Inhalation of elemental mercury is a rare cause of ARDS, with limited published case reports to provide guidance regarding disease progression and management. Although extracorporeal membrane oxygenation (ECMO) has been used to treat toxin-induced lung injury, its application to initial treatment and long-term recovery for inhalation of mercury remains undescribed. We present a case of a 56-year-old man who works at a thermometer factory presenting with severe ARDS secondary to inhaled elemental mercury with confirmatory blood and urine mercury levels. Respiratory recovery and avoidance of neurologic and renal sequelae from elemental mercury was successfully accomplished with venovenous ECMO, steroids, and simultaneous dual-chelation therapy. This case demonstrates the efficacy of venovenous ECMO for severe inhalation of elemental mercury pulmonary injury and the utility of dual-chelation therapy for avoiding late development of neural and renal pathologic conditions and provides novel insight into the impact of ECMO circuits on blood mercury levels.
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http://dx.doi.org/10.1016/j.chest.2024.09.043 | DOI Listing |
Chest
March 2025
Northwell Health Division of Medical Toxicology, North Shore University Hospital, Manhasset, NY.
Inhalation of elemental mercury is a rare cause of ARDS, with limited published case reports to provide guidance regarding disease progression and management. Although extracorporeal membrane oxygenation (ECMO) has been used to treat toxin-induced lung injury, its application to initial treatment and long-term recovery for inhalation of mercury remains undescribed. We present a case of a 56-year-old man who works at a thermometer factory presenting with severe ARDS secondary to inhaled elemental mercury with confirmatory blood and urine mercury levels.
View Article and Find Full Text PDFChem Asian J
March 2025
Materials Chemistry Laboratory, Department of Chemistry, School of Natural Sciences, Shiv Nadar Institution of Eminence, Delhi NCR, India.
Integrating sustainable raw materials with efficient synthesis is key to advancing eco-friendly solutions. Renewable feedstocks like cashew nutshells (CNS) and elemental sulfur, an industrial byproduct, are underutilized resources. This study presents a simple method to valorize CNS and sulfur, creating a copolymer composite designed for efficient mercury removal from contaminated water.
View Article and Find Full Text PDFEnviron Sci Technol
March 2025
School of Energy Science and Engineering, Central South University, Changsha 410083, China.
Mercury emission from coal combustion flue gas is a significant environmental concern due to its detrimental effects on ecosystems and human health. Elemental mercury (Hg) is the dominant species in flue gas and is hard to immobilize. Therefore, it is necessary to comprehend the reaction mechanisms of Hg oxidation, namely, Hg to oxidized mercury (Hg), for mercury immobilization.
View Article and Find Full Text PDFJ Environ Sci (China)
August 2025
School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China. Electronic address:
With the rapid development of adsorbents for removal of elemental mercury (Hg) from coal combustion flue gas, the preparation of adsorbents with superior performance, lower cost and environmental friendliness remains an important challenge. An incipient wetness impregnation method followed by in-situ selenization was used to load copper selenide (CuSe) onto the surface of optimal magnetic biochar (OMBC). The results showed that CuSe significantly enhanced the Hg removal performance of the OMBC, and CuSe loading ratio of 10 % (10CuSe/OMBC) had the best Hg removal performance.
View Article and Find Full Text PDFEnviron Sci Technol
March 2025
Department of Earth Sciences, University of Toronto, Toronto, Ontario M5S 2B1, Canada.
Artisanal and small-scale gold mining (ASGM) is one of the largest primary sources of mercury (Hg) pollution in the atmosphere globally; however, there is a paucity of atmospheric Hg data in ASGM areas. We measured atmospheric gaseous elemental mercury (GEM) concentrations and stable Hg isotopes at fine spatial resolution in the Madre de Dios region of Peru, where ASGM is a major source of Hg. This study employed new passive air samplers that overcome logistical challenges in measuring atmospheric Hg in remote locations.
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