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26 pages, 2423 KB  
Article
The Influence of Tree Species on Soil Development and Soil Classification in Reclaimed Post-Mining Areas
by Wiktoria Ogar, Tomasz Wanic, Bartłomiej Woś, Marcin Pietrzykowski and Agnieszka Józefowska
Sustainability 2026, 18(15), 7889; https://doi.org/10.3390/su18157889 - 4 Aug 2026
Viewed by 248
Abstract
Soil formation in post-mining areas is strongly influenced not only by parent material but also by the vegetation introduced during reclamation. Tree species affect pedogenic processes through litter input, root activity and associated microbial communities. This study investigates soil development in reclaimed post-mining [...] Read more.
Soil formation in post-mining areas is strongly influenced not only by parent material but also by the vegetation introduced during reclamation. Tree species affect pedogenic processes through litter input, root activity and associated microbial communities. This study investigates soil development in reclaimed post-mining landscapes, focusing on the combined influence of tree species and substrate properties. Two forest sites in Poland were analysed: Szczakowa (former open-pit sand mine) and Bełchatów (lignite mine spoil heap), 30–40 years after reclamation and afforestation with four dominant species: silver birch, European larch, Scots pine and red oak. Differences in soil development were observed among tree species. Stands with deciduous trees (birch and oak) were generally associated with clearer horizon differentiation, higher soil organic carbon and nitrogen content, and more pronounced iron redistribution compared with coniferous stands. The mean thickness of the combined organic-rich surface horizons was 12.4 cm at Szczakowa and 10.8 cm at Bełchatów. Coniferous species were more often linked with soil acidification and early stages of podzolisation-like processes, particularly in sandy substrates, whereas soils under deciduous species showed features related to brunification and organic matter incorporation. The study also included a comparison of soil classification systems, indicating that the World Reference Base for Soil Resources (WRB) offers a flexible framework for describing young and anthropogenically transformed soils compared with traditional national classifications. From a sustainability perspective, the results highlight that strategic species selection during reclamation, specifically promoting birch on sandy substrates and oak on heterogeneous technogenic substrates, enhances soil organic carbon accumulation, nutrient retention and iron cycling, thus contributing to the long-term restoration of ecosystem services on degraded post-mining landscapes. Full article
(This article belongs to the Section Sustainability, Biodiversity and Conservation)
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23 pages, 1887 KB  
Article
Development and Field Evaluation of a Microbially-Inoculated Feather–Straw–Lignite Compost Material for the Reclamation of Post-Mining Soils
by Anna Choińska-Pulit, Justyna Sobolczyk-Bednarek, Dominika Kufka and Amelia Zielińska
Materials 2026, 19(14), 3035; https://doi.org/10.3390/ma19143035 - 14 Jul 2026
Viewed by 349
Abstract
This study addresses degraded post-mining soil reclamation by developing a novel, microbially-inoculated waste-derived feather–straw–lignite organic-mineral compost material. Formulated from chicken feathers (20%), wheat straw (60%), and lignite (20%) to optimize the initial C:N ratio, the substrate was inoculated with a multi-strain complex (MIX) [...] Read more.
