Agriculture Reference
In-Depth Information
Sørensen, L.H. (1974). Rate of decomposition of organic matter in soil as influenced by
repeated air drying-rewetting and repeated additions of organic material. Soil Biology &
Biochemistry, 6, 287-292.
Spinelli, D., Jez, S., Basosi, R. (2012). Integrated Environmental Assessment of sunflower oil
production. Process Biochemistry, 47, 1595-1602.
Spinelli, D., Jez, S., Pogni, R., Basosi, R. (2013a). Environmental and life cycle analysis of a
biodiesel production line from sunflower in the Province of Siena (Italy). Energy Policy,
59, 492-506.
Spinelli, D., Bardi, L., Fierro, A., Jez, S., Basosi, R. (2013b). Environmental analysis of
sunflower production with different forms of mineral nitrogen fertilizers. Journal of
Environmental Management, 129, 302-308.
Spugnoli, P., Dainelli, R., D'Avino, L., Mazzoncini, M., Lazzeri, L. (2012). Sustainability of
sunflower cultivation for biodiesel production in Tuscany within the EU renewable
Energy Directive. Biosystems Engineering, 112, 49-55.
Stehfest, E., and Bouwman, L. (2006). N 2 O and NO emission from agricultural fields and
soils under natural vegetation: summarizing available measurement data and modeling of
global annual emissions. Nutrient Cycling in Agroecosystems, 74, 207-228.
Stephan, G., Karl, S. (2001). Methane and nitrous oxide exchange in differently fertilised
grassland in southern Germany. Plant Soil, 231, 21-35.
Steudler, P.A., Bowden, R.D., Melillo, J.M., Aber, J.D. (1989). Influence of nitrogen
fertilization on methane uptake in temperate forest soils. Nature, 341, 314-316.
Sundh, I., Mikkela, C., Nilsson, M., Svenson, H. (1995). Potential aerobic methane oxydation
in a sphagnumdominated peatland - controlling factors and relation to methane emission.
Soil Biology & Biochemistry, 27, 829-837.
Suwanwaree, P., Robertson, G.P. (2005). Methane oxidation in forest, successional, and no-
till agricultural ecosystems: effects of nitrogen and soil disturbance. Soil Science Society
of America Journal, 69, 1722-1729.
Topp, E., Hanson, R.S. (1991). Metabolism of radiatively important trace gases by methane-
oxidizing bacteria. In: Rogers J.E., Whitman W.B. (Eds.), Microbial Production and
Consumption of Green House Gases: Methane, Nitrogen Oxydes and Halomethanes,
American Society for Microbiology, Washington DC, pp. 71-90.
Topp, E., Pattey, E. (1997). Soils as sources and sinks for atmospheric methane. Canadian
Journal of Soil Science, 77, 167-178.
Tsoutsos, T., Kouloumpis, V., Zafiris, T., Foteinis, S. (2010). Life cycle assessment for
biodiesel production under Greek climate conditions. Journal of Cleaner Production, 18,
328-335.
UBA (2007). Umweltbundesamt (UBA) (German Environmental Protection Agency).
PROBAS Database. http://www.probas.umweltbundesamt.de/php/index.php (available in
German language only).
UNEP/UNIDO (1998). Mineral Fertilizer Production and the Environment Part 1. The
Fertilizer Industry's Manufacturing Processes and Environmental Issues - Technical
Report n°26 - Part 1.
Velthof, G.L., Oenema, O. (1995). Nitrous oxide fluxes from grassland in Netherland: II
Effects of soil type, nitrogen fertilizer application and grazing. European Journal of Soil
Science, 46, 541-549.
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