Following this unique combination of mechanical properties, chemical
inertness and anti-fouling solutions, boron doped diamond porous
membranes (BDD-PMs) appear as a very promising material for high
flow microfiltration, and especially when made compatible with many industrial filtrations such as beverage and food processing and wastewater
and water treatment. One can note that several studies have already
highlighted the interest of diamond to be used as a platform for
separation science [13], as a highly stable phase for SPE [14] and more
generally as adsorbents for applications in chromatography [15]. Moreover,
the variety, simplicity and stability of the grafting techniques onto
diamondmake BDD-PMa valuable candidate for solid phase extraction.
Following this unique combination of mechanical properties, chemicalinertness and anti-fouling solutions, boron doped diamond porousmembranes (BDD-PMs) appear as a very promising material for highflow microfiltration, and especially when made compatible with many industrial filtrations such as beverage and food processing and wastewaterand water treatment. One can note that several studies have alreadyhighlighted the interest of diamond to be used as a platform forseparation science [13], as a highly stable phase for SPE [14] and moregenerally as adsorbents for applications in chromatography [15]. Moreover,the variety, simplicity and stability of the grafting techniques ontodiamondmake BDD-PMa valuable candidate for solid phase extraction.
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