This study addresses degraded post-mining soil reclamation by developing a novel, microbially-inoculated waste-derived feather–straw–lignite organic-mineral compost material. Formulated from chicken feathers (20%), wheat straw (60%), and lignite (20%) to optimize the initial C:N ratio, the substrate was inoculated with a multi-strain complex (MIX) of Bacillus altitudinis 33, Bacillus methylotrophicus Alk, and Streptomyces fulvissimus K59. Testing progressed from laboratory scale to a 200 dm3 dynamic reactor and a 2025 field evaluation with maize (Zea mays L.) on sandy mining soils in Konin (Poland). Inoculation accelerated maturation, yielding a favorable C:N ratio of 12.09 and stabilized NH4-N of 0.03%. Peak dehydrogenase activity reached 16 DU by day 3. Field application enhanced sandy soil properties, increasing urease activity to 3.91 UU and providing 3.4 g/kg P2O5. Consequently, maize showed a highly significant 15% increase in average shoot height (30.23 cm vs. 25.88 cm in control; t(645) = 6.63, p < 0.001) and intense green coloration. However, absolute soil enzymatic activity remained low due to early spring moisture limitations and temperature constraints typical of temperate climates. These initial findings suggest that the microbially-enriched compost shows strong potential as a safe functional soil-reclamation material and compliant alternative to synthetic fertilizers. Full article
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22 pages, 9961 KB  
Article
Research on Mechanical Properties and Damage Evolution of Lignite Under Uniaxial Cyclic Loading and Unloading: Insights into Crack Propagation and Energy Dissipation
by Yunhao Wang, Hongfa Ma, Linlin Jin, Jiang Yu, Dawei Yin, Junhao Bai, Kun Cheng and Xiangrui Meng
Processes 2026, 14(12), 1931; https://doi.org/10.3390/pr14121931 - 13 Jun 2026
Viewed by 323
Abstract
In lignite open-pit mines, the blasting mining method and large-scale mechanical shovelling processes induce substantial cyclic disturbances in coal seams at the terminal slope during lignite extraction, significantly increasing the risk of slope destabilisation and damage. Consequently, uniaxial cyclic loading and unloading experiments [...] Read more.
In lignite open-pit mines, the blasting mining method and large-scale mechanical shovelling processes induce substantial cyclic disturbances in coal seams at the terminal slope during lignite extraction, significantly increasing the risk of slope destabilisation and damage. Consequently, uniaxial cyclic loading and unloading experiments were conducted to evaluate the mechanical properties and energy evolution of lignite. Acoustic emission (AE) characteristics and macroscopic crack evolution of lignite under cyclic loading and unloading conditions were analysed using AE counts and b-values. The energy evolution of lignite was further examined to elucidate the mechanisms of crack propagation and instability failure. The results indicate that initial damage exists within the lignite, and cyclic loading weakens its mechanical properties. Specifically, the irrecoverable damage resulting from the continuous development of internal cracks leads to the continuous deterioration of the mechanical properties of lignite. During the process of damage accumulation, the energy evolution characteristics of the lignite shift from being dominated by plastic energy dissipation to being dominated by elastic energy storage, which triggers higher energy dissipation and release at the cumulative damage stage. Furthermore, as the stress level increases, the cracks in the lignite transition from tensile–shear composite cracks to predominantly tensile cracks. These findings provide critical insights into the mechanisms of instability and failure in open-pit slopes subjected to cyclic loading and unloading, contributing to the advancement of slope stability management in lignite mining operations. Full article
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12 pages, 2525 KB  
Communication
Black Locust Restoration Plantations Reduce Noise Exposure at a Mining Area in Greece
by Chariton Sachanidis, Natasa Kiorapostolou, Nikoleta Eleftheriadou, Mariangela N. Fotelli, Nikos Markos, Nikolaos M. Fyllas and Kalliopi Radoglou
Forests 2026, 17(6), 690; https://doi.org/10.3390/f17060690 - 10 Jun 2026
Viewed by 474
Abstract
Mining activities elevate environmental noise and represent a major disturbance in terrestrial ecosystems. Vegetation belts are often used as mitigation measures. This study evaluates the role of Robinia pseudoacacia L. forest plantations in reducing noise at the lignite complex of western Macedonia, in [...] Read more.
