PARALLEL PIPE TYPE GAS ADSORPTION AND CONCENTRATION APPARATUS
20220305430 · 2022-09-29
Inventors
Cpc classification
B01D53/0407
PERFORMING OPERATIONS; TRANSPORTING
B01D53/0462
PERFORMING OPERATIONS; TRANSPORTING
Y02A50/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01D2257/708
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention relates to an apparatus for concentrating malodorous organic pollutant waste gas by using an adsorption method, and the specific solution is to provide a plurality of parallel fixed-bed adsorbers and a set of movable hot air desorption apparatuses which can be connected to at least one of the plurality of parallel fixed-bed adsorbers in sequence, and to respectively complete desorption of all parallel fixed adsorbent beds by means of the movable hot air desorption apparatuses. In the improved solution, the movable hot air desorption apparatus is connected to two adsorption units, and a regenerative heat exchange apparatus is provided on an inlet and outlet pipeline of the hot air desorption apparatus. According to the present invention, the desorption process of the regenerative fixed-bed adsorbers is changed from concentrated desorption requiring high-power energy consumption to stepwise desorption requiring low-power energy consumption, and in the desorption process, and heat energy is fully used by recovering the heat from the adsorbent and the desorptive gas discharged, so that not only the power demand of the gas adsorption concentration apparatus for associated energy supply is reduced, but the overall energy consumption is also reduced.
Claims
1. A gas adsorption concentration apparatus, comprising a housing, an adsorber gas inlet, an adsorber gas outlet, a plurality of adsorption units and a set of movable desorption apparatus, wherein the adsorption unit is a small fixed-bed adsorber, all the adsorption units are arranged in parallel and connected via a supporting connection structure to form an airtight adsorption core, such that an adsorbate gas entering the housing from the adsorber gas inlet is capable of reaching the adsorber gas outlet only by passing through the adsorption units of the adsorption core; the movable desorption apparatus is composed of a hot air desorption apparatus and a mechanical movement apparatus; the hot air desorption apparatus enables head ends on one side of an adsorption unit group composed of two adsorption units to be respectively in communication with a desorptive gas supply apparatus and a desorptive gas treatment apparatus by means of flexible pipelines, this part of the hot air desorption apparatus is called an IO end, and two head ends on the other side of the adsorption unit group are in communication with a pipeline including a gas heating apparatus; a desorptive gas from the desorptive gas supply apparatus passes through the two adsorption units of the adsorption unit group in sequence to the desorptive gas treatment apparatus; during this process, the desorptive gas performs heating, desorption and regeneration on an adsorbent in one of the adsorption units, and at the same time, recovers the heat absorbed by an adsorbent in the other adsorption unit in a desorption process and cools the adsorption unit; and the mechanical movement apparatus supports the hot air desorption apparatus and completes connection and switching between the hot air desorption apparatus and each adsorption unit group in sequence under the drive of controlled power.
2. The gas adsorption concentration apparatus of claim 1, wherein a heat exchange apparatus is provided at the IO end of the hot air desorption apparatus, and the heat exchange apparatus serves to perform heat exchange between two desorptive gas pipelines passing through the IO end.
3. The gas adsorption concentration apparatus of claim 2, wherein the heat exchange apparatus is a rotary heat exchanger with an intermittent heat accumulator.
4. The gas adsorption concentration apparatus of claim 1, wherein a plurality of parallel fixed-bed adsorption units are arranged in a matrix, and the array arrangement allows a trajectory formed by pairing the adjacent fixed-bed adsorption units in up-down and left-right directions to rightly form an end-to-end closed curve covering all the fixed-bed adsorption units.
5. The gas adsorption concentration apparatus of claim 1, wherein the adsorption core is configured to be of a modular structure which is transversely expandable and longitudinally stackable, and the movable desorption apparatus is correspondingly configured to be of a flexible expansion structure with an expandable coverage range.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
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[0020]
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[0024]
[0025]
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DETAILED DESCRIPTION OF EMBODIMENTS
Embodiment 1
[0027] See
[0028] The gas adsorption concentration apparatus comprises a housing 1, an adsorber gas inlet 2, an adsorber gas outlet 3, a plurality of adsorption units 4 and a set of movable desorption apparatuses 5. Each of the adsorption units is a small fixed-bed adsorber, comprises two head ends 41 capable of allowing an adsorbate gas and a desorptive gas to enter and exit the adsorber, and is internally provided with an adsorbent 42 and a thermal insulation material 43. All the adsorption units are arranged in parallel and connected via a supporting connection structure to form an airtight adsorption core 40, such that an adsorbate gas entering the housing 1 from the adsorber gas inlet 2 can reach the adsorber gas outlet 3 only by passing through the adsorption units 4 of the adsorption core 40. The movable desorption apparatus is composed of a hot air desorption apparatus 51 and a mechanical movement apparatus 52. The hot air desorption apparatus 51 can be connected to one of the adsorption units in sequence, and is in communication with a peripheral desorptive gas supply apparatus 01 and a peripheral desorptive gas treatment apparatus 02 respectively by means of flexible pipelines 511, such that a desorptive gas from the desorptive gas supply apparatus 01 passes through the adsorption units 4 to the desorptive gas treatment apparatus 02. A gas heating apparatus 512 is provided between the desorptive gas supply apparatus 01 and the adsorption units 4. The mechanical movement apparatus 52 supports the hot air desorption apparatus 51 and moves on a horizontal track 521 and a vertical track 522 under the drive of controlled power, to complete connection and switching between the hot air desorption apparatus 51 and each adsorption unit 4 in sequence by means of a telescopic interface 523.
