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41.
Soil compaction by agricultural machines can have adverse effects on crop production and the environment. Different models based on the Finite Element Method have been proposed to calculate soil compaction intensity as a function of vehicle and soil properties. One problem when modelling soil compaction due to traffic is the estimation of vertical stress distribution at the soil surface, as the vertical stress is inhomogeneous (non-uniform) and depends on soil and tyre properties. However, uniform stress distribution at the soil/tyre interface is used to predict the compaction of cultivated soils in most FEM compaction models. We propose a new approach to numerically model vertical stress distribution perpendicular to the driving direction at the soil/tyre interface, employing the FEM models of PLAXIS code. The approach consists of a beam (characterised by its geometric dimensions and flexural rigidity) introduced at the soil surface and loaded with a uniform stress with the aim to simulate the action of a wheel at the soil surface. Different shapes of stress distribution are then obtained numerically at the soil surface by varying the flexural rigidity of the beam and the mechanical parameters of the soil. PLAXIS simulations show that the soil type (soil texture) modifies the shape of the stress distribution at the edges of the contact interface: a parabolic form is obtained for sand, whereas a U-shaped is obtained for clay. The flexural rigidity of the beam changes the shape of distribution which varies from a homogenous (uniform) to an inhomogeneous distribution (parabolic or U-shaped distribution). These results agree with the measurements of stress distributions for different soils in the literature. We compared simulations of bulk density using PLAXIS to measurement data from compaction tests on a loamy soil. The results show that simulations are improved when using a U-shaped vertical stress distribution which replaces a homogenous one. Therefore, the use of a beam (cylinder) with various flexural rigidities at the soil surface can be used to generate the appropriate distribution of vertical stress for soil compaction modelling during traffic. 相似文献
42.
43.
Djibril Sarr Jean-Marc Lacape Jean-Marie Jacquemin Halima Benbouza André Toussaint Jean-Pierre Baudoin Guy Mergeai 《Euphytica》2012,183(1):55-64
The efficiency of using monosomic alien addition lines (MAALs) to introgress agronomical traits of interest carried by wild
diploid Gossypium species into the main cultivated cotton species G. hirsutum depends on the opportunities of confronting the alien chromosome with the recipient background genome at each generation
and on the occurrence of translocations and homoeologous recombinations. The selfed-progeny of five MAALs of G. australe in G. hirsutum was screened with SSR markers to determine the transmission frequency of the alien chromosome and monitor its integrity.
Three MAALs revealed a transmission frequency significantly lower than the expected ratio and one MAAL presented an exclusive
transmission of the additional chromosome. In these four MAAL the alien chromosome was transmitted almost unaltered. With
the fifth MAAL the alien chromosome was normally transmitted but was altered in half of the plants carrying it. In one MAAL,
normally carrying brown fiber, the emergence of some plants carrying white and brown fiber revealed the somatic elimination
of the additional chromosome. The loss of this chromosome seems to be triggered by its deletion. 相似文献
44.
Major sugar and carboxylic acid components in apricot flesh fruits were detected and quantified. Fifty-one genotypes including
clones growing in France, Spain, Italy, Greece and USA, belonging to the INRA germ plasm collection has been evaluated. Principal
component analysis (PCA) has been performed to study correlation among fruit quality measurements and to interpret relationships
between genotypes as a tool for germ plasm characterization. A marked variation in malic and citric acid content has been
observed and PCA revealed clusters of apricot genotypes for the malic/citric ratio content. A good correlation between sugar
component and refractometer index (r = 0.83) has been detected. The wide range of diversity in malic and citric acid content in apricot germ plasm makes it possible
to breed and select genotypes with improved flavour on the basis of superior phenotypes.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
45.
The interactions of tetracycline with model clay adsorbents has been studied as a function of suspension pH, ionic strength, and adsorbate concentration. The model clay adsorbents were the Na, Ca, and dodecyltrimethylammonium forms of bentonite and a tannic acid covered bentonite. The adsorption isotherms were of the Langmuir type and the adsorption capacity decreases in the order tannic acid-clay > Ca-clay > Na-clay > dodecyltrimethylammonium-clay. The adsorption onto the clay substrates decreases as the ionic strength and pH increases. 相似文献
46.
This study focused on the capability of two silty soils (tills) having low clay contents and CEC to retain and release two heavy metals, Pb and Cu. Samples of two non contaminated till deposits from the Eastern Townships region of Quebec, Canada, were artificially contaminated with concentrated solutions of these heavy metals. The latter were later extracted from the various geochemical phases of the soils by using the sequential extraction procedure. The results show that silty soils may have a relatively high heavy metal retention capacity due to the presence of carbonate and that this retention capacity can be comparable in magnitude to the retention capacity of certain clayey soils. This is particularly positive in the context of municipal waste disposal (landfills) in Quebec, where some old sanitary landfill sites are underlain by till deposits. A high buffering capacity is not as desirable in the case a deposit needs to undergo remediation. 相似文献
47.
48.
Summary Cannabis sativa, is a rich source of a variety of compounds, including cannabinoids, terpenoids and flavonoids. Their content depends upon the plant genetics, growth conditions, time of harvest and drying conditions. To date, more than 60 different cannabinoids have been identified in the plant. Cannabis has been used medicinally for 4000 years and remained in the British pharmacopaeia until 1932, and in the British Pharmaceutical Codex until 1949. Medical use has been prohibited in the UK since 1973. The principal cannabinoid, delta-9-tetrahydrocannabinol (THC) was first isolated in 1964; the first cannabinoid pharmaceutical product Marinol® (a synthetic THC product) was approved in the USA in 1985. The discovery of specific cannabinoid receptors in the early 1990s and subsequent identification of the endocannabinoids anandamide and 2-arachadonoylglycerol, led to a resurgence of interest in the field of cannabinoid medicine, especially within the pharmaceutical industry. Cannabidiol (CBD), as a non-psychoactive, cannabinoid is currently a cannabinoid of significant interest, showing a wide range of pharmacological activity. The other classes of compounds present in cannabis also have their own pharmacology (e.g. terpenoids, flavonoids). The potential for interaction and synergy between compounds within the plant, may play a role in the therapeutic potential of cannabis. This may explain why a cannabis-based medicine using extracts containing multiple cannabinoids, in defined ratios, and other non-cannabinoid fractions, may provide better therapeutic success and be better tolerated than the single synthetic cannabinoid medicines currently available. The development and employment of one of these medicines, Sativex®, is described. 相似文献
49.
Brown GC 《Science (New York, N.Y.)》2003,299(5608):838-839
50.
Willy Dejonckheere Walter Steurbaut Guy Melkebeke Ren H. Kips 《Pest management science》1983,14(2):99-107
The leaching of aldicarb and thiofanox in soils (sandy loam, silt loam and sandy clay loam), and their uptake by sugarbeet plants were studied. Three irrigation levels were maintained: half, normal and double dose. The residues were determined as the sum of the insecticidal metabolites (parent compound + sulphoxide+ sulphone) for both pesticides. Leaching was greatly influenced by the amount of water added and the soil type. Under normal conditions, leaching seemed to proceed very slowly, keeping the chemicals available for uptake by the root systems for a long time. The concentration of insecticide in the leaves was highest in beets grown on sandy loam and lowest in those grown on sandy clay loam. The quantity of irrigation did not influence the residue concentration in the leaves greatly, although its influence was obvious on the total residue present (μg per plant). Increasing the water dose always resulted in a higher total residue, and a greater plant weight. The breakdown in the soils was directly related to the water dose. The experiments show that thiofanox was more stable than aldicarb and was taken up by sugarbeet to a greater extent. 相似文献