Mining activities elevate environmental noise and represent a major disturbance in terrestrial ecosystems. Vegetation belts are often used as mitigation measures. This study evaluates the role of Robinia pseudoacacia L. forest plantations in reducing noise at the lignite complex of western Macedonia, in Greece. Field measurements of noise level (LAeq) were conducted inside and outside the plantations from spring to autumn during 2020 and 2021. Measurements were taken at five points across four sites differing in their distance from the noise source. Leaf Area Index (LAI) was recorded, and meteorological variables were measured concurrently. Linear mixed-effect models were used to assess the effects of forest presence, distance from source, climatic conditions, and LAI, while accounting for repeated measurements across sampling days and sites. Noise levels were significantly lower within plantations than outside, indicating that restored forest stands can act as buffers to mining noise. The distance of trees from the noise source and atmospheric conditions are also significant drivers of noise levels. These findings highlight the potential of post-mining plantations to provide an additional acoustic regulation service in restored industrial landscapes. Full article
(This article belongs to the Section Forest Ecology and Management)
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28 pages, 4817 KB  
Article
Social Impacts of Mining: Extending the Literature Review Findings in the Case of the Lignite Mines in Western Macedonia, Greece
by Francis Pavloudakis, Christos Roumpos, Evangelos Karlopoulos and Chrisoula Pagouni
Land 2026, 15(5), 867; https://doi.org/10.3390/land15050867 - 18 May 2026
Viewed by 322
Abstract
Drawing on an extensive literature review, this paper identifies key dimensions of social impact and land management in surface mining areas, including settlement relocation, long-term land occupation, limited economic diversification, demographic decline, and stakeholder distrust. These findings are then critically applied to the [...] Read more.
Drawing on an extensive literature review, this paper identifies key dimensions of social impact and land management in surface mining areas, including settlement relocation, long-term land occupation, limited economic diversification, demographic decline, and stakeholder distrust. These findings are then critically applied to the Ptolemais lignite basin, where six decades of large-scale surface mining reshaped land use patterns, displaced settlements, and structured a highly specialized regional economy. The research combines qualitative literature analysis with a case study approach, supported by socioeconomic and demographic indicators. Results show that (i) lignite exploitation generated employment, infrastructure, and regional income multipliers but also structural vulnerabilities and other impacts, (ii) land occupation and settlement relocation as an impact of mine expansion created long-term spatial constraints, and (iii) the energy transition phase intensified demographic, unemployment, and governance challenges. The paper argues that effective post-lignite restructuring is related to systematic reclamation strategies, integrated land-use planning, optimal exploitation of reclaimed land, diversification beyond energy production, and participatory governance frameworks. By linking international theoretical insights with empirical evidence from Western Macedonia, the study contributes to the debate on socially just and spatially balanced transitions in former coal and lignite regions. Full article
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18 pages, 29477 KB  
Article
Assessing Forestry Reclamation Success in Lignite Mine External Dumps Using Remote Sensing Techniques
by Bogna Mika and Jakub Ceglarek
Sustainability 2026, 18(9), 4493; https://doi.org/10.3390/su18094493 - 2 May 2026
Viewed by 1169
Abstract
Open-pit lignite mining causes significant environmental alterations, particularly through the removal of soil deposits and the creation of external dumps, which necessitate effective reclamation to restore landscape structures. This study evaluates the potential of using multi-temporal remote sensing data to assess the effectiveness [...] Read more.
