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Stichnothe H (2022) Life cycle assessment of peat for growing media and evaluation of the suitability of using the Product Environmental Footprint methodology for peat. Int J Life Cycle Assessment 27(12):1270-1282, DOI:10.1007/s11367-022-02106-0
Accounting for inter-annual variability of farm activity data for calculation of greenhouse gas emissions in dairy farming
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Schüler M, Paulsen HM, Berg W, Prochnow A (2017) Accounting for inter-annual variability of farm activity data for calculation of greenhouse gas emissions in dairy farming. Int J Life Cycle Assessment 23(1):41-54, DOI:10.1007/s11367-017-1307-x
European renewable energy directive: Critical analysis of important default values and methods for calculating greenhouse gas (GHG) emissions of palm oil biodiesel
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Stichnothe H, Schuchardt F, Rahutomo S (2014) European renewable energy directive: Critical analysis of important default values and methods for calculating greenhouse gas (GHG) emissions of palm oil biodiesel. Int J Life Cycle Assessment 19(6):1294-1304, doi:10.1007/s11367-014-0738-x
Life cycle environmental impacts of carbonated soft drinks
Literatur
Amienyo D, Gujba H, Stichnothe H, Azapagic A (2013) Life cycle environmental impacts of carbonated soft drinks. Int J Life Cycle Assessment 18(1):77-92, doi:10.1007/s11367-012-0459-y
The carbon footprint of bread
Literatur
Espinoza-Orias N, Stichnothe H, Azapagic A (2011) The carbon footprint of bread. Int J Life Cycle Assessment 16(4):351-365, doi:10.1007/s11367-011-0271-0
Comparison of different treatment options for palm oil production waste on a life cycle basis
Literatur
Stichnothe H, Schuchardt F (2010) Comparison of different treatment options for palm oil production waste on a life cycle basis. Int J Life Cycle Assessment 15(9):907-915, doi:10.1007/s11367-010-0223-0
Production and energetic utilization of wood from short rotation coppice - a life cycle assessment
Literatur
Rödl A (2010) Production and energetic utilization of wood from short rotation coppice - a life cycle assessment. Int J Life Cycle Assessment 15(6):567-578, doi:10.1007/s11367-010-0195-0