Methyl chloride (CH3Cl) is the most abundant natural chlorine containing compound in the atmosphere, and responsible for a significant fraction of stratospheric ozone destruction. Understanding the global CH3Cl budget is therefore of great importance. However, the strength of the individual sources and sinks is still uncertain. Leaf litter is a potentially important source of methyl chloride, but factors controlling the emissions are unclear. This study investigated CH3Cl emissions from leaf litter of twelve halophyte species. The emissions were not due to biological activity, and emission rates varied between halophyte species up to two orders of magnitude. For all species, the CH3Cl emission rates increased with temperature following the ...
Chloromethane (CH3Cl) is the most abundant halocarbon in the atmosphere. Although largely of natural...
In conjunction with the OP3 campaign in Danum Valley, Malaysian Borneo, flux measurements of methyl ...
Biogeochemical cycle of chlorine, particularly the formation of organically bound chlorine is still ...
Methyl chloride (CH3Cl) is the most abundant natural chlorine containing compound in the atmosphere,...
Methyl chloride (CH3Cl) is the most abundant natural chlorine containing compound in the atmosphere,...
Leaf litter is available at the Earth’s surface in large quantities. During the decomposition of lea...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Atmospheric chloromethane (CH3Cl) plays an important role in stratospheric ozone destruction, but ma...
Atmospheric chloromethane (CH3Cl) plays an important role in stratospheric ozone destruction, but ma...
Atmospheric chloromethane (CH3Cl) plays an important role in stratospheric ozone destruction, but ma...
CH3Br and CH3Cl (methyl halides) are the most abundant natural vectors of bromine and chlorine into ...
Chlorine, one of the most abundant elements in nature, undergoes a complex biogeochemical cycle in t...
Chloromethane (CH3Cl) is the most abundant halocarbon in the atmosphere. Although largely of natural...
In conjunction with the OP3 campaign in Danum Valley, Malaysian Borneo, flux measurements of methyl ...
Biogeochemical cycle of chlorine, particularly the formation of organically bound chlorine is still ...
Methyl chloride (CH3Cl) is the most abundant natural chlorine containing compound in the atmosphere,...
Methyl chloride (CH3Cl) is the most abundant natural chlorine containing compound in the atmosphere,...
Leaf litter is available at the Earth’s surface in large quantities. During the decomposition of lea...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Emissions of methyl chloride and several C2–C5 hydrocarbons from dry leaf litter at temperatures in ...
Atmospheric chloromethane (CH3Cl) plays an important role in stratospheric ozone destruction, but ma...
Atmospheric chloromethane (CH3Cl) plays an important role in stratospheric ozone destruction, but ma...
Atmospheric chloromethane (CH3Cl) plays an important role in stratospheric ozone destruction, but ma...
CH3Br and CH3Cl (methyl halides) are the most abundant natural vectors of bromine and chlorine into ...
Chlorine, one of the most abundant elements in nature, undergoes a complex biogeochemical cycle in t...
Chloromethane (CH3Cl) is the most abundant halocarbon in the atmosphere. Although largely of natural...
In conjunction with the OP3 campaign in Danum Valley, Malaysian Borneo, flux measurements of methyl ...
Biogeochemical cycle of chlorine, particularly the formation of organically bound chlorine is still ...