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Keywords = radon reduction

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31 pages, 1318 KB  
Review
Indoor Radon in New Mexico: A Review of Uranium-Series Sources, Measurement and Monitoring Gaps, and Pathways to Equitable Exposure Reduction
by Reynold E. Silber, Elizabeth A. Silber, Kyle Staggs and Carman Melendrez
Appl. Sci. 2026, 16(16), 7941; https://doi.org/10.3390/app16167941 - 10 Aug 2026
Viewed by 305
Abstract
Radon-222, a decay product of the uranium-238 series, is the principal source of natural ionizing-radiation exposure in most indoor environments and an established cause of lung cancer. In New Mexico, uranium-bearing geology, a legacy of uranium mining and milling, and arid, variably constructed [...] Read more.
Radon-222, a decay product of the uranium-238 series, is the principal source of natural ionizing-radiation exposure in most indoor environments and an established cause of lung cancer. In New Mexico, uranium-bearing geology, a legacy of uranium mining and milling, and arid, variably constructed housing create elevated but poorly characterized geogenic radon potential. This evidence-informed narrative review examines radon protection in New Mexico by synthesizing the radiological basis of the hazard (uranium-series sources, radium-226 emanation, and soil–gas transport into buildings) with measurement, monitoring, and mapping evidence relevant to under-resourced regions. We emphasize that representative, high-resolution indoor radon measurements for the state are still lacking. We show that the central challenge is not only geologic potential but the uneven distribution of measurement, testing, and mitigation capacity across housing type, tenure, geography, and jurisdiction, including Tribal lands governed by consent-based data agreements. We evaluate monitoring and outreach interventions by evidence strength and outline a phased, standards-based program (statewide measurement and data systems, high-resolution mapping, school and rental testing, workforce development, and mitigation support) to convert radiological knowledge into measurable, equitable exposure reduction. New Mexico serves as a well-documented representative example; the synthesis is intended to inform other rural, Tribal, and under-resourced jurisdictions. Full article
(This article belongs to the Special Issue Radioactivity Sources, Monitoring and Environmental Effects)
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18 pages, 6222 KB  
Article
Towards Radon Mitigation Actions: Mapping the Baseline Scenario in Italy
by Francesco Salvi
Environ. Remediat. 2026, 1(2), 7; https://doi.org/10.3390/environremediat1020007 - 3 Aug 2026
Viewed by 355
Abstract
European regulations require Member States to develop strategies for reducing radon exposure in buildings. Italy has adopted a national radon action plan aimed at defining strategies for reducing the long-term risks associated with indoor radon. Based on public data provided by the national [...] Read more.
European regulations require Member States to develop strategies for reducing radon exposure in buildings. Italy has adopted a national radon action plan aimed at defining strategies for reducing the long-term risks associated with indoor radon. Based on public data provided by the national radon database, a baseline scenario in Italy has been developed for key risk reduction actions, quantifying radon measurements in buildings, buildings above the reference level, and remedial actions in buildings. The results show that the buildings tested account for less than 1%, and only 9% of the buildings above the reference level have been remediated. This highlights the importance of continuing to measure radon levels in buildings and the need to step up remediation efforts. Using the available data, the current national situation is outlined using three key parameters, which can be easily updated and which are necessary to guide policymakers on measurement programmes and radon mitigation strategies required by national legislation. Based on the results, the municipalities with the most reliable data were ranked according to the necessary actions to be taken and the priorities for intervention. Updating the scenario over time will make it possible to compare the results achieved with the initial baseline in order to assess the effectiveness of the regulatory strategy at the national level. Full article
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23 pages, 1364 KB  
Article
Future Inpatient Cost Burden of Laryngeal Cancer in Romania: Aging, Residence, and Prevention Scenarios in a Nationwide Ecological Study
by Andreea-Mihaela Banța, Livia Stanga, Ingrid-Denisa Barcan, Anda-Ioana Morgovan, Alexandru Orasan, Bogdan Hîrtie, Nicolae-Constantin Balica, Karina-Cristina Marin, Mihaela-Cristina Negru, Delia Ioana Horhat and Marius Papurica
Healthcare 2026, 14(13), 2007; https://doi.org/10.3390/healthcare14132007 - 6 Jul 2026
Viewed by 400
Abstract
Background and Objectives: Laryngeal cancer imposes substantial inpatient costs in middle-income health systems. We described recent trends in laryngeal cancer hospitalizations in Romania, estimated hospital expenditure, and modeled the impact of prevention scenarios to 2035. Methods: We conducted an ecological analysis of 20,056 [...] Read more.
