Isoprene is emitted from many terrestrial plants at high rates, accounting for an estimated 1/3 of annual global volatile organic compound emissions from all anthropogenic and biogenic sources combined. Through rapid photooxidation reactions in the atmosphere, isoprene is converted to a variety of oxidized hydrocarbons, providing higher order reactants for the production of organic nitrates and tropospheric ozone, reducing the availability of oxidants for the breakdown of radiatively active trace gases such as methane, and potentially producing hygroscopic particles that act as effective cloud condensation nuclei. However, the functional basis for plant production of isoprene remains elusive. It has been hypothesized that in the cell isopre...
We present a characterization of the chemical composition of the atmosphere of the Brazilian Amazon ...
Isoprene photooxidation is a major driver of atmospheric chemistry over forested regions. Isoprene r...
Isoprene and monoterpenes (MTs) are among the most abundant and reactive volatile organic compounds ...
Isoprene is emitted from many terrestrial plants at high rates, accounting for an estimated 1/3 of a...
Isoprene is emitted from the biosphere into the atmosphere, and may strengthen the defense mechanism...
Isoprene is emitted from the biosphere into the atmosphere, and may strengthen the defense mechanis...
Although several per cent of net carbon assimilation can be re-released as isoprene emissions to the...
The Amazon rainforest is the largest source of isoprene emissions to the atmosphere globally. Under ...
Isoprene represents the single most important reactive hydrocarbon for atmospheric chemistry in the ...
In this article, we argue that the primary role of isoprene is to remove the singlet delta oxygen (O...
The volatile organic compound isoprene is produced by many plant species, and provides protection ag...
ABSTRACTIn recent years, anthropogenic activities and climate change have significantly increased ex...
Isoprene is an important biogenic volatile organic compound (VOC) in natural systems. Its emission b...
Isoprene photooxidation is a major driver of atmospheric chemistry over forested regions. Isoprene r...
Isoprene is the most important biogenic organic volatile compound emitted by terrestrial vegetation ...
We present a characterization of the chemical composition of the atmosphere of the Brazilian Amazon ...
Isoprene photooxidation is a major driver of atmospheric chemistry over forested regions. Isoprene r...
Isoprene and monoterpenes (MTs) are among the most abundant and reactive volatile organic compounds ...
Isoprene is emitted from many terrestrial plants at high rates, accounting for an estimated 1/3 of a...
Isoprene is emitted from the biosphere into the atmosphere, and may strengthen the defense mechanism...
Isoprene is emitted from the biosphere into the atmosphere, and may strengthen the defense mechanis...
Although several per cent of net carbon assimilation can be re-released as isoprene emissions to the...
The Amazon rainforest is the largest source of isoprene emissions to the atmosphere globally. Under ...
Isoprene represents the single most important reactive hydrocarbon for atmospheric chemistry in the ...
In this article, we argue that the primary role of isoprene is to remove the singlet delta oxygen (O...
The volatile organic compound isoprene is produced by many plant species, and provides protection ag...
ABSTRACTIn recent years, anthropogenic activities and climate change have significantly increased ex...
Isoprene is an important biogenic volatile organic compound (VOC) in natural systems. Its emission b...
Isoprene photooxidation is a major driver of atmospheric chemistry over forested regions. Isoprene r...
Isoprene is the most important biogenic organic volatile compound emitted by terrestrial vegetation ...
We present a characterization of the chemical composition of the atmosphere of the Brazilian Amazon ...
Isoprene photooxidation is a major driver of atmospheric chemistry over forested regions. Isoprene r...
Isoprene and monoterpenes (MTs) are among the most abundant and reactive volatile organic compounds ...