Now showing 1 - 20 of 28
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The strength and fire properties of paper sheets made of phosphorylated cellulose fibers

2024, Tavakoli, Mehrnoosh, Mazela, Bartłomiej, Grześkowiak, Wojciech, Proch, Jędrzej, Mleczek, Mirosław, Perdoch, Waldemar

Phosphorylated cellulose can be an intrinsic flame retardant and a promising alternative for halogenated fire inhibitors. In this study, the mixture of di-ammonium hydrogen phosphate (DAP) and urea (U), containing phosphate and nitrogen groups, was applied to attain fire inhibitor properties. Functional groups of cellulose were grafted with phosphorous by keeping the constant molar ratio of 1/1.2/4.9 between anhydroglucose units of cellulose/DAP/U in different concentrations of bleached kraft pulp. Phosphorus concentrations were determined using the ICP hrOES method, and paper sheets were made using the Rapid Köthen apparatus. The tensile strength of phosphorylated cellulose increased twice compared with unmodified cellulose when the phosphorous concentration increased to 10,000 g/kg. An increase in the tensile index comes from the higher freeness of pulp and cross-linking of the phosphorous group between cellulose fibers. Remarkable fire retardancy effects were achieved in cellulose concentrations above 5 wt%. The raised phosphorous concentration above 10,000 g/kg due to the phosphorylation process caused the formation of a char layer on a cellulose surface and the nonflammable gas emission. That effect was indirectly confirmed by reducing the combustion temperature and HRR by 50 and 45%, respectively. Due to increasing phosphorus concentration in cellulose sheets, cellulose’s fire and strength properties increased significantly.

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Dendroremediation of soil contaminated by mining sludge: A three-year study on the potential of Tilia cordata and Quercus robur in remediation of multi-element pollution

2024, Budzyńska, Sylwia, Rudnicki, Konrad, Budka, Anna, Niedzielski, Przemysław, Mleczek, Mirosław

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Reply to “Comments on “Anthropogenic contamination leads to changes in mineral composition of soil- and tree-growing mushroom species: A case study of urban vs. rural environments and dietary implications”- rare earth elements by Jerzy Falandysz

2023, Mleczek, Mirosław, Budka, Anna, Siwulski, Marek, Budzyńska, Sylwia, Kalač, Pavel, Karolewski, Zbigniew, Lisiak-Zielińska, Marta, Kuczyńska-Kippen, Natalia, Niedzielski, Przemysław

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Research Project

Molekularne i fizjologiczne mechanizmy sezonowego transportu i fitoekstrakcji różnych form arsenu u traw wieloletnich na przykładzie miskanta olbrzymiego (Miscanthus x giganteus)

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Rotifers as indicators of trophic state in small water bodies with different catchments (field vs. forest)

2025, Kuczyńska-Kippen, Natalia, Zhang, Chen, Mleczek, Mirosław, Špoljar, Maria

Abstract Current methods for assessing lake trophic status using zooplankton are well-established, but there is a lack of approaches for small, shallow water bodies. This study addresses the gap by analyzing rotifer communities across 100 ponds in different catchment areas (field and forest). We hypothesized that the Rotifer Trophic State Index (TSIROT) is an effective tool for assessing trophic state, yielding comparable results to the Carlson TSI index. We also proposed that variations in physical and chemical parameters would significantly affect rotifer composition, impacting the trophic state assessment. Field ponds, exposed to agricultural runoff, exhibited higher trophic states and a predominance of detritivorous species. In contrast, forest ponds, with extensive macrophyte coverage, maintained lower trophic states and supported diverse algivorous species, particularly of littoral and mesotrophic origin. This confirmed our hypothesis that catchment type strongly influences trophic state and rotifer communities. We demonstrated that rotifer traits—abundance, species diversity, habitat type preferences and proportions of eutrophic versus mesotrophic species—along with TSIROT, are effective in assessing water quality in ponds. Overall, the results validate TSIROT as a reliable tool for small water bodies, comparable to Carlson’s TSI index, and highlight the importance of catchment type in influencing water quality.