Background and Objectives: Laryngeal cancer imposes substantial inpatient costs in middle-income health systems. We described recent trends in laryngeal cancer hospitalizations in Romania, estimated hospital expenditure, and modeled the impact of prevention scenarios to 2035. Methods: We conducted an ecological analysis of 20,056 discharges diagnosed as laryngeal cancer (ICD-10 C32.x) between 2019 and 2023. Each episode was assigned a mean unit cost of 1100 USD, with age- and residence-specific adjustments, and re-priced using EU (3900 USD) and US (30,000 USD) tariffs. We derived annual costs and projected 2035 expenditure under three prevention scenarios. Results: Annual discharges fell from 5408 in 2019 to 3151–3212 in 2020–2021, then rose to 4409 in 2023, while inpatient spending ranged from 3.47 to 5.95 million USD, reaching 4.85 million USD in 2023 (22,200 USD/100,000 population). Re-pricing 2023 activity at EU and US unit costs yielded counterfactual totals of 17.20 and 132.27 million USD. Older adults (≥65 years) generated 47.6% of discharges and 49.1% of spending in 2023, and urban residence increased the odds of age ≥65 by 48% (OR 1.48, 95% CI 1.40–1.57). Without new prevention, costs are projected to reach 12.60 million USD by 2035; a 30% smoking reduction and a combined package including radon mitigation and dysphonia screening would lower 2035 costs to 10.33 and 9.07 million USD. Conclusions: Demographic aging and sustained case volume will markedly increase hospital costs, while prevention scenarios are associated with lower projected inpatient expenditure. Full article
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31 pages, 3241 KB  
Article
A Two-Point Propagation Field of a Single Photon: A Way to X-Ray Picometer Displacement Detection and Nanometer Resolution 3D X-Ray Micro-Tomography
by Lihua Yu
Photonics 2026, 13(5), 495; https://doi.org/10.3390/photonics13050495 - 16 May 2026
Viewed by 519
Abstract
We introduce the two-point propagation field (TPPF)—a real-valued, phase-sensitive quantity defined as the functional derivative of the single-photon detection probability with respect to an infinitesimal opaque perturbation placed between the source and detection slits. The TPPF is analytically derived and shown to exhibit [...] Read more.
We introduce the two-point propagation field (TPPF)—a real-valued, phase-sensitive quantity defined as the functional derivative of the single-photon detection probability with respect to an infinitesimal opaque perturbation placed between the source and detection slits. The TPPF is analytically derived and shown to exhibit a stable, high-frequency sinusoidal structure with periods of 4~7 nm near the X-ray detection slit. This structure enables shot-noise-limited displacement detection with ∼200 pm precision for 6 keV X-rays using total photon counts on the order of 1 × 107 and detector photon counting as low as 287. Beyond displacement detection, the TPPF physically performs a Fourier–Radon transformation of the projection data, providing a pathway to non-iterative frequency-domain tomography. Two conceptual strategies—a central blocker and off-axis multi-slit arrays—are estimated to lower the required incident photon budget by more than one order of magnitude each, yielding combined reductions of two to three orders of magnitude with near-term detector development. The TPPF concept, originally developed in a perturbative study of single-particle propagation, bridges quantum measurement questions with practical high-resolution X-ray physics. This work provides the foundational physics required for future discrete sampling and 3D numerical reconstruction algorithms. Full article
(This article belongs to the Special Issue Recent Progress in Single-Photon Generation and Detection)
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13 pages, 1832 KB  
Article
Evaluating Radon Adsorption Characteristics of Adsorbents by Parallel Exposures at Different Temperatures
by Dobromir Pressyanov, Momchil Momchilov and Peter A. Georgiev
Appl. Sci. 2026, 16(9), 4183; https://doi.org/10.3390/app16094183 - 24 Apr 2026
Viewed by 582
Abstract
Reliable determination of radon adsorption properties in candidate adsorbents is essential for developing highly sensitive methods capable of measuring low 222Rn activity concentrations in air. Such measurements are increasingly important in environmental monitoring, climate research, and low-background experiments. Conventional approaches for determining [...] Read more.
