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KR101131991B1 - Apparatus and method of oil mist treatment - Google Patents

Apparatus and method of oil mist treatment Download PDF

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KR101131991B1
KR101131991B1 KR1020100059013A KR20100059013A KR101131991B1 KR 101131991 B1 KR101131991 B1 KR 101131991B1 KR 1020100059013 A KR1020100059013 A KR 1020100059013A KR 20100059013 A KR20100059013 A KR 20100059013A KR 101131991 B1 KR101131991 B1 KR 101131991B1
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oil
water
absorption tower
heat exchanger
vapor
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KR20110138872A (en
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김종찬
임채동
배영성
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한국수력원자력 주식회사
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/34Chemical or biological purification of waste gases
    • B01D53/74General processes for purification of waste gases; Apparatus or devices specially adapted therefor
    • B01D53/75Multi-step processes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D17/00Separation of liquids, not provided for elsewhere, e.g. by thermal diffusion
    • B01D17/02Separation of non-miscible liquids
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0027Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions
    • B01D46/0036Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions by adsorption or absorption
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/002Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by condensation
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/14Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by absorption
    • B01D53/1406Multiple stage absorption
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B43/00Arrangements for separating or purifying gases or liquids; Arrangements for vaporising the residuum of liquid refrigerant, e.g. by heat
    • F25B43/02Arrangements for separating or purifying gases or liquids; Arrangements for vaporising the residuum of liquid refrigerant, e.g. by heat for separating lubricants from the refrigerant
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28CHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA COME INTO DIRECT CONTACT WITHOUT CHEMICAL INTERACTION
    • F28C1/00Direct-contact trickle coolers, e.g. cooling towers
    • F28C1/02Direct-contact trickle coolers, e.g. cooling towers with counter-current only

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Engineering & Computer Science (AREA)
  • Analytical Chemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Environmental & Geological Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Biomedical Technology (AREA)
  • Treating Waste Gases (AREA)
  • Vaporization, Distillation, Condensation, Sublimation, And Cold Traps (AREA)

Abstract

본 발명은 베어링의 윤활계통 및 윤활유 저장탱크 상부의 온도상승 및 고속회전으로 인해 발생되는 40~60℃의 유증기를 응축시켜 오일과 수분을 분리 제거하고 청정가스만을 대기로 배출시키는 유증기 처리 장치 및 방법을 제공함에 그 목적이 있다.
이를 구현하기 위한 본 발명의 유증기 처리 장치는, 유증기를 저온의 처리가스와 열교환시켜 1차 응축하는 열교환기(2); 상기 열교환기(2)에서 미처리된 유증기를 냉각물과 접촉시켜 2차 응축하는 1단 또는 2단 이상의 흡수탑(3); 상기 열교환기(2)와 흡수탑(3)에서 미처리된 미세입자를 여과하는 필터(5); 상기 열교환기(2)와 흡수탑(3)에서 응축된 오일과 물을 포집하는 유수분리탱크(17); 상기 유수분리탱크(17)에 포집된 물을 상기 흡수탑(3)으로 순환 공급하는 펌프(14a,14b); 및 상기 흡수탑(3)으로 순환 공급되는 물을 냉각시키는 냉각기(15)를 포함한다.
본 발명에 의하면, 대기로 배출되는 유증기 중의 오일과 수분을 제거함으로써 대기 오염을 방지함은 물론 주변 토양 오염을 방지하는 효과가 있다.
The present invention condenses oil vapor of 40 ~ 60 ℃ generated by the temperature rise and high-speed rotation of the upper part of the lubrication system and the lubricating oil storage tank of the bearing to separate and remove oil and water and to discharge only clean gas to the atmosphere The purpose is to provide.
The oil vapor treatment apparatus of the present invention for realizing this, the heat exchanger (2) for the first condensation by heat exchange the oil vapor with the low-temperature processing gas; An absorption tower (3) having one or more stages of secondary condensation by contacting the untreated oil vapor in the heat exchanger (2) with the cooling water; A filter (5) for filtering the untreated microparticles in the heat exchanger (2) and the absorption tower (3); Oil and water separation tank 17 for collecting the oil and water condensed in the heat exchanger (2) and absorption tower (3); Pumps 14a and 14b for circulating and supplying water collected in the oil / water separation tank 17 to the absorption tower 3; And a cooler 15 for cooling the water circulated to the absorption tower 3.
According to the present invention, by removing the oil and water in the oil vapor discharged to the atmosphere there is an effect of preventing air pollution as well as pollution of the surrounding soil.

