Evidencing the importance of the functional unit in comparative life cycle assessment of organic berry crops

被引:0
作者
Reina Pérez
Fernando Argüelles
Amanda Laca
Adriana Laca
机构
[1] University of Oviedo,Department of Chemical and Environmental Engineering
来源
Environmental Science and Pollution Research | 2024年 / 31卷
关键词
FU; NDU; Farm-gate price; Environmental impacts; Berry production; Carbon footprint; LCA;
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中图分类号
学科分类号
摘要
LCA methodology provides the best framework to evaluate environmental impacts in agriculture systems. However, the interpretation of LCA results, in particular when the objective was to compare different production systems, could be affected by the selection of the functional unit (FU). That is why an accurate definition of the FU, in agreement with the function considered for the systems analysed, is essential. In this work, the organic production at small scale of blueberry, raspberry, blackberry and cape gooseberry in North Spain has been analysed following LCA methodology. Although a different distribution of environmental loads was obtained for each crop, in all cases, the main contributions to most of the considered environmental categories were electric and fertiliser consumptions. The different production systems have been compared on the basis of the environmental impacts associated considering different FUs, i.e. based on fruit mass, cultivated area, farm-gate price and nutritional quality of fruits. Carbon footprints (CF) have been also calculated. It was observed that the order of the crops with respect to their environmental performances was the same for the blueberry and raspberry crops (with the lowest and the highest CF, respectively), independently of the selected FU, whereas the order of the blackberry and cape gooseberry crops was interchanged, depending on the FU used. This work supports the need of being aware of the final objective of the orchards when choosing the FU (i.e. producing fruits, cultivating an area, economic benefits or nourishing people), so that valid conclusions can be achieved from the environmental comparison, even for different agricultural products.
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页码:22055 / 22072
页数:17
相关论文
共 198 条
[1]  
Basset-Mens C(2005)Scenario-based environmental assessment of farming systems: the case of pig production in France Agr Ecosyst Environ 105 127-144
[2]  
Van Der Werf HMG(2020)Systematic evaluation of nutrition indicators for use within food LCA studies Sustainability 12 8992-12
[3]  
Bianchi M(2020)Functional unit for impact assessment in the mining sector—part 1 Sustainability (switzerland) 12 1-135
[4]  
Strid A(2003)Life cycle assessment to evaluate the environmental impact of arable crop production Int J Life Cycle Assess 8 156-225
[5]  
Winkvist A(2014)Life cycle assessment application in the fruit sector: state of the art and recommendations for environmental declarations of fruit products J Clean Prod 73 125-783
[6]  
Lindroos A-K(2006)Environmental analysis of intensity level in wheat crop production using life cycle assessment Agr Ecosyst Environ 113 216-292
[7]  
Sonesson U(2017)Systematic review of greenhouse gas emissions for different fresh food categories J Clean Prod 140 766-297
[8]  
Hallström E(2016)Evaluating the carbon footprint of Chilean organic blueberry production Int J Life Cycle Assess 21 281-231
[9]  
Bongono J(2019)Life cycle assessment of food systems One Earth 1 292-1061
[10]  
Elevli B(2014)Environmental impacts of French and Brazilian broiler chicken production scenarios: an LCA approach J Environ Manage 133 222-1173