Happy to share our new publication from the #ClayHOC project: #Adsorption of the #hydrophobic organic pollutant #hexachlorobenzene to phyllosilicate #minerals in ESPR
https://doi.org/10.1007/s11356-022-24818-4
Results show relevant #adsorption of #HCB to natural #ClayMinerals. Cation-modification revealed dependence on type, radius, #hydration enthalpy of exchangeable #cations
Results support relevance of minerals for #EnvironmentalFate of #PersistentOrganicPollutants #POP in #soils #sediments
#hoc #DFT #SPME #Sediments #soils #pop #persistentorganicpollutants #environmentalfate #cations #hydration #ClayMinerals #hcb #minerals #hexachlorobenzene #hydrophobic #adsorption #ClayHOC
Btw, some info on the paper #Hydrodechlorination of #hexachlorobenzene in a miniaturized nano-Pd(0) reaction system combined with the simultaneous extraction of all #dechlorination products
We studied the elimination of #HCB and all 11 possible intermediate products by #dehalogenation with nanosized #palladium #catalyst
https://doi.org/10.1016/j.apcatb.2020.119100
#HydrophobicOrganicChemicals, #PersistentOrganicPollutants, #POPs, #HCB, #pollutants, contaminants, #spme, #nanoparticles, #catalysis, #remediation
#remediation #catalysis #nanoparticles #SPME #pollutants #Pops #persistentorganicpollutants #HydrophobicOrganicChemicals #catalyst #palladium #dehalogenation #hcb #dechlorination #hexachlorobenzene #hydrodechlorination