Temperature is the bottleneck for the anaerobic treatment of domestic wastewater in temperate climates. Most previous attempts to achieve anaerobic treatment at low temperatures have attempted to acclimatize mesophilic sludge and have failed at temperatures below 10-13 °C. We describe an alternative approach using communities from environments that have been exposed to low temperatures over evolutionary time-scales as seed for such reactors. Batch reactors were inoculated with a mixture of soils and sediments from the high Arctic and an Alpine lake to treat UV-sterilized raw domestic wastewater at 4, 8 and 15 °C. To evaluate the intrinsic treatment capacity of the bacteria the specific rates of methanogenesis and hydrolysis were evaluated. Specific methanogenic activity at 4, 8 and 15 °C was 6.3, 7.6 and 10.3 fmol CH cellday respectively. Specific putative hydrolysis rates were 76.2, 186.6 and 251.9 fgrams COD cellday. Hydrolysis was twice as temperature sensitive as methanogenesis (Q: 4.62 and 1.57 respectively). The specific rates are over ten times higher than we have previously observed in microcosms fed with settled wastewater at the same temperatures. The results imply that inoculating reactors with cold-adapted communities is a promising way to develop biomass capable of treating anaerobic wastewater treatment at low temperatures whilst achieving an effluent that conforms to the EC Directive COD standards. Large-scale reactors are feasible if satisfactory cell concentrations can be achieved.
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http://dx.doi.org/10.1016/j.watres.2016.12.009 | DOI Listing |
mSystems
December 2024
River Ecosystems Laboratory, Alpine and Polar Environmental Research Center, Ecole Polytechnique Fédérale de Lausanne (EPFL), Sion, Switzerland.
Unlabelled: Glacier-fed streams are permanently cold, ultra-oligotrophic, and physically unstable environments, yet microbial life thrives in benthic biofilm communities. Within biofilms, microorganisms rely on secondary metabolites for communication and competition. However, the diversity and genetic potential of secondary metabolites in glacier-fed stream biofilms remain poorly understood.
View Article and Find Full Text PDFPhys Chem Chem Phys
January 2025
STFC, ISIS Facility, Rutherford Appleton Laboratory, Harwell Campus, OX11OQX, UK.
The dynamics and functionality of proteins are significantly influenced by their interaction with water. For lyophilised ( ≤ 0.05 where = g of HO per g of protein) and weakly hydrated systems ( ≤ 0.
View Article and Find Full Text PDFFront Public Health
January 2025
Medical Affairs Department, Emergency General Hospital, Beijing, China.
Background: While temperature extremes have been shown to be associated with an increased risk of hospital admissions, evidence of their impact on the length of hospital stay, which may capture the lingering effects of temperature extremes, is scarce.
Objectives: We aimed to evaluate the association between daily variation in ambient temperature and daily variation in daily total length of stay (daily TLOS), a composite measure encompassing the daily count of hospital admissions and their corresponding length of hospital stay among cardiopulmonary patients. Additionally, we quantified the burden of TLOS attributable to non-optimal temperatures among Hong Kong's older adult population.
Cureus
December 2024
Department of Community Medicine, College of Medicine, Gulf Medical University, Ajman, ARE.
Objectives: The purpose of this research was to assess the impact of exposure to heat on the physical, social, and mental health domains of adults residing in the United Arab Emirates (UAE), where the region faces great increases in temperature due to climate change. Previous research has focused mainly on physical health outcomes; this research addressed the expansive impacts of mental and social health, which remain understudied in the region.
Methods: A cross-sectional study surveyed 397 adults in the UAE using a structured questionnaire.
Small
January 2025
State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, China.
Smart hydrogel sensors with intrinsic responsiveness, such as pH, temperature, humidity, and other external stimuli, possess broad applications in innumerable fields such as biomedical diagnosis, environmental monitoring, and wearable electronics. However, it remains a great challenge to develop wearable structural hydrogels that possess simultaneously body temperature-responsive, adhesion-adaptable, and transparency-tunable. Herein, an innovative skin-mountable thermo-responsive hydrogel is fabricated, which endows tunable optical properties and switchable adhesion properties at different temperatures.
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