Modification of microfibrillated cellulosic foams in a dielectric barrier discharge at atmospheric pressure

被引:13
|
作者
Meunier, Louis-Felix [1 ,2 ]
Profili, Jacopo [1 ]
Babaei, Sara [1 ]
Asadollahi, Siavash [3 ]
Sarkissian, Andranik [3 ]
Dorris, Annie [4 ]
Beck, Stephanie [1 ,2 ,3 ,4 ]
Naude, Nicolas [2 ]
Stafford, Luc [1 ]
机构
[1] Univ Montreal, Dept Phys, Montreal, PQ H2V 0B3, Canada
[2] Univ Paul Sabatier, LAPLACE Lab Plasma & Convers Energie, Toulouse, France
[3] Plasmioniques Inc, Varennes, PQ, Canada
[4] FPInnovations, Pointe Claire, PQ, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
cellulose; dielectric barrier discharge; hydrophobicity; oleophilicity; plasma deposition; selective adsorption; SURFACE MODIFICATION; WOOD SURFACES; NANOCRYSTALLINE CELLULOSE; NANOCOMPOSITE COATINGS; CHEMICAL-MODIFICATION; TOWNSEND DISCHARGE; FLOWING AFTERGLOW; HARDWOOD SAMPLES; WATER; FIBERS;
D O I
10.1002/ppap.202000158
中图分类号
O59 [应用物理学];
学科分类号
摘要
This study explores the plasma-induced modification of microfibrillated cellulose (MFC) foams in a plane-to-plane atmospheric-pressure dielectric barrier discharge with helium and hexamethyldisiloxane as carrier and precursor gases, with and without a gas gap. When the foam took up all of the gas gap, filamentary discharges were generated and burn-like damage was produced. This resulted in highly inhomogeneous deposits having both hydrophilic and hydrophobic domains. MFC foams taking up only a portion of the gas gap volume generated a homogeneous discharge and induced cellulose defibrillation. They generated effective hydrophobic surfaces on both the top and bottom of the foams. Oleophilicity measurements were also carried out, which support the possibility of an effective separation of oily wastewater using a green and renewable material.
引用
收藏
页数:12
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