Field replaceable multifunctional cartridge for waste conversion into fuel
09649574 ยท 2017-05-16
Inventors
Cpc classification
B01J20/0281
PERFORMING OPERATIONS; TRANSPORTING
C10G1/002
CHEMISTRY; METALLURGY
B01J20/06
PERFORMING OPERATIONS; TRANSPORTING
B01D2257/20
PERFORMING OPERATIONS; TRANSPORTING
B01J2208/00884
PERFORMING OPERATIONS; TRANSPORTING
B01D3/009
PERFORMING OPERATIONS; TRANSPORTING
C10K1/34
CHEMISTRY; METALLURGY
B01D53/88
PERFORMING OPERATIONS; TRANSPORTING
B01J2219/0002
PERFORMING OPERATIONS; TRANSPORTING
B01J20/20
PERFORMING OPERATIONS; TRANSPORTING
B01J35/40
PERFORMING OPERATIONS; TRANSPORTING
B01J20/046
PERFORMING OPERATIONS; TRANSPORTING
B01J2208/025
PERFORMING OPERATIONS; TRANSPORTING
B01J20/28052
PERFORMING OPERATIONS; TRANSPORTING
B01J20/12
PERFORMING OPERATIONS; TRANSPORTING
B01J8/0453
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D3/00
PERFORMING OPERATIONS; TRANSPORTING
B01J20/12
PERFORMING OPERATIONS; TRANSPORTING
B01D53/74
PERFORMING OPERATIONS; TRANSPORTING
B01D53/34
PERFORMING OPERATIONS; TRANSPORTING
B01J20/04
PERFORMING OPERATIONS; TRANSPORTING
B01J20/06
PERFORMING OPERATIONS; TRANSPORTING
B01D53/00
PERFORMING OPERATIONS; TRANSPORTING
C10K1/34
CHEMISTRY; METALLURGY
B01J20/20
PERFORMING OPERATIONS; TRANSPORTING
B01J20/28
PERFORMING OPERATIONS; TRANSPORTING
B01D53/88
PERFORMING OPERATIONS; TRANSPORTING
C10G1/00
CHEMISTRY; METALLURGY
B01J8/00
PERFORMING OPERATIONS; TRANSPORTING
B01J8/02
PERFORMING OPERATIONS; TRANSPORTING
B01J8/04
PERFORMING OPERATIONS; TRANSPORTING
B01J19/00
PERFORMING OPERATIONS; TRANSPORTING
B01J19/24
PERFORMING OPERATIONS; TRANSPORTING
B01J20/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Disclosed herein is a field replaceable multifunction cartridge for the conversion of composite high molecular weight hydrocarbon vapors, extracted from homogenous or heterogeneous, segregated or unsegregated, wet or dry, unclean miscellaneous multi-feed waste input, to produce low molecular weight fractions of industriously combustible fuel products through catalytic cracking. The multifunction cartridge system is constructed in a modular fashion is capable of performing the catalytic, cleaning and scrubbing functions through the temperature range ranging from ambient to 500 C., owing to the high mechanical strength, low coefficient of expansion, resistance to thermal fatigue etc.
Claims
1. A field replaceable multifunctional cartridge for conversion of high molecular weight processed raw input carbonaceous feedstock vapors into hydrocarbon fuels and carbon comprises; an upper gas scrubbing portion/chamber having gas scrubbing media to facilitate scrubbing of output gases, a middle cleaning portion/chamber having gas cleaning media to facilitate cleaning/purification of intermediate vaporized output/gases, and a lower catalytic portion/chamber having single or multilayered catalyst bed to facilitate conversion of vaporized input feedstock to various hydrocarbon multifractions; wherein, the said chambers are interchangeable for functional flexibility, and wherein, the said portions/chambers are bound/held between motorized inlet valve and motorized outlet valve, separated by perforated media support.
2. A field replaceable multifunctional cartridge as claimed in claim 1, wherein, said perforated media support is a metal plate having perforations, covered with fine metal mesh, to ensure equal and uniform distribution of input vapours though catalyst bed without obstruction.
3. A field replaceable multifunctional cartridge as claimed in claim 1, wherein, said cleaning media comprises granulated or coarse particles of crushed glass, sand, silica, granulated carbon as individual layers or layers of more than one material from glass, sand, carbon layered on top of each other to filter out particulate matter from the intermediate products/gases.
4. A field replaceable multifunctional cartridge as claimed in claim 1, wherein, the hydrocarbon product composition varies with the thickness of the catalyst bed.
5. A field replaceable multifunctional cartridge as claimed in claim 1, wherein, diameter of said field replaceable multifunctional cartridges vary from 12 mm to 77 mm.
