36 resultados para Drittes Reich


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Biogasgüllen haben bezüglich ihrer Wirkung auf die Bodenfruchtbarkeit, das Pflanzenwachstum und die Umwelt, Vor- und Nachteile. Als Folge der intensiven Nutzung von Biogas zur Energieerzeugung wurde die Biogasgülle eine der wichtigsten organischen Dünger, mit zunehmender Relevanz für den konventionellen aber auch den ökologischen Landbau. Aufgrund der frühen Entwicklung von Biogas und dem Einsatz von Biogasgüllen in der ökologischen Landwirtschaft in den achtziger Jahren im Nord-Osten Baden-Württembergs sind heute Ackerflächen vorhanden, die seit mehr als 25 Jahren mit Biogasgülle gedüngt werden. Somit bestand hier eine Möglichkeit, Informationen über die Langzeiteffekte von Biogasgüllen auf Parameter der Bodenfruchtbarkeit in der ökologischen, landwirtschaftlichen Praxis zu erlangen. Im ersten Projekt wurde daher eine On-Farm Boden- und Gülleprobenahme durchgeführt. Ziel war es, Parameter der Bodenfruchtbarkeit wie die mikrobielle Aktivität (Basalatmung), den mikrobiellen Biomasse C und N, pilzliches Ergosterol, mikrobielle Residuen (Aminozucker), organischen C, gesamt N und den pH-Wert im Boden auf fünf Flächenpaaren des biologisch-dynamischen Landbaus zu messen. Die sich daraus ergebende Hypothese war hierbei, dass der langjährige Einsatz von Biogasgülle im Vergleich zu Rohgüllen keinen Effekt auf die organische Bodensubstanz und die mikrobiellen Eigenschaften des Bodens hat, da die negativen Effekte wie zum Beispiel der reduzierte C-Input durch positive Effekte wie z.B. die erhöhte Nährstoffverfügbarkeit für Pflanzen kompensiert wird. Die Ergebnisse zeigten, dass die Langzeitanwendung von Biogasgülle keinen negativen Einfluss auf die C- und N-Vorräte im Boden hatte. Der Einsatz von Biogasgülle führte jedoch zu einem engeren Verhältnis von mikrobiellem C zu organischem C im Boden, was auf eine reduzierte C-Verfügbarkeit für Mikroorganismen im Vergleich zu Rohgüllen schließen lässt. Die Biogasgülleanwendung führte zu einer tendenziellen Abnahme der mikrobiellen Residuen, wobei die unterschiedlichen Tongehalte der untersuchten Flächen mögliche signifikante Gülleeffekte auf die mikrobiellen Eigenschaften verdeckt haben. Es gab keine generellen Effekte der Biogasgülle auf das Verhältnis von Pilzen zu Bakterien, wohingegen ein zunehmender Tongehalt eine signifikante Verlagerung in Richtung der Bakterien verursachte. Die Übereinstimmung der erhobenen Daten aller angewendeten Methoden weist auf die starke Aussagekraft dieser On-Farm Studie zum Vergleich benachbarter Flächen hin. Im Anschluss an das On-Farm Projekt, in dem die Langzeitwirkung von Biogasgülle auf den Boden untersucht wurde, sollten die Auswirkungen der Düngung mit unterschiedlichen Biogas-und Rohgüllen unter kontrollierten Bedingungen geprüft werden. Daher wurde ein 70-tägiger Gewächshausversuch mit den Güllen der biologisch-dynamischen Betriebe auf einem tonigen Schluff und unter Weidelgras (Lolium multiflorum, var. Ligrande) durchgeführt. Ziel war es, die Effekte unterschiedlicher Güllen auf das Pflanzenwachstum und die mikrobiellen Eigenschaften im Boden und an Wurzeln zu untersuchen. Die Düngung erhöhte die durchschnittliche oberirdische Pflanzenbiomasse um 69% unter Biogasgülle und um 36% unter Rohgülle im Vergleich zur ungedüngten Kontrolle. Zwischen der oberirdischen Biomasse und dem zugeführten NH4-N wurde ein stark linearer Zusammenhang festgestellt. Im Gegensatz zu den Biogasgüllen gab es unter den Rohgüllen einen signifikanten Anstieg des mikrobiellen Biomasse C und N um etwa 25% verglichen zur ungedüngten Kontrollvariante. Der Einsatz von Biogasgüllen führte gegenüber der Rohgülle und Kontrolle zu geringeren Ergosterolgehalten im Boden, was ein engeres Verhältnis von Ergosterol zu mikrobieller Biomasse C zur Folge hatte. Bezogen auf die Wurzeltrockenmasse verringerte die Düngung die Konzentrationen der Aminozucker Muraminsäure, Galaktosamin und Glukosamin um 24, 29 und 37%, gleichzeitig wurde jedoch kein Einfluss auf die Ergosterolgehalte festgestellt. Dies war höchstwahrscheinlich Folge der reduzierten Kolonisierung mit arbuskulärer Mykorrhiza in Gegenwart ausreichend verfügbarer Pflanzennährstoffen. Um einen Eindruck über die mikrobielle Biomasse und die mikrobielle Gemeinschaft in Biogas- und Rohgüllen zu bekommen, wurde ein drittes Projekt durchgeführt. Die von den 6 biologisch-dynamischen Betrieben erhaltenen Güllen wurden auf ihre Ergosterol- und Aminozuckerkonzentrationen untersucht. Hierbei entstand eine zuverlässige und präzise Methode zur Bestimmung von Ergosterol in Biogas- und