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Air Pollutants and the Leaf Cuticle

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Table of Contents

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    Book Overview
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    Chapter 1 Plant Cuticles: Physicochemical Characteristics and Biosynthesis
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    Chapter 2 Modelling Pollutant Deposition to Vegetation: Scaling Down from the Canopy to the Biochemical Level
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    Chapter 3 Air Pollutants and Plant Cuticles: Mechanisms of Gas and Water Transport, and Effects on Water Permeability
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    Chapter 4 Ion Transport Across Leaf Cuticles: Concepts and Mechanisms
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    Chapter 5 Effects of Air Pollutants on Epicuticular Wax Chemical Composition
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    Chapter 6 Effects of Air Pollutants on Epicuticular Wax Structure
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    Chapter 7 Leaf Wettability as a Measure of Air Pollution Effects
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    Chapter 8 Air Pollutants and the Cuticle: Implications for Plant Physiology
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    Chapter 9 Cuticular Characteristics in the Detection of Plant Stress Due to Air Pollution — New Problems in the Use of these Cuticular Characteristics
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    Chapter 10 Evaluation of Pollutant Critical Levels from Leaf Surface Characteristics
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    Chapter 11 New Analytical Techniques for Cuticle Chemical Analysis
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    Chapter 12 Leaf Cuticles as Mediators of Environmental Influences: New Developments in the Use of Isolated Cuticles
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    Chapter 13 The Effect of the Environment on the Structure, Quantity and Composition of Spruce Needle Wax
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    Chapter 14 Effect of Ozone and Elevated Carbon Dioxide on Cuticular Membrane Ultrastructure of Yellow Poplar ( Liriodendron tulipifera )
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    Chapter 15 Spatial Distribution of Sulphate Uptake by Wind-Damaged Beech Leaves
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    Chapter 16 Effects of UV-B Radiation on Wax Biosynthesis
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    Chapter 17 Effects of Acid Rain and Surfactant Pollution on the Foliar Structure of Some Tree Species
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    Chapter 18 Fourier Transform IR Studies on the Interaction of Selected Chemicals with Isolated Cuticles
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    Chapter 19 Effects of Wind and Simulated Acid Mist on Leaf Cuticles
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    Chapter 20 Measurements and Modelling of Ozone Deposition to Wet Foliage
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    Chapter 21 The Effect of Age, Canopy Position and Elevation on Foliar Wettability of Picea rubens and Abies balsamea : Implications for Pollutant-Induced Epicuticular Wax Degradation
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    Chapter 22 Effect of Elevation and Foliar Age on Maximum Leaf Resistance to Water Vapor Diffusion in Conifers of the Central Rocky Mountains, U.S.A.
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    Chapter 23 The Effects of Pine ( Pinus sylvestris L.) Needle Surface Wax Layer Structure on Water Loss and Uptake of 14 CO 2 and 35 SO 2
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    Chapter 24 Effects of Acid Mist on Needle Surface and Water Status of Picea abies
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    Chapter 25 Effect of High Dose SO 2 and Ethylene Exposure on the Structure of Epicuticular Wax of Picea pungens
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    Chapter 26 Preliminary Observations on the Influence of Increasing Atmospheric CO 2 Levels on Cuticular Waxes of Spruce Needles
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    Chapter 27 Effects of Ozone Exposures on Epicuticular Wax of Ponderosa Pine Needles
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    Chapter 28 Observations on the Effects of Acid Rain Treatment on Needle Surfaces of Scots Pine and Norway Spruce Seedlings
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    Chapter 29 Problems in Interpreting Effects of Air Pollutants on Spruce Epicuticular Waxes
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    Chapter 30 Recent Advances Using Electron Beam Analysis to Detect Cuticular Changes Induced by Air Pollution
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    Chapter 31 Physico-Chemical Characteristics of Pine Needle Surfaces Exposed to Different Air Pollution Sources
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    Chapter 32 A Comparison of Epicuticular Wax of Pinus sylvestris Needles from Three Sites in Ireland
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    Chapter 33 Characteristics and Geographical Distribution of the Changes in Scots Pine Needle Surfaces in Finnish Lapland and the Kola Peninsula
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    Chapter 34 Forest Health Monitoring by the Canadian Forest Service: Now and the Future
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    Chapter 35 Session 1
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    Chapter 36 Session 2
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    Chapter 37 Session 3
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    Chapter 38 Session 4
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    Chapter 39 Session 5
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    Chapter 40 Session 6
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    Chapter 41 Recommendations by Participants
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Title
Air Pollutants and the Leaf Cuticle
Published by
Springer Berlin Heidelberg, June 2013
DOI 10.1007/978-3-642-79081-2
ISBNs
978-3-64-279083-6, 978-3-64-279081-2
Editors

Percy, Kevin E., Cape, J. Neil, Jagels, Richard, Simpson, Caroline J.

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X Demographics

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 23 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Mexico 1 4%
Belgium 1 4%
Unknown 21 91%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 7 30%
Researcher 4 17%
Professor 1 4%
Student > Master 1 4%
Other 1 4%
Other 0 0%
Unknown 9 39%
Readers by discipline Count As %
Environmental Science 4 17%
Agricultural and Biological Sciences 3 13%
Earth and Planetary Sciences 2 9%
Chemistry 2 9%
Physics and Astronomy 1 4%
Other 1 4%
Unknown 10 43%