6. A field replaceable multifunctional cartridge as claimed in claim 1, wherein, said multifunctional cartridges are loaded with any fixed-bed nano-agglomerated single or multilayered catalyst either alone or combination thereof, wherein the particle size of the nano-catalyst is between 20-100 nanometers and the agglomerated granular size is between 100 to 500 microns.
7. A method of pyro-catalytic conversion of high molecular weight processed homogeneous and heterogeneous, segregated or unsegregated, wet or dry carbonaceous feedstock vapors into hydrocarbon fuels and carbon, comprising passing the preprocessed vapors of feedstock through the field replaceable multifunctional cartridge of claim 1.
8. A system for conversion of high molecular weight processed raw input carbonaceous feedstock vapors into hydrocarbon fuels and carbon, said system comprising a plurality of field replaceable multifunctional cartridges, each field replaceable multifunctional cartridge comprising: an upper gas scrubbing portion/chamber having gas scrubbing media to facilitate scrubbing of output gases, a middle cleaning portion/chamber having gas cleaning media to facilitate cleaning/purification of intermediate vaporized output/gases, and a lower catalytic portion/chamber having single or multilayered catalyst bed to facilitate conversion of vaporized input feedstock to various hydrocarbon multifractions; wherein said plurality of field replaceable multifunctional cartridges is connected in parallel between a common inlet manifold and a common outlet manifold.
9. The system as claimed in claim 8, wherein: each of said field replaceable multifunctional cartridges has a motorized inlet valve and a motorized outlet valve; said motorized inlet valve and said motorized outlet valve being monitored by an inlet pressure sensor and an outlet pressure sensor, wherein said motorized inlet valve and said motorized outlet valve are hydraulically, pneumatically, or electrically controlled by microprocessors.
10. The system as claimed in claim 9, wherein said inlet pressure sensor and said outlet pressure sensor monitor change in pressure at said motorized inlet valve and said motorized outlet valve.
11. The system as claimed in claim 10, wherein said motorized inlet valve and said motorized outlet valve are adapted to shut down in case of any malfunctioning due to pressure fluctuations.
12. A method of pyro-catalytic conversion of high molecular weight processed homogeneous and heterogeneous, segregated or unsegregated, wet or dry carbonaceous feedstock vapors into hydrocarbon fuels and carbon, comprising passing the preprocessed vapors of feedstock through the field replaceable multifunctional cartridge system of claim 8.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION OF INVENTION
(5) The invention will now be described in detail in connection with certain preferred and optional embodiments, so that various aspects thereof may be more fully understood and appreciated.
(6) The present invention, in accordance with the objectives, relates to a field replaceable multifunctional cartridge for conversion of high molecular weight processed homogeneous and heterogeneous carbonaceous feedstock vapours into hydrocarbon fuels and carbon.
(7) Vapours from pre-processed feed stock of a pyro-catalytic reaction are drawn into the system of multifunctional cartridges. The multifunctional cartridge breaks the high molecular weight gases and vapours into hydrogen, methane and low molecular weight hydrocarbon molecules, and reforms these molecules into molecular chains which are very similar to the standard hydrocarbon products such as gasoline, kerosene, diesel etc.
(8) The multifunctional cartridge system is constructed in a modular fashion is capable of performing the catalytic, cleaning and scrubbing functions through the temperature range ranging from ambient to 500 C., owing to the high mechanical strength, low coefficient of expansion, resistance to thermal fatigue etc.
(9) Accordingly, as illustrated in
(10) The multifunctional cartridges are loaded with pre-designated catalyst such as an agglomerated single or multi layered nano-catalyst. The thickness of the catalyst column in the multifunctional cartridges controls the output product composition. The thicker the column, the lighter fractions or combustible gases in the output and the thinner the column width, the higher viscosity fuels are generated. Thus, the catalyst column thickness is a critical function of the process. The said pre-designated catalyst may be a nano structure catalyst having a blend of nano-particles of the metal, metal oxide, metal hydroxides of the group 4 metals from period 4 and Block D of the Periodic table either alone or combination thereof. The particle size of the nano catalyst is in the range of 20 to 100 nano-meters which are agglomerated to nanocatalyst having the particle size in the range of 100-500 microns. The agglomerated nano-catalyst having a specific gravity of 4.0 to 5.0 is placed inside the catalytic convertor tubes having a column thickness in the range of 1 cm to 100 cms and beyond.
