Ready-to-use methodology to quantify the carbon footprint of PV modules


The method is divided into nine main steps. These include a life cycle assessment (LCA) hotspot analysis devoted to identifying the areas where environmental impacts are most significant. This application of the method for PV modules identifies carbon footprint as the most significant area, but water and resource use, among others, could be considered instead.

The following steps involve adapting Product Environmental Footprint Category Rules (PEFCRs) for use in ecodesign requirements for PV modules. The new “harmonized calculation rules” are set to calculate the carbon impact of PV modules from production to market entry with a particular focus on manufacturing and shipment phases.

The method performs a sensitivity analysis of the PV modules’ silicon content, module yield, and electricity grid mix used in the manufacturing phase before it calculates the final results. The last steps involve interpreting the results, consulting stakeholders, and finally setting possible PV modules’ carbon footprint requirements.

Based on their analysis, the researchers propose the following alternative regulatory approach to the carbon footprint of PV modules: introducing general or parameter-specific quantitative requirements establishing a maximum admitted threshold for the carbon footprint of PV modules; requiring information on the carbon footprint of PV modules; and having that information reported on the product’s energy label or datasheet.

“Setting ecodesign requirements for the carbon footprint of PV modules could result in significant energy savings, in particular within the energy-intensive manufacturing stage of these products,” the authors concluded.

They noted that their proposals do not necessarily reflect the official position of the European Commission.

Author: Beatriz Santos 

This article was originally published in pv magazine and is republished with permission.

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