Open-pit lignite mining causes significant environmental alterations, particularly through the removal of soil deposits and the creation of external dumps, which necessitate effective reclamation to restore landscape structures. This study evaluates the potential of using multi-temporal remote sensing data to assess the effectiveness of forest reclamation on selected external dumps of the Adamów, Bełchatów, and Turów Lignite Mines in Poland. Using Landsat imagery spanning five decades from 1976 to 2023, the study monitors vegetation development through the Normalized Difference Vegetation Index (NDVI) and the Soil-Adjusted Vegetation Index (SAVI). Reclaimed forest stands were compared against undisturbed reference forests within a 30 km buffer zone, with recovery defined as achieving 95% of the reference values. The results indicate that most studied sites reached a state of recovery, with success closely linked to the specific reclamation measures implemented and the age of the forest stands. Notably, the Adamów mine, which utilized Bender’s target species method, demonstrated rapid results, achieving high similarity to reference forests early in the analyzed period. In contrast, recovery in Bełchatów and Turów was more gradual, following trajectories influenced by pioneer and biodynamic afforestation methods. Ultimately, the study confirms that remote sensing is a highly efficient tool for monitoring extensive post-mining areas over long periods, providing a general assessment of biological restoration success. Full article
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44 pages, 7390 KB  
Article
Experimental Stress Analysis of Mast–Counterweight Connection in a Modified Bucket-Wheel Excavator ERc 1400-30/7 Using Strain-Gauge Measurements
by Angela Maria Andreica, Mădălin Andreica and Mădălina Dănilă
Mining 2026, 6(1), 20; https://doi.org/10.3390/mining6010020 - 4 Mar 2026
Viewed by 864
Abstract
Background: Bucket-wheel excavators are critical assets in surface mining operations, where structural modifications to increase productivity must be validated through rigorous stress analysis to ensure operational safety. Following modification of an ERc 1400-30/7 excavator’s bucket wheel from 18 to 20 buckets, increased operational [...] Read more.
Background: Bucket-wheel excavators are critical assets in surface mining operations, where structural modifications to increase productivity must be validated through rigorous stress analysis to ensure operational safety. Following modification of an ERc 1400-30/7 excavator’s bucket wheel from 18 to 20 buckets, increased operational loads necessitated experimental verification of structural integrity. Methods: A custom 10-channel strain-gauge data acquisition system with 0–10 kHz bandwidth measured stresses in cable anchoring lugs and H-type diagonal members under operational conditions at the Jilț lignite mine, Romania. Measurements were performed during both left and right bucket-wheel rotation. Finite element analysis validated experimental results. Results: Maximum equivalent stresses of 210.0 MPa and 167.1 MPa were measured in the left and right anchoring lugs, respectively, during left bucket-wheel rotation, representing 59% and 47% of material yield strength with safety factors of 1.69 and 2.12. Significant load asymmetry was observed, with left rotation inducing 220–284% higher stresses than right rotation. FEA validation showed <15% agreement with measurements. Dynamic stress amplification of 15–32% above quasi-static values was attributed to bucket–soil interaction and structural vibration. Conclusions: Despite increased operational loads, measured stresses remain below yield strength, confirming structural adequacy. Both anchoring lugs require prioritized monitoring due to elevated stress levels and load asymmetry. The validated methodology provides a framework for post-modification verification of large mining equipment. Full article
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31 pages, 41513 KB  
Article
Dynamic Dehydration Characteristics of Macerals in Lignite During Drying and Their Effects on Pore–Fracture Evolution and Physico-Mechanical Properties
by Shuai Yan, Lijun Han, Jianwei Ren, Wenlong Dong and Gensheng Li
Fractal Fract. 2026, 10(3), 152; https://doi.org/10.3390/fractalfract10030152 - 26 Feb 2026
Viewed by 472
Abstract
Understanding the changes in physical and mechanical properties of lignite during dehydration is crucial for its sustainability in coal mining, exploitation of coalbed methane, and carbon dioxide sequestration. Through SEM and Computed Tomography (CT) scanning, combined with fractal theory, this study investigates dynamic [...] Read more.