Reliable determination of radon adsorption properties in candidate adsorbents is essential for developing highly sensitive methods capable of measuring low 222Rn activity concentrations in air. Such measurements are increasingly important in environmental monitoring, climate research, and low-background experiments. Conventional approaches for determining the adsorption coefficient and heat of adsorption are labor- and time-intensive, limiting their suitability for comparative studies under identical conditions. Here, a recently proposed method is applied for the first time in a systematic comparative study. The approach couples solid-state nuclear track detectors (SSNTDs) with adsorbents that simultaneously act as radon collectors and alpha emitters, enabling fully parallel exposure and signal acquisition across multiple samples. Eight adsorbents—three activated carbon fabrics, two bulk activated carbons, and three synthetic zeolites—were evaluated simultaneously over a temperature range of 0–46.5 °C. Activated carbon fabrics exhibited the highest adsorption coefficients, with ACC-5092-10 reaching 11.8 ± 1.3 m3/kg at 20 °C. The heats of adsorption ranged from 24.8 ± 3.9 to 33.3 ± 5.0 kJ/mol, consistent with the literature values. For synthetic zeolites, the adsorption coefficient increased linearly with the Si:Al ratio. The influence of water content was further investigated for the five best-performing materials. The most hydrophobic material, zeolite SA-25 (Si:Al = 25), showed only a 25% reduction in adsorption coefficient under saturated humidity, whereas activated carbons exhibited strong suppression. These results demonstrate the practicality, sensitivity, and efficiency of the SSNTD–adsorbent method for comparative radon adsorption studies. Full article
(This article belongs to the Section Energy Science and Technology)
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21 pages, 3856 KB  
Article
Metal Artifact Reduction in CT Based on a Nonlinear Weighted Anisotropic TV Regularization
by Shuangyang Liu, Haiyang Wang and Yizhuang Song
Mathematics 2026, 14(7), 1230; https://doi.org/10.3390/math14071230 - 7 Apr 2026
Cited by 1 | Viewed by 594
Abstract
Metal artifact reduction (MAR) remains a long-standing challenge in computed tomography (CT) reconstruction. Metallic implants introduce inconsistencies between the acquired projection data and the ideal Radon transform, resulting in severe streaking artifacts in images reconstructed using the conventional filtered back projection (FBP) algorithm. [...] Read more.
