4.7 Article

Cover crops to mitigate soil degradation and enhance soil functionality in irrigated land

Journal

GEODERMA
Volume 322, Issue -, Pages 81-88

Publisher

ELSEVIER
DOI: 10.1016/j.geoderma.2018.02.024

Keywords

C sequestration; N retention; Soil structural stability; Nitrate leaching; N surplus

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Funding

  1. Spanish Ministry of Economy and Competitiveness [AGL201452310R]
  2. Comunidad de Madrid [S2013/ABI2717]

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Introducing cover crops in irrigated areas may play a relevant role in providing ecosystem services such as erosion control, clean water and mitigation of soil degradation. Our objective was to determine the effect of replacing the traditional winter fallow in crop rotations of irrigated semi-arid areas by a cover crop on organic C and N sequestration, aggregate stability, water infiltration, and nitrate leaching. The study was conducted comparing barley (Hordeum vulgare L.) and vetch (Vicia sp. L.) cover crops to the fallow over the course of 10 years, with most variables measured every other year. Compared to the fallow, cover crops promoted C sequestration at a rate of 180 kg C ha(-1) year(-1) and N retention at a rate of 13 kg N ha(-1) year(-1). By the end of the experiment, the barley cover crop had enhanced the soil structural stability, the water holding capacity, the infiltration rate and the saturated hydraulic conductivity with respect to those characteristics in the fallow, with the vetch treatment having an intermediate effect. Compared to the fallow, barley mitigated the nitrate leaching risk by reducing inorganic N content in the top 4 m of the soil profile. Improvements in C and N stocks and soil and water quality may be attained by using cover crops in degraded soils.

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