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GIS-based Visualization of Elemental Distribution in Neoboletus Luridiformis Fruiting Body

2025, Árvay, Július, Hauptvogl, Martin, Demková, Lenka, Jančo, Ivona, Jakabová, Silvia, Mleczek, Mirosław

Abstract The fruiting body of Neoboletus luridiformis (Scarletina bolete) mushroom was used to determine the level of bioconcentration and subsequent distribution of seventeen elements (Ag, Al, Ba, Ca, Cd, Cr, Cu, Fe, K, Mg, Mn, Na, Ni, Pb, Se, Sr, and Zn). A two-centimeter-thick vertical section of the entire fruit body was divided into 101 partial sub-samples where the contents of the studied elements were determined using ICP OES. The actual distribution of the elements in the fruiting body profile was visualized using a GIS interpolation method resulting in distribution maps. The study provides valuable insights into the distribution patterns of 17 elements within the fruiting body of N. luridiformis. Based on the visualization of the elemental content, the determined elements can be divided into three categories. Elements accumulated primarily (i) in the cap (Al, Ag, Ca, Cd, Cu, Fe, K, Mg, Ni, and Zn), (ii) in the stipe (Ba, Mn, Na, Pb, and Se), and (iii) elements with non-specific distribution (Cr and Sr). Since such detailed information supported by graphical visualization has not been published to date, the information in this study will help to better understand the accumulation and distribution of elements within the fruiting bodies of wild as well as cultivated mushroom species.

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Identification of new selenium compounds produced by edible mushrooms

2025, Bierla, Katarzyna, Siwulski, Marek, Ouerdane, Laurent, Lobinski, Ryszard, Mleczek, Patrycja, Mleczek, Mirosław

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Wild-grown, tissue-cultured, and market Pleurotus ostreatus: Implications for chemical characteristics

2025, Siwulski, Marek, Magdziak, Zuzanna, Niedzielski, Przemysław, Gąsecka, Monika, Budka, Anna, Mleczek, Patrycja, Mleczek, Mirosław, Budzyńska, Sylwia

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Content of elements in contemporary and archaeological wood as a marker of possible change in physico-chemical parameters

2023, Zborowska, Magdalena, Niedzielski, Przemysław, Budka, Anna, Enenche, John, Mleczek, Mirosław

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Linking soil properties to elemental uptake patterns: species-specific accumulation in Boletales mushrooms

2025, Mleczek, Mirosław, Szostek, Małgorzata, Siwulski, Marek, Budka, Anna, Mleczek, Patrycja, Kuczyńska-Kippen, Natalia, Niedzielski, Przemysław, Budzyńska, Sylwia

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Spring and autumn rotifer community structure differentiates shallow water bodies in two European ecoregions: Poland and Croatia

2024, Kuczyńska-Kippen, Natalia, Špoljar, Maria, Pronin, Małgorzata, Zhang, Chen, Mleczek, Mirosław

AbstractRotifer structure may serve as predictor of environmental features, including temperate subclimates between water bodies. The difference in latitude between two temperate regions (Poland vs. Croatia) affects the identification of particular environmental factors that subsequently influence the taxon-related indices of rotifers. A study on 10 water bodies found that taxon-trait indices were sensitive in identifying latitude differences, even though extreme weather conditions were not considered, and only two seasons (spring and autumn) were examined. A variable rotifer community, with a high share of rare species, was obtained. We found a distinctiveness of abiotic factors between both countries, indicating a higher trophic state in Poland. Although habitat conditions were more similar in spring compared to the autumn, the percentage of rotifer common taxa was alike in both seasons but variation in distinct species community was clear. Trophic state increase in Poland was reflected in the structure of dominant and distinct species, with a wide range of eutrophy indicators. Comparing how rotifer species respond to environmental conditions is important for developing methods to assess trophic state changes due to climate change. Single species, distinct or rare species, are often the first sign of changes.

