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  • 2020-2024  (83)
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  • 1
    Keywords: Earth sciences. ; Geography. ; Water. ; Hydrology. ; Earth and Environmental Sciences. ; Water.
    Description / Table of Contents: Introduction -- Philosophy and method -- Examples from practice -- Outlook.
    Abstract: Ethohydraulics is the transdiscipline linking behavioural science (ethology) and flow behaviour (hydraulics). Ethohydraulic studies provide repeatable and scalable insights into the reactive behaviour of aquatic animals. The findings can be used to derive limits and guidelines as well as design specifications for the planning of hydraulic engineering facilities. In this essential book, the authors provide an overview of the fundamentals and methodological approaches of ethohydraulic investigations. This Springer essential is a translation of the original German 1st edition essentials,Ethohydraulik by Boris Lehmann, published by Springer-Verlag GmbH Germany, part of Springer Nature in 2021. The translation was done with the help of artificial intelligence (machine translation by the service DeepL.com).Content language were subsequently revised by authors.Springer Nature works continuously to further the development of tools for the production of books and on the related technologies to support the authors. The contents · The ethohydraulic method · Practical examples and pitfalls · Current and future developments The target groups • Practitioners from water management and hydraulic engineering who want to get a quick overview of the subject area • Lecturers and students of civil and environmental engineering as well as natural sciences The authors Prof. Dr.-Eng. habil. Boris Lehmann teaches hydraulic engineering and hydraulics at the Technical University of Darmstadt. Katharina Bensing, M.Sc., is a research assistant and doctoral student at the Chair for Hydraulic Engineering at the Technical University of Darmstadt. Dr. rer. nat. Beate Adam works as a freelance aquatic and fish ecologist in research and practice. Dr. rer. nat. Ulrich Schwevers is head of the Institute for Applied Ecology GmbH. Associate Prof. Dr.-Eng. Jeffrey A. Tuhtan teaches environmental sensing and intelligence at the University of Tallinn in Estonia with a focus on bioinspired methods. .
    Type of Medium: Online Resource
    Pages: IX, 62 p. 35 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783658354169
    Series Statement: Springer essentials,
    DDC: 500
    Language: English
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  • 2
    Keywords: Environment. ; Climatology. ; Medical physics. ; Industrial management Environmental aspects. ; Environmental Sciences. ; Climate Sciences. ; Medical Physics. ; Corporate Environmental Management.
    Description / Table of Contents: Efficiency of hybrid process of coagulation/flocculation followed by membrane filtration for the treatment of synthetic vegetable oil refinery wastewater -- Fe/clay composite as catalysts for textile wastewater treatment -- Iron removal from groundwater by adsorption process onto activated carbon obtained from Pinus halepensis cone wastes -- Synthesis and characterization of activated carbon from Pinus halepensis cone wastes; Adsorption Prediction as a function of some physicochemical characteristics of activated carbons -- ADSORPTION OF INDUSTRIAL DYE BzR FROM AQUEOUS SOLUTION USING LOCAL MODIFIED CLAY -- Adsorption-desorption of Methylene blue by bentonite from aqueous solution -- Removal of dispersedye from aqueous solution by bottom ash -- Experimental study of the removal of Rhodamine B from aqueous solution by adsorption onto coffee waste -- Electrochemical impedance spectroscopy and adsorption study of carbon steel in 1M HCl solution containing 2-(2-Methoxybenzylidene) Hydrazine-1-Carbothioamide -- Adsorption efficiency of graphene oxide towards cyanine dyes with different alkyl chain lengths -- Cu(II) ions removal on functionalized cellulose beads from Tunisian almond (Prunus dulcis) shell -- Optimization of Cr(III) removal from a synthetic solution and a real tanning effluent by powdered marble using 3-level Box-Behnken design: thermodynamic, toxicity and regeneration studies -- Dynamics Modelling of Multicomponent Metal Ions Removal onto Low Cost Buckwheat Hulls -- Local Materials and Solid Waste (Sawdust) Valorization in The Treatment of Industrial synthetic water field -- Cationic dye removal using alginate-organobentonite composite beads.