Metal artifact reduction (MAR) remains a long-standing challenge in computed tomography (CT) reconstruction. Metallic implants introduce inconsistencies between the acquired projection data and the ideal Radon transform, resulting in severe streaking artifacts in images reconstructed using the conventional filtered back projection (FBP) algorithm. In this work, we propose a nonlinear weighted anisotropic total variation (NWATV) regularization method to mitigate metal artifacts and improve CT image quality. The effectiveness of the NWATV method is evaluated through three experiments, and the results demonstrate that it achieves superior reconstruction performance compared to the conventional linear interpolation method, the normalized metal artifact reduction method and the anisotropic total variation (TV) regularization method. Full article
(This article belongs to the Special Issue Inverse Problems in Science and Engineering)
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42 pages, 10149 KB  
Article
Radon-Guided Wavelet-Domain Attention U-Net for Periodic Artifact Suppression in Brain MRI
by Jesus David Rios-Perez, German Sanchez-Torres, John W. Branch-Bedoya and Camilo Andres Laiton-Bonadiez
J. Imaging 2026, 12(4), 153; https://doi.org/10.3390/jimaging12040153 - 2 Apr 2026
Viewed by 1845
Abstract
Periodic artifacts such as ringing (Gibbs), herringbone (spike/corduroy), and zipper patterns degrade the quality of brain MRI. We present a reproducible framework that (i) synthetically generates periodic artifacts with controllable severity directly in k-space, (ii) normalizes pattern orientation through a Radon-guided alignment step, [...] Read more.
Periodic artifacts such as ringing (Gibbs), herringbone (spike/corduroy), and zipper patterns degrade the quality of brain MRI. We present a reproducible framework that (i) synthetically generates periodic artifacts with controllable severity directly in k-space, (ii) normalizes pattern orientation through a Radon-guided alignment step, and (iii) corrects them in the wavelet domain using a 2D DWT (AA/AD/DA/DD) with a band-weighted loss. The evaluation was conducted using DLBS T1-weighted 3T MRI volumes with synthetically generated periodic artifacts. It combined global image-quality metrics (SSIM, PSNR) with per-band metrics to quantify how correction concentrates on high-frequency components, and included ablation studies, mixed-artifact stress tests, and structural preservation analyses. Compared with several baseline architectures, the proposed approach shows improvements in structural fidelity and a reduction in periodic patterns (SSIM: 0.985±0.022; PSNR: 43.337±5.364; reduction in concentrated error in high-frequency bands), while preserving unaffected structures. These findings indicate that, within a controlled synthetic benchmark, aligning the pattern orientation prior to learning and optimizing correction in the wavelet domain enables suppression of synthetically generated periodic artifacts while limiting over-smoothing. Full article
(This article belongs to the Section Medical Imaging)
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14 pages, 632 KB  
Article
Mitigating Indoor Radon Exposure: The Effect of Air Purifiers on Radon Progeny
by Katarzyna Wołoszczuk, Zuzanna Pawłowska, Mirosław Szyłak-Szydłowski, Maciej Norenberg and Joanna Lemańska
Sustainability 2026, 18(2), 823; https://doi.org/10.3390/su18020823 - 14 Jan 2026
Cited by 1 | Viewed by 1744
Abstract
Radon is one of the leading causes of lung cancer worldwide. Following the implementation of the European Council Directive 2013/59/EURATOM, regular measurements of radon concentrations in workplaces have been carried out in European countries for approximately ten years. This provides a basis for [...] Read more.
Radon is one of the leading causes of lung cancer worldwide. Following the implementation of the European Council Directive 2013/59/EURATOM, regular measurements of radon concentrations in workplaces have been carried out in European countries for approximately ten years. This provides a basis for assessing the exposure of workers and the general population to radon, as well as for determining the need to implement measures aimed at reducing this exposure. In addition to commonly used methods that focus on eliminating radon sources or minimizing its ingress into buildings, there are also temporary measures available, such as using air purifiers to improve indoor air quality. Although they are not recommended as a standalone or definitive solution, they can be useful as an interim measure—until appropriate actions to reduce indoor radon concentrations are implemented. In this study, five commercially available air purifiers were tested under controlled laboratory conditions to assess their impact on radon and its decay products. The results show that none of the tested devices significantly reduced gaseous radon concentrations. However, the air purifiers were highly effective in removing radon progeny, achieving a 95–99% reduction in potential alpha energy concentration (PAEC) and reducing the equilibrium factor from 48 to 76% to 0–2%. From a sustainability perspective, these findings are relevant for public health protection, responsible consumer decision-making, and evidence-based indoor air quality management. By distinguishing between ineffective radon gas removal and effective reduction of dose-relevant decay products, this study supports sustainable risk mitigation strategies and helps prevent the misuse of energy- and resource-intensive technologies for purposes they cannot fulfill. Full article
(This article belongs to the Section Social Ecology and Sustainability)
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22 pages, 6253 KB  
Review
Lung Cancer in Never-Smokers: Risk Factors, Driver Mutations, and Therapeutic Advances
by Po-Ming Chen, Yu-Han Huang and Chia-Ying Li
Diagnostics 2026, 16(2), 245; https://doi.org/10.3390/diagnostics16020245 - 12 Jan 2026
Cited by 8 | Viewed by 5553
Abstract
Background and Objectives: Lung cancer in never-smokers (LCINS) has become a major global health concern, ranking as the fifth leading cause of cancer-related mortality. Unlike smoking-related lung cancer, LCINS arises from complex interactions between environmental carcinogens and distinct genomic alterations. This review [...] Read more.