[0029] The operation of the device comprises two operation processes, namely, an adsorption process and a desorption process.
[0030] In the desorption process, polluted air delivered from a pollution gas (or mixed gas) collection apparatus 03, as shown by the hollow arrow, enters an air intake static-pressure tank 11, which is composed of the housing 1 and the adsorption cores 40, from the adsorber gas inlet 2, and then enters each adsorption unit 4 respectively; the adsorbent 42 in the adsorption units adsorbs adsorbable pollutants retained in the polluted air; clean air flows out from the other end of the adsorption unit 4 and enters an exhaust gas collection tank 12, which is composed of the housing 1 and the adsorption cores 40; and finally, the clean air is discharged from the adsorber gas outlet 3 into the atmosphere via a pipeline and a chimney 04.
[0031] In the desorption process, referring to
[0032] When one adsorption unit has completed desorption and regeneration, the hot air adsorption apparatus is detached from the adsorption unit and moved to the next adsorption unit and joined with the next adsorption unit under the drive of the mechanical movement apparatus, and the above-mentioned desorption process is repeated.
[0033] The peripheral desorptive gas supply apparatus 01 and the peripheral desorptive gas treatment apparatus herein are not necessarily installed, and when the desorptive gas is possibly ordinary air without the need for treatment, or the desorptive gas discharged during desorption can be discharged into the atmosphere without the need treatment, the flexible pipeline 511 can be directly in communication with the space outside the housing 1 of the gas adsorption concentration apparatus.
Embodiment 2
[0034] Referring to
[0035] On the basis of Embodiment 1, the adsorption unit group 43 composed of two adsorption units 4-1 and 4-2 serves as a functional unit in the desorption process. The hot air desorption apparatus 51 enables two head ends 411 and 412 on one side of the adsorption unit group to be respectively in communication with the desorptive gas supply apparatus 01 and the desorptive gas treatment apparatus 02 by means of flexible pipelines 511, and this part of the hot air desorption apparatus is called an IO end. The two head ends 413 and 414 on the other side of the adsorption unit group are in communication with a short communication pipe 5110 including the gas heating apparatus 512, and this part of the hot air desorption apparatus is called a CA end.
[0036] When the apparatus is in operation, the adsorption process is the same as that in Embodiment 1.
[0037] See
[0038] It is different from the case in Embodiment 1 that the desorptive gas first entering the adsorption unit 4-2 absorbs the heat absorbed by the adsorbent in the desorption process of the previous adsorption unit 4-1, has the temperature itself raised, and reaches the predetermined desorption temperature by absorbing less heat when being heated by the gas heating apparatus 512, while the adsorbent in the adsorption unit 4-1 is cooled in this process, and can more quickly enter a low-temperature state required for the adsorption process.
[0039] In conclusion, the desorption process of the apparatus in Embodiment 2 is more energy-saving than that in Embodiment 1, and can be switched to the adsorption process immediately after the desorption is completed.
Embodiment 3
[0040] The hot air desorption apparatus is provided with a heat exchange apparatus, see
[0041] In the desorption processes of the previous two embodiments, when the desorption of the adsorption unit is to be completed, the desorptive gas delivered from the head end 41 of the adsorption unit and the flexible pipeline 511 to the desorptive gas treatment apparatus 02 is high-temperature gas, and the heat carried in this part of gas is wasted and makes the flexible pipeline 511 in a high-temperature state. A solution is to provide a heat exchanger between two flexible pipelines 511 leading to and out of the head end 412 of the adsorption unit of the hot air desorption apparatus, and a relatively simple solution is to provide a partition wall type heat exchanger 5131, as shown in
[0042] A solution with a higher heat utilization rate is to provide a regenerative heat exchanger. It further includes a valve-switched regenerative heat exchanger or a rotary regenerative heat exchanger with a heat accumulator. The rotary regenerative heat exchanger with a heat accumulator 5132 is preferred herein, as shown in
[0043] Reference is made to
Embodiment 4
[0044] See
[0045] For the functional requirements of different adsorbate gas treatment capacities, a movable desorption system may be used, in which the adsorption cores of different adsorption units are configured to correspond to different coverage ranges but the main configurations such as the hot air desorption apparatus are the same. From the perspective of reducing the production cost of products, if the core 40 uses a modular structure and a moving track of the movable desorption apparatus also uses a structure that is easy to assemble and extend, it is possible to flexibly combine a few types or even a single type of adsorption core module 401 and a single core component of the movable adsorption apparatus into a gas adsorption concentration apparatus having various processing capacities.
[0046]