Methods for the comminution of botanical feedstock
A method of operating an apparatus for the comminution of a botanical feedstock wherein a blade that is positioned above a screen and the blade is rotated at a rate of rotation, wherein the trailing portion of the blade generates turbulence that induces upward movement of cut and partially cut feedstock from the upper surface of the screen to a plane of rotation of the cutting edge of the blade.
1. A method of operating an apparatus for the comminution of a botanical feedstock, wherein the apparatus comprises:
(i) a vessel having a top and a bottom, the bottom comprising a first feedstock outlet connected in fluid communication with a source of negative pressure;
(ii) a screen positioned in the vessel above the first feedstock outlet and spaced from the top of the vessel, the screen having an upper surface and a lower surface; and,
(iii) a blade rotatably mounted above and generally parallel to the screen and configured to be rotated in a direction of rotation, the blade having a leading side, a trailing side in the direction of rotation and a radial blade length between an axis of rotation and a blade tip, at least a portion of the leading side having a cutting edge and at least a portion of the trailing side having a downwardly extending trailing portion, the downwardly extending trailing portion having a lower edge having a plurality of discontinuities along a radial length of the trailing portion;
the method comprising:
rotating the blade in the direction of rotation at a rate of rotation, wherein the trailing portion generates turbulence that induces upward movement of cut and partially cut feedstock from the upper surface of the screen to a plane of rotation of the cutting edge of the blade.
2. The method of claim 1 , further comprising activating the source of negative pressure to reduce the pressure in the vessel to below ambient pressure, wherein at the rate of rotation, the turbulence generated by the rotation of the blade overcomes a downward force on the cut and partially cut feedstock that is produced by the source of negative pressure.
3. The method of claim 2 , wherein at the rate of rotation, the rotation of the blade neutralizes a downward force on the cut and partially cut feedstock that is produced by the negative pressure in the vessel and provides lift to the cut and partially cut feedstock.
4. The method of claim 2 , wherein the lower edge of the downwardly extending trailing portion is generally saw toothed in shape and at the rate of rotation, the rotation of the blade provides lift to the cut and partially cut feedstock.
5. The method of claim 1 , wherein at the rate of rotation, the plurality of discontinuities produce eddy currents that draw cut and partially cut feedstock upwardly to a plane of rotation of the cutting edge of the blade.
6. The method of claim 1 , wherein the rate of rotation is between 750 and 1400 revolutions per minute.
7. The method of claim 1 , wherein the vessel defines a volume positioned above the blade and the negative pressure draws fine particulate matter from the volume and through the screen.
8. The method of claim 7 , wherein the negative pressure draws at least 75% of the fine particulate matter from the volume and through the screen.
9. The method of claim 7 , further comprising withdrawing cut feedstock from the first feedstock outlet and conveying the treated feedstock to a cyclonic separator.
10. The method of claim 9 , further comprising subjecting a fluid stream drawn from the vessel through the first feedstock outlet to cyclonic separation thereby separating some of the cut feedstock from the fluid stream and collecting the separated feedstock in a separated material collection region.
11. The method of claim 10 further comprising obtaining a fluid steam having a reduced level of cut feedstock from the cyclonic separator and subjecting the fluid stream to physical filtration to remove fine particulate matter from the fluid steam having a reduced level of cut feedstock.