Description

유증기 처리 장치 및 방법{Apparatus and Method of Oil mist Treatment}Apparatus and Method of Oil mist Treatment

본 발명은 유증기 처리 장치 및 방법에 관한 것으로서, 더욱 상세하게는 베어링의 윤활계통 및 윤활유 저장탱크 상부의 온도상승 및 고속회전으로 인해 발생되는 40~60℃의 유증기를 응축시켜 오일과 수분을 분리하여 제거하고 청정가스를 대기중으로 배출시키는 동시에 배출가스의 백연현상을 없앨 수 있는 유증기 처리 장치 및 방법에 관한 것이다.The present invention relates to an oil vapor treatment apparatus and method, and more particularly, to separate oil and water by condensing oil vapor at 40 to 60 ° C. generated due to the temperature rise and high speed rotation of the lubrication system of the bearing and the lubricating oil storage tank. The present invention relates to an oil vapor treatment apparatus and method capable of removing and discharging clean gas to the atmosphere and at the same time eliminating white smoke.

일반적으로 윤활유는 윤활작용을 하면서 온도가 상승하게 되고, 이 과정에서 다량의 유증기가 발생하게 된다.In general, the lubricating oil is lubricated, the temperature rises, and a large amount of oil vapor is generated in the process.

이러한 유증기를 대기로 배출시 발생하는 대기오염 문제를 해결하기 위해 오일성분을 응축 분리하여 처리된 가스를 방출하게 된다.In order to solve the air pollution problem caused by the discharge of the oil vapor to the atmosphere by condensing and separating the oil component to release the treated gas.

종래에는 고정식 필터(스크린 메쉬)를 이용한 유증기 처리 장치를 이용하였으나, 이 경우 고정식 필터에 잔류하는 오일이 대기중에 배출되기 때문에 유증기의 처리 효율이 낮은 문제점이 있었다.Conventionally, an oil vapor treatment apparatus using a fixed filter (screen mesh) is used, but in this case, since oil remaining in the fixed filter is discharged into the air, there is a problem in that the efficiency of oil vapor treatment is low.

또한 종래 열교환기를 이용하여 배출되는 유증기의 온도를 낮추어 오일과 수분을 동시에 응축시켜 제거하는 방법이 알려져 있으나, 이 경우 대기로 배출되는 가스와 대기의 온도차에 의해 수분이 재응축되어 발생하는 백연현상으로 인한 가시공해의 문제점이 있었고, 간접 열교환 방식의 열교환기로 기대할 수 있는 효율의 한계점 때문에 일부 유증기는 오일과 수분이 제거되지 않은 상태로 대기중에 방출되어 유증기 배출구 주변의 환경을 오염시키는 문제점이 있었다.In addition, there is a known method of condensing oil and moisture at the same time by lowering the temperature of oil vapor discharged using a heat exchanger, but in this case, it is a white smoke phenomenon generated by re-condensation of moisture due to the temperature difference between the gas discharged into the atmosphere and the atmosphere. There was a problem of visible pollution, and due to the limitation of efficiency that can be expected with an indirect heat exchanger type heat exchanger, some oil vapors were released into the air without removing oil and water, thereby contaminating the environment around the steam outlet.

본 발명은 상기와 같은 문제점을 해결하기 위하여 안출된 것으로서, 베어링의 윤활계통 및 윤활유 저장탱크 상부의 온도상승 및 고속회전으로 인해 발생되는 40~60℃의 유증기를 응축시켜 오일과 수분을 분리 제거하고 청정가스만을 대기로 배출시키는 유증기 처리 장치 및 방법을 제공함에 그 목적이 있다.The present invention has been made in order to solve the above problems, by separating the oil and water by condensing the oil vapor of 40 ~ 60 ℃ caused by the temperature rise and high speed rotation of the upper part of the lubrication system and the lubricant storage tank of the bearing and It is an object of the present invention to provide an apparatus and a method for treating steam that discharge only clean gas to the atmosphere.