Background and Objectives: Lung cancer in never-smokers (LCINS) has become a major global health concern, ranking as the fifth leading cause of cancer-related mortality. Unlike smoking-related lung cancer, LCINS arises from complex interactions between environmental carcinogens and distinct genomic alterations. This review summarizes current evidence on environmental risks, molecular features, and therapeutic progress shaping lung cancer management. Methods: A narrative review was conducted to examine risk factors for lung cancer in non-smokers. Studies reporting driver mutations in never-smokers and smokers were identified across major lung cancer histological subtypes, including small-cell lung cancer (SCLC), lung adenocarcinoma (LUAD), squamous cell carcinoma (SCC), and large-cell carcinoma (LCC). In addition, PubMed was searched for phase III trials and studies on targeted therapies related to driver mutations published between 2016 and 2025. Results: Environmental factors such as cooking oil fumes, radon, asbestos, arsenic, and fine particulate matter (PM2.5) are strongly associated with LCINS through oxidative stress, DNA damage, and chronic inflammation. EGFR, PIK3CA, OS9, MET, and STK11 mutations are characteristic of never-smokers, in contrast to TP53 mutations, which are more common in smokers. Recent advances in targeted therapy and immunotherapy have improved survival and quality of life, emphasizing the importance of molecular profiling for treatment selection. Conclusions: LCINS represents a distinct clinical and molecular entity shaped by complex interactions between environmental exposures and genetic susceptibility. Genetic alterations promote tumor immune evasion, facilitating cancer development and progression. Continued advances in air quality control, molecular diagnostics, and precision therapies are essential for prevention, early detection, and reduction of the global disease burden. Full article
(This article belongs to the Special Issue Lung Cancer: Screening, Diagnosis and Management: 2nd Edition)
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16 pages, 424 KB  
Review
Lifestyle and Selected Issues Related to Sexual Health: The Importance of Specialist Care in Balneology, Dietetics, and Physiotherapy
by Agata Puszcz, Paulina Kozłowska, Justyna Wójcik, Anna Morawska, Małgorzata Wójcik, Katarzyna Plagens-Rotman, Monika Englert-Golon, Jakub Mroczyk, Małgorzata Mizgier, Ewa Jakubek, Magdalena Pisarska-Krawczyk, Stefan Sajdak, Klaudyna Madziar, Witold Kędzia and Grażyna Jarząbek-Bielecka
J. Clin. Med. 2026, 15(1), 307; https://doi.org/10.3390/jcm15010307 - 31 Dec 2025
Cited by 1 | Viewed by 2236
Abstract
Background/Objectives: Sexual health is shaped by lifestyle factors alongside biomedical determinants. This review synthesises evidence on physiotherapy, balneology/peloidotherapy, and diet therapy as preventive and therapeutic adjuncts for female sexual dysfunctions and related gynaecological conditions. Methods: A structured narrative review of PubMed [...] Read more.
