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How to Manage Inputs from Co-production Processes in Emergy Accounting

  • Andreas Kamp
  • , Hanne Østergård

Research output: Chapter in Book/Report/Conference proceedingArticle in proceedingsResearchpeer-review

Abstract

In life cycle assessments it is a challenge to allocate resource use and environmental impact in processes with multiple outputs. This is especially the case when systems include agricultural products that in their production cannot be separated from each other. For emergy accounting, Bastianoni and Marchettini (2000) suggested how to calculate transformities and other indices for joint production systems. Their proposals however, do not include how to manage inputs from joint production systems. Thus a practical method for making systems with inputs from joint production processes comparable with systems that do not depend on joint production processes is still lacking. As a consequence, a product relying on inputs from joint production processes appears to compete poorly with a similar product that does not have to account for co-products appearing upstream. This is counter to perceived benefits of integrated production systems. Inspired by the ISO 14044 standard for LCA, this paper investigates two approaches to making systems comparable: system expansion and allocation. The methods are exemplified by comparing willow production for combined heat and power (CHP), where pig manure is used for nutrient application, with CHP based on fossil fuel. Implications of applying the different approaches to making the systems compa rable are discussed. Using the first approach, the systems are expanded to generate the same services namely electricity, heat, meat, and nutrients. Applying the second approach, the bioenergy system is simplified by allocating the emergy flows of pig production between meat and manure. Allocation was based on energy content and on weight for comparison. Both approaches significantly reduce the unit emergy value (UEV) of the bio-based system compared to the existing emergy algebra procedure of implicitly allocating the entire emergy of pig farming to manure without considering pig meat as an output. In general, it is recommended to expand systems whenever practically possible. Allocation should be considered a second-best alternative since it is not in accor dance with emergy theory. If subsystems are in sufficiently described, and allocation is used, it should be based on energy content to ensure consistency of emergy analyses.
Original languageEnglish
Title of host publicationProceedings of the 7th Biennial Emergy Conference. : Emergy Synthesis 7: Theory and Applications of the Emergy Methodology
Publication date2012
Pages503-511
Chapter55
Publication statusPublished - 2012
Event7th Biennial Conference in Emergy & Environmental Accounting - Gainsville, FL, United States
Duration: 12 Jan 201214 Jan 2012
http://www.cep.ees.ufl.edu/emergy/conferences/ERC07_2012/schedule.shtml

Conference

Conference7th Biennial Conference in Emergy & Environmental Accounting
Country/TerritoryUnited States
CityGainsville, FL
Period12/01/201214/01/2012
Internet address

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy
  2. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production

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