Assessing variability in carbon footprint throughout the food supply chain: a case study of Valencian oranges

被引:23
作者
Ribal, Javier [1 ]
Estruch, Vicente [1 ]
Clemente, Gabriela [2 ]
Loreto Fenollosa, M. [1 ]
Sanjuan, Neus [2 ]
机构
[1] Univ Politecn Valencia, Dept Econ & Ciencies Socials, Edifici 3P,Cami Vera S-N, E-46022 Valencia, Spain
[2] Univ Politecn Valencia, Dept Tecnol Aliments, Grp ASPA, Edifici 3F,Cami Vera S-N, E-46022 Valencia, Spain
关键词
Bootstrap; Carbon footprint; Confidence interval; Oranges; Organic; Variability; LIFE-CYCLE ASSESSMENT; ENVIRONMENTAL IMPACTS; SUSTAINABILITY ASSESSMENT; LCA; UNCERTAINTY; CONSUMPTION; TRANSPORT; PRODUCTS; POLICY; ENERGY;
D O I
10.1007/s11367-018-01580-9
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
PurposeThis study aims to analyse the variability in the carbon footprint (CF) of organically and conventionally produced Valencian oranges (Spain), including both farming and post-harvest (PH) stages. At the same time, two issues regarding sample representativeness are addressed: how to determine confidence intervals from small samples and how to calculate the aggregated mean CF (and its variability) when the inventory is derived from different sources.MethodsThe functional unit was 1kg of oranges at a European distribution centre. Farming data come from a survey of two samples of organic and conventional farms; PH data come from one PH centre; and data on exportation to the main European markets were obtained from official secondary sources. To assess the variability of the farming subsystem, a bootstrap of the mean CF was performed. The variability of the PH subsystem was assessed through a Monte Carlo simulation and a subsequent subsampling bootstrap. A weighted discrete distribution of the CF of distributionand end-of-life (EoL) was built, which was also bootstrapped. The empirical distribution of the overall CF was obtained by summing all iterations of the three bootstrap procedures of the subsystems.Results and discussionThe CF of the baseline scenarios for conventional and organic production were 0.82 and 0.67kg CO2 equivalentkg orange(-1), respectively; the difference between their values was due mainly to differences in the farming subsystem. Distribution and EoL was the subsystem contributing the most to the CF (59.3 and 75.7% of the total CF for conventional and organic oranges, respectively), followed by the farming subsystem (34.1 and 19.8% for conventional and organic oranges, respectively). The confidence intervals for the CF of oranges were 0.72-0.92 and 0.61-0.82kg CO2 equivalentkg orange(-1) for conventional and organic oranges, respectively, and a significant difference was found between them. If organic production were to reach 50% of the total exported production, the CF would be reduced by 5.4-8.4%.ConclusionsThe case study and the methods used show that bootstrap techniques can help to test for the existence of significant differences and estimate confidence intervals of the mean CF. Furthermore, these techniques allow several CF sources to be combined so as to estimate the uncertainty in the mean CF estimate. Assessing the variability in the mean CF (or in other environmental impacts) gives a more reliable measure of the mean impact.
引用
收藏
页码:1515 / 1532
页数:18
相关论文
共 62 条
[1]  
Agusti M., 2002, Agrociencia (Montevideo), V6, P1
[2]   P values and the search for significance [J].
Altman, Naomi ;
Krzywinski, Martin .
NATURE METHODS, 2017, 14 (01) :3-+
[3]  
[Anonymous], 2012, 205012012 SI PAS
[4]  
[Anonymous], 2011, An introduction to bootstrap methods with applications to R
[5]  
[Anonymous], 2008, BOOTSTRAP METHODS GU
[6]   Resource Consumption and Environmental Impacts of the Agrofood Sector: Life Cycle Assessment of Italian Citrus-Based Products [J].
Beccali, Marco ;
Cellura, Maurizio ;
Iudicello, Maria ;
Mistretta, Marina .
ENVIRONMENTAL MANAGEMENT, 2009, 43 (04) :707-724
[7]   Partial modelling of the perennial crop cycle misleads LCA results in two contrasted case studies [J].
Bessou, Cecile ;
Basset-Mens, Claudine ;
Latunussa, Cynthia ;
Velu, Alice ;
Heitz, Hadrien ;
Vanniere, Henri ;
Caliman, Jean-Pierre .
INTERNATIONAL JOURNAL OF LIFE CYCLE ASSESSMENT, 2016, 21 (03) :297-310
[8]   Environmental life cycle assessment of grain maize production: An analysis of factors causing variability [J].
Boone, Lieselot ;
Van Linden, Veerle ;
De Meester, Steven ;
Vandecasteele, Bart ;
Muylle, Hilde ;
Roldan-Ruiz, Isabel ;
Nemecek, Thomas ;
Dewulf, Jo .
SCIENCE OF THE TOTAL ENVIRONMENT, 2016, 553 :551-564
[9]   Environmental impact of greenhouse tomato production in France [J].
Boulard, Thierry ;
Raeppel, Caroline ;
Brun, Richard ;
Lecompte, Francois ;
Hayer, Frank ;
Carmassi, G. ;
Gaillard, Gerard .
AGRONOMY FOR SUSTAINABLE DEVELOPMENT, 2011, 31 (04) :757-777
[10]  
CAMACCDR, 2017, INF SECT AGR VAL 201