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This study aimed to better understand nitrate transport in the soil system in a part of the state of North Rhine-Westphalia, in Germany, and to aid in the development of groundwater protection plans. An advection-diffusion (AD) cell was used in a miscible displacement experiment setup to characterize nitrate transport in 12 different soil samples from the study area. The three nitrate sorption isotherms were tested to define the exact nitrate interaction with the soil matrix. Soils varied in their properties which in its turn explain the variations in nitrate transport rates. Soil texture and organic matter content showed to have the most important effect on nitrate recovery and retardation. The miscible displacement experiment indicated a decrease in retardation by increasing sand fraction, and an increase in retardation by increasing soil organic matter content. Soil samples with high sand fractions (up to 94 %) exhibited low nitrate sorption capacity of less than 10 %, while soils with high organic matter content showed higher sorption of about 30 %. Based on parameterization for nitrate transport equation, the pore water velocity for both sandy and loamy soils were significantly different (P < 0.001). Pore water velocity in sandy soil (about 4 x 10 high 3 m/s) was about 100 to 1000 larger than in loamy soils (8.7 x 10 high 5 m/s). On the other hand, the reduction in nitrate transport in soils associated with high organic matter was due to fine pore pathways clogged by fine organic colloids. It is expected that the existing micro-phobicity increased the nitrate recovery from 9 to 32 % resulting in maximum diffusion rates of about 3.5 x 10 high 5 m/s2 in sandy soils (sample number CS-04) and about 1.4 x 10 high 7 m/s2 in silt loam soils (sample number FS-02).
Established in 1997, the European New Car Assessment Programme (Euro NCAP) provides consumers with a safety performance assessment for the majority of the most popular cars in Europe. Thanks to its rigorous crash tests, Euro NCAP has rapidly become an important driver safety improvement to new cars. After ten years of rating vehicles, Euro NCAP felt that a change was necessary to stay in tune with rapidly emerging driver assistance and crash avoidance systems and to respond to shifting priorities in road safety. A new overall rating system was introduced that combines the most important aspects of vehicle safety under a single star rating. The overall rating system has allowed Euro NCAP to continue to push for better fitment and higher performance for vehicles sold on the European market. In the coming years, the safety rating is expected to play an important role in the support of the roll-out of highly automated vehicles.
Ab einer Konzentration des Cannabiswirkstoffes Tetrahydrocannabinol (THC) von 1,0 ng/ml im Blutserum kann das Vorliegen verkehrsmedizinisch relevanter Leistungsdefizite nicht ausgeschlossen werden; daher gilt ab diesem Wert der objektive Tatbestand des -§ 24a (2) StVG als erfüllt. In Abhängigkeit von der Konsumfrequenz kann es aber sein, dass eine derartige Konzentration auf einen Konsum zurückgeht, der mehr als 24 Stunden vor der Fahrt stattgefunden hat. Da in diesem Fall sicher keine relevante Cannabiswirkung mehr vorliegt, sind THC-Konzentrationen, die nur wenig oberhalb von 1,0 ng/ml im Blutserum liegen, nicht als Beweis für eine mangelnde Trennung von Konsum und Fahren anzusehen, und ein Direktentzug der Fahrerlaubnis erscheint nicht ohne Weiteres gerechtfertigt. Die Grenzwertkommission hat vorgeschlagen, erst ab einer Blutserumkonzentration an THC von 3,0 ng/ml regelmäßig davon auszugehen, dass Konsum und Fahren nicht ausreichend getrennt wurden, was die Nichteignung zum Führen von Kraftfahrzeugen bedingt. Bei THC-Konzentrationen zwischen 1,0 und 3,0 ng/ml sollte die Fahreignung durch eine medizinisch-psychologische Untersuchung überprüft werden.