Understanding the changes in physical and mechanical properties of lignite during dehydration is crucial for its sustainability in coal mining, exploitation of coalbed methane, and carbon dioxide sequestration. Through SEM and Computed Tomography (CT) scanning, combined with fractal theory, this study investigates dynamic dehydration characteristics of macerals in lignite during normal temperature drying (NTD), and their effects on pore–fracture development and physic–mechanical property evolution. The results show that the hard layers of lignite are mainly composed of ulminite (Ul), while the soft layers are primarily composed of fusinite (Fu), densinite (De), and Ul. Ul exhibits low dehydration efficiency but is prone to shrinkage and cracking heavily, whereas Fu has high dehydration efficiency and excellent thermal stability. The layered enrichment of macerals controls the development of the three-dimensional (3D) pore–fracture structures of lignite during NTD and leads to distinct cracking characteristics of fracture structures between hard and soft layers. Unlike soft layers, hard layers tend to form long, straight fracture structures with large apertures and exhibit extremely high fracture connectivity and fractal dimension (FD). In addition, the differential drying behavior of macerals causes the physical parameters of lignite such as moisture ratio (MR), drying rate (DR), and density (ρ) to show a dynamic evolution characteristic of “initial rapid decline (or increase) in the early stage–subsequent gradual decline (or increase) and stabilization in the later stage” during NTD. The unique pore–fracture structure controlled by macerals significantly alters the deformation resistance and failure mode of dehydrated lignite under uniaxial compression but has limited effect on its uniaxial compressive strength. Full article
(This article belongs to the Section Engineering)
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29 pages, 2818 KB  
Article
Beyond the Footprint: Empirical Land Use and Environmental Patterns of Wind Energy in Mountainous Landscapes
by Andreas Vlamakis, Ioanna Eleftheriou, Sevie Dima, Efi Karra and Panagiotis Papastamatiou
Land 2026, 15(2), 344; https://doi.org/10.3390/land15020344 - 19 Feb 2026
Viewed by 2430
Abstract
In a world of over 8.2 billion people, the land footprint of any infrastructure has become a critical factor in sustainable spatial planning. In the case of wind energy deployment, land use primarily involves hardstands, access roads, and interconnection infrastructure. This study focuses [...] Read more.
In a world of over 8.2 billion people, the land footprint of any infrastructure has become a critical factor in sustainable spatial planning. In the case of wind energy deployment, land use primarily involves hardstands, access roads, and interconnection infrastructure. This study focuses on Greece, a country with complex mountainous terrain, where Wind Power Stations are predominantly installed along ridgelines and slopes. Using GIS analysis based on digitization of actual on-site infrastructure, we measured the land coverage of wind energy facilities with a total installed capacity of nearly 2.6 GW. We found an average land-use intensity of 0.33 hectares per megawatt (ha/MW), placing it near the lower end of the range reported in international literature. For the subset of projects with available energy yield data, the value was 1.58 square meters per megawatt-hour (m2/MWh). This approach provides one of the largest, nationally representative, infrastructure-based estimates of actual wind energy land use in complex terrain. Applying these findings to the onshore wind deployment targets of Greece’s National Energy and Climate Plan (NECP) for 2030 and 2050, we estimate that only 0.02–0.03% of the country’s land area will be occupied by wind energy infrastructure. By comparison, lignite mining has already transformed approximately 0.13% of the national territory—almost four times more land than projected for wind energy use in 2050. Further spatial analysis was conducted to identify the land use categories associated with wind energy infrastructure, while for the subset of projects located within Natura 2000 protected areas, the types of affected habitats were also examined. Treating land coverage as a standalone proxy for environmental impact should be avoided; the study demonstrates the need for a context-sensitive interpretation of land use, accounting for ecological context, land-use compatibility, and positive co-benefits, such as improved forest accessibility, fire prevention works and recreation parks. Repowering maximizes land efficiency by extending wind farm lifetimes without expanding their footprint. Full article
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17 pages, 2366 KB  
Article
Enhancing Restoration of Arid Mining Area Using Lignite-Based Superabsorbent Gel
by Zhaojun Yang, Naeem Akram, Lei Zhou, Saman Khawaja, Yi Zhang and Jia Guo
Gels 2026, 12(2), 155; https://doi.org/10.3390/gels12020155 - 9 Feb 2026
Viewed by 841
Abstract
This research designed a high-performance superabsorbent gel aligned on the integration of lignite humic residue (LHR) with a polymeric organic network in order to address ecological restoration challenges in the arid mining area in Xinjiang. This water-retaining agent was synthesized by employing solution [...] Read more.
