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Enhanced micropollutant degradation over catalyst-free synergistic activation of periodate and persulfate under solar lightNARA Subscribed
Micropollutants are ubiquitous in water sources, posing threats to both human health and ecosystems. Conventional water and wastewater treatment processes are inefficient in micropollutant removal. In this study, the energy-effective and environmentally friendly solar light–driven periodate (PI) and peroxydisulfate (PDS) synergistic activation process (PI/PDS/solar light) is developed for efficient micropollutant decontaminati...
Purpose Hypolimnetic hypoxia has become increasingly prevalent in stratified water bodies in recent decades due to climate change. One primary sink of dissolved oxygen (DO) is sediment oxygen uptake ( $${J}_{{O}_{2}}$$ J O 2 ). On the water side of the sediment–water interface (SWI), $${J}_{{O}_{2}}$$ J O 2 is controlled by a diffusive boundary layer (DBL), a millimeter-scale layer where molecular diffusion is the primary tran...
Global maps of soil temperatureNARA Subscribed
Research in global change ecology relies heavily on global climatic grids derived from estimates of air temperature in open areas at around 2 m above the ground. These climatic grids do not reflect conditions below vegetation canopies and near the ground surface, where critical ecosystem functions occur and most terrestrial species reside. Here, we provide global maps of soil temperature and bioclimatic variables at a 1‐km 2 r...
SoilTemp: A global database of near‐surface temperatureNARA Subscribed
Current analyses and predictions of spatially explicit patterns and processes in ecology most often rely on climate data interpolated from standardized weather stations. This interpolated climate data represents long‐term average thermal conditions at coarse spatial resolutions only. Hence, many climate‐forcing factors that operate at fine spatiotemporal resolutions are overlooked. This is particularly important in relation to...
Erratum to: RET and NRG1 interplay in Hirschsprung diseaseNARA Subscribed
Cultivation of a highly enriched ammonia‐oxidizing archaeon of thaumarchaeotal group I.1b from an agricultural soilNARA Subscribed
Summary Nitrification of excess ammonia in soil causes eutrophication of water resources and emission of atmospheric N 2 O gas. The first step of nitrification, ammonia oxidation, is mediated by Archaea as well as Bacteria . The physiological reactions mediated by ammonia‐oxidizing archaea (AOA) and their contribution to soil nitrification are still unclear. Results of non‐culture‐based studies have shown the thaumarchaeotal g...
Contributory presentations/postersNARA Subscribed
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