{"type": "FeatureCollection", "features": [{"id": "10.1002/bbb.2656", "type": "Feature", "geometry": null, "properties": {"updated": "2026-08-25T16:14:13Z", "type": "Journal Article", "created": "2024-07-06", "title": "Feasibility of using phytoremediation biomass for sustainable biofuel production via thermochemical conversion", "description": "Abstract<p>This study explores a novel approach that combines soil recovery with biofuel production, presenting a strategy that addresses the increasing demand for biofuels while sidestepping the food\uffe2\uff80\uff93fuel debate. It also introduces an innovative method for recovering heavy metals from soils through their translocation into the solid product of the conversion process. Phytoremediation trials were conducted under real field conditions, and the thermochemical conversion of the harvested biomass was carried out at lab scale. Field trials took place in 2021\uffe2\uff80\uff932023 in Lithuania and Serbia. In Serbia, the contamination primarily involved heavy metals, whereas the Lithuanian site was predominantly contaminated with hydrocarbons from petroleum products. The harvested biomass underwent pretreatment and was then used as feedstock for conversion into high\uffe2\uff80\uff90energy carriers. The conversion products were evaluated for their potential to substitute fossil fuels. Finally, the value chain, encompassing key stakeholders and factors impacting the profitability of this approach, was established, and initial estimates were made regarding the size of individual cost components.</p", "keywords": ["biorefinery", "0211 other engineering and technologies", "phytoremediation", "field trials", "02 engineering and technology", "thermochemical conversion", "7. Clean energy", "biofuels", "6. Clean water", "12. Responsible consumption", "13. 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The center of the biorefinery is comprised of an advanced intermediate based pyrolysis process called thermo-catalytic reforming to gain intermediate products like gas, bio-oil, an aqueous phase, and biochar. These intermediates are individually refined. In case of the TCR-gas a purification step is implemented before refinement to reduce the concentration of critical gas components like NH3 and H2S to below 50 ppm. The aqueous phase is purified using an electrochemical process while at the same time producing hydrogen. The purified TCR-gas and the hydrogen from the electrochemical purification is used in a Gas-to-Liquid plant with the aim to produce sustainable fuels through a Fischer-Tropsch-synthesis. The so produced liquid hydrocarbons are distilled to produce gasoline (EN 228) and diesel (EN 590). The bio-oil is also refined by distillation to be used as marine fuel (ISO 8217). 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