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Institute
- Fakultät AuL (488) (remove)
Die Analyse der kommunalen Planungspraxis zur Auswahl und
Bewertung von Siedlungsflächen in der Flächennutzungsplanung zeigt auf, welchen Einfluss Forschungsergebnisse auf die
aktuelle Planungspraxis haben. Aufbauend auf einer Analyse
des Forschungsstandes und der rechtlichen Rahmenbedingungen wird die Bewertung von Siedlungsflächen in 29 verschiedenen Flächennutzungsplänen untersucht. Als Ergebnis
wurde ermittelt, dass in der Planungspraxis die Anzahl der Bewertungskriterien und die Komplexität der Bewertung in den
letzten Jahren stark zugenommen hat. Außerdem kann gezeigt werden, dass und wie stark sich die Planungsmethodik
und die verwendeten Kriterien zur Auswahl und Bewertung
von Siedlungsflächen zwischen den einzelnen Gemeinden
unterscheiden. Trotz umfangreicher anwendungsorientierter
Forschung seit den 1990er Jahren zur Bewertung und Auswahl
von Siedlungsflächen lassen sich jedoch nur indirekte Einflüsse der Forschungsergebnisse auf die Planungspraxis identifizieren. Teilweise wurde allerdings festgestellt, dass auch von den Gemeinden selbst neue Kriterien und Vorgehensweisen
entwickelt werden.
Die planungsrechtliche Zulässigkeit von Betrieben der Urbanen Produktion unterscheidet sich je nach ihrem Störgrad deutlich zwischen den Baugebietstypen der Baunutzungsverordnung (BauNVO). Während Betriebe, die das Wohnen nicht wesentlichen stören, auch in gemischten Baugebieten zulässig sind, kommen für Betriebe mit höheren Störgraden nur Gewerbe- und ggf. auch Industriegebiete infrage. Über die Ausweisung von Gewerbegebieten kann jedoch innerhalb eines Quartiers eine grobkörnige Nutzungsmischung erreicht werden. Betriebe, die das Wohnen nicht wesentlich stören, können über die Ausweisung gemischter Baugebiete wie dem Urbanen Gebiet zusätzlich in einer feinkörnigen Nutzungsmischung realisiert werden. Dabei kann die Verdrängung von Betrieben der Urbanen Produktion durch zahlungskräftigere Nutzungen mithilfe des Planungsrechts nur begrenzt beeinflusst werden. Insbesondere in Urbanen Gebieten besteht die Gefahr, dass sie von anderen Nutzungen wie dem Wohnen verdrängt werden.
Computer-image processing becomes more and more important in the analysis of data in biological and agricultural research and practice. However, robust image processing is highly de pendent on the histogram analysis algorithms used and the quality of the data being processed. The algorithm presented here aims to improve the accuracy of the classification of image data generated under complex boundary situations and inconsistent lighting conditions. Using the example of the determination of nitrogen content of tomato leaves and the qualitative determination of starch con tent of apples on the basis of color image processing, we showed that the developed algorithm is able to perform a robust classification and represents an improvement to simple histogram analysis.
Within the consortium “Experimentation Field Agro-Nordwest”, a practical concept for knowledge and technology transfer of digital competence in agriculture was created. For this purpose, the web-based e-learning system “SensX” was set up, consisting of videos, presentations and instructions. In addition, the classical e-learning concept was extended by data sets, student experiments and sensor data of plants acquired by a remote phenotyping robot. This resulted in a massive open online course (MOOC), which was tested with agricultural and biotechnology students in higher education at the University of Applied Sciences Osnabrück over two years. The evaluation process of “SensX” included an empirical survey, qualitative interviews of the participating students by an external institution and an evaluation of the concept by the lecturers.
Complete diets for laying hens are usually offered in meal form. This form initially promotes the laying hens’ natural feed intake behavior and allows them to satisfy their pecking behavior. At the same time, it can also cause difficulties, because it consists of different particles and is not a homogeneous unit. A homogeneous mixture is essential to ensure that each laying hen in the flock can meet its nutritional needs. If feed exhibits a wide particle size distribution, this can promote feed segregation during transport and selective feed intake behavior of laying hens. These two processes sometimes lead to significant differences between the composition of the feed produced and the composition of the feed that is finally ingested by the laying hens. Multi-stage sampling can be used to investigate progressing differences in feed composition. In this study, samples of different complete diets for laying hens (n = 76) were collected from ten organic farms in Germany to examine their particle size distributions (dry sieve analysis). Samples were taken at four different locations (V1 = loading, V2 = silo, V3 = at the beginning of the feed chain, V4 = at the end of the feed chain) in each farm. There was a tendency for V1 and V2 to be characterized by high proportions of particles between 1400 and 3150 µm (V1 = 61.2%, V2 = 43.5%). V3 and V4 consisted mainly of particles of size 500–800 µm and 200–400 µm, respectively. The lowest proportions across all variants were in the range above 3150 µm (V1 = 2.20%, V2 = 1.30%, V3 = 1.00%, V4 = 0.400%) and between 400 and 500 µm (V1 = 2.50%, V2 = 4.50%, V3 = 5.70%, V4 = 6.60%). The mean value comparison of the proportions of sieve mesh sizes from 200 to 1000 µm resulted in: V1 < V2 < V3 < V4; and of sieve mesh sizes between 1400 and 2000 µm in: V1 > V2 > V3 > V4. This observation can be explained by segregation of the feed during transport and a selective feeding behavior of the laying hens. However, trends were discontinuous and varied between the farms. Deviations from the guideline values were found in particular for particle sizes in the range of 1000 to 1400 µm.
25-hydroxycholecalciferol (25-OHD3) formed via hepatic hydroxylation from vitamin D, cholecalciferol, represents the precursor of the biologically active vitamin D hormone, 1,25-dihydroxyvitamin D. Due to a higher absorption rate and the omission of one hydroxylation, dietary supplementation of 25-OHD3 instead of vitamin D3 is considered to be more efficient as plasma concentrations of 25-OHD3 are increased more pronounced. The present review summarises studies investigating potential beneficial effects on mineral homeostasis, bone metabolism, health status and performance in sows, piglets and fattening pigs. Results are inconsistent. While most studies could not demonstrate any or only a slight impact of partial or total replacement of vitamin D3 by 25-OHD3, some experiments indicated that 25-OHD3 might alter physiological processes when animals are challenged, for example, by a restricted mineral supply.