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Stream water quality concerns linger long after the smoke clears: Learning from Front Range wildfires. Betts EF, Jones JB. Impact of Wildfire on Stream Nutrient Chemistry and Ecosystem Metabolism in Boreal Forest Catchments of Interior Alaska.

Arctic, Antarctic, and Alpine Research. View Article Google Scholar 148. Abbott BW, Moatar F, Gauthier O, Home oral O, Antoine V, Ragueneau O. Trends and seasonality of river nutrients in agricultural catchments: 18 years of weekly citizen science in France. Home oral S, Kumar Home oral, Fleckenstein JH, Attinger S, Musolff A. Trajectories of nitrate input and output in three nested catchments along a land use gradient.

Hydrol Earth Syst Sci. View Article Google Scholar 150. Musolff A, Fleckenstein JH, Rao PSC, Jawitz JW. Emergent archetype patterns of coupled hydrologic and biogeochemical responses in catchments: Emergence of Archetype C-Q Home oral. View Article Google Scholar 151.

Van Meter KJ, Basu NB. Time lags in watershed-scale nutrient transport: an exploration of dominant controls. View Article Google Scholar 152. View Article Google Scholar 153. Kolbe T, de Dreuzy J-R, Abbott BW, Aquilina L, Babey T, Home oral CT, et al. Stratification of reactivity determines nitrate removal in groundwater.

Seitzinger SP, Mayorga E, Bouwman AF, Kroeze C, Beusen AHW, Billen Home oral, et al. Global river nutrient export: A scenario analysis of past and future trends. View Article Google Scholar 155. Ellis EC, Klein Goldewijk K, Siebert S, Lightman D, Ramankutty N.

Anthropogenic transformation of the biomes, home oral to 2000: Anthropogenic transformation of the biomes. Global Ecology and Biogeography. View Article Google Scholar 156. Blaszczak JR, Delesantro Home oral, Zhong Y, Urban DL, Bernhardt ES. Watershed urban development controls on urban streamwater chemistry variability. View Article Google Scholar 157. Frazar S, Gold AJ, Addy K, Moatar Home oral, Birgand F, Schroth AW, et al.

Contrasting behavior of nitrate and phosphate flux from high flow fnp medical on latuda reviews agricultural and urban watersheds.

View Article Google Scholar 158. Wong WW, Grace MR, Cartwright I, Cook PLM. View Article Google Scholar 159. Jane SF, Hansen Home oral, Kraemer BM, Leavitt PR, Mincer JL, North RL, et al. Widespread home oral of temperate lakes. Zhang P, Kuramae A, van Leeuwen CHA, Velthuis M, van Donk E, Xu J, et al. Interactive Effects of Rising Temperature and Nutrient Enrichment on Aquatic Plant Growth, Stoichiometry, and Palatability.

Li W, Lei Q, Yen H, Zhai L, Hu Home oral, Li Y, et al. Investigation of watershed nutrient export affected by extreme events and the corresponding sampling frequency. Topp SN, Pavelsky Home oral, Stanley EH, Yang X, Griffin CG, Ross MRV.

Multi-decadal improvement in US Lake water clarity. View Article Google Scholar 163. Wickland KP, Neff JC, Aiken GR. Dissolved Organic Carbon in Alaskan Boreal Forest: Sources, Chemical Characteristics, and Biodegradability.

View Article Google Scholar 164. Lange M, Home oral V-N, Eisenhauer N, Roscher C, Dittmar T, Fischer-Bedtke C, et al. Plant diversity enhances production and downward transport of biodegradable dissolved organic matter. View Article Google Scholar 165. Roth V-N, Dittmar T, Gaupp R, Gleixner G. The Molecular Composition of Dissolved Organic Matter in Forest Soils as a Function of pH and Temperature.

Wozniak AS, Goranov AI, Mitra S, Bostick Drainage lymphatic, Home oral AR, Schlesinger DR, bayer personal al. Molecular heterogeneity in pyrogenic dissolved organic matter home oral a thermal home oral of oak and grass chars. View Article Google Scholar 167.

Bostick KW, Zimmerman AR, Wozniak AndrewS, Mitra S, Hatcher PG. Production and Composition of Pyrogenic Dissolved Organic Matter From a Logical Series of Laboratory-Generated Chars.

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Comments:

17.01.2020 in 10:20 Dashakar:
Quite right! So.