Roghüllen. Die Biogasgüllen enthielten signifikant geringere Konzentrationen an Ergosterol (-34%), MurN (-42%), GalN (-32%) und pilzlichem GlcN (-40%) im Vergleich zu den Rohgüllen. Die durchschnittlichen Verhältnisse von pilzlichem GlcN zu Ergosterol (50) und pilzlichem C zu bakteriellem C (0.29) zeigten keine signifikanten Unterschiede zwischen den Gülletypen. Die durchschnittliche Konzentration von mikrobiellem C war in Biogasgülle signifikant geringer als in Rohgülle. Demzufolge lag der Anteil des mikrobiellen C am organischen C bei 3.6% in den Biogasgüllen und 5.7% in den Rohgüllen. Zwischen dem mikrobiellen C der Güllen und deren Faser- und Aschegehalte, sowie den pH-Werten und den CN Verhältnissen konnten nicht-lineare Zusammenhänge festgestellt werden.

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Since no physical system can ever be completely isolated from its environment, the study of open quantum systems is pivotal to reliably and accurately control complex quantum systems. In practice, reliability of the control field needs to be confirmed via certification of the target evolution while accuracy requires the derivation of high-fidelity control schemes in the presence of decoherence. In the first part of this thesis an algebraic framework is presented that allows to determine the minimal requirements on the unique characterisation of arbitrary unitary gates in open quantum systems, independent on the particular physical implementation of the employed quantum device. To this end, a set of theorems is devised that can be used to assess whether a given set of input states on a quantum channel is sufficient to judge whether a desired unitary gate is realised. This allows to determine the minimal input for such a task, which proves to be, quite remarkably, independent of system size. These results allow to elucidate the fundamental limits regarding certification and tomography of open quantum systems. The combination of these insights with state-of-the-art Monte Carlo process certification techniques permits a significant improvement of the scaling when certifying arbitrary unitary gates. This improvement is not only restricted to quantum information devices where the basic information carrier is the qubit but it also extends to systems where the fundamental informational entities can be of arbitary dimensionality, the so-called qudits. The second part of this thesis concerns the impact of these findings from the point of view of Optimal Control Theory (OCT). OCT for quantum systems utilises concepts from engineering such as feedback and optimisation to engineer constructive and destructive interferences in order to steer a physical process in a desired direction. It turns out that the aforementioned mathematical findings allow to deduce novel optimisation functionals that significantly reduce not only the required memory for numerical control algorithms but also the total CPU time required to obtain a certain fidelity for the optimised process. The thesis concludes by discussing two problems of fundamental interest in quantum information processing from the point of view of optimal control - the preparation of pure states and the implementation of unitary gates in open quantum systems. For both cases specific physical examples are considered: for the former the vibrational cooling of molecules via optical pumping and for the latter a superconducting phase qudit implementation. In particular, it is illustrated how features of the environment can be exploited to reach the desired targets.

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Quantum technology, exploiting entanglement and the wave nature of matter, relies on the ability to accurately control quantum systems. Quantum control is often compromised by the interaction of the system with its environment since this causes loss of amplitude and phase. However, when the dynamics of the open quantum system is non-Markovian, amplitude and phase flow not only from the system into the environment but also back. Interaction with the environment is then not necessarily detrimental. We show that the back-flow of amplitude and phase can be exploited to carry out quantum control tasks that could not be realized if the system was isolated. The control is facilitated by a few strongly coupled, sufficiently isolated environmental modes. Our paradigmatic example considers a weakly anharmonic ladder with resonant amplitude control only, restricting realizable operations to SO(N). The coupling to the environment, when harnessed with optimization techniques, allows for full SU(N) controllability.

