AbstractExperimental and theoretical flux models have been developed to reveal the influence of sun flecks and increasing CO2 concentrations on the energy and entropy balances of the leaf. The rapid and wide range of fluctuations in light intensity under field conditions were simulated in a climatic gas exchange chamber and we determined the energy and entropy balance of the leaf based on radiation and gas exchange measurements. It was estimated that the energy of photosynthetic active radiation (PAR) accounts for half of transpiration, which is the main factor responsible for the exportation of the entropy generated in photosynthesis (Sg) out of the leaf in order to maintain functional the photosynthetic machinery. Although the response of...
AbstractIt has been suggested that atmospheric CO2 concentration and frequency of cloud cover will i...
The gas exchange by barley leaves of oxygen, carbon dioxide, and added radiocarbon dioxide has been ...
Increasing concentrations of atmospheric carbon dioxide (CO(2)) influence climate by suppressing can...
AbstractExperimental and theoretical flux models have been developed to reveal the influence of sun ...
<p>In their natural environment, leaves are exposed to rapid fluctuations of irradiance. Research on...
Photosynthetic organism slowly transformed Earth from a rocky and bare landscape to a lush, diverse ...
A model predicting net photosynthesis of individual plant leaves for a variety of environmental cond...
Concepts of semi-closed greenhouses can be used to save energy, whereas their technical equipment of...
Detailed measurements of crop photosynthesis at supra-optimal temperatures and high CO2 levels, to v...
AbstractHow plants respond to climate change is of major concern, as plants will strongly impact fut...
Photosynthesis is a vital process for trees, one in which CO2 plays a major role. At the same time, ...
A theoretical description of the simultaneous processes of photosynthesis and photorespiration in a ...
Leaves are often exposed to fluctuating irradiance, which limits assimilation. Elevated CO2 enhances...
The gas exchange by barley leaves of oxygen, carbon dioxide, and added radiocarbon dioxide has been ...
The opening and closing of plant stomata regulates the global water, carbon and energy cycles. Bioph...
AbstractIt has been suggested that atmospheric CO2 concentration and frequency of cloud cover will i...
The gas exchange by barley leaves of oxygen, carbon dioxide, and added radiocarbon dioxide has been ...
Increasing concentrations of atmospheric carbon dioxide (CO(2)) influence climate by suppressing can...
AbstractExperimental and theoretical flux models have been developed to reveal the influence of sun ...
<p>In their natural environment, leaves are exposed to rapid fluctuations of irradiance. Research on...
Photosynthetic organism slowly transformed Earth from a rocky and bare landscape to a lush, diverse ...
A model predicting net photosynthesis of individual plant leaves for a variety of environmental cond...
Concepts of semi-closed greenhouses can be used to save energy, whereas their technical equipment of...
Detailed measurements of crop photosynthesis at supra-optimal temperatures and high CO2 levels, to v...
AbstractHow plants respond to climate change is of major concern, as plants will strongly impact fut...
Photosynthesis is a vital process for trees, one in which CO2 plays a major role. At the same time, ...
A theoretical description of the simultaneous processes of photosynthesis and photorespiration in a ...
Leaves are often exposed to fluctuating irradiance, which limits assimilation. Elevated CO2 enhances...
The gas exchange by barley leaves of oxygen, carbon dioxide, and added radiocarbon dioxide has been ...
The opening and closing of plant stomata regulates the global water, carbon and energy cycles. Bioph...
AbstractIt has been suggested that atmospheric CO2 concentration and frequency of cloud cover will i...
The gas exchange by barley leaves of oxygen, carbon dioxide, and added radiocarbon dioxide has been ...
Increasing concentrations of atmospheric carbon dioxide (CO(2)) influence climate by suppressing can...