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Institute of

AT Agricultural Technology

News

Federal Minister of Agriculture Cem Özdemir hands over the funding decision to the Thünen Institute.
Open stables: Using AI to determine greenhouse gas emissions

Freely ventilated open stalls are good for animal welfare: they offer natural light, fresh air and exercise as needed for pigs, cattle and co. But how high are the greenhouse gas emissions actually caused by this type of animal husbandry? The EmiMod project will provide the data basis for this.…

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New web application " verfügbare Feldarbeitstage - Mähdrusch (available field days – combine harvesting)"

(press release of KTBL:

www.ktbl.de/service/presse/pressemeldung/neue-web-anwendung-verfuegbare-feldarbeitstage-maehdrusch)

How many days are available for combine harvesting? How can soil protection be taken into account when planning field working days?

 

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Successful field day on different organic fertilizers

The field day in Nettlingen near Söhlde on 12.05.2023 attracted many interested press representatives, plant operators, researchers and farmers. The Thünen Institute for Agricultural Technology was also involved with its project "PiA-Plastics in Agricultural Soil".

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Institute of

AT Agricultural Technology

Bundesallee 47
38116 Braunschweig
Phone: +49 531 2570 1194 / +49 531 596 4102
Fax: +49 531 596 4199
at@thuenen.deat@thuenen.de

Publications

  1. 0

    Wang H, Yang J, Finn D, Brunotte J, Tebbe CC (2025) Distinct seasonal and annual variability of prokaryotes, fungi and protists in cropland soil under different tillage systems and soil texture. Soil Biol Biochem 203:109732, DOI:10.1016/j.soilbio.2025.109732

    https://literatur.thuenen.de/digbib_extern/dn069515.pdf

  2. 1

    Germer K, Shafiullah AZM, Peters A, Kraft M, Weise M, Rolfes L, Lorenz M (2025) Field traffic loads on a silty farm site cause shifting and narrowing of soil pore size distribution. Soil Tillage Res 248:106425, DOI:10.1016/j.still.2024.106425

    https://literatur.thuenen.de/digbib_extern/dn069504.pdf

  3. 2

    Peters A, Germer K, Naseri M, Rolfes L, Lorenz M (2025) Modeling compaction effects on hydraulic properties of soils using limited information. Soil Tillage Res 246:106349, DOI:10.1016/j.still.2024.106349

    https://literatur.thuenen.de/digbib_extern/dn069008.pdf

  4. 3

    Peters A, Tian Z, Heitman JL, Iden SC, Rolfes L, Germer K, Lorenz M (2025) Modeling compaction effects on soil water retention across the full moisture range: calibration and validation. Vadose Zone J 24(1):e70004, DOI:10.1002/vzj2.70004

    https://literatur.thuenen.de/digbib_extern/dn069532.pdf

  5. 4

    Mallast J, Filipiak M, Stichnothe H, Margraf V, Schuster C, Hoffmann M, Monzon O, Ruser R, Klein J, Pamperin H, Rücknagel J, Wetzel S, Klein J, Skodras D (2025) Win-N-DB Thünen [Datenpublikation] [online]. 11PDF-Datei, 1 ACCDB-Datei. Göttingen: OpenAgrar, zu finden in <https://www.openagrar.de/receive/openagrar_mods_00100182> [zitiert am 30.09.2024], DOI:10.3220/DATA20240927143643-0

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