KAZALCI OKOLJA

Environmental indicators in Slovenia


Environmental indicators are based on graphs, maps and assessments and as such present environmental trends in Slovenia. The indicators represent one of the four pillars of our environmental reporting, and are prepared in accordance with the Environmental Protection Act. The Environmental Indicators in Slovenia website enables users to browse among 180 indicators. They are based on numerical data and they indicate the state, characteristics and trends of environmental development in Slovenia. They are prepared using a systematic approach based on data and monitoring, as shown in the information pyramid.

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Households willingness to use photovoltaic systems in single-family homes has increased. The index increased by 7 index points between 2019 and 2022, reaching a value of 36 on a scale from 0 to 100 in 2022. The share of households that already use or intend to use photovoltaics in the near future has increased the most during this period. Despite the positive change, as many as a quarter of households are still hesitant or reluctant to use photovoltaics. There are no differences in willingness to use photovoltaics between regions.

Neutral

Most Slovenian forests are still undergoing natural regeneration, which guarantees the stability of future forest stands and adaptation to the changing site conditions caused by climate change. Restoration by planting seedlings and sowing (artificial regeneration) only complements natural regeneration when disturbances occur in the process of the natural regeneration of the forest, e.g. where there is no possibility of natural seeding, with the risk of developing erosion processes on exposed forest areas (e.g.

Good

Data on GHG emissions from forest fires show a downward trend, which is, however, not statistically significant. In the long term, there is a major forest fire in Slovenia about every five years, so GHG emissions are relatively high in these years. The highest GHG emissions due to forest fires since we have been recording data were in 2003.

Good

Greenhouse gas (GHG) emissions due to land-use change generally show a declining trend. In 2021, GHG emissions from deforestation decreased by 0.5% compared to the previous year, with more than half, i.e. 62%, of these emissions coming from the establishment of agricultural land. GHG emissions due to land conversion to built-up and related land decreased by 2.8% compared to the previous year. The largest share of emissions (66%) is due to the conversion of agricultural land to built-up and related land.

Neutral

After 2005, the gross nitrogen budget ranged between 32 and 69 kg per hectare of agricultural land with an indistinct downward trend. On average over the last five-year period, the target value (less than 50.4 kg per ha) was achieved. In 2022, the nitrogen balance surplus rose sharply compared to the previous year (from 46.2 to 69.1 kg per ha). The target value (less than 49.4 kg per ha) was therefore not achieved. The increase in the surplus is attributed to the drought, which caused a decrease in the nitrogen uptake by agricultural plants.

Neutral

Areas of fields and gardens in measures that require fertilization based on rapid soil or plant tests have significantly exceeded the target value set by the 2014–2020 Rural Development Programme.