    Abstract: This book includes over three hundred and seventy-five short papers presented during the second EMCEI, which was held in Sousse, Tunisia in October 2019. After the success of the first EMCEI in 2017, the second installment tackled emerging environmental issues together with new challenges, e.g. by focusing on innovative approaches that contribute to achieving a sustainable environment in the Mediterranean and surrounding regions and by highlighting to decision makers from related sectors the environmental considerations that should be integrated into their respective activities. Presenting a wide range of environmental topics and new findings relevant to a variety of problems in these regions, this volume will appeal to anyone working in the subject area and particularly to students interested in learning more about new advances in environmental research initiatives in view of the worsening environmental degradation of the Mediterranean and surrounding regions, which has made environmental and resource protection into an increasingly important issue hampering sustainable development and social welfare.
    Type of Medium: Online Resource
    Pages: LXXXIII, 2417 p. 786 illus., 620 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030512101
    Series Statement: Environmental Science,
    DDC: 333.7
    Language: English
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  • 3
    Call number: 18 / M 22.94807
    Type of Medium: Monograph available for loan
    Pages: 470 Seiten , Illustrationen , 24 cm x 16.8 cm
    Edition: 1. Auflage
    ISBN: 978-3-8362-7826-3
    Series Statement: SAP PRESS
    Language: German
    Location: Reading room
    Branch Library: GFZ Library
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  • 4
  • 5
    Publication Date: 2021-07-01
    Description: The results of a search for gluino and squark pair production with the pairs decaying via the lightest charginos into a final state consisting of two W bosons, the lightest neutralinos ($$ilde{chi }^0_1$$ χ ~ 1 0 ), and quarks, are presented: the signal is characterised by the presence of a single charged lepton ($$e^{pm }$$ e ± or $$mu ^{pm }$$ μ ± ) from a W boson decay, jets, and missing transverse momentum. The analysis is performed using 139 fb$$^{-1}$$ - 1 of proton–proton collision data taken at a centre-of-mass energy $$sqrt{s}=13$$ s = 13   delivered by the Large Hadron Collider and recorded by the ATLAS experiment. No statistically significant excess of events above the Standard Model expectation is found. Limits are set on the direct production of squarks and gluinos in simplified models. Masses of gluino (squark) up to 2.2  (1.4 ) are excluded at 95% confidence level for a light $$ilde{chi }^0_1$$ χ ~ 1 0 .
    Print ISSN: 1434-6044
    Electronic ISSN: 1434-6052
    Topics: Physics
    Published by Springer
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  • 6
    Publication Date: 2023-03-17
    Description: During two field sampling campaigns in May and June/July 2020, we collected 111 water samples for total alkalinity and DIC (dissolved inorganic carbon) analysis in Germany (Möhnetal, Black Forest and Oberpfalz) and in the Alps in Switzerland, Italy and Austria, at locations for which 10Be measurements are available. In the field, we also recorded water temperature, electrical conductivity and turbidity.