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Mineral composition variation in Boletales mushrooms—indication of soil properties and taxonomic influence

2024, Niedzielski, Przemysław, Siwulski, Marek, Szostek, Małgorzata, Budka, Anna, Budzyńska, Sylwia, Krzesłowska, Magdalena, Kalač, Pavel, Mleczek, Mirosław

AbstractThe efficiency of element accumulation depends on numerous factors, where the physico-chemical characteristics of the soil seem to be very important, and the role of taxonomic rank in the accumulation of elements by mushrooms seems to be important. The aim of the study was to compare the mineral composition of 7 species belonging to Leccinum and Suillus genera, collected between 2019 and 2021 from localizations in the west-central part of Poland. The research aimed to indicate the role of selected soil parameters in stimulating/inhibiting the accumulation of elements by selected Boletales mushroom species and to answer the question about the role of species belonging to the genus as an indicator determining the specific mineral composition of fruiting bodies. Soil pH and other soil properties (granulometric composition, organic carbon, degree of organic matter decomposition) may significantly affect mushrooms' mineral composition. Mushroom species belonging to Leccinum genus exhibited the higher amount of essential major and trace elements than species of Suillus genus). It suggests that the affiliation of the studied mushroom species to a specific genus may affect their mineral composition, and the physicochemical properties of the soil may be responsible for the lack of a clear division in the efficiency of element(s) accumulation. Selected species contain high amounts of K, Cu, Fe, and Zn, while others, such as selected Suillus gravellei fruiting bodies, also contain As and Cd. The results described serve as an introduction to a broader scientific discussion and require many further studies to confirm the role of taxonomic ranks and the influence of soil characteristics on the accumulation of elements by fruiting bodies. Graphical Abstract

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Elemental uptake and accumulation by wood decay fungi in relation to their nutrition strategy, rot type and mineral profile of the colonized wood

2025, Krzesłowska, Magdalena, Mleczek, Patrycja, Budka, Anna, Siwulski, Marek, Budzyńska, Sylwia, Niedzielski, Przemysław, Árvay, Július, Mleczek, Mirosław

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Drought Differently Modifies Tolerance and Metal Uptake in Zn- or Cu-Treated Male and Female Salix × fragilis L.

2024, Drzewiecka, Kinga, Gąsecka, Monika, Magdziak, Zuzanna, Rybak, Michał, Budzyńska, Sylwia, Rutkowski, Paweł, Niedzielski, Przemysław, Mleczek, Mirosław

The aim of this study was to determine the tolerance to metals (Zn, Cu) and drought of male and female Salix × fragilis L. under isolated and combined treatments, and to assess the metal uptake and profiling of metabolic plant responses. The 14-day experiment was performed in a hydroponic system, and metals were applied at 1.5 mM in a Knop’s solution. Drought simulation was achieved by adding sorbitol at a moderate level (200 mM). Isolated Zn treatment enhanced plant growth, more pronouncedly in females. Equimolar Cu treatment caused diverse reactions, and females exhibited significantly higher tolerance. Male specimens were less tolerant to isolated drought and to combined drought and metal presence. The highest contents of Cu and Zn were found in roots, compared to the aboveground tissues (wooden rods and leaves), of both female and male metal-treated plants. Simultaneously applied drought limited Zn accumulation in roots and elevated its translocation to leaves while increasing Cu accumulation, predominantly in females showing higher tolerance. Both isolated and combined drought and metals reduced leaf water content, caused the allocation of mineral nutrients (Ca, Mg, K, and Na), and affected metabolism in a stressor-specific and sex-dependent manner. For males, Cu accumulation in the leaves was significantly correlated with the majority of metabolites, while for both sexes, kaempferol and salicylic acid were strongly correlated, indicating their role in tolerance against the metal. The obtained results are an excellent starting point for the practical use of male and female Salix × fragilis L. in areas heavily polluted with Cu or Zn and exposed to drought, for the purpose of their recultivation.

