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. 2020 Sep 18;426:213544. doi: 10.1016/j.ccr.2020.213544

Table 14.

Summary of shaping process; Non-pressurized processes with binders.

d. Non pressurized processes with binders
Process type MOF Binder Ratio of MOF/Binder Shape Ref
homemade fan-type granulator MiL-125-NH2 3 wt% polyvinyl group 97 wt% Granules [154]
granulation UiO-66 Poly(vinyl alcohol) 4 vol% 22 vol% Granules [155]
Extrusion UiO-66 Poly(vinyl alcohol) 4 vol% 22 vol% Cylindrical garanules [155]
Freeze granulation UiO-66-COOH Polyvinyl alcohole 22 vol% Bead [155]
Extrudate UiO-66-COOH polysiloxane (silicon resin)-based binder 72.5 vol% Cylinder [155]
Extrusion molding SIFSIX-3-Ni 8 wt% polyvinyl butyral (PVB) 90 wt% Pellet [156]
Extrusion molding SIFSIX-2-Cu-i 8 wt% polyvinyl butyral (PVB) 90.8 wt% Pellet [156]
Extrusion molding GeFSIX-2-Cu-i 8 wt% polyvinyl butyral (PVB) 89.6 wt% Pellet [156]
Extrusion molding TIFSIX-2-Cu-i 8 wt% polyvinyl butyral (PVB) 89.4 wt% Pellet [156]
Extrusion molding HKUST-1 8 wt% polyvinyl butyral (PVB) 90 wt% Pellet [156]
Extrusion molding Mg-MOF-74 8 wt% polyvinyl butyral (PVB) 90 wt% Pellet [156]
Extrusion-crushing-sieving(ECS) ZIF-8 CA (cellulose-acetate) 7.5/15/30 wt% Pellet [157]
Extrusion-crushing-sieving(ECS) ZIF-8 PVC (polyvinylchloride) 7.5/15/30 wt% Pellet [157]
Extrusion-crushing-sieving(ECS) ZIF-8 PVF (polyvinylformal) 7.5/15/30 wt% Pellet [157]
Extrusion-crushing-sieving(ECS) ZIF-8 PEI (polyetherimide) 7.5/15/30 wt% Pellet [157]
Extrusion-crushing-sieving(ECS) ZIF-8 PS (polystyrene) 7.5/15/30 wt% Pellet [157]
Extrusion MOF-5 99% ABS (acrylonitrile butadiene styrene) 1% Filament [158]
Extrusion MOF-5 95% ABS 5% Filament [158]
Extrusion MOF-5 90% ABS 10% Filament [158]
Granulation UiO66 10 wt% sucrose 90 wt% Pellet [159]
Casting on pellet (CO)MOF-74 TENAX (80–100 mesh pellet) 14 wt% Pellet [160]
Casting on pellet (Zn)ZIF-8 TENAX (80–100 mesh pellet) 8.4 wt% Pellet [160]
Casting on pellet (CO)ZIF-67 TENAX (80–100 mesh pellet) 9.6 wt% Pellet [160]
Casting on pellet (Zr)UiO-66 TENAX (80–100 mesh pellet) 8.4 wt% Pellet [160]
Hand-made pan-type granulator MiL-100(Fe) 5 wt% MRA (Mesoporous ρ Alumina) 95 wt% Sphere [161]
Hand-made pan-type granulator MiL-101(Cr) 5 wt% MRA (Mesoporous ρ Alumina) 95 wt% Sphere [161]
Hand-made pan-type granulator UiO-66 5 wt% MRA (Mesoporous ρ Alumina) 95 wt% Sphere [161]
Hand-made pan-type granulator UiO66-NH2 5 wt% MRA (Mesoporous ρ Alumina) 95 wt% Sphere [161]
Extrusion MIL-101(Cr) 40 wt% bentonite clay 60 wt% Monolith [162]
Extrusion MIL-101(Cr) 25 wt% bentonite clay 75 wt% Monolith [162]
Rotary press tabletilizer UiO66 1 wt% graphite 99% Tablet [163]
Wet granulation MiL-125(Fe) 10% silica sol 90 wt% Granules [164]
Extrusion HKUST-1 Silres MSE 100 (CH3Si(O)1.1 (OCH3)0.8 88% Monolith [165]
Xero gel MIL-100(Fe) resorcinol formaldehyde based Xerogel 57% Cylindrical monolith [176]
Xero gel MIL-100(Fe) resorcinol formaldehyde based Xerogel 50% Cylindrical monolith [176]
Xero gel MIL-100(Fe) resorcinol formaldehyde based Xerogel 42% Cylindrical monolith [176]
Xero gel MIL-100(Cr) resorcinol formaldehyde based Xerogel 57% Cylindrical monolith [176]
Xero gel MIL-100(Cr) resorcinol formaldehyde based Xerogel 49% Cylindrical monolith [176]
Xero gel MIL-100(Cr) resorcinol formaldehyde based Xerogel 44% Cylindrical monolith [176]
Xero gel MIL-101(Cr) resorcinol formaldehyde based Xerogel 65% Cylindrical monolith [176]
Xero gel MIL-101(Cr) resorcinol formaldehyde based Xerogel 54% Cylindrical monolith [176]
Xero gel MIL-101(Cr) resorcinol formaldehyde based Xerogel 50% Cylindrical monolith [176]
Xero gel MIL-101(Cr) resorcinol formaldehyde based Xerogel 33% Cylindrical monolith [176]