This research designed a high-performance superabsorbent gel aligned on the integration of lignite humic residue (LHR) with a polymeric organic network in order to address ecological restoration challenges in the arid mining area in Xinjiang. This water-retaining agent was synthesized by employing solution polymerization techniques using acrylic acid (AA) and acrylamide (AM) as monomers, lignite hydrothermal residue (LHR) as a functional additive, and ammonium persulphate (APS) as the initiator. The resulting lignite hydrothermal residue–polyacrylic gel composite material was obtained by using N,N′-methylene-bisacrylamide (MBA) as the primary crosslinking agent. The water absorption capacity and mechanical strength of the acrylic gel were further enhanced by specifically incorporating low-cost, safe, and non-toxic lignite humic residue (LHR). The performance test indicated that this gel achieved a maximum water absorption of 522 g·g−1 in distilled water and 65.5 g·g−1 in 0.9% sodium chloride solution. Its reusability and water absorption capacity remained above 81.8% even after five cycles of natural dehydration and reabsorption. The method for synthesizing this superabsorbent gel effectively constructs a soil water retention network structure, improving the soil microenvironment, and enhancing plant salt tolerance. The field trial results showed that the application of this LHR-AA-AM superabsorbent gel considerably improved vegetation coverage in mining areas. Hence, this study provides an efficient and economical superabsorbent material for ecological restoration of saline–alkali land in arid regions without soil replacement, demonstrating promising application prospects. Full article
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38 pages, 2230 KB  
Systematic Review
Assessing Mining-Related Water Impacts: A Case Study-Based Systematic Review Supporting a More Comprehensive Approach
by Frank Winde and Antonio M. Newman-Portela
Sustainability 2026, 18(4), 1774; https://doi.org/10.3390/su18041774 - 9 Feb 2026
Cited by 2 | Viewed by 9274
Abstract
Mining-related impacts on water are often more persistent, costly, and extensive than suggested by standard reporting practice which frequently omits the indirect impacts on third parties associated with mining-induced alterations to water flow and quality and rarely covers the associated economic knock-on effects [...] Read more.
Mining-related impacts on water are often more persistent, costly, and extensive than suggested by standard reporting practice which frequently omits the indirect impacts on third parties associated with mining-induced alterations to water flow and quality and rarely covers the associated economic knock-on effects (costs). Based on a literature review, this paper aims to identify and categorise such underreported impacts using 15 international case studies from nine countries covering surface and underground operations and a wide range of commodities. For each of the seven proposed water impact categories such as discharge of mine effluents, mine waste-related pollution, de- and rewatering, hydrological alterations, etc., corresponding case studies and associated key impact parameters are compiled. Linking mining-induced pollution to water quantity and costs is proposed as a potential means to curb the externalisation of costs. In addition to the literature data, original calculations are provided on how the creation of vast “lakescapes” in former lignite districts exacerbates water stress in two of Germany’s driest regions. The main objective is to strengthen the future licencing decisions of authorities and better anticipate mining-induced water impacts at a time when rising demand for energy transition metals intensifies the competition for limited water resources in many already water-stressed mining regions. Full article
(This article belongs to the Special Issue Sustainability in Hydrology and Water Resources Management)
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24 pages, 5738 KB  
Article
Rapid Multi-Factor Evaluation System for Full-Process Risk Assessment of Coal Spontaneous Combustion in Engineering Applications
by Kexin Liu, Yutao Zhang and Yaqing Li
Fire 2026, 9(2), 60; https://doi.org/10.3390/fire9020060 - 28 Jan 2026
Viewed by 1079
Abstract
Existing coal spontaneous combustion liability assessments suffer from incomplete temperature range coverage, poor cross-rank comparability, and weak correlations between microscopic essence and macroscopic criteria—issues that undermine reliability and risk coal mine safety. This study aims to establish a structure-driven intrinsic identification system to [...] Read more.
