IP Library Granted Patent US 10,500,581
Granted Patent B1
US 10,500,581 · App. 16/512,221 · Granted Dec 10, 2019

Separation method and assembly for process streams in component separation units

Inventor: John N. Glover (Houston, TX)
Assignee: CRYSTAPHASE INTERNATIONAL, INC.
B01J35/04B01D3/009B01D3/16B01D3/38B01D39/06B01D39/2051B01D39/2093B01D46/10B01D53/02B01D53/0423B01D53/86B01J8/006B01J8/009B01J8/0085B01J8/0214B01J8/0453B01J8/0469B01J8/0492B01J8/26B01J19/2485B01J19/30B01J19/305C10G7/00C10G21/00C10G25/003B01D3/14B01D2253/106B01D2253/112B01D2253/202B01D2253/306B01D2253/311B01D2253/342B01D2259/41B01D2275/40B01J23/85B01J2208/025B01J2219/00247B01J2219/00252B01J2219/3083B01J2219/3085B01J2219/30203B01J2219/30207B01J2219/30215B01J2219/30219B01J2219/30223B01J2219/30246B01J2219/30257B01J2219/30276B01J2219/30408B01J2219/30416B01J2219/30475B01J2219/32279
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,500,581
App. No.
16/512,221
Granted
Dec 10, 2019
Kind
B1
Abstract

A method for removing contaminants from an process stream that includes the use of reticulated material to filter the process stream. The reticulated material also facilitate process stream flow distribution in process units. The reticulated material can be packed with a void space between a substantial number of the reticulated material that can be varied to enhance filtration and flow distribution. The method of filtering also provides a method of removing contaminants leaving process equipment. The methods can be used on a variety of process streams and process equipment. The reticulated material can include ceramics, metallic materials, and chemical vapor deposition elements. The reticulated material can be of various shapes and sizes, and can also be catalytically active.

Claims (13)

1. A method of removing contaminants from a contaminated process stream comprising:

a) providing a plurality of randomly packed reticulated elements within a process unit, wherein the reticulated elements are sized such that there is a significant and varied void space therebetween, and wherein the entire depth of the randomly packed reticulated elements is capable of filtering contaminants from the process stream; and

(b) contacting the contaminated process stream with the reticulated elements to filter contaminants from the contaminated process stream on a surface of the reticulated elements while allowing the process stream to pass through the significant and varied void space between the reticulated elements to produce a substantially decontaminated process stream,

wherein the process unit contains a bed of catalyst material, and wherein the pressure drop within the process vessel remains low for a predictable period of time based on the level of contaminants in the process stream and the amount of the reticulated elements provided in the process unit, and wherein the randomly packed reticulated elements in the process unit are provided in an amount such that during operations, the bed of catalyst material can be exhausted before the reticulated elements are saturated,

and wherein the reticulated elements have an internal surface area and an outer surface area, and the internal surface area is larger than the outer surface area,

and wherein the reticulated elements have a pore size in the range of about 2.5 millimeters to about 100 microns,

and wherein the randomly packed reticulated elements are capable of filtering contaminants from the contaminated process stream down to about 1 micron in size.

2. A method of removing contaminants from a contaminated process stream comprising:

a) providing a plurality of reticulated elements within a process unit, wherein the reticulated elements are sized such that there is a significant and varied void space therebetween, and wherein the entire depth of the randomly packed reticulated elements is capable of filtering contaminants from the process stream; and

(b) contacting the contaminated process stream with the reticulated elements to filter contaminants from the contaminated process stream on a surface of the reticulated elements while allowing the process stream to pass through the significant and varied void space between the reticulated elements to produce a substantially decontaminated process stream,

wherein the process unit contains a bed of catalyst material, and wherein the reticulated elements are sized such that the catalyst bed has exhausted its catalytic activity before the reticulated elements become saturated and have exhausted their ability to filter out contaminant particles, and wherein the pressure drop within the process unit does not significantly increase over a period of continuous operation.

3. The method of claim 2 , wherein the increase in pressure drop within the process unit is not greater than about 4% over 200 days of continuous operation.

4. The method of claim 2 , wherein the increase in pressure drop within the process unit is not greater than about 27% over 450 days of continuous operation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2019
From: GLOVER, JOHN N.
To: CRYSTAPHASE INTERNATIONAL, INC.
Reel/Frame 049756/0882 →
Continuity (7)
Continuation 16298978 · Mar 11, 2019
Continuation 12786165 · May 24, 2010
Continuation 11136631 · May 24, 2005
Continuation In Part 10396851 · Mar 25, 2003
Continuation 12786140 · May 24, 2010
Division 11136631 · May 24, 2005
Continuation In Part 10396851 · Mar 25, 2003
Cited By (3)
US 12,247,596 US 12,420,253 US 12,515,183