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Kotiaho, J. S.

Publications and source records attributed to Kotiaho, J. S..

2 recordsLinked to original sources

A large-scale and long-term experiment to identify effectiveness of ecosystem restoration

Ecosystem restoration will increase following the ambitious international targets, which calls for a rigorous evaluation of restoration effectiveness. Studies addressing restoration effectiveness across ecosystems have thus far shown varying and unpredictable patterns. A rigorous assessment of the factors influencing restoration effectiveness is best done with large-scale and long-term experimental data. Here, we present results from a well replicated long-term before-after control-impact experiment on restoration of forestry-drained boreal peatland ecosystems. Our data comprise 151 sites, representing six ecosystem types. Vegetation sampling has been conducted to the species level before restoration and two, five and ten years after restoration. We show that, on average, restoration stops and reverses the trend of further degradation. The variation in restoration outcomes largely arises from ecosystem types: restoration of nutrient-poor ecosystems has higher probability of failure. Our experiment provides clear evidence that restoration can be effective in halting the biodiversity loss of degraded ecosystems, although ecosystem attributes can affect the restoration outcome. These findings underlie the need for evidence-based prioritization of restoration efforts across ecosystems.

ecology↗

Biodiversity impact of the consumption of peat and wood-fired district heating

The use of biofuels is becoming an increasingly important part of national and corporate climate strategies. At the same time, the consumption-based biodiversity impacts of biofuels are generally poorly known. Here we used a consumption-based approach to assess the biodiversity impacts of peat and wood-fired district heating in Finland. We combined the information on the area of impacted ecosystems and their condition before and after the impact to evaluate the impact as habitat hectares, i.e., the loss in the condition of the impacted habitats. The habitat hectare approach has not been used in previous studies on consumption-based biodiversity impacts but could be replicated to assess biodiversity impacts in different contexts around the globe. We present an eight-step general protocol for such assessment and discuss the usability of the protocol in assessing consumption-based biodiversity impacts of district heating systems. Considering different fuel types, peat had the highest biodiversity impact per unit area, followed by chips from roundwood and logging residue chips. If we consider the impacts per unit energy, chips from roundwood had the highest and peat the lowest biodiversity impact. We conclude that it is possible to assess biodiversity impacts of raw material-based consumption, like we did in our example case. This protocol should be further developed and refined in different systems and with different raw materials.

ecology↗