon Sequestration 3.  Water Storage and Purification 4.  Biodiversity 5.  Food Security 6.  Poverty Alleviation 7.  Soil quality

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Carbon Management and Sequestration Center

1. CLIMATE CHANGE MODERATION

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CLIMATE CHANGE

It is the most dangerous and interactable problem:

Dangerous : Because it encompasses many issues,

Interactable : (i)  80% of the energy demand is met from the fossil fuel,

(ii) $20 trillion of infra-structure is built

around fuel, (iii) Deforestation and land use are

intricately linked with food security, water quality, and biodiversity

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Carbon Management and Sequestration Center

STRATEGY

Reduce vulnerability

Increase adaptive capacity

Can humans solve

this problem?

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Carbon Management and Sequestration Center

•  Gross Primary Productivity (GPP) = 123 Gt C/yr

•  Net Primary Productivity (NPP) = 63 Gt C/yr

•  Net Ecosystem Productivity (NEP) = 10 Gt C/yr

•  Net Biome Productivity (NBP) = 3 Gt C/yr

“If we control what plants do with carbon, the fate of CO2 in the atmosphere is in our hands”

-Freman Dyson (2008), BioScience (10/10)

Only 0.05% of the 3800 zettajoules (1021J) of solar energy is absorbed annually as GPP

BIOSEQUESTRATION OF ATMOSPHERIC CO2

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Carbon Management and Sequestration Center

1. CARBON SEQUESTRATION

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SOIL CARBON SEQUESTRATION

Refers to the process of restoring depleted soil carbon through recommended land use and soil management.

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CARBON POOL IN WORLD SOILS TO 1-m DEPTH

Reservoir Magnitude (Pg) Soil organic C 1530 Soil Inorganic C (i) Carbonates 940 (ii) Bicarbonates in groundwater

1404

Total 3874

Monger et al. (2015)

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Carbon Management and Sequestration Center

C SEQUESTRATION AS SECONDARY CARBONATES

Rate ... 2-5 kgC/ha per yr

Total area of Arid/Semi-Arid Regions = 6150 Mha

Technical Potential of Secondary Carbonates = 0.01-0.03 PgC/yr

Monger et al. (2015)

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TOTAL POTENTIAL OF SIC SEQUESTRATION

Process Technical Potential (PgC/yr)

Monger et al. (2015)

Process Technical Potential (PgC/yr) Secondary Carbonates 0.01-0.03 Leaching of Bicarbonates 0.20-0.36 Total 0.21-0.39

Secondary Carbonates 0.01-0.03 Leaching of Bicarbonates 0.20-0.36 Total 0.21-0.39

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GLOBAL POTENTIAL OF SOC SEQUESTRATION (Pg C/YR)

Cropland: 0.4-1.2

Lal (2010)

Cropland: 0.4-1.2 Grazing land: 0.3-0.5

Salt-affected soils: 0.3-0.7 Desertified soils: 0.2-0.7

Total: 1.2-3.1

Grazing land: 0.3-0.5 Salt-affected soils: 0.3-0.7

Desertified soils: 0.2-0.7 Total: 1.2-3.1

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CAPACITY OF LAND-BASED SINKS THROUGH BIOSEQUESTRATION OF C

Strategy Sink Capacity (Pg C) Permanent Forest

200-300

Soils 50-100

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Sustainable use of soil &

water resources

Note: The stuff that appears beyond the frame won’t appear in the slide itself.

AND THE ECOSYSTEM SERVICES GENERATED

COUPLED CYCLING OF H2O, C, N, P

Lal (2010)

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4 FOR 1000 : A NEW PROGRAM FOR CARBON SEQUESTRATION IN AGRICULTURE

With soil C pool of 700 Pg to 30 cm depth, 4/1000 =2.8 Pg C

drawdown per year

= 1.4 ppm reduction of atmospheric carbon dioxide/yr

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3. WATER STORAGE AND

PURIFICATION

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SOIL AND WATER

•  Soil is one of the largest reservoirs of fresh water •  Water conservation in soils is crucial to

sustainable management of natural resources

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ALGAL BLOOM LAKE ERIE, 9TH AUGUST 2015

Photo Credit: M. Almond, 4 August 2015, Columbus Dispatch.

Columbus Dispatch, 27 August 2015

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4. BIODIVERSITY

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SOIL AND GENE POOL

Soil is a principal reservoir of gene pool. Improvement of soil quality enhances biodiversity: both above and below ground.

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SOIL IS FULL OF LIFE

As much as 25% of all biodiversity is in soil. Soil functions can be sustained by improving biodiversity.

