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Updated: Jun 20, 2026

Assessment of Waste-Derived Biochars on the Health and Biological Activity of Soil
Published on: October 10, 2025
Environmental sustainability of a biochar integrated nature-based solution in Finland: A comparative LCA with a rain
Ishika Weerawardhana1, Mariia Zhaurova1, Mari Hupponen1
1Lappeenranta-Lahti University of Technology, School of Energy Systems, Department of Sustainability Science, P.O. Box 20, Lappeenranta, FI-53851, Finland.
Abstract:
Biochar based stormwater filters are gaining popularity worldwide due to their high effectiveness in removing pollutants. However, the comprehensive evaluation of the environmental impacts of these novel approaches is limited, leaving an unclear picture of their overall environmental sustainability. This study aims to address this gap by conducting a comparative, cradle-to-grave life cycle assessment (LCA) to evaluate a biochar integrated nature-based solution (NBS) implemented in Finland. The analysis includes comparisons with two hypothetical systems: a rain garden (RG) and a sand filter (SF), along with a baseline (BL) scenario representing no-treatment. When comparing the impacts of treatment systems with the BL, a clear burden shift can be identified among the eleven impact categories evaluated in this study. The treatment systems offer water treatment benefits during the operational phase across the categories of freshwater and marine eutrophication, freshwater and marine ecotoxicity, and human toxicity (non-cancer). While NBS and RG provide the most significant water treatment benefits compared to SF, they also cause the most substantial infrastructure-related impacts. In contrast, SF demonstrates up to 90% lower impacts across categories, including global warming, human toxicity (cancer), terrestrial acidification and ecotoxicity, fossil depletion, and land use. In all treatment systems, the construction phase contributes the most to life-cycle impacts (50-100%) in these categories. The results further show that stormwater-specific impacts are highly sensitive to influent concentrations and treatment performance, highlighting the importance of considering site-specific water quality data when evaluating the benefits of water treatment.
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Design Example: Sustainability in Concrete Building
There are multiple approaches to achieve sustainability in a commercial concrete building. For instance, construct a concrete parking area under the building, utilizing pervious concrete paver blocks in open areas to facilitate rainwater collection through an underground cistern.

