High-yield maize with large net energy yield and small global warming intensity

Proc Natl Acad Sci U S A. 2012 Jan 24;109(4):1074-9. doi: 10.1073/pnas.1116364109. Epub 2012 Jan 9.

Abstract

Addressing concerns about future food supply and climate change requires management practices that maximize productivity per unit of arable land while reducing negative environmental impact. On-farm data were evaluated to assess energy balance and greenhouse gas (GHG) emissions of irrigated maize in Nebraska that received large nitrogen (N) fertilizer (183 kg of N · ha(-1)) and irrigation water inputs (272 mm or 2,720 m(3) ha(-1)). Although energy inputs (30 GJ · ha(-1)) were larger than those reported for US maize systems in previous studies, irrigated maize in central Nebraska achieved higher grain and net energy yields (13.2 Mg · ha(-1) and 159 GJ · ha(-1), respectively) and lower GHG-emission intensity (231 kg of CO(2)e · Mg(-1) of grain). Greater input-use efficiencies, especially for N fertilizer, were responsible for better performance of these irrigated systems, compared with much lower-yielding, mostly rainfed maize systems in previous studies. Large variation in energy inputs and GHG emissions across irrigated fields in the present study resulted from differences in applied irrigation water amount and imbalances between applied N inputs and crop N demand, indicating potential to further improve environmental performance through better management of these inputs. Observed variation in N-use efficiency, at any level of applied N inputs, suggests that an N-balance approach may be more appropriate for estimating soil N(2)O emissions than the Intergovernmental Panel on Climate Change approach based on a fixed proportion of applied N. Negative correlation between GHG-emission intensity and net energy yield supports the proposition that achieving high yields, large positive energy balance, and low GHG emissions in intensive cropping systems are not conflicting goals.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Agricultural Irrigation / methods
  • Agricultural Irrigation / statistics & numerical data
  • Agriculture / methods*
  • Agriculture / statistics & numerical data
  • Air Pollution / prevention & control*
  • Air Pollution / statistics & numerical data
  • Databases, Factual
  • Fertilizers / statistics & numerical data
  • Greenhouse Effect*
  • Nebraska
  • Nitrous Oxide / analysis*
  • Nitrous Oxide / metabolism
  • Soil / analysis*
  • Zea mays / growth & development*

Substances

  • Fertilizers
  • Soil
  • Nitrous Oxide