Background/Objectives: Sexual health is shaped by lifestyle factors alongside biomedical determinants. This review synthesises evidence on physiotherapy, balneology/peloidotherapy, and diet therapy as preventive and therapeutic adjuncts for female sexual dysfunctions and related gynaecological conditions. Methods: A structured narrative review of PubMed and Google Scholar (June–July 2025) was conducted by three independent reviewers using predefined keywords in English and Polish. Case reports, preprints, and studies before 2015 were excluded. From 7322 records, 47 studies met the inclusion criteria for qualitative synthesis. Results: Physiotherapy—particularly pelvic floor muscle training, multimodal manual therapy, neuromuscular electrical stimulation (including PTNS), magnetostimulation, short-wave diathermy, and capacitive–resistive monopolar radiofrequency—was consistently associated with reductions in dyspareunia, chronic pelvic pain, and urinary symptoms, with parallel improvements in sexual function and quality of life. Balneological procedures (brine baths/irrigations, crenotherapy, selected radon/sulphide/iodine–bromine applications) and peloidotherapy demonstrated analgesic, anti-inflammatory, and perfusion-enhancing effects, with signals of benefit in vulvodynia, endometriosis, and infertility support. Dietary measures—higher fruit intake (notably citrus), adequate vitamin D, targeted omega-3 use in PCOS, a Mediterranean dietary pattern, and prudent red-meat limitation—were associated with favourable endocrine–metabolic profiles and, in selected contexts, reduced disease risk. Conclusions: Integrating lifestyle–medicine modalities with standard care may meaningfully prevent and manage female sexual dysfunctions by addressing pain, perfusion, neuromuscular control, and endocrine–metabolic drivers. Implementation frameworks and high-quality trials are warranted to refine indications, dosing, and long-term effectiveness. Full article
(This article belongs to the Section Reproductive Medicine & Andrology)
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16 pages, 5262 KB  
Article
A Hybrid Framework for Metal Artifact Suppression in CT Imaging of Metal Lattice Structures via Radon Transform and Attention-Based Super-Resolution Reconstruction
by Bingyang Wang, Zhiwei Zhang, Heng Li and Ronghai Wu
Appl. Sci. 2025, 15(14), 7819; https://doi.org/10.3390/app15147819 - 11 Jul 2025
Viewed by 1714
Abstract
High-density component-induced metal artifacts in industrial computed tomography (CT) severely impair image quality and make further analysis more difficult. To suppress artifacts and improve image quality, this research suggests a practical approach that combines lightweight attention-enhanced super-resolution networks with Radon-domain artifact elimination. First, [...] Read more.
High-density component-induced metal artifacts in industrial computed tomography (CT) severely impair image quality and make further analysis more difficult. To suppress artifacts and improve image quality, this research suggests a practical approach that combines lightweight attention-enhanced super-resolution networks with Radon-domain artifact elimination. First, the original CT slices are subjected to bicubic interpolation, which enhances resolution and reduces sampling errors during transformation. The Radon transform, which detects and suppresses metal artifacts in the Radon domain, is then used to convert the interpolated pictures into sinograms. The artifact-suppressed sinograms are then reconstructed at better resolution using a lightweight Enhanced Deep Super-Resolution (EDSR) network with a channel attention mechanism, which consists of only one residual block. The inverse Radon transform is used to recreate the final CT images. An average peak signal-to-noise ratio (PSNR) of 40.39 dB and an average signal-to-noise ratio (SNR) of 29.75 dB, with an SNR improvement of 15.48 dB over the original artifact-laden images, show the success of the suggested strategy in experiments. This method offers a workable and effective way to improve image quality in industrial CT applications that involve intricate structures that incorporate metal. Full article
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19 pages, 7249 KB  
Article
Effect of Calcium Chloride on the Reinforcement of Uranium Tailings with Sodium Hydroxide–Sodium Silicate–Metakaolin
by Qianjin Niu and Xiujuan Feng
Minerals 2025, 15(5), 526; https://doi.org/10.3390/min15050526 - 15 May 2025
Viewed by 1079
Abstract
The uranium tailings mineral body is large and loose, and this could lead to radioactive contamination. Nuclides and heavy metals released from uranium tailings can be reduced through reinforcement treatment. The current study investigated the effect of CaCl2 solutions with the same [...] Read more.