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The present survey of species diversity of cultivated plants is the first for Syria. Some cultivated species will be added in the future, because due to the civil war in Syria, it was not possible to visit the country in the frame of the present work, as initially planned. Checklists proved to be a useful tool for overviewing the cultivated plants of selected areas and allow a characterization of the state of plant genetic resources of Syria. Syria has experienced several civilizations. Man settled in this productive land since ancient times and used its resources. However, such use has led to changes in vegetation and decline of wildlife through the country, in seashore areas, interior, mountains, and grassland. Plant domestication and growing started more than 10,000 years ago in West Asia. Since then, plentiful of economic plant species were present and used by man and his domesticated animals. Forming a part of the Fertile Crescent, where many of the world’s agricultural plants have evolved, Syria is extremely rich in agrobiodiversity. Wild progenitors of wheat and barley and wild relatives of many fruit trees such as almonds and pistachio as well as forage species are still found in marginal lands and less disturbed areas. These are threatened by a wide range of human activities, notably modern, extensive agriculture, overgrazing, overcutting and urban expansion. Syria is also considered as part of one of the main centres of origin, according to Vavilov, who had collected in Syria in 1926. The first expeditions to crop fields showed the exclusive nature of cultivated plants in Syria with a high number of endemic forms. Furthermore, Syria is a part of a biodiversity hotspot. Several studies have been performed to study agrobiodiversity in different parts of Syria, but usually on wild species. Many collections have been carried out; however, they focussed preferably on cereals and pulses, and particularly on wheat, like Vavilov’s expedition. Only 30 crops make up the major part of the conserved Syrian crop plant material in the genebank, indicating that most of the remaining 7,000 species of cultivated plants and many other valuable genetic resources species have only been included on a limited scale in the genebank collections. Although a small country (185,180 km2), Syria accommodates numerous ecosystems that allow for a large diversity of plant genetic resources for agriculture ranging from cold-requiring to subtropical crops to live and thrive. Only few references are available in this respect. The aim of the present study was to complete a checklist of Syria’s cultivated plants of agriculture and horticulture excluding plants only grown as ornamental or for forestry. Furthermore, plants taken for reforestation have not been included, if they do not have also agricultural or horticultural uses. Therefore, the inclusion of plants into the checklist follows the same principles as “Mansfeld’s Encyclopedia”. Main sources of information were published literature, floras of Syria, Lebanon and the Mediterranean, as well as Syrian printed sources in Arabic and/or English, reports from FAO on agricultural statistics in Syria, and data from ICARDA and Bioversity International. In addition, personal observations gathered during professional work in the General Commission for Scientific Agricultural Research (GCSAR) in Syria (since 1989) and participation in projects were taken into account. These were: (1) A project on “Conservation and Sustainable Use of Dry Land Agrobiodiversity in the Near East” with participation of Jordan, Lebanon, Syria, and the Palestinian Authority, focussing on landraces and wild relatives of barley, wheat, lentil, alliums, feed legumes, and fruit trees (1999–2005). (2) A project for vegetable landraces (1993–1995) in collaboration with the former International Plant Genetic Resources Institute and the UN Development Programme, in which 380 local vegetable accessions were evaluated. For medicinal plants and fruit trees I was in personal contact with departments of GCSAR and the Ministry of Agriculture and Agrarian Reform, as well as with private organizations. The resulting checklist was compared with the catalogues of crop plants of Italy and a checklist of cultivated plants of Iraq. The cultivated plant species are presented in alphabetical order according to their accepted scientific names. Each entry consists of a nomenclatural part, folk names, details of plant uses, the distribution in Syria (by provinces), a textual description, and references to literature. In total, 262 species belonging to 146 genera and 57 families were identified. Within-species (intraspecific) diversity is a significant measure of the biodiversity. Intraspecific diversity for wild plants has been and remains to be well studied, but for crop plants there are only few results. Mansfeld’s method is an actual logical contribution to such studies. Among the families, the following have the highest number of crop species: Leguminosae (34 spp.), Rosaceae (24), Gramineae (18), Labiatae (18), Compositae (14), Cruciferae (14), Cucurbitaceae (11), Rutaceae (10), Malvaceae (9), Alliaceae (7), and Anacardiaceae (7). The establishment of an effective programme for the maintenance of plant genetic resources in Syria started in the mid-1970s. This programme considered ex situ and in situ collection of the genetic resources of various field crops, fruit trees and vegetables. From a plant genetic resources viewpoint, it is clear that the homegarden is an important location for the cultivation of so-called neglected and underutilized species (neglected from a research side and underutilized from a larger economic side). Such species have so far not received much care from ecologists, botanists and agronomists, and they are considerably under-represented in genebanks.