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5. FOOD SECURITY

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1050

1025

1000

975

950

925

900

875

850

800

0

Wor

ld’s

Hun

gry

(106

)

1992 2002 2007 2010 2013 Year

GLOBAL FOOD INSECURITY (FAO, 2015)

South Asia 35.0

Sub-Saharan Africa 26.5

Eastern Asia 19.8

South-eastern Asia 7.7

Latin American & the

Caribbean 5.6 Others 5.3

Chronically underfed ~ 0.8 billion

Micronutrient deficiency ~ 2 billion

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GLOBAL FOOD DEMAND IN 21ST CENTURY

Hunger-related death toll is 21,000/day (Chrispeds, 2002)

Global food demand would double over the period 1990-2030, and increase by 70% between 2010 and 2050

This would involve 3-4 times increase in the poorest countries

There have been severe droughts in Amazon in 2010, China in 2011, and West Africa in 2011

In Africa and Asia, plant-derived food requirements may increase by a factor of 2.5 to 7 in some countries

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REQUIRED CEREAL YIELDS AND PRODUCTION TO MEET FUTURE DEMANDS

(WILD, 2003)

Year Yield (Mg/ha) Total Production (106M) 2005 3.27 2240 2025 3.60 (4.40) 2780 (3629) 2050 4.30 (6.00) 3255 (4553) (with change to animal-based diet)

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•  Land resources already allocated to agriculture production are adequate through sustainable intensification, soil restoration, and carbon sequestration.

HUBERT CURVE S

oil U

se à

Year à

Lal (2015)

Is there a peak soil? Are there endangered soils?

•  Competing Uses •  Nature conservancy

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NUTRIENT USE EFFICIENCY

•  Recycle and reuse nutrients(e.g., grey water) •  Adopt strategies of INM •  Enhance use efficiency of nutrients in agro-ecosystems •  Establish threshold level of SOC for soil quality

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CRITICAL LEVEL OF SOC FOR WHEAT YIELD

4000

3000

2000

1000

0 0 20 80 60 40

Soil Organic C (Mg ha-1)

Yiel

d (k

g ha

-1)

(Diaz-Zorita et al., 2002)

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FOOD PRODUCTION IN LDCS BY INCREASING SOC POOL BY 1 T/Ha per Yr

Crop

Area (Mha)

Production Increase (106 Mg yr-1)

Cereals 430 21.8 - 36.3

Legumes 68 2.0 - 3.2

Tubers 34 6.6 - 11.3

Total 532 30.4 - 50.8

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6. POVERTY ALLEVIATION

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PES’S AND ECONOMIC DEVELOPMENT

•  Land managers must be rewarded for services e.g.:

•  Payments for ecosystems services is an important strategy to promote adoption of BMPs by the resource-poor farmer

•  C sequestration •  Water quality •  Biodiversity •  Reducing NPSP

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SOCIETAL & MARKET VALUE OF SOC

•  Cost of Residue + Nutrients: $120/ Mg C

•  Cost of Nutrients Only : $102/ Mg C

•  Lal(2014)

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PAYMENTS FOR SOC SEQUESTRATION

With average C sequestration rate of 300 kg/ha per yr, payments are : $40/ha per yr

Lal(2014)

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7. SOIL QUALITY

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1. Organic Amendments : Animal and green manure, compost, peat (partially decomposed)

2. Manage Beneficial Rhizosphere Micro-Organisms : Introduction of a small amount of disease-suppressive soil

DISEASE-SUPPRESSIVE SOILS

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Soils in which disease development is minimal even in the presence of a virulent pathogen and a susceptible host. (i.) General Suppression : Related to total amount of

microbial activity

(ii.) Specific Suppression : Through a specific micro-organism or group of micro-organisms

CHARACTERISTICS OF DISEASE-SUPPRESSIVE SOILS

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WATERRESOURCES-Quality

-Quan+ty

- Aboveground-Belowground

BIODIVERSITY

- Mi+ga+on- Adapta+on- Stabiliza+on

CLIMATECHANGE

FOODSECURITY

-Quan+ty-Quality

SOILQUALITY

SOIL QUALITY IS THE ENGINE OF ECONOMIC DEVELOPMENT

Lal (2012)

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INTERNATIONAL YEAR OF SOILS 2015 The 68th UN General Assembly (A/RES/68/232) declared 2015 the “International Year of Soils” The Objectives of IYS are:

•  To create full awareness of civil society and decision makers about the fundamental roles of soils for human’s life

•  To advance full recognition of the prominent contributions of soils to

food security, climate change, adaptation and mitigation, essential ecosystem services, poverty alleviation and sustainable development.

•  To promote effective policies and actions for the sustainable

management and protection of soil resources.

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en.wikipedia.org www.worldwildlife.org

www.seeturtles.org HANDOUT / Reuters

Water Carbon

Nitrogen Phosphorous

Sulfur

Lal (2014)

SOIL: THE GLOBAL ICON


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