Citation Information

  • Title : Nitrate leaching, yields and carbon sequestration after noninversion tillage, catch crops, and straw retention.
  • Source : Agronomy Journal
  • Publisher : Access Digital Library
  • Volume : 44
  • Issue : 3
  • Pages : 868-881
  • Year : 2015
  • DOI : 10.2134/jeq2014.11.0482
  • ISBN : 0047-2425
  • Document Type : Journal Article
  • Language : English
  • Authors:
    • Olesen, J. E.
    • Munkholm, L. J.
    • Hansen, E. M.
    • Melander, B.
  • Climates: Tropical savannah (Aw).
  • Cropping Systems: Till cropping systems.
  • Countries: Denmark.

Summary

Crop management factors, such as tillage, rotation, and straw retention, need to be long-term to allow conclusions on effects on crop yields, nitrate leaching, and carbon sequestration. In 2002, two field experiments, each including four cash crop rotations, were established on soils with 9 and 15% clay, under temperate, coastal climate conditions. Direct drilling and harrowing to two different depths were compared to plowing with respect to yield, nitrate N leaching, and carbon sequestration. For comparison of yields across rotations, grain and seed dry matter yields for each crop were converted to grain equivalents (GE). Leaching was compared to yields by calculating yield-scaled leaching (YSL, g N kg -1 GE), and N balances were calculated as the N input in manure minus the N output in products removed from the fields. Direct drilling reduced yields, but no effect on leaching was found. Straw retention did not significantly increase yields, nor did it reduce leaching, while fodder radish ( Raphanus sativus L.) as a catch crop was capable of reducing nitrate leaching to a low level. Thus, YSL of winter wheat ( Triticum aestivum L.) was higher than for spring barley ( Hordeum vulgare L.) grown after fodder radish due to the efficient catch crop. Soil organic carbon (SOC) did not increase significantly after 7 yr of straw incorporation or noninversion tillage. There was no correlation between N balances calculated for each growing season and N leaching measured in the following percolation period.

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