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Titlebook: Air Pollutants and the Leaf Cuticle; Kevin E. Percy (Director),J. Neil Cape (Co-Directo Conference proceedings 1994 Springer-Verlag Berlin

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Akute und chronische Perikarditisaracteristics of a surface. As adapted to plant biology, DCA measurements have been useful in characterizing changes in the type or condition of leaf epicuticular waxes. Environmental as well as temporal factors can modify the biophysical features of epicuticular wax surfaces and thereby affect DCA
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Bilaterale bifaszikuläre (Schenkel-) Blöckeia the surfaces of leaves and fruits. In a polluted environment, the cuticle may also affect the rates of uptake of extraneous chemicals. It will be shown how the essential transport properties of plant cuticles can be determined experimentally using intact leaves, isolated cuticles, and reconstitut
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Schenkelblöcke (komplette und inkomplette)ts that have studied leaf surface properties in response to air pollutants are reviewed in terms of their relevance to the establishment of Critical Levels, with particular reference to conifers. Although all pollutants may have an indirect effect on leaf surfaces by affecting the biosynthesis of cu
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https://doi.org/10.1007/978-3-540-34372-1ization techniques by high electric fields (FI) are briefly described. Recent advances of Py-GC/MS and Py-FIMS for the analyses of complex organic matter such as plant materials, humic substances, dissolved organic matter in water (DOM) and soil organic matter (SOM) in agricultural and forest soils
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Linksventrikuläre Hypertrophie (LVH)adaxial leaf surface. Drying of the droplets on the leaf surface enhanced uptake by up to three orders of magnitude compared with uptake from solution. Sulphate was not transported far from entry points provided by cuticular lesions. Cuticular integrity, assessed using dye tracers, was breached by w
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