    Keywords: Alkalinity, total; Alpen2020; Alpen2020_Stat_101; Alpen2020_Stat_102; Alpen2020_Stat_103; Alpen2020_Stat_104; Alpen2020_Stat_105; Alpen2020_Stat_106; Alpen2020_Stat_107; Alpen2020_Stat_111; Alpen2020_Stat_112; Alpen2020_Stat_113; Alpen2020_Stat_114; Alpen2020_Stat_74; Alpen2020_Stat_75; Alpen2020_Stat_76; Alpen2020_Stat_77; Alpen2020_Stat_78; Alpen2020_Stat_79; Alpen2020_Stat_80; Alpen2020_Stat_81; Alpen2020_Stat_83; Alpen2020_Stat_90; Alpen2020_Stat_aa; Alpen2020_Stat_ab; Alpen2020_Stat_ac; Alpen2020_Stat_ad; Alpen2020_Stat_ae; Alpen2020_Stat_af; Alpen2020_Stat_ag; Alpen2020_Stat_ai; Alpen2020_Stat_aj; Alpen2020_Stat_ak; Alpen2020_Stat_al; Alpen2020_Stat_av; Alpen2020_Stat_aw; Alpen2020_Stat_ay; Alpen2020_Stat_ba; Alpen2020_Stat_bb; Alpen2020_Stat_bc; Alpen2020_Stat_be; Alpen2020_Stat_e; Alpen2020_Stat_u; Alpen2020_Stat_v; Alpen2020_Stat_w; Alpen2020_Stat_y; Alpen2020_Stat_z; BOD; BOD bottle (300 ml); Campaign of event; Carbon, inorganic, dissolved; Conductivity, electrical; Date/Time of event; DEPTH, water; Event label; Helmholtz-Zentrum Hereon; Hereon; HYDCAST; Hydrocast; In-situ measurement; Latitude of event; Longitude of event; Method/Device of event; Potentiometric titration (Metrohm 888 Titrando with an Aquatrode pH probe); Salinity; Schwarzwald2020; Schwarzwald2020_Stat_73; Schwarzwald2020_Stat_am; Schwarzwald2020_Stat_an; Schwarzwald2020_Stat_D1; Schwarzwald2020_Stat_D10; Schwarzwald2020_Stat_D11; Schwarzwald2020_Stat_D12; Schwarzwald2020_Stat_D13; Schwarzwald2020_Stat_D14; Schwarzwald2020_Stat_D16; Schwarzwald2020_Stat_D17; Schwarzwald2020_Stat_D18; Schwarzwald2020_Stat_D19; Schwarzwald2020_Stat_D2; Schwarzwald2020_Stat_D20; Schwarzwald2020_Stat_D21; Schwarzwald2020_Stat_D22; Schwarzwald2020_Stat_D23; Schwarzwald2020_Stat_D24; Schwarzwald2020_Stat_D25; Schwarzwald2020_Stat_D26; Schwarzwald2020_Stat_D27; Schwarzwald2020_Stat_D28; Schwarzwald2020_Stat_D29; Schwarzwald2020_Stat_D3; Schwarzwald2020_Stat_D30; Schwarzwald2020_Stat_D31; Schwarzwald2020_Stat_D32; Schwarzwald2020_Stat_D33; Schwarzwald2020_Stat_D34; Schwarzwald2020_Stat_D35; Schwarzwald2020_Stat_D36; Schwarzwald2020_Stat_D37; Schwarzwald2020_Stat_D38; Schwarzwald2020_Stat_D40; Schwarzwald2020_Stat_D41; Schwarzwald2020_Stat_D44; Schwarzwald2020_Stat_D45; Schwarzwald2020_Stat_D47; Schwarzwald2020_Stat_D49; Schwarzwald2020_Stat_D5; Schwarzwald2020_Stat_D50; Schwarzwald2020_Stat_D51; Schwarzwald2020_Stat_D52; Schwarzwald2020_Stat_D53; Schwarzwald2020_Stat_D54; Schwarzwald2020_Stat_D55; Schwarzwald2020_Stat_D56; Schwarzwald2020_Stat_D57; Schwarzwald2020_Stat_D58; Schwarzwald2020_Stat_D59; Schwarzwald2020_Stat_D6; Schwarzwald2020_Stat_D60; Schwarzwald2020_Stat_D61; Schwarzwald2020_Stat_D63; Schwarzwald2020_Stat_D64; Schwarzwald2020_Stat_D67; Schwarzwald2020_Stat_D68; Schwarzwald2020_Stat_D69; Schwarzwald2020_Stat_D7; Schwarzwald2020_Stat_D70; Schwarzwald2020_Stat_D71; Schwarzwald2020_Stat_D72; Schwarzwald2020_Stat_D73; Schwarzwald2020_Stat_D74; Schwarzwald2020_Stat_D9; Temperature, water; Turbidity (Formazin nephelometric unit); VINDTA 3C for AT and Dissolved Inorganic Carbon measurement
    Type: Dataset
    Format: text/tab-separated-values, 666 data points
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  • 7
    Publication Date: 2023-08-02
    Description: From September 22nd to October 6th 2020, we collected water samples daily from the outlet of the Gaskabohki catchment, a small subarctic watershed at the mountainside of Iskorasfjellet in northern Norway, to investigate how DIC (dissolved inorganic carbon) and AT (total alkalinity) may change under different environmental forcing (changing precipitation and temperature). We further sampled weekly (3x) at three stations upstream of the outlet to track the changes of the carbonate system with distance from the spring. Besides this temporal examination, we also expanded the investigation spatially, by collecting water samples from seven further catchments, some of which stretch as far as the Barents Sea with different lithologies and varying extent of permafrost. At all sampling sites, we collected water samples for DIC and AT, δ13C-DIC, major and trace elements, and stable water isotopes (δ18O-H2O and δ2H-H2O). We also recorded water temperature, electrical conductivity and turbidity. Finally, at the outlet of the Gaskabohki catchment, we performed a discharge measurement once a day, at the same time as taking the water samples.
