The oxalate - carbonate pathway (OCP) is a biogeochemical process involving plants, fungi and bacteria that transforms atmospheric CO 2 into CaCO 3 . However, until now the process has only been studied in acidic soil environments adjacent to species that have limited food - production potential . This study used an experimental approach to evaluate an OCP associated with Brosimum alicastrum , a Neotropical species that produces significant quantites of food ( ca. 70 – 200 kg - seeds yr −1 ), in the calcareous soils of Haiti and Mexico. Enzymatic analysis of various tissues from B. alicastrum indicated that the species produces significant amounts of calcium oxalate (5.97 % D.W.) at all sample sites. Oxalotroph y , the bacterial metabolism ...
Oxalate is a highly oxidized organic acid anion used as a carbon and energy source by oxalotrophic b...
Trees and their associated rhizosphere organisms play a major role in mineral weathering driving cal...
International audienceThe oxalate carbonate pathway (OCP) of the Iroko tree has been shown to functi...
Aims The Oxalate-Carbonate Pathway (OCP) is a biogeochemical process that transfers atmospheric CO2...
Aims The Oxalate-Carbonate Pathway (OCP) is a biogeochemical process that transfers atmospheric CO2 ...
The oxalate–carbonate pathway (OCP) is a biogeochemical set of reactions that involves the conversio...
Plants, fungi, and bacteria enhance the oxalate-carbonate cycle in soils. Moreover, in temperate for...
The oxalate-carbonate pathway (OCP) is a biogeochemical process, which has been described in Milicia...
The oxalate-carbonate pathway (OCP) is a biogeochemical process linking oxalate oxidation and carbon...
The oxalatecarbonate pathway involves the oxidation of calcium oxalate to low-magnesium calcite and ...
An African oxalogenic tree, the iroko tree (Milicia excelsa), has the property to enhance carbonate ...
An African oxalogenic tree, the iroko tree (<i>Milicia excelsa</i>), has the property to...
A reactive transport (RT) model of the oxalate-carbonate pathway (OCP) of the Iroko tree in the Ivor...
The oxalate-carbonate pathway (OCP) leads to a potential carbon sink in terrestrial environments. Th...
Oxalate is a highly oxidized organic acid anion used as a carbon and energy source by oxalotrophic b...
Trees and their associated rhizosphere organisms play a major role in mineral weathering driving cal...
International audienceThe oxalate carbonate pathway (OCP) of the Iroko tree has been shown to functi...
Aims The Oxalate-Carbonate Pathway (OCP) is a biogeochemical process that transfers atmospheric CO2...
Aims The Oxalate-Carbonate Pathway (OCP) is a biogeochemical process that transfers atmospheric CO2 ...
The oxalate–carbonate pathway (OCP) is a biogeochemical set of reactions that involves the conversio...
Plants, fungi, and bacteria enhance the oxalate-carbonate cycle in soils. Moreover, in temperate for...
The oxalate-carbonate pathway (OCP) is a biogeochemical process, which has been described in Milicia...
The oxalate-carbonate pathway (OCP) is a biogeochemical process linking oxalate oxidation and carbon...
The oxalatecarbonate pathway involves the oxidation of calcium oxalate to low-magnesium calcite and ...
An African oxalogenic tree, the iroko tree (Milicia excelsa), has the property to enhance carbonate ...
An African oxalogenic tree, the iroko tree (<i>Milicia excelsa</i>), has the property to...
A reactive transport (RT) model of the oxalate-carbonate pathway (OCP) of the Iroko tree in the Ivor...
The oxalate-carbonate pathway (OCP) leads to a potential carbon sink in terrestrial environments. Th...
Oxalate is a highly oxidized organic acid anion used as a carbon and energy source by oxalotrophic b...
Trees and their associated rhizosphere organisms play a major role in mineral weathering driving cal...
International audienceThe oxalate carbonate pathway (OCP) of the Iroko tree has been shown to functi...