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© Thünen-Institut/AK
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Institute of

AK Climate-Smart Agriculture

Peer-reviewed scientific paper by Caroline Buchen-Tschiskale

  1. 0

    Nyameasem JK, Ruser R, Kluß C, Essich C, Zutz M, Huf M, Buchen-Tschiskale C, Flessa H, Olfs H-W, Taube F, Reinsch T (2023) Effect of slurry application techniques on nitrous oxide emission from temperate grassland under varying soil and climatic conditions. Grass Forage Sci 78(3):338-358, DOI:10.1111/gfs.12612

    https://literatur.thuenen.de/digbib_extern/dn066358.pdf

  2. 1

    Huf M, Reinsch T, Zutz M, Essich C, Ruser R, Buchen-Tschiskale C, Flessa H, Olfs H-W (2023) Effects of liquid manure application techniques on ammonia emission and winter wheat yield. Agronomy 13(2):472, DOI:10.3390/agronomy13020472

    https://literatur.thuenen.de/digbib_extern/dn066006.pdf

  3. 2

    Huf M, Reinsch T, Kluß C, Essich C, Ruser R, Buchen-Tschiskale C, Pacholski AS, Flessa H, Olfs H-W (2023) Evaluation of calibrated passive sampling for quantifying ammonia emissions in multi-plot field trials with slurry application. J Plant Nutr Soil Sci 186(4):451-463, DOI:10.1002/jpln.202200333

    https://literatur.thuenen.de/digbib_extern/dn066562.pdf

  4. 3

    Karlowsky S, Buchen-Tschiskale C, Odasso L, Schwarz D, Well R (2023) Sources of nitrous oxide emissions from hydroponic tomato cultivation: Evidence from stable isotope analyses. Frontiers Microbiol 13:1080847, DOI:10.3389/fmicb.2022.1080847

    https://literatur.thuenen.de/digbib_extern/dn065897.pdf

  5. 4

    Buchen-Tschiskale C, Well R, Flessa H (2023) Tracing nitrogen transformations during spring development of winter wheat induced by 15N labeled cattle slurry applied with different techniques. Sci Total Environ 871:162061, DOI:10.1016/j.scitotenv.2023.162061

    https://literatur.thuenen.de/digbib_extern/dn066047.pdf

  6. 5

    Nyameasem JK, Zutz M, Kluß C, Huf M, Essich C, Buchen-Tschiskale C, Ruser R, Flessa H, Olfs H-W, Taube F, Reinsch T (2022) Impact of cattle slurry application methods on ammonia losses and grassland nitrogen use efficiency. Environ Pollut 315:120302, DOI:10.1016/j.envpol.2022.120302

  7. 6

    Masese FO, Fuss T, Thuile Bistarelli L, Buchen-Tschiskale C, Singer G (2022) Large herbivorous wildlife and livestock differentially influence the relative importance of different sources of energy for riverine food webs. Sci Total Environ 828:154452, DOI:10.1016/j.scitotenv.2022.154452

  8. 7

    Kanukollu S, Remus R, Rücker A, Buchen-Tschiskale C, Hoffmann M, Kolb S (2022) Methanol utilizers of the rhizosphere and phyllosphere of a common grass and forb host species. Environ Microbiome 17:35, DOI:10.1186/s40793-022-00428-y

    https://literatur.thuenen.de/digbib_extern/dn065044.pdf

  9. 8

    Helfrich M, Nicolay G, Well R, Buchen-Tschiskale C, Dechow R, Fuß R, Gensior A, Paulsen HM, Berendonk C, Flessa H (2020) Effect of chemical and mechanical grassland conversion to cropland on soil mineral N dynamics and N2O emission. Agric Ecosyst Environ 298:106975, DOI:10.1016/j.agee.2020.106975

    https://literatur.thuenen.de/digbib_extern/dn062805.pdf

  10. 9

    Buchen-Tschiskale C, Hagemann U, Augustin J (2020) Soil incubation study showed biogas digestate to cause higher and more variable short-term N2O and N2 fluxes than mineral-N. J Plant Nutr Soil Sci 183(2):208-219, DOI:10.1002/jpln.201900075

    https://literatur.thuenen.de/digbib_extern/dn062189.pdf

  11. 10

    Well R, Buchen C, Köster JR, Lewicka-Szczebak D, Rohe L, Senbayram M, Wu D (2019) A critique of the paper "Estimate of bacterial and fungal N2O production processes after crop residue input and fertilizer application to an agricultural field by 15N isotopomer analysis", by Yamamoto et al. (2017), Soil Biology & Biochemistry 108, 9–16. Soil Biol Biochem 135:450-451, DOI:10.1016/j.soilbio.2018.06.008

  12. 11

    Linsler D, Nüsse A, Buchen C, Helfrich M, Piepho HP, Ludwig B (2018) Effects of chemical and physical grassland renovation on the temporal dynamics of organic carbon stocks and water-stable aggregate distribution in a sandy temperate grassland soil. Soil Use Manag 34(4):490-499, DOI:10.1111/sum.12451

  13. 12

    Buchen C, Lewicka-Szczebak D, Flessa H, Well R (2018) Estimating N2O processes during grassland renewal and grassland conversion to maize cropping using N2O isotopocules. Rapid Comm Mass Spectrometry 32:1053-1067, DOI:10.1002/rcm.8132

  14. 13

    Buchen C, Well R, Helfrich M, Fuß R, Kayser M, Gensior A, Benke M, Flessa H (2017) Soil mineral N dynamics and N2O emissions following grassland renewal. Agric Ecosyst Environ 246:325-342, DOI:10.1016/j.agee.2017.06.013.

  15. 14

    Buchen C, Lewicka-Szczebak D, Fuß R, Helfrich M, Flessa H, Well R (2016) Fluxes of N2 and N2O and contributing processes in summer after grassland renewal and grassland conversion to maize cropping on a Plaggic Anthrosol and a Histic Gleysol. Soil Biol Biochem 101:6-19, DOI:10.1016/j.soilbio.2016.06.028

  16. 15

    Heinz E, Kraft P, Buchen C, Frede H-G, Aquino E, Breuer L (2014) Set up of an automatic water quality sampling system in irrigation agriculture. Sensors 14:212-228, DOI:10.3390/s140100212

    https://literatur.thuenen.de/digbib_extern/dn056963.pdf

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