Published July 2010 | Version v1
Miscellaneous

Prevention and Rehabilitation of Degraded Land to Achieve Sustainable Agriculture

  • 1. SWMCN Laboratory Seibersdorf, Joint FAO/IAEA Division (Austria)

Description

Rapid population growth and the challenge of food security combined with burgeoning urban development have put multiple pressures on land and water resources. Worldwide soil degradation is currently estimated at 1.9 billion hectares and is increasing at a rate of 5 to 7 million hectares each year. Once land resources are degraded, rehabilitation usually requires a long-term effort and is often expensive. To mitigate land and soil degradation, effective soil conservation and suitable rehabilitation practices are required and should be chosen according to the levels and causes of soil degradation. The basic principles of soil conservation and management for preventing land degradation are: (i) to control soil erosion by practices such as terracing, reduced tillage in combination with mulching, intercropping or grass strips, (ii) to improve soil fertility through organic and inorganic fertilizers, and (iii) to prevent accumulation of harmful substances. Natural rehabilitation of degraded land can be a practical and low-cost alternative. For example, soil stabilization through vegetative measures has been used to control wind and water erosion and simultaneously improve soil health by increasing soil organic matter and nutrient availability. Nevertheless, if land has been degraded by mining and/or contaminated by heavy metals or organic pollutants, the surrounding farmlands can also be affected through surface runoff from the contaminated site, thereby rendering them unfit for cultivation. In this case, phytoremediation technologies, defined as the use of plants and trees to remove, immobilize, transform or degrade contaminants in polluted soil or water, in combination with for instance constructed wetlands and/or microbial interactions can be used to remediate polluted land as well as to prevent contamination of farmlands. Therefore both on-farm management and off-site remediation are important to protect and improve agricultural land resources, hence improve crop productivity and environmental quality. During this seminar, case studies using some of the techniques mentioned above to prevent and rehabilitate degraded land were presented. (author)

Part of:
Soils Newsletter, Vol. 33, No. 1, July 2010

Additional details

Publishing Information

Publisher
IAEA
Imprint Place
Vienna (Austria)
Imprint Title
Soils Newsletter, Vol. 33, No. 1, July 2010
Imprint Pagination
40 p.
Journal Page Range
p. 13-14
ISSN
1011-2650
Report number
INIS-XA--11R0499

INIS

Country of Publication
Austria
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
42081922
Subject category
S54: ENVIRONMENTAL SCIENCES; S60: APPLIED LIFE SCIENCES;
Descriptors DEI
CONTROL; EROSION; FERTILITY; LAND RESOURCES; REMEDIAL ACTION; SOIL CONSERVATION; SOILS; WATER RESOURCES
Descriptors DEC
RESOURCE CONSERVATION; RESOURCES

Optional Information

Notes
SWMCN Seminar Series