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Enhanced concentrations of dissolved organic matter (DOM) in freshwaters are an increasing problem in drinking water reservoirs. In this study we investigated bacterial DOM degradation rates in the tributaries of the reservoirs and tested the hypotheses that (1) DOM degradation is high enough to decrease DOM loads to reservoirs considerably, (2) DOM degradation is affected by stream hydrology, and (3) phosphorus addition may stimulate bacterial DOM degradation. Bacterial biomass production, which was used as a measure of DOM degradation, was highest in summer, and was usually lower at upstream than at downstream sites. An important proportion of bacterial production was realized in epilithic biofilms. Production of planktonic and biofilm bacteria was related to water temperature. Planktonic production weakly correlated to DOM quality and to total phosphorus concentration. Addition of soluble reactive phosphorus did not stimulate bacterial DOM degradation. Overall, DOM was considerably degraded in summer at low discharge levels, whereas degradation was negligible during flood events (when DOM load in reservoirs was high). The ratio of DOM degradation to total DOM release was negatively related to discharge. On annual average, only 0.6-12% of total DOM released by the catchments was degraded within the tributaries.
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http://dx.doi.org/10.1016/j.scitotenv.2016.01.017 | DOI Listing |
Int J Biol Macromol
September 2025
Faculty of Agronomy and Agricultural Sciences, University of Dschang, PO. Box 222, Dschang, Cameroon.
Dissolved organic matter (DOM) plays a key role in grassland carbon biogeochemistry and shows sensitivity to global climate change, particularly nitrogen (N) deposition. We investigated the soil DOM molecular composition by UV-Vis and fluorescence spectroscopy, and FT-ICR MS through a N addition experiment (CK, N5, N10, N20, and N40 [0, 5, 10, 20, and 40 g N m-2 year-1, respectively]) in a desert steppe of northwest China. Moderate N inputs (N5-N20) caused a dose-dependent increase in DOM content (9.
View Article and Find Full Text PDFWater Res
September 2025
State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, PR China. Electronic address:
Freezing enhancing the photochemistry of dissolved organic matter (DOM), yet the mechanism of reactive intermediate (RIs) generation influenced by DOM property and structure remain elusive. Here, we demonstrate that freezing induces exceptional amplification of RIs, with steady-state concentrations in ice (-10 °C) surpassing aqueous solutions by 5-41 times. Laser scanning confocal microscopy first visualized cryo-concentration of DOM and RIs in liquid-like regions (LLR).
View Article and Find Full Text PDFJ Environ Manage
September 2025
Key Lab of Basin Water Resource and Eco-Environmental Science in Hubei Province, Basin Water Environmental Research Department, Changjiang River Scientific Research Institute, No.23 Huangpu Road, Wuhan, 430010, PR China; Innovation Team for Basin Water Environmental Protection and Governance of Chan
Small cascade dams drive spatial divergence in the composition of dissolved organic matter (DOM) in local sediments. Taking Xixi River in the southeast of China, a representative small cascade-dammed watershed, as an example, this study explored the spatial variations of DOM components and its interactions with microbial communities under the influence of cascade dams. Results revealed that DOM composition differed significantly, i.
View Article and Find Full Text PDFEnviron Pollut
September 2025
State Key Laboratory of Water Pollution Control and Green Resource Recycling, School of the Environment, Nanjing University, Nanjing 210023, Jiangsu, China. Electronic address:
o,p'-dichlorodiphenyltrichloroethane (2,4'-DDT) is a typical persistent organic pollutant (POP) characterized by environmental persistence and acute toxicity. Its pronounced hydrophobicity drives preferential adsorption onto suspended particulate matter (SPM) in aquatic systems. This study systematically investigated the photochemical transformation mechanism of 2,4'-DDT in the Pearl River SPM-water system.
View Article and Find Full Text PDFDiabetes Obes Metab
September 2025
Department of Integrated Traditional Chinese and Western Medicine Oncology, The Second People's Hospital of Huaihua City, Huaihua, Hunan, China.
Aims: Type 1 diabetes (T1D) is an autoimmune disease caused by the destruction of insulin-producing pancreatic β-cells. While T cells are well-known critical, growing evidence shows that B cells also play a key role in T1D development. T cell immunoreceptor with immunoglobulin and ITIM domain (TIGIT), as an inhibitory immune checkpoint, is important in maintaining immune homeostasis and has become a therapeutic target for several autoimmune diseases.
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