본 발명의 다른 목적은 유증기에 포함된 미세입자에 의해 발생하는 백연현상으로 인한 가시공해를 제거할 수 있는 유증기 처리 장치 및 방법을 제공하는데 있다.It is another object of the present invention to provide an apparatus and method for treating steam that can remove visible pollution due to white smoke caused by fine particles contained in steam.

상술한 바와 같은 목적을 구현하기 위한 본 발명의 유증기 처리 장치는, 유증기를 저온의 처리가스와 열교환시켜 1차 응축하는 열교환기(2); 상기 열교환기(2)에서 미처리된 유증기를 냉각물과 접촉시켜 2차 응축하는 1단 또는 2단 이상의 흡수탑(3); 상기 열교환기(2)와 흡수탑(3)에서 미처리된 미세입자를 여과하는 필터(5); 상기 열교환기(2)와 흡수탑(3)에서 응축된 오일과 물을 포집하는 유수분리탱크(17); 상기 유수분리탱크(17)에 포집된 물을 상기 흡수탑(3)으로 순환 공급하는 펌프(14a,14b); 및 상기 흡수탑(3)으로 순환 공급되는 물을 냉각시키는 냉각기(15)를 포함한다.The steam treatment apparatus of the present invention for realizing the object as described above, the heat exchanger (2) for the first condensation by heat exchange the oil vapor with the low-temperature processing gas; An absorption tower (3) having one or more stages of secondary condensation by contacting the untreated oil vapor in the heat exchanger (2) with the cooling water; A filter (5) for filtering the untreated microparticles in the heat exchanger (2) and the absorption tower (3); Oil and water separation tank 17 for collecting the oil and water condensed in the heat exchanger (2) and absorption tower (3); Pumps 14a and 14b for circulating and supplying water collected in the oil / water separation tank 17 to the absorption tower 3; And a cooler 15 for cooling the water circulated to the absorption tower 3.

또한 상기 유수분리탱크(17)에는 오일과 물을 층 분리하기 위한 분리판(19,20)이 구비된 것을 특징으로 한다.In addition, the oil-water separation tank 17 is characterized in that the separation plates (19, 20) for separating the oil and water layer.

또한 상기 유수분리탱크(17) 내의 오일과 물의 액위를 측정하기 위한 액위조절기(18)와; 상기 유수분리탱크(17)에서 유수분리된 오일과 물을 각각 오일저장탱크(25)와 폐수집수조(24)로 이송하기 위해 상기 액위조절기(18)에 의해 제어되는 자동밸브(16,21)가 추가로 구비된 것을 특징으로 한다.In addition, the liquid level regulator 18 for measuring the liquid level of the oil and water in the oil-water separation tank 17; Automatic valves 16 and 21 controlled by the liquid level regulator 18 to transfer oil and water separated from the oil / water separation tank 17 to the oil storage tank 25 and the wastewater collection tank 24 are respectively. It is characterized in that the additionally provided.

본 발명의 유증기 처리 방법은, 유증기를 열교환기(2)에서 저온의 처리가스와 열교환시켜 1차 응축하고, 응축되지 않은 유증기는 1단 또는 2단 이상의 흡수탑(3)으로 유입되며, 열교환된 처리가스는 스택(23)으로 배출되는 단계; 상기 흡수탑(3)으로 유입되는 유증기를 냉각기(15)를 거쳐 상기 흡수탑(3)으로 유입되는 물과 접촉시켜 2차 응축하는 단계; 상기 흡수탑(3)에서 미처리된 미세입자를 필터(5)를 통해 제거하는 단계; 및 상기 열교환기(2)와 흡수탑(3)에서 응축된 오일과 물을 유수분리탱크(17)를 이용하여 분리 회수하는 단계를 포함한다.In the steam treatment method of the present invention, the oil vapor is first condensed by heat exchange with the low temperature process gas in the heat exchanger (2), and the uncondensed oil vapor is introduced into the absorption tower (3) of one or two stages, Process gas is discharged to the stack (23); A step of condensing the secondary steam by contacting the water vapor flowing into the absorption tower 3 with the water flowing into the absorption tower 3 through the cooler 15; Removing untreated fine particles through the filter (5) in the absorption tower (3); And separating and recovering the oil and water condensed in the heat exchanger (2) and the absorption tower (3) using an oil / water separation tank (17).