Existing coal spontaneous combustion liability assessments suffer from incomplete temperature range coverage, poor cross-rank comparability, and weak correlations between microscopic essence and macroscopic criteria—issues that undermine reliability and risk coal mine safety. This study aims to establish a structure-driven intrinsic identification system to address these gaps. Using 10 cross-rank coal samples (lignite, bituminous coal, and anthracite), we conducted systematic research via experiments, model building, and theoretical verification. We integrated three stage-specific parameters (each matching a combustion phase): saturated oxygen uptake (VO2, 30 °C chromatographic adsorption), average heating rate R70 (40–70 °C adiabatic oxidation), and Fuel Combustion Characteristic index (FCC, 110–230 °C crossing point method). With Information Entropy weighting (VO2: 0.296; R70: 0.292; and FCC: 0.412), we constructed the Multi-Factor Comprehensive Spontaneous Combustion Index (MF-CSCI). We also screened functional groups via FTIR, built a microstructure-driven model (MD-CSEI, linking groups to MF-CSCI), and verified mechanisms via DFT. Results show MF-CSCI covers the full “adsorption-heat accumulation-self-heating” process: HG lignite (MF-CSCI = 1.0) had high liability and YCW anthracite (MF-CSCI = 7.98) had low liability, solving cross-rank issues. Pearson analysis found –OH positively correlated with MF-CSCI (r ≈ −0.997), C=C negatively (r ≈ −0.951); MD-CSEI achieved R2 = 0.863 (p = 0.042). This study improves cross-rank assessment accuracy, enables rapid micro-to-macro risk prediction, and provides a theoretical basis for on-site coal safety management. Full article
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32 pages, 1461 KB  
Article
Social–Ecological Systems for Sustainable Water Management Under Anthropopressure: Bibliometric Mapping and Case Evidence from Poland
by Grzegorz Dumieński, Alicja Lisowska, Adam Sulich and Bogumił Nowak
Sustainability 2026, 18(2), 993; https://doi.org/10.3390/su18020993 - 19 Jan 2026
Cited by 2 | Viewed by 1297
Abstract
The aim of this article is to present the social–ecological system (SES) as a unit of analysis for sustainable water management under conditions of anthropogenic pressure in Poland. In the face of accelerating climate change and growing human impacts, Polish water systems are [...] Read more.
The aim of this article is to present the social–ecological system (SES) as a unit of analysis for sustainable water management under conditions of anthropogenic pressure in Poland. In the face of accelerating climate change and growing human impacts, Polish water systems are exposed to increasing ecological stress and to material and immaterial losses affecting local communities. The SES approach provides an integrative analytical framework that links ecological and social components, enabling a holistic view of adaptive and governance processes at multiple spatial scales, from municipalities to areas that transcend administrative boundaries. Methodologically, this study triangulates three complementary approaches to strengthen explanatory inference. This conceptual SES review defines the analytical categories used in the paper, the bibliometric mapping (Scopus database with VOSviewer) identifies dominant research streams and underexplored themes, and the qualitative Polish case studies operationalize these categories to diagnose mechanisms, feedbacks, and governance vulnerabilities under anthropogenic pressure. The bibliometric analysis identifies the main research streams at the intersection of SES, water management and sustainable development, revealing thematic clusters related to climate change adaptation, environmental governance, ecosystem services and hydrological extremes. The case studies - the 2024 flood, the 2022 ecological disaster in the Odra River, and water deficits associated with lignite opencast mining in Eastern Wielkopolska - illustrate how anthropogenic pressure and climate-related hazards interact within local SES and expose governance gaps. Particular attention is paid to attitudes and social participation, understood as configurations of behaviors, knowledge and emotions that shape decision-making in local self-government, especially at the municipal level. This study argues that an SES-based perspective can contribute to building the resilience of water systems, improving the integration of ecological and social dimensions and supporting more sustainable water management in Poland. Full article
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19 pages, 1142 KB  
Article
Impact of Lignite Combustion Air Pollution on Acute Coronary Syndrome and Atrial Fibrillation Incidence in Western Macedonia, Greece
by Vasileios Vasilakopoulos, Ioannis Kanonidis, Christina-Ioanna Papadopoulou, George Fragulis and Stergios Ganatsios
Int. J. Environ. Res. Public Health 2026, 23(1), 113; https://doi.org/10.3390/ijerph23010113 - 16 Jan 2026
Viewed by 1733
Abstract
Air pollution from lignite combustion represents a major environmental and public health concern, particularly for cardiovascular disease. This study investigated the relationship between ambient air pollution and hospital admissions for Acute Coronary Syndromes (ACS) and Atrial Fibrillation (AF) in Western Macedonia, Greece—a region [...] Read more.