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Species-specific preferences vs. soil composition impact – interplay in bioaccumulation of elements in edible mycorrhizal mushrooms

2025, Budzyńska, Sylwia, Mleczek, Patrycja, Siwulski, Marek, Niedzielski, Przemysław, Budka, Anna, Kuczyńska-Kippen, Natalia, Proch, Jędrzej, Árvay, Július, Szostek, Małgorzata, Mleczek, Mirosław

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Temporal arsenic form changes dynamics and accumulation patterns in Tilia cordata Mill. seedlings: Insights into metalloid transformation and tolerance mechanisms in trees

2024, Budzyńska, Sylwia, Izdebska, Aleksandra, Bierła, Katarzyna, Budka, Anna, Niedzielski, Przemysław, Mocek-Płóciniak, Agnieszka, Starzyk, Justyna Irena, Mleczek, Mirosław

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Copper, lead and zinc interactions during phytoextraction using Acer platanoides L. - a pot trial

2023, Mleczek, Mirosław, Budka, Anna, Gąsecka, Monika, Budzyńska, Sylwia, Drzewiecka, Kinga, Magdziak, Zuzanna, Rutkowski, Paweł, Goliński, Piotr, Niedzielski, Przemysław

AbstractOf the many environmental factors that modulate the phytoextraction of elements, little has been learnt about the role of metal interactions. The study aimed to show how different concentrations of Cu, Pb and Zn in the cultivation medium influenced the biomass, plant development and phytoextraction abilities ofAcer platanoidesL. seedlings. Additionally, the impact on the content and distribution of Ca, K, Mg and Na in plant parts was studied with an analysis of phenols. Plants treated with a mixture of two metals were characterised by lower biomass of leaves and higher major elements content jointly than those grown in the salt of one element. Leaves ofA. platanoidescultivated in Pb5 + Zn1, Pb1 + Zn1and Pb1 + Zn5experimental systems were characterised by specific browning of their edges. The obtained results suggest higher toxicity to leaves of Pb and Zn present simultaneously in Knop solution than Cu and Pb or Cu and Zn, irrespective of the mutual ratio of the concentrations of these elements. Antagonism of Cu and Zn concerning Pb was clearly shown in whole plant biomass when one of these elements was in higher concentration (5 mmol L−1) in solution. In the lowest concentrations (1 mmol L−1), there was a synergism between Cu and Zn in plant roots. Plants exposed to Zn5, Cu1 + Pb5, Pb5 + Zn1and Cu1 + Zn1were characterised by higher total phenolic content than the rest plants. Both the presence and the concentration of other elements in the soil are significant factors that modulate element uptake, total phenolic content, and plant development.Graphical Abstract

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Natural restoration of arsenic-contaminated environment with Quercus robur L. and Tilia cordata Mill.: 5-Year longitudinal study of dendroremediation dynamics

2024, Budzyńska, Sylwia, Niedzielski, Przemysław, Bierła, Katarzyna, Mleczek, Mirosław

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Can the concentration of elements in wild-growing mushrooms be deduced from the taxonomic rank?

2024, Mleczek, Mirosław, Siwulski, Marek, Budka, Anna, Niedzielski, Przemysław, Mleczek, Patrycja, Kuczyńska-Kippen, Natalia, Budzyńska, Sylwia, Karolewski, Zbigniew, Kalač, Pavel, Jędryczka, Małgorzata

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The accumulation of selected elements in wood from archaelogical site in Biskupin (Poland)

2023, Zborowska, Magdalena, Babiński, Leszek, Budka, Anna, Prądzyński, Włodzimierz, Niedzielski, Przemysław, Mleczek, Mirosław