The uranium tailings mineral body is large and loose, and this could lead to radioactive contamination. Nuclides and heavy metals released from uranium tailings can be reduced through reinforcement treatment. The current study investigated the effect of CaCl2 solutions with the same volume and different mass fractions on uranium tailing reinforcement under the premise of fixing the dosage of metakaolin, sodium hydroxide, sodium silicate, and the water reducer. It was found that, when 20.0% CaCl2 was injected, the hydration reaction occurred more efficiently, and a more uniform gel polymer was produced. The degree of polymerization was higher, as well as the degree of aggregation near macropores. A large number of closed mesopores formed on the solidified surface. The pore structure of the solidified body was significantly improved; uranium ore particles had smaller gaps between them; the solidified body was better compacted; the leaching rates of uranium and its heavy metal ions were significantly reduced; and the compressive strength of the solidified body improved. In the triaxial test, the solidified body had a strength increase of 4.7 times. In addition to SEM, XPS, and XRD, the solidified samples were analyzed. In uranium slag solidified bodies, C-S-H and C-A-H gels and C-A-S-H and N-A-S-H polymers were formed. The gel polymers were wrapped around the uranium tailing particles, resulting in an 82.6% reduction in uranium leaching and a 57.2% reduction in radon exhalation. Full article
(This article belongs to the Section Environmental Mineralogy and Biogeochemistry)
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23 pages, 2188 KB  
Article
Verification of the Effectiveness of Risk Communication Materials Using Natural Radiation Levels as a Reference Standard: Results from a Survey of First-Year Health Department Students
by Hiromi Kudo, Masahiro Hosoda, Yasutaka Omori, Kazutaka Tanaka, Minoru Osanai, Takashi Ohba, Isamu Amir, Masaharu Tsubokura and Shinji Tokonami
Safety 2025, 11(2), 43; https://doi.org/10.3390/safety11020043 - 9 May 2025
Cited by 1 | Viewed by 2463
Abstract
Even before the Fukushima Daiichi Nuclear Power Plant accident, people were continuously exposed to various naturally occurring radioactive materials, including radon. However, public awareness and understanding of this exposure remain limited. When communicating the risks of radiation exposure from the Fukushima accident, explanatory [...] Read more.
Even before the Fukushima Daiichi Nuclear Power Plant accident, people were continuously exposed to various naturally occurring radioactive materials, including radon. However, public awareness and understanding of this exposure remain limited. When communicating the risks of radiation exposure from the Fukushima accident, explanatory materials have not typically incorporated data from coastal areas of Fukushima Prefecture collected after the incident to clarify the actual levels of artificial and natural radiation exposure. This study aimed to assess whether presenting radiation dose data from coastal areas of Fukushima Prefecture—using natural radiation as a reference point—could influence risk perception regarding the health effects of radiation exposure and its potential impact on future generations. The study focused on students enrolled in health science-related departments at Hirosaki University. Before being presented with the data, the students had limited understanding of radiation. However, after reviewing the explanatory materials, 89 students (48.4%) demonstrated an improved understanding of its potential impact on future generations, while 87 students (47.3%) showed increased awareness of the effects on their own health. Regarding the reduction in risk perception, many students attributed it to the fact that radiation levels 10 years after the Fukushima nuclear accident were not significantly different from natural background radiation in most areas. These findings suggest that providing actual radiation measurement data from affected areas can significantly influence risk perception and decision-making processes. The results indicate that participants became more aware of the presence of natural background radiation, and the comparison with current radiation levels in Fukushima played a key role in shaping their risk perception. Full article
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28 pages, 10033 KB  
Article
The Role of Mechanical Ventilation in Indoor Air Quality in Schools: An Experimental Comprehensive Analysis
by Vincenzo Ballerini, Maddalena Coccagna, Matteo Bisi, Antonella Volta, Lorenzo Droghetti, Eugenia Rossi di Schio, Paolo Valdiserri and Sante Mazzacane
Buildings 2025, 15(6), 869; https://doi.org/10.3390/buildings15060869 - 11 Mar 2025
Cited by 14 | Viewed by 3813
Abstract
Indoor air quality (IAQ) plays a vital role in supporting both the physical and mental well-being of individuals in enclosed spaces, and the role of mechanical ventilation systems has gained increasing attention due to building design’s focus on energy efficiency and thus airtight [...] Read more.
