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- W2023486087 abstract "Mass transfer processes relevant to dry deposition of gases and sub-micron-size particles were simulated electrochemically for a number of finely structured foliage elements and lichens. Models were prepared from natural samples, vacuum plated with gold and subsequently nickel plated, in a process assuring adequate preservation of the fine structure of surface features. In addition, a number of artificial samples were produced with varying degrees of “foliage density” in order to evaluate the concept of a “shelter factor” to quantify interference between closely packed elements. Results indicate that lichen and finely structured plants may account for a non-negligible contribution to dry deposition under conditions when surface affinity for the depositing material is high, such as surface wetness conditions for SO2. Traditionally defined shelter factors have been found to give reasonable results in cases where uniform foliage density varies within a specified volume; they appear to fail when sheltering results from clumped foliage clusters which may channel the flow. The effect of surface wetness and the local distribution of deposition within small trees was explored by sampling of seedlings exposed to plumes of 35S-labeled SO2 from an upwind release chamber. The wet needles collected 6–23 times as effectively as the dry ones, depending on exposure of sampling location. The dry seedling showed very little spatial variation in deposition as a function of position (exposure), while the relative difference between exposed and sheltered parts of the wet seedling corresponded approximately to estimates made from shoot shelter factor and plume dispersion." @default.
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- W2023486087 date "1989-09-01" @default.
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- W2023486087 title "Microstructure, density and wetness effects on dry deposition to foliage" @default.
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- W2023486087 doi "https://doi.org/10.1016/0168-1923(89)90095-6" @default.
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