Now showing 1 - 8 of 8
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The energy efficiency analysis of sorghum waste biomass grown in a temperate climate

2025, Czekała, Wojciech, Frankowski, Jakub, Sieracka, Dominika, Pochwatka, Patrycja, Kowalczyk-Juśko, Alina, Witaszek, Kamil, Dudnyk, Alla, Zielińska, Aleksandra, Wisła-Świder, Anna, Dach, Jacek

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The energetic and economic analysis of demand-driven biogas plant investment possibility in dairy farm

2023, Pochwatka, Patrycja, Rozakis, Stelios, Kowalczyk-Juśko, Alina, Czekała, Wojciech, Qiao, Wei, Nägele, Hans-Joachim, Janczak, Damian, Mazurkiewicz, Jakub, Mazur, Andrzej, Dach, Jacek

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Waste-to-energy: Biogas potential of waste from coffee production and consumption

2023, Czekała, Wojciech, Łukomska, Aleksandra, Pulka, Jakub, Bojarski, Wiktor, Pochwatka, Patrycja, Kowalczyk-Juśko, Alina, Oniszczuk, Anna, Dach, Jacek

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Thematic study of the BIOEAST thematic working group on bioenergy and new value added: Anaerobic digestion for renewable energy, carbon sink and organic fertilizers as an integral part of bioeconomy development

2022, Dach, Jacek, Siebielec, Grzegorz, Mazurkiewicz, Jakub, Pochwatka, Patrycja

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Ukraine’s biogas potential: a comprehensive assessment of energy yields and of feedstock availability

2025, Vaskina, Iryna, Pochwatka, Patrycja, Vaskin, Roman, Adamski, Mariusz, Nowak, Mateusz, Dach, Jacek

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Energetic Potential of Tobacco Waste Within Combustion or Anaerobic Digestion

2025, Pochwatka, Patrycja, Kowalczyk-Juśko, Alina, Pituła, Marek, Mazur, Andrzej, Vaskina, Iryna, Dach, Jacek

The growing demand for energy biomass encourages the use of waste and by-products from agriculture. The aim of this study was to assess the suitability of tobacco stalks (TSs) for energy use in the combustion and anaerobic digestion (AD) process, as well as the technical and environmental effects of energy production from this waste raw material. Laboratory tests were conducted on the energy parameters of TS biomass, the chemical composition of ash from its combustion, and the efficiency and composition of biogas generated during the AD process of TS silage with various silage additives. The tests were conducted in accordance with the standards applicable to biomass fuels. The energy yield and emission reduction obtained by the replacement of conventional energy sources were calculated. The energy parameters of TS were inferior compared to the raw materials most often burned in boilers (wood, straw). The high ash content (7.31% in dry mass) and its chemical composition may adversely affect heating devices. Methane yield from TS silage was lower (18.55–24.67 m3/Mg FM) than from silage from crops grown for biogas plants (i.e., 105 m3/Mg for maize silage). Silage additives improved TS silage quality and methane yield (from 18.55 to 21.71–24.67 m3 CH4/Mg in case of silages with additives. Energy yield and emission reduction were higher in the case of TS combustion, but AD is a process consistent with the circular economy. Both TS energy management processes are in line with the Sustainable Development Goals as they prevent the devaluation of agricultural waste, providing a valuable resource for bioenergy.

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Reduction of Greenhouse Gas Emissions by Replacing Fertilizers with Digestate

2023, Kowalczyk-Juśko, Alina, Pochwatka, Patrycja, Mazurkiewicz, Jakub, Pulka, Jakub, Kępowicz, Barbara, Janczak, Damian, Dach, Jacek

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Evaluation of tree leaf properties for potential biogas production

2025, Janczak, Damian, Lucejko, Jeannette Jacqueline, Zborowska, Magdalena, Francesconi, Sandro, Krupka, Michał, Pochwatka, Patrycja, Gikas, Petros, Czekała, Wojciech, Qiao, Wei, Dach, Jacek