Indoor air quality (IAQ) plays a vital role in supporting both the physical and mental well-being of individuals in enclosed spaces, and the role of mechanical ventilation systems has gained increasing attention due to building design’s focus on energy efficiency and thus airtight constructions. This study investigated the pre–post effects of installing a heat recovery mechanical ventilation system (MVHR) on indoor air quality in a high school classroom in Ferrara, Italy. The analysis focused on experimental measurements of temperature (T), relative humidity (RH), and carbon dioxide (CO2) both inside and outside the same classroom, which had constant occupancy (17 students) for an entire school year, allowing a comparison between natural and mechanical ventilation. With a comprehensive approach, particulate matter (PM2.5), volatile organic compounds (VOCs), and radon levels (Rn) were monitored as well, after the installation of the MVHR. By comparing natural and mechanical ventilation, the study highlights the strengths and limitations of the ventilation system implemented, together with an evaluation of the system’s energy consumption, including a 2 kW post-heating battery. In terms of results, the MVHR demonstrated clear benefits in managing CO2 levels and improving sensory, olfactory, and psychophysical well-being, as well as the attention levels of students. In detail, under natural ventilation, peak concentrations exceeded 4500 ppm, while mechanical ventilation kept them below 1500 ppm. The average CO2 concentration during occupancy dropped from 2500 ppm to around 1000 ppm, achieving a 62% reduction. However, beneficial effects were not observed for other parameters, such as PM2.5, VOCs, or radon. The latter displayed annual average values around 21 Bq/m3 and peaks reaching 56 Bq/m3. Full article
(This article belongs to the Section Building Energy, Physics, Environment, and Systems)
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11 pages, 4025 KB  
Article
Experimental Research on Permeability and Effective Radon Reduction of Chemical Solidification of Uranium Tailings
by Jindong Wang and Shuai Zhang
Atmosphere 2024, 15(12), 1493; https://doi.org/10.3390/atmos15121493 - 14 Dec 2024
Viewed by 1444
Abstract
To be able to study the permeability coefficient and radon reduction effect of three materials before and after the solidification of uranium tailings. Firstly, uranium tailings, blast furnace slag, lime, fly ash and cement were selected as raw materials for the experiment. Three [...] Read more.
To be able to study the permeability coefficient and radon reduction effect of three materials before and after the solidification of uranium tailings. Firstly, uranium tailings, blast furnace slag, lime, fly ash and cement were selected as raw materials for the experiment. Three solidified materials were mixed with 7.5%, 10% and 12.5% of equal proportions of cement. The curing samples of nine kinds of solidified bodies were prepared after curing. Subsequently, the permeability coefficient was determined through the utilization of X-ray diffraction (XRD) and scanning electron microscopy (SEM). And cumulative radon concentrations in uranium tailings and samples were measured by RAD7. Thus, the radon exhalation rate of the original sample and the sample were determined. The experimental results show that the permeability coefficient of nine samples decreased with the quadratic function with the increase in the amount of curing agent. Microscopic scanning results show that there is a positive correlation among the radon exhalation rate, permeability coefficient and cementation degree. The best material for solidifying uranium tailings and radon insulation was blast furnace slag, followed by fly ash. Full article
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