    Keywords: Alkalinity, total; Aluminium; Barium; Bromine; Calcium; Carbon, inorganic, dissolved; Catchment name; Cavity ring-down spectroscopy; Chloride; Conductivity, specific; Continuous Flow Isotope Ratio Mass Spectrometry (CF/IRMS); CRDS; DATE/TIME; DEPTH, water; Discharge; Event label; Fluoride; Helmholtz-Zentrum Hereon; Hereon; Inductively coupled plasma optical emission spectrometry (ICP-OES), Perkin-Elmer, Optima 8300DV; Ion chromatography; Iron; Iskorasfjellet, Norway; Isk-R-Ga1; Isk-R-Ga10; Isk-R-Ga11; Isk-R-Ga3; Isk-R-Ga5; Isk-R-Ga9; Isk-R-Ka1; Isk-R-Ka2; Isk-R-Ka3; Isk-R-Ka4; Isk-R-Ka5; LATITUDE; LONGITUDE; Magnesium; Manganese; Marsh-McBirney Model 2000 Flo-Mate portable flow meter; Multimeter 3430 WTW; Nitrate; NO_Land_2020_Isokas; NO_Land_2020_Isokas_Stat_Isk-R-Ga1; NO_Land_2020_Isokas_Stat_Isk-R-Ga10; NO_Land_2020_Isokas_Stat_Isk-R-Ga11; NO_Land_2020_Isokas_Stat_Isk-R-Ga3; NO_Land_2020_Isokas_Stat_Isk-R-Ga5; NO_Land_2020_Isokas_Stat_Isk-R-Ga9; NO_Land_2020_Isokas_Stat_Isk-R-Ka1; NO_Land_2020_Isokas_Stat_Isk-R-Ka2; NO_Land_2020_Isokas_Stat_Isk-R-Ka3; NO_Land_2020_Isokas_Stat_Isk-R-Ka4; NO_Land_2020_Isokas_Stat_Isk-R-Ka5; Phosphorus; Potassium; Potentiometric titration (Metrohm 888 Titrando with an Aquatrode pH probe); Sample code/label; Sample method; Silicon; Sodium; Station label; Strontium; Sulfate; Temperature, water; Turbidity (Formazin nephelometric unit); Turbidity meter, 2100Qis, Hach Lange GmbH; VINDTA 3C for AT and Dissolved Inorganic Carbon measurement; Water sample; WS; δ13C, dissolved inorganic carbon; δ18O, water; δ Deuterium, water
    Type: Dataset
    Format: text/tab-separated-values, 1347 data points
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  • 8
    Publication Date: 2023-07-22
    Description: In March/April 2018 during a cruise on R/V Sally Ride, SR1805, 15N-NH4+ incubations in 60mL glass serum bottles were performed to measure ammonium oxidation rates to nitrite and nitrous oxide in different depth at 3 different stations in the oxygen deficient zone (ODZ) of the Eastern Tropical North Pacific off the coast of Mexico. Water samples were collected from 30L Niskin bottles deployed with a conductivity-temperature-depth profiler (CTD, Seabird Electronics). The goal was to get a better understanding on the controls of nitrous oxide (N2O) production. The N2O production rate experiments were performed according to Bourbonnais et al. 2021 (https://doi.org/10.3389/fmars.2021.611937). Furthermore, ammonium (NH4+), nitrite (NO2-) and nitrate (NO3-) as well as N2O concentrations were determined using standard fluorometric (Holmes et al. 1999, https://doi.org/10.1139/f99-128), photometric (Strickland and Parsons 1972, hdl:10013/epic.46454.d001), chemiluminescent (Braman and Hendrix 1989, doi:10.1021/ac00199a007) and mass spectrometric techniques (McIlvin and Casciotti 2010, https://doi.org/10.4319/lom.2010.8.54), respectively. The N2O yield per nitrite produced was calculated. The archaeal ammonia monooxygenase gene subunit A (amoA) copy numbers/mL were determined using qPCR as described previously (Peng et al. 2015, https://doi.org/10.1002/2015GB005278).
