The metal(loid)-enriched Avicennia marina biomass obtained from phytoremediation was impregnated with two ferric salts (FeCl3 and Fe(NO3)3) prior to pyrolysis at 300–700 °C, aiming to study the influence on pyrolytic product properties and heavy metal(loid) deportment. Results showed that the impregnated ferric salts increased the fixed carbon content of biochars, hydrocarbon fractions in bio-oils, and the evolution of CO and H2 in gases. Cd in biomass could be effectively removed from the biomass by FeCl3 impregnation. During pyrolysis, the ferric salts enhanced the elemental recovery of As, Cr, Ni and Pb in the biochars and decreased their distribution in gases. Notably, the ferric salt pre-treatment inhibited the mobility and bio-availab...
Relevant literature which deals with the presence of metals during the catalytic pyrolysis of biomas...
Restoration of soils contaminated by potentially toxic elements (PTEs) can be carried out through ph...
Plants capable of accumulating very high concentrations of metals are termed hyperaccumulators. Phyt...
The metal(loid)-enriched Avicennia marina biomass obtained from phytoremediation was impregnated wit...
Sustainable management of contaminated biomass derived from phytoremediation of metal(loid) polluted...
Sustainable management of contaminated biomass derived from phytoremediation of metal(loid) polluted...
Slow pyrolysis of heavy-metal(loid)-contaminated Avicennia marina biomass obtained from phytoremedia...
Slow pyrolysis of heavy-metal(loid)-contaminated Avicennia marina biomass obtained from phytoremedia...
Vegetation has successfully been used for phytoremediation of heavy metal(loid) contaminated soils. ...
Vegetation has successfully been used for remediation of heavy-metal-contaminated soils (phytoremedi...
International audienceCatalytic pyrolysis is a promising way to improve bio-oil product quality. In ...
Plants have successfully been used for phytoextraction of metal contaminated soils, however the use ...
Plants have successfully been used for phytoextraction of metal contaminated soils, however the use ...
In contribution to research into renewable energy, pyrolysis tests are run to develop the process of...
Ragweed (Ambrosia artemisiifolia L), a metal-accumulator invasive species, was pyrolyzed under a ran...
Relevant literature which deals with the presence of metals during the catalytic pyrolysis of biomas...
Restoration of soils contaminated by potentially toxic elements (PTEs) can be carried out through ph...
Plants capable of accumulating very high concentrations of metals are termed hyperaccumulators. Phyt...
The metal(loid)-enriched Avicennia marina biomass obtained from phytoremediation was impregnated wit...
Sustainable management of contaminated biomass derived from phytoremediation of metal(loid) polluted...
Sustainable management of contaminated biomass derived from phytoremediation of metal(loid) polluted...
Slow pyrolysis of heavy-metal(loid)-contaminated Avicennia marina biomass obtained from phytoremedia...
Slow pyrolysis of heavy-metal(loid)-contaminated Avicennia marina biomass obtained from phytoremedia...
Vegetation has successfully been used for phytoremediation of heavy metal(loid) contaminated soils. ...
Vegetation has successfully been used for remediation of heavy-metal-contaminated soils (phytoremedi...
International audienceCatalytic pyrolysis is a promising way to improve bio-oil product quality. In ...
Plants have successfully been used for phytoextraction of metal contaminated soils, however the use ...
Plants have successfully been used for phytoextraction of metal contaminated soils, however the use ...
In contribution to research into renewable energy, pyrolysis tests are run to develop the process of...
Ragweed (Ambrosia artemisiifolia L), a metal-accumulator invasive species, was pyrolyzed under a ran...
Relevant literature which deals with the presence of metals during the catalytic pyrolysis of biomas...
Restoration of soils contaminated by potentially toxic elements (PTEs) can be carried out through ph...
Plants capable of accumulating very high concentrations of metals are termed hyperaccumulators. Phyt...