본 발명에 따른 유증기 처리 장치 및 방법에 의하면, 대기로 배출되는 유증기에 포함된 오일과 수분을 분리하여 제거함으로써 대기 오염을 방지함은 물론 주변 토양 오염을 방지할 수 있는 효과가 있다.According to the oil vapor treatment apparatus and method according to the present invention, by separating and removing the oil and water contained in the oil vapor discharged to the atmosphere has the effect of preventing air pollution as well as surrounding soil contamination.

또한 본 발명에 의하면 백연현상으로 인한 시각적 혐오감을 없애고 원자력발전이 청정함을 나타내는 홍보 효과가 있으며, 폐오일을 회수하여 재활용함으로써 폐기물 처리 비용을 절감할 수 있는 효과가 있다.In addition, according to the present invention, there is a publicity effect indicating that the nuclear discomfort caused by white smoke phenomenon is eliminated and nuclear power is clean, and the waste disposal cost can be reduced by recovering and recycling waste oil.

도 1은 본 발명에 따른 유증기 처리 장치의 개략적인 계통도,
도 2는 본 발명에 따른 유증기 처리 장치의 개략적인 구성도이다.
1 is a schematic system diagram of an apparatus for treating steam according to the present invention;
2 is a schematic configuration diagram of an oil vapor treatment apparatus according to the present invention.

이하 첨부한 도면을 참조하여 본 발명의 바람직한 실시예에 대한 구성 및 작용을 상세히 설명하면 다음과 같다. Hereinafter, the configuration and operation of the preferred embodiment of the present invention will be described in detail with reference to the accompanying drawings.

도 1은 본 발명에 따른 유증기 처리 장치의 개략적인 계통도, 도 2는 본 발명에 따른 유증기 처리 장치의 개략적인 구성도로서, (a)는 정면도, (b)는 좌측면도, (c)는 우측면도, (d)는 평면도를 각각 나타낸 것이다.1 is a schematic system diagram of a steam treatment apparatus according to the present invention, Figure 2 is a schematic configuration diagram of the steam treatment apparatus according to the present invention, (a) is a front view, (b) is a left side view, (c) is (D) shows a top view, respectively.

본 발명에 따른 유증기 처리 장치는, 유증기를 1차로 응축하는 열교환기(2), 상기 열교환기(2)에서 응축되지 않고 미처리된 유증기를 2차로 응축하는 흡수탑(3), 상기 열교환기(2)와 흡수탑(3)에서 미처리된 미세입자를 여과하는 필터(5), 상기 열교환기(2)와 흡수탑(3)에서 응축된 오일과 물을 포집하는 유수분리탱크(17), 상기 유수분리탱크(17) 내에 포집된 물을 상기 흡수탑(3)으로 순환 공급하는 펌프(14a,14b) 및 상기 흡수탑(3)으로 순환 공급되는 물을 냉각시키는 냉각기(15)를 포함한다.The oil vapor processing apparatus according to the present invention includes a heat exchanger (2) for condensing oil vapor primarily, an absorption tower (3) for condensing untreated oil vapor without condensing in the heat exchanger (2), and the heat exchanger (2). ) And a filter (5) for filtering the untreated microparticles in the absorption tower (3), an oil / water separation tank (17) for collecting oil and water condensed in the heat exchanger (2) and the absorption tower (3), and the flowing water And pumps 14a and 14b for circulating and supplying the water collected in the separation tank 17 to the absorption tower 3, and a cooler 15 for cooling the water circulated and supplied to the absorption tower 3.