    Keywords: 15N-tracer; 15N tracer incubations (Bourbonnais et al. 2021); Ammonium; Ammonium, labelled, fraction; Ammonium, oxidation rate; Ammonium, oxidation rate, standard error; ammonium oxidation; amoA gene, copy number; amoA gene, copy number, standard deviation; Bottle number; Calculated; Cast number; Chemiluminescence detection (Braman and Hendrix 1989); Comment; CTD, Sea-Bird; CTD/Rosette; CTD-RO; DATE/TIME; Density, sigma-theta (0); Depth, bottom/max; DEPTH, water; eastern tropical north pacific; Event label; Fluorometry (Holmes et al. 1999); greenhouse gas; Identification; LATITUDE; LONGITUDE; Mass spectrometry (McIlvin and Casciotti 2010); N2O production rates; Nitrate; Nitrite; nitrogen cycle; Nitrous oxide, dissolved; Nitrous oxide, hybrid; Nitrous oxide, hybrid, standard error; Nitrous oxide, standard deviation; Nitrous oxide, yield; Nitrous oxide, yield, standard error; Nitrous oxide production; Nitrous oxide production, standard error; North Pacific Ocean; ocean; Oxygen; Photometry (Strickland & Parsons, 1972); Radiation, photosynthetically active; Real-time quantitative polymerase chain reaction (qPCR); Salinity; Sally Ride; SR1805; SR1805_PS1_CTD16; SR1805_PS1_CTD5; SR1805_PS2_CTD32; SR1805_PS2_CTD45; SR1805_PS3_CTD71; SR1805_PS3_CTD84; Station label; STOX; Switchable trace oxygen sensor; Temperature, water; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 796 data points
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  • 9
    Publication Date: 2023-12-02
    Description: The dataset summarizes measurement data that were used to calculate OSL rock surface exposure ages for wave-emplaced coastal boulders at the Rabat coast (Morocco). It consists of sensitivity-corrected natural luminescence signals (Lx/Tx values) from the surfaces of 17 rock samples. For each sample Lx/Tx values for the uppermost 15 mm are presented in 1-mm steps. Each of these values is the average of 3-5 individual measurements from the same depth level. The chronological information inferred from this dataset can be used to characterise recurrence patterns of storms and tsunamis at the Atlantic coast of Morocco.
    Keywords: coastal boulder; Depth, relative; Event label; Luminescence, normalized; Luminescence, normalized, error; luminescence rock surface dating; Morocco; Morocco, North Africa; Rabat_coast_HAR_1-1; Rabat_coast_HAR_1-1_CAL; Rabat_coast_HAR_2-1; Rabat_coast_HAR_3-1; Rabat_coast_RAB_1-1; Rabat_coast_RAB_1-2; Rabat_coast_RAB_5-1; Rabat_coast_RAB_5-1_CAL; Rabat_coast_TEM_2-1; Rabat_coast_TEM_3-1; Rabat_coast_TEM_3-1_CAL; Rabat_coast_TEM_4-1; Rabat_coast_VAL_1-1; Rabat_coast_VAL_1-2; Rabat_coast_VAL_4-1; Rabat_coast_VAL_4-1_CAL_1; Rabat_coast_VAL_6-1; Risø TL/OSL DA20 luminescence reader used with: post-IRSL-BSL protocols; ROCK; Rock sample; Sample ID; storm; surface exposure dating; tsunami
    Type: Dataset
    Format: text/tab-separated-values, 1016 data points
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  • 10
    Publication Date: 2023-12-15
    Keywords: 15N-tracer; 15N tracer incubations, calulated (Trimmer et al. 2016); 15N tracer incubations (Wenk et al. 2013); Ammonium-15, production; Ammonium-15, production, standard error; anoxia; Calculated; chemodenitrification; DATE/TIME; Denitrification; DEPTH, water; Experimental treatment; ferruginous; IRMS, hypobromite method (Robertson et al. 2016); Lake_LaCruz; Measurement conducted; meromixis; MULT; Multiple investigations; N2O production rates; N2O site preference; nitrification; nitrifier denitrification; Nitrite, production; Nitrite, production, standard error; Nitrogen-15, tracer; Nitrogen-15, tracer, fraction; Nitrogen-15, tracer, reduction; Nitrogen-15, tracer, reduction, standard error; Nitrogen gas, 29N2, production; Nitrogen gas, 29N2, production, standard error; Nitrogen gas, 30N2, production; Nitrogen gas, 30N2, production, standard error; nitrogen isotopes; nitrous oxide; Nitrous oxide, production; Nitrous oxide, production, standard error; Nitrous oxide/Nitrogen-15 tracer reduction ratio; Oxic condition; oxycline; Photometrical detection, Griess reagent method (Hansen and Koroleff 1999); Spain; Various methods; water column
    Type: Dataset
    Format: text/tab-separated-values, 303 data points
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