Air pollution from lignite combustion represents a major environmental and public health concern, particularly for cardiovascular disease. This study investigated the relationship between ambient air pollution and hospital admissions for Acute Coronary Syndromes (ACS) and Atrial Fibrillation (AF) in Western Macedonia, Greece—a region historically dominated by lignite mining and power generation. Air quality data for PM10, SO2, and NOx from 2011–2014 and 2021 were analyzed alongside hospital admission records from four regional hospitals (Kozani, Ptolemaida, Florina, Grevena). Spatial analyses revealed significantly higher pollutant concentrations and cardiovascular admissions in high-exposure areas near power plants compared with the control area. Temporal analyses demonstrated a pronounced decline in pollutant levels between 2014 and 2021, coinciding with lignite phase-out and accompanied by a marked reduction in ACS and AF hospitalizations, particularly in the high-exposure areas of Ptolemaida and Florina. Correlation analyses indicated modest but significant positive associations between monthly pollutant concentrations and cardiovascular admissions. These findings provide real-world evidence that reductions in air pollution following lignite decommissioning were associated with improved cardiovascular outcomes. The study underscores the medical importance of air quality improvement and highlights emission reduction as a critical strategy for cardiovascular disease prevention in transitioning energy regions. Full article
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5 pages, 159 KB  
Proceeding Paper
Gender Dimensions of Bioeconomy Change: Insights from Western Macedonia
by Aikaterini Paltaki, Maria Partalidou, Stefanos A. Nastis, Dimitrios Natos, Panagiota Sergaki, Fotios Chatzitheodoridis, Efstratios Loizou and Anastasios Michailidis
Proceedings 2026, 134(1), 34; https://doi.org/10.3390/proceedings2026134034 - 7 Jan 2026
Viewed by 343
Abstract
Western Macedonia, the leading power-producing region in Greece, has long depended on thermoelectric plants and lignite mining. To reach climate neutrality by 2050, Greece is undergoing a delignitization process aiming to shut down all lignite plants. This structural reconstruction of the energy model [...] Read more.
Western Macedonia, the leading power-producing region in Greece, has long depended on thermoelectric plants and lignite mining. To reach climate neutrality by 2050, Greece is undergoing a delignitization process aiming to shut down all lignite plants. This structural reconstruction of the energy model will mainly affect society, the economy, the environment, and agriculture. Strengthening efforts to support lignite-dependent areas are essential for this transition. Bioeconomy could be one of the main pillars for the post-lignite era in the Western Macedonia Region (WMR). This paper explores the gender dimension in the adoption of bioeconomy practices and innovativeness among farmers in the Region of Western Macedonia. Based on 331 structured questionnaires and a Two-Step Cluster Analysis, the research identifies five farmer clusters and then correlates the clusters with Rogers’s theory of diffusion of innovations. The findings identify a dynamic group of young female farmers leading the diffusion of innovation, emphasizing their role in promoting sustainable agricultural transitions and the need for gender-responsive policies in regional bioeconomy strategies. Full article
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