도 1에 도시된 바와 같이, 유증기 배출시설(1)로부터 유입관(1a)을 통해 유입된 유증기는 열교환기(2)를 통과하면서 가스 이송관(8)을 따라 열교환기(2)로 유입되는 저온의 처리가스와 열교환되어 1차로 응축된다. 상기 열교환기(2)로 유입되는 고온의 유증기에 포함된 오일과 수분은 상기 저온의 처리가스가 승온되는 열량에 해당하는 만큼 응축되고, 유입되는 유증기 내에 응축되는 오일과 수분이 많을수록 배출되는 처리가스의 승온 열량이 많아지게 된다.As shown in FIG. 1, the oil vapor introduced from the oil vapor discharge facility 1 through the inlet pipe 1a is introduced into the heat exchanger 2 along the gas transfer pipe 8 while passing through the heat exchanger 2. Heat exchanged with cold process gas to condense first. Oil and water contained in the high temperature oil vapor flowing into the heat exchanger (2) is condensed as much as the heat amount of the low temperature process gas is heated, and the process gas discharged as more oil and moisture condensed in the introduced oil vapor The amount of heat of heating increases.

상기 열교환기(2)에서 응축된 오일과 물은 응축액 이송관(10)을 통해 하측에 구비된 유수분리탱크(17)로 유입된다.The oil and water condensed in the heat exchanger (2) flow into the oil / water separation tank (17) provided on the lower side through the condensate transport pipe (10).

상기 열교환기(2)에서 응축되지 않고 미처리된 유증기는 흡수탑(3)으로 유입되어 2차로 응축된다. 상기 흡수탑(3)은 1단 또는 2단 이상으로 구성될 수 있으며, 본 실시예에서는 도시된 바와 같이 제1흡수탑(3a)과 제2흡수탑(3b)의 2단으로 구성된 것이다.Uncondensed oil vapor, which is not condensed in the heat exchanger (2), flows into the absorption tower (3) and condenses in secondary. The absorption tower 3 may be configured in one or two or more stages. In the present embodiment, the absorption tower 3 may include two stages of the first absorption tower 3a and the second absorption tower 3b.

상기 제1흡수탑(3a)과 제2흡수탑(3b)의 내부에는 분사노즐(4a,4b ;4)이 설치되어 있다. 유수분리탱크(17) 내에 저장된 물은 세정액 이송관(13a,13b)을 따라서 상기 제1흡수탑(3a)과 제2흡수탑(3b) 내에 설치된 분사노즐(4)로 공급되고, 상기 세정액 이송관(13a,13b)에는 물의 순환공급을 위한 압송력을 제공하는 펌프(14a,14b)가 설치되어 있다. The injection nozzles 4a, 4b and 4 are provided inside the first absorption tower 3a and the second absorption tower 3b. Water stored in the oil / water separation tank 17 is supplied to the spray nozzles 4 installed in the first absorption tower 3a and the second absorption tower 3b along the cleaning liquid transport pipes 13a and 13b, and the cleaning liquid is transferred. The pipes 13a and 13b are provided with pumps 14a and 14b for providing a pressure force for circulating water.

상기 분사노즐(4)에서 분사되는 저온의 물은 흡수탑(3)을 통과하는 유증기에 직접 접촉되어 유증기를 응축하게 된다. 상기 흡수탑(3)에서 응축된 유증기의 오일과 물은 응축액 이송관(11,12)을 통해 유수분리탱크(17)로 유입된다.The low temperature water injected from the injection nozzle 4 is in direct contact with the oil vapor passing through the absorption tower 3 to condense the oil vapor. Oil and water of the oil vapor condensed in the absorption tower 3 is introduced into the oil / water separation tank 17 through the condensate feed pipes 11 and 12.