(11) Any choking of the catalyst will increase the pressure inside the multifunctional cartridge which is sensed by the sensors. The sensors then send a signal to the microprocessor which immediately redirects the flow of the processed input vapours to an idle multifunctional cartridge by opening the valves of that multifunctional cartridge while shutting off the valves at the choked multifunctional cartridge. This operation is carried out automatically and the microprocessor indication of a choked multifunctional cartridge then leads to the replacement of the said choked multifunctional cartridge by an operator. The multifunctional cartridges may be constructed from Stainless Steel, Carbon Steel, Aluminium and other metals, Reinforced Fibre glass, Polymer based materials and any other material that can withstand a temperature of up to 500 C. The multifunctional cartridges are connected to common inlet manifold (03) from one side and a common outlet manifold (04) from the other sides. Both the inlet and outlet sides are equipped with flow control valves, (10) and (11) respectively, which are hydraulically or pneumatically controlled through a microprocessor control. A row normally consists of 7 multifunctional cartridges, each for a day. There are two rows connected in parallel thus making 14 multifunctional cartridges as shown in
(12) The dimensions of the multifunctional cartridges are flexible and the diameter of the multifunctional cartridges can vary from 0.5 inches to 3 inches depending upon the volume of the gas expected to be handled. Diameter greater than 3 inches may also be accommodated for handling large volume flow of vapours and gases.
(13) The layered structure of the catalyst composition in the multifunctional cartridge is illustrated in
(14) The multifunctional cartridge can be immersed in a cooling medium like water in order to stabilize the temperatures if required. Most generally, air cooling is sufficient to keep the catalyst tubes within the temperature limits for easy removal of the tubes without scalding the operators.
(15) Thus, in a most preferred embodiment, the present invention relates to a field replaceable multifunctional cartridge, as in
wherein, the said chambers are interchangeable for functional flexibility and wherein, the said chambers are bound/held between motorized inlet valve (10) and motorized outlet valve (11), separated by perforated media (14,16,18).
(16) As described in the most preferred embodiment, the said field replaceable multifunctional cartridge cartridge (02) is arranged in a plurality of rows (
(17) Further, each of said tubes (08) in field replaceable multifunctional cartridge contain the field replaceable multifunctional cartridge (08) between motorized inlet valve (10) and motorized outlet valve (11), monitored by inlet pressure sensor (07) and outlet pressure sensor (09). The said valves are hydraulically or pneumatically or electrically controlled by microprocessors.
(18) In the field replaceable multifunctional cartridge of the instant invention the inlet pressure sensor (07) and outlet pressure sensor (09) monitor change in pressure at said motorized inlet valve (10) and motorized outlet valve (11) caused by contamination of said catalyst bed. The motorized inlet valve (10) and motorized outlet valve (11) are enabled to shut down in case of any malfunctioning due to pressure fluctuations.
(19) In the invention, the flow of preprocessed input feedstock vapours is diverted to subsequent functional tube (08) for maintaining a continuous catalytic process. The perforated media support (14) is a metal plate having perforations, covered with fine metal mesh, to ensure equal and uniform distribution of input vapours through catalyst bed without obstruction.
(20) The cleaning media comprises granulated or coarse particles of crushed glass, sand, silica, granulated carbon as individual layers or layers of more than one material from glass, sand, carbon layered on top of each other to filter out particulate matter from the intermediate products/gases.
(21) In another embodiment, the hydrocarbon product composition varies with the thickness of the catalyst bed. The diameter of said field replaceable multifunctional cartridges (08) vary from 12 mm to 77 mm.
(22) In yet another embodiment, the multifunctional cartridges (08) are loaded with fixed-bed nano-agglomerated single or multilayered catalyst either alone or combination thereof with the particle size of the nano-catalyst is between 20-100 nanometers and the agglomerated granular size is between 100 to 500 microns.
(23) The current invention further discloses a method for the pyro-catalytic conversion of high molecular weight processed homogeneous and heterogeneous, segregated or unsegregated, wet or dry carbonaceous feedstock vapours into hydrocarbon fuels and carbon using field replaceable multifunctional cartridge system. Accordingly, the vapors from pre-processed feed stock are drawn into the system of multifunctional cartridges where the high molecular weight gases and vapors are broken down to hydrogen, methane and low molecular weight hydrocarbon molecules, and reformed these molecules into molecular chains which are very similar to the standard hydrocarbon products such as gasoline, kerosene, diesel etc.
(24) In another aspect, the present invention discloses the use of field replaceable multifunctional cartridge system for the conversion of high molecular weight processed homogeneous and heterogeneous, segregated or unsegregated, wet or dry carbonaceous feedstock vapours into hydrocarbon fuels and carbon.
(25) As seen in the embodiment herein above, the present invention is modular in construction, hassle free in maintenance and very efficient in productivity. It takes vapour input and provides a efficiently monitored and controlled output. The multifunctional cartridges are thus useable variedly in purification plants of similar construct.