CN201052457Y - Novel inner circulation slurry-bed reactor - Google Patents
Novel inner circulation slurry-bed reactor Download PDFInfo
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- CN201052457Y CN201052457Y CNU2007201559032U CN200720155903U CN201052457Y CN 201052457 Y CN201052457 Y CN 201052457Y CN U2007201559032 U CNU2007201559032 U CN U2007201559032U CN 200720155903 U CN200720155903 U CN 200720155903U CN 201052457 Y CN201052457 Y CN 201052457Y
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- riser
- bed body
- gas
- gas distributor
- bed reactor
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Abstract
A novel internal recycle moving bed reactor comprises a bed body (3), a lift leg (4), an ascension pipe (7), a gas distributor (12), a feed inlet (10), a filter (5), a heat transfer pipe (9), an air inlet (1), an air vent (6), and a discharge opening (2). The utility model is characterized in that the bed body (3) is composed of two sections, the upper section is a unidiameter cylinder, the lower section has a conical structure, and the two sections are connected by a spherical transition section. The lower portion in the bed body is equipped with the lift leg (4), the upper end of the lift leg (4) is larger than the lower end, and the outer side of the lift leg (4) is equally entwined with the snake-type heat transfer pipe (9). The gas distributor (12) is arranged on the lower portion of lift leg (4), the ascension pipe (7) is communicated with the gas distributor (12), the ascension pipe (7) is evenly distributed with a gas distributing hole (13), the left side of the lower end of bed body is provided with the feed inlet (10), the conical structure of the bottom end of the bed body is provided with the discharge opening (2), the bottom portion of the bed body is provided with the air inlet (1), the upper portion of the bed body is equipped with the filter (5), and the top end of the bed body is provided with the air vent (6). The utility model is simple in structure, low in cost, high in reaction rate, and easy in operation.
Description
Technical field
The utility model is a kind of novel pulpous bed bioreactor, relates in particular to a kind of being applicable to by recycle slurry state bed reactor in carbon monoxide and hydrogen Synthin, alcohols, ethers, ester class and composition thereof novel.
Background technology
Along with the minimizing of global crude oil resource and skyrocketing of price, solid-state (coal and living beings) and gaseous state (natural gas and coal bed gas) fuel prepare hydro carbons, alcohols, ethers, ester class and composition thereof respectively through gasification with after being converted into the synthesis gas of carbon monoxide and hydrogen mixture be one of effective measures of alleviating the nervous present situation of China's liquid fuel.Simultaneously, these fuel directly or can obtain other valuable industrial chemicals after secondary operations.
Paste state bed reactor is as a kind of novel reactor, by Klbel and partner's developmental research first thereof, subsequently, Sasol company in South Africa successfully designs and the paste state bed reactor that turned round to be used for Fischer-Tropsch synthetic.Paste state bed reactor is compared with other phase reactors, have simple in structure, be easy to make and advantages such as amplification, simultaneously, can control reaction temperature better, be suitable for strong heat release long response time (for example Fischer-Tropsch is synthetic, methyl alcohol is synthetic etc.), be widely used in fields such as Coal Chemical Industry and gas chemical industry, in industrial production, brought into play increasing effect.At present, paste state bed reactor has been subjected to the unprecedented attention of domestic industry circle and academia, and lot of documents (Zhu Qingyun. the natural gas synthetic oil Analysis on development. lubricating oil, 2006,21 (4): 60~64; Appoint and fly, Wang Jinfu. slurry attitude bed methyl alcohol synthetic reaction process mathematical simulation. the process engineering journal, 2006,6 (1): 1~5 etc.) reported correlative study, and applied for multinomial patent (ZL 00119799.1, ZL01118470.1, ZL 200410012366.7 etc.).
Have remarkable advantages although paste state bed reactor is compared with other reactors, in commercial Application, still have some defectives and deficiency.Chinese patent ZL 01118470.1 has announced a kind of slurry attitude bed synthetic reaction device, because mechanical agitator is housed, the sealing leak problem appears in device easily under HTHP; In another Chinese patent (ZL 00119799.1), adopt the heat exchange of calandria heat exchanger in the reactor, taken the big quantity space of reactor, the size of whole reactor is increased, and then increased equipment cost.The Chinese patent of announcing in 2004 (ZL200410012366.7) is by improving its inner member structure, overcome some defectives in the above-mentioned patent, but still come with some shortcomings, its shortcoming is the inner member complex structure, equipment processing charges height is unfavorable for industrial operation and maintenance.
Summary of the invention
The purpose of this utility model is the problem and shortage that solves in the background technology, provide a kind of simple in structure, cost is low, reaction efficiency is high, easy-operating novel in the recycle slurry state bed reactor.