그리고 흡수탑(3)에서의 냉각 효율을 더욱 높이기 위하여, 상기 유수분리탱크(17)와 제1흡수탑(3a)을 연결하는 세정액 이송관(13a)에는 냉각기(15)가 설치된다. 이에 따라 유수분리탱크(17)에 저장된 물은 펌프(14a)의 작동에 의해 세정액 이송관(13a)을 따라서 냉각기(15)을 통과하면서 6℃ 이하로 냉각되고, 냉각된 물은 분사노즐(4a)을 통해 분사되어 열교환기(2)로부터 제1흡수탑(3a)으로 유입되는 유증기의 온도를 낮추어 응축시킨다. In order to further increase the cooling efficiency of the absorption tower 3, a cooler 15 is installed in the cleaning liquid transfer pipe 13a connecting the oil / water separation tank 17 and the first absorption tower 3a. Accordingly, the water stored in the oil / water separation tank 17 is cooled to 6 ° C. or less while passing through the cooler 15 along the cleaning liquid delivery pipe 13a by the operation of the pump 14a, and the cooled water is spray nozzle 4a. And condensed by lowering the temperature of the oil vapor flowing through the heat exchanger (2) to the first absorption tower (3a).

상기 제1흡수탑(3a)에서 응축된 물은 응축액 이송관(11)을 통해 유수분리탱크(17)로 유입되고, 응축되지 않고 미처리된 유증기는 제2흡수탑(3b)으로 유입되어 분사노즐(4b)에서 분사되는 물과의 접촉으로 응축되어 응축액 이송관(12)을 통해 유수분리탱크(17)로 유입된다.Water condensed in the first absorption tower (3a) is introduced into the oil-water separation tank (17) through the condensate transfer pipe (11), uncondensed oil vapor flows into the second absorption tower (3b) and the injection nozzle Condensed by contact with the water sprayed from (4b) is introduced into the oil-water separation tank 17 through the condensate transfer pipe (12).

상기 흡수탑(3)을 통과하는 유증기는 냉각된 물에 직접 접촉되므로 흡수탑(3)을 통과한 유증기의 온도는 열교환기(2)를 통과한 유증기의 온도보다 더욱 낮아진다.Since the oil vapor passing through the absorption tower 3 is in direct contact with the cooled water, the temperature of the oil vapor passing through the absorption tower 3 is lower than the temperature of the oil vapor passing through the heat exchanger 2.

상기 열교환기(2)와 제1흡수탑(3a) 및 제2흡수탑(3b)을 순차로 거치면서 유증기에 포함된 오일과 수분은 대부분 응축되어 유수분리탱크(17)에 포집되지만, 응축 처리되지 않은 일부의 미세입자는 상기 제2흡수탑(3b) 내에 설치된 필터(5)에서 여과처리된다.While sequentially passing through the heat exchanger 2, the first absorption tower 3a, and the second absorption tower 3b, the oil and moisture contained in the oil vapor are condensed and collected in the oil / water separation tank 17, but the condensation treatment is performed. Some of the fine particles not filtered are filtered in the filter 5 installed in the second absorption tower 3b.

상기 필터(5)는 롤 필터 또는 롤형 헤파필터로 구성될 수 있으며, 롤(6)은 롤 조정기(7)에 의해 시간 또는 필터(5) 전,후단의 압력차로 조정된다.The filter 5 may be composed of a roll filter or a roll type hepa filter, and the roll 6 is adjusted by a roll adjuster 7 with a time difference or a pressure difference before and after the filter 5.

상기 흡수탑(3)을 거친 유증기는 분사된 냉각물과 접촉하면서 온도가 낮아지는데, 상기 필터(5)를 거친 처리가스는 대기로 바로 배출될 경우 백연현상이 발생할 수 있다. 이를 방지하기 위해 상기 제2흡수탑(3b)의 필터(5)를 통과하여 가스이송관(8)을 통해 배출되는 저온의 가스를 열교환기(2)로 인입되는 고온의 유증기와 열교환시켜 온도를 높이고, 이에 따라 상대습도가 낮아진 처리가스는 가스 배출관(9)을 거쳐 스택(23)을 통해 대기중으로 배기되도록 하였다.The oil vapor passed through the absorption tower 3 is lowered in contact with the injected coolant, and the treatment gas passed through the filter 5 may be directly discharged into the atmosphere, which may cause white smoke. In order to prevent this, the low-temperature gas discharged through the gas transfer pipe 8 through the filter 5 of the second absorption tower 3b is heat-exchanged with the hot oil vapor introduced into the heat exchanger 2 to increase the temperature. Thus, the treated gas of which the relative humidity is lowered is exhausted to the atmosphere through the stack 23 through the gas discharge pipe 9.

