Using Plant Functional Traits to Define the Biomass Energy Potential of Invasive Alien Plant Species

Author:

Ceriani Alex1,Dalle Fratte Michele1ORCID,Agosto Gustavo1,Montagnoli Antonio1ORCID,Cerabolini Bruno Enrico Leone1

Affiliation:

1. Department of Biotechnology and Life Sciences, University of Insubria, Via Dunant 3, 21100 Varese, Italy

Abstract

The eradication of invasive alien plant species (IAPS) is mandatory worldwide, but the resulting biomass is still considered waste. The energy use of biomasses obtained from IAPS eradication may represent ecological and economic benefits, creating synergies with restoration projects. We evaluated whether the growth forms and functional types identified using the functional space of 63 IAPS corresponded to a possible bioenergy use through multivariate analysis techniques. We extracted leaf and nutrient traits and Grime’s CSR plant strategies from an existing database. We calculated the carbon-to-nitrogen ratio (C:N) and gross heating value (GHV) as indicators of biochemical or thermal processes, respectively. For 10 species, we measured the above-ground biomass C:N and GHV (including leaves, stems and branches) and correlated them with those of leaves and with plant adaptive strategies. We identified four groups of IAPS indicative of the main trade-offs between plant economics and size variation, which respectively correlated with C:N and GHV. Herbaceous IAPS were better suited to biochemical processes, and woody IAPS to thermal ones. Overall, Grime’s CSR strategies were the best tool to define the IAPS bioenergy potential. In the long term, competitive and ruderal IAPSs can represent a reusable feedstock until their complete eradication.

Funder

NOP PhD programs on green topics of the Italian Ministry of University and Research

Fondazione Lombardia per l’Ambiente

University of Insubria

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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