Agriculture Reference
In-Depth Information
Grant, C., Wu, R. (2008). Enhanced-efficiency fertilizers for use on the Canadian prairies.
Online. Crop Manage. doi:10.1094/CM-2008-0730-01-RV.
Groffman, P.M. (1991). Ecology of nitrification and denitrification in soil evaluated at scales
relevant to atmospheric chemistry. In: Rogers, J., Whitman, W.B. (eds) Microbial
production and consumption of geenhouse gases: methane, nitrogen oxides and
halomethanes. The American Society of Microbiology, Washington, DC, pp 201-217.
Haas, M.J.G. de, & van Dijk, T.A. (2010). Inventarisatie klimaatvriendelijke kunstmest.
Nutriƫnten management instituut NMI, Wageningen.
Halleux, H., Lassaux, S., Renzoni, R., Germain, A. (2008). Comparative life cycle assessment
of two biofuels ethanol from sugar beet and rapeseed methyl ester. International Journal
of Life Cycle Assessment, 13, 184-190.
Halvorson, A.D., Del Grosso, S.J., Reule, C.A. (2008). Nitrogen, tillage, and crop rotation
effects on nitrous oxide emissions from irrigated cropping systems. Journal of
Environmental Quality , 37, 1337-1344.
Han, K.H., Choi, W.J., Han, G.H., Yun, S.I., Yoo, S.H., Ro, H.M. (2004). Urea-nitrogen
transformation and compost-nitrogen mineralization in three different soils as affected by
the interaction between both nitrogen inputs. Biology and Fertility of Soils, 39, 193-199.
Hanson, P.J., Edwards, N.T., Garten, C.T., Andrews, J.A. (2000). Separating root and soil
microbial contributions to soil respiration: a review of methods and observations.
Biogeochemistry, 48, 115-146.
Harrison, R., Ellis, S., Cross, R., Hodgson, J.H. (2002). Emissions of nitrous oxide and nitric
oxide associated with the decomposition of arable crops residues on a sandy loam soil in
Eastern England. Agronomie, 22, 731-738.
Hayashi, K., Yan, X.Y. (2010). Airborne nitrogen load in Japanese and Chinese
agroecosystems. Soil Science and Plant Nutrition, 56, 2-18.
Hayashi, K., Kogab, N., Fuekic, N. (2011). Limited ammonia volatilization loss from upland
fields of
Andosols following
fertilizer
applications. Agriculture,
Ecosystem
&
Environment, 140, 534-538.
Hellebrand, H.J., Kern, J., Volkhard, S. (2003). Long-term studies on greenhouse gas fluxes
during cultivation of energy crops on sandy soils. Atmospheric Environment, 37, 1635-
1644.
Heller, M.C., Keoleian, G.A., Volk, T.A. (2003). Life cycle assessment of a willow bioenergy
cropping system. Biomass Bioenergy, 25, 147 - 165.
Hudman, R.C., Russell, A.R., Valin, L.C., Cohen, R.C. (2010). Interannual variability in soil
nitric oxide emissions over the United States as viewed from space. Atmospheric
Chemistry and Physics, 10, 9943-9952.
Huijsmans, J.F.M., Hol, J.M.G., Vermeulen, G.D. (2003). Effect of application method,
manure characteristics, weather and filed conditions on ammonia volatilization from
manure applied to arable land. Atmospheric Environment, 37, 3669-3680.
IEA (2007). Tracking Industrial Energy Efficiency and CO 2 Emissions.
IFA (2009). Energy Efficiency and CO 2 Emissions in Ammonia Production 2008-2009
Summary Report. International Fertilizer Association, Paris.
IFA
(2013).
International
Fertilizer
Association -
Statistic.
http://www.
fertilizer.org/ifa/ifadata/results
IFA/FAO (2001). Global Estimates of Gaseous Emissions of NH 3 , NO, and N 2 O from
Agricultural Land. International Fertilizer Industry Association and the Food and
Search WWH ::




Custom Search