한편, 상기 유수분리탱크(17)에는 응축되어 포집된 오일과 물을 층 분리하기 위한 분리판(19,20)이 설치되어 있다.On the other hand, the oil and water separation tank 17 is provided with separating plates (19, 20) for separating the condensed and collected oil and water.

또한 상기 유수분리탱크(17)에는 내부에 저장된 오일과 물의 액위를 측정하기 위한 액위조절기(18)가 설치되고, 유수분리탱크(17)에는 보충수 공급관(23)이 연결되어 유수분리탱크(17)에서 흡수탑(3)으로 순환 공급되는 물 부족시에 물을 보충하여 일정한 수위를 유지하게 된다.In addition, the oil / water separation tank 17 is provided with a liquid level controller 18 for measuring the liquid level of oil and water stored therein, and the oil / water separation tank 17 is connected to a supplemental water supply pipe 23 so that the oil / water separation tank 17 At the time of water shortage circulated to the absorption tower (3) to supplement the water to maintain a constant water level.

상기 유수분리탱크(17)에서 분리된 오일은 액위조절기(18)에 의해 제어되는 자동밸브(16)를 통해 오일저장탱크(25)로 이송되고, 유수분리탱크(17)에서 분리된 물은 액위조절기(18)에 의해 제어되는 자동밸브(21)를 통해 폐수집수조(24)로 이송된다.The oil separated from the oil / water separation tank (17) is transferred to the oil storage tank (25) through an automatic valve (16) controlled by the liquid level regulator (18), and the water separated from the oil / water separation tank (17) is a liquid level. It is conveyed to the wastewater collection tank 24 through an automatic valve 21 controlled by the regulator 18.

상기 구성으로 이루어진 유증기 처리장치에서의 유증기 처리방법은, 유증기를 열교환기(2)에서 저온의 처리가스와 열교환시켜 1차 응축하고, 응축되지 않은 유증기는 1단 또는 2단 이상의 흡수탑(3)으로 유입되며, 열교환된 처리가스는 스택(23)으로 배출되는 단계; 상기 흡수탑(3)으로 유입되는 유증기를 냉각기(15)를 거쳐 상기 흡수탑(3)으로 유입되는 물과 접촉시켜 2차 응축하는 단계; 상기 흡수탑(3)에서 미처리된 미세입자를 필터(5)를 통해 제거하는 단계; 및 상기 열교환기(2)와 흡수탑(3)에서 응축된 오일과 물을 유수분리탱크(17)를 이용하여 분리 회수하는 단계로 이루어진다.In the steam treatment method of the above-described vapor treatment apparatus, the steam is heat condensed by heat exchange with the low temperature treatment gas in the heat exchanger (2), the condensed oil vapor is one or two or more stages of absorption tower (3) Flowed into, and the heat-treated process gas is discharged to the stack 23; A step of condensing the secondary steam by contacting the water vapor flowing into the absorption tower 3 with the water flowing into the absorption tower 3 through the cooler 15; Removing untreated fine particles through the filter (5) in the absorption tower (3); And separating and recovering the oil and water condensed in the heat exchanger 2 and the absorption tower 3 using the oil / water separation tank 17.

상술한 바와 같이 본 발명은 열교환기(2)에서 유증기를 1차로 응축하고, 미처리된 유증기는 1단 또는 2단 이상의 흡수탑(3)에서 2차로 응축하여 유수분리탱크(17)에 포집하고, 미처리된 미세 입자를 필터(5)에서 여과처리하여 청정가스를 대기중에 배출함으로써 환경 오염을 방지할 수 있다. As described above, the present invention condenses the primary steam in the heat exchanger (2), the untreated oil vapor is condensed secondary in the first or second stage