The purpose of this utility model is achieved in that it is made up of bed body, riser, riser, gas distributor, charging aperture, filter, heat exchanger tube, air inlet, exhaust outlet and discharge port.It is characterized in that a body constitutes by two sections, bed body epimere is the equal diameter cylinder, and hypomere is a pyramidal structure, and both connect by spherical changeover portion.The riser of a upper end diameter greater than lower end diameter is equipped with in the bottom in the bed body, the equidistant snake type heat exchanger tube that is wound with in the riser outside.Gas distributor is positioned at the riser bottom, and there is charging aperture on bed right side, body bottom, and there is discharge port bed pyramidal structure side, body bottom, air inlet is arranged at the bottom, and air inlet communicates with gas distributor and riser, and the distribution of gas hole is arranged at riser top, filter is equipped with on bed body top, and there is exhaust outlet on bed body top.
Slurries flow in the bed body by charging aperture, gas then enters in the riser by gas distributor and riser through air inlet, and the slurries that carry in the riser move upward together, gas and slurries in the riser carry out mass transfer, conduct heat and reaction, the product gas that reaction generates, unreacted unstripped gas is with after the slurries carried secretly separate through filter, product gas and unreacted unstripped gas are discharged by the exhaust outlet on bed body top, and the slurries stream that falls that up slurries enter between a body and the riser through the riser upper end in riser is distinguished, and be back in the riser in the bottom that falls stream district, unnecessary slurries are discharged by discharge port.Simultaneously, cooling fluid is entered by heat exchanger tube inlet, and discharges from the heat exchanger tube outlet after the slurries heat exchange.
The utility model compared with prior art has the following advantages:
1. bed body of the present utility model constitutes by two sections, epimere is the equal diameter cylinder, and link to each other with the hypomere pyramidal structure by spherical changeover portion, this structural design can guarantee that the slurries that fall the stream district in the reactor are back in the riser smoothly, avoids dead bed occurring at reactor bottom;
2. in the bed body of the present utility model the reducing riser is housed, can effectively improve the CONCENTRATION DISTRIBUTION of slurries in the riser, gas-liquid is mixed admittedly, simultaneously, unstripped gas distributes and the catalyst concn basically identical in reactor vertically, make the maximum reactivity of catalyst performance, compare, can increase substantially the disposal ability of reactor with other unidimensional reactors;
3. the equidistant snake type heat exchanger tube that is wound with in the riser outside when cooling fluid is flowed through heat exchanger tube, is in time removed the heat in the reactor, makes reaction temperature keep stable, avoids occurring the bed focus, prolongs life of catalyst;
4. the utility model adopts the side-flow type gas distributor, blast cap is tapered, slurries can not pile dead bed at the blast cap top, blast cap becomes equilateral triangle to arrange on gas distributor, between per three blast caps just like forming a fine taper bed, on gas distributor, just form a plurality of fine taper beds like this, the even substep that helps solid catalyst, in addition, gas is close to gas distributor plate surface current along latasuture and is gone out, turn back then and upwards enter bed, can make gas on gas distributor, obtain evenly to distribute, prevent that the plate face from forming dead bed or sintering phenomenon takes place;
5. the riser that communicates with gas distributor is housed in the reactor, radially be evenly distributed with six distribution of gas holes in axial three positions of riser, and increase with axial location, the distribution of gas bore dia increases, so just can in time replenish the used up material synthesis gas of riser internal reaction, unstripped gas be distributed vertically reach unanimity, in addition, the awl cap is adopted on the riser top, avoids slurries to form the dead band at its top;
6. reactor top is furnished with filter, after reacting the product gas that produces and the slurries that unreacted unstripped gas and its are carried secretly being separated through filter, slurries turn back in the reactor, product gas and unreacted unstripped gas are discharged by exhaust outlet, can effectively reduce the slurries loss, simultaneously, can reduce product gas subsequent treatment cost, make production process simpler, easy to operate.
Description of drawings
Fig. 1 is novel interior recycle slurry state bed reactor structural representation
Fig. 2 is the gas distributor structural representation
Fig. 3 is a gas distributor awl cap schematic diagram
Fig. 4 is the riser structural representation
As shown in the figure, the 1st, air inlet, the 2nd, discharge port, the 3rd, a body, the 4th, riser, the 5th, filter, the 6th, exhaust outlet, the 7th, riser, the 8th, heat exchanger tube outlet, the 9th, heat exchanger tube, the 10th, charging aperture, the 11st, heat exchanger tube inlet, the 12nd, gas distributor, the 13rd, distribution of gas hole, the 14th, awl cap, the 15th, air inlet pipe.
The specific embodiment
Filter 5 is arranged at the top in the bed body 3, there is exhaust outlet 6 on the top, riser 4 is arranged at the bottom, and riser 4 is around with snake type heat exchanger tube 9, and gas distributor 12 is positioned at the bottom of riser 4, awl cap 14 is distributed on the gas distributor 12, there is charging aperture 10 on the right side, bottom of bed body 3, and the side, bottom has discharge port 2, bottom that air inlet 1 is arranged, and air inlet 1 and gas distributor 12 and riser 4 interior riseies 7 communicate, the 13rd, the distribution of gas hole on the riser 7, the 15th, the air inlet pipe on the awl cap 14.
Slurries are by in charging aperture 10 inflow reactors, gas then enters through air inlet 1, wherein most of gas is by gas distributor 12, air inlet pipe 15 on the awl cap 14 enters in the riser 4, and the slurries that carry in the riser 4 move upward together, the distribution of gas hole 13 of residual gas on riser 7 enters in the riser 4, gas and slurries carry out mass transfer in riser 4, conduct heat and reaction, the product gas that generates, unreacted unstripped gas is with after the slurries carried secretly separate through filter 5, gas is discharged by the exhaust outlet 6 on bed body 3 tops, and the stream that falls that the up slurries of slurries in riser 4 enter through riser 4 upper ends between a body 3 and the riser 4 is distinguished, and be back in the riser 4 in the bottom that falls stream district, the part slurries are discharged by discharge port 2.Simultaneously, cooling fluid is entered by heat exchanger tube inlet 11, and discharges from heat exchanger tube outlet 8 after the slurries heat exchange in the reactor.
Claims (5)
- One kind novel in the recycle slurry state bed reactor, it is made up of bed body (3), riser (4), riser (7), gas distributor (12), charging aperture (10), filter (5), heat exchanger tube (9), air inlet (1), exhaust outlet (6) and discharge port (2).It is characterized in that a body (3) constitutes by two sections, bed body (3) epimere is the equal diameter cylinder, and hypomere is a pyramidal structure, and both connect by spherical changeover portion.A riser (4) is equipped with in the bottom in the bed body.Gas distributor (12) is positioned at riser (4) bottom, be furnished with distribution of gas hole (13) on the riser (7), there is charging aperture (10) on bed body (3) right side, bottom, pyramidal structure side, bottom has discharge port (2), bottom that air inlet (1) is arranged, air inlet (1) communicates with gas distributor (12) and riser (7), filter (5) is arranged at bed body (3) top, and there is exhaust outlet (6) on the top.
- 2. a kind of novel interior recycle slurry state bed reactor as claimed in claim 1 is characterized in that described riser (7) is the Taper Pipe that a upper end diameter is slightly larger than lower end diameter.
- 3. a kind of novel interior recycle slurry state bed reactor as claimed in claim 1 is characterized in that described heat exchanger tube (9) is an equidistant outer snake type heat exchanger tube of riser (4) that is wound in.
- 4. a kind of novel interior recycle slurry state bed reactor as claimed in claim 1, each radially is evenly distributed with six distribution of gas holes (13) to it is characterized in that axial three positions of described riser (7), and increase with axial location, distribution of gas hole (13) diameter increases, and the awl cap is adopted on riser (7) top.
- 5. a kind of novel interior recycle slurry state bed reactor as claimed in claim 1 is characterized in that the last equilateral triangle of described gas distributor (12) is distributed with awl cap (14).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CNU2007201559032U CN201052457Y (en) | 2007-07-03 | 2007-07-03 | Novel inner circulation slurry-bed reactor |
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CNU2007201559032U CN201052457Y (en) | 2007-07-03 | 2007-07-03 | Novel inner circulation slurry-bed reactor |
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CN201052457Y true CN201052457Y (en) | 2008-04-30 |
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CNU2007201559032U Expired - Fee Related CN201052457Y (en) | 2007-07-03 | 2007-07-03 | Novel inner circulation slurry-bed reactor |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102416307A (en) * | 2010-09-27 | 2012-04-18 | 中国石油化工股份有限公司 | Internal recycling slurry bed reactor and application thereof |
CN102962011A (en) * | 2012-11-20 | 2013-03-13 | 迈瑞尔实验设备(上海)有限公司 | Efficient heat exchange reactor |
CN103962067A (en) * | 2013-01-31 | 2014-08-06 | 中国科学院上海高等研究院 | Method for carrying out slurry bed reaction |
-
2007
- 2007-07-03 CN CNU2007201559032U patent/CN201052457Y/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102416307A (en) * | 2010-09-27 | 2012-04-18 | 中国石油化工股份有限公司 | Internal recycling slurry bed reactor and application thereof |
CN102416307B (en) * | 2010-09-27 | 2015-09-23 | 中国石油化工股份有限公司 | A kind of internal-circulation type paste state bed reactor and application thereof |
CN102962011A (en) * | 2012-11-20 | 2013-03-13 | 迈瑞尔实验设备(上海)有限公司 | Efficient heat exchange reactor |
CN103962067A (en) * | 2013-01-31 | 2014-08-06 | 中国科学院上海高等研究院 | Method for carrying out slurry bed reaction |
CN103962067B (en) * | 2013-01-31 | 2017-02-08 | 中国科学院上海高等研究院 | Method for carrying out slurry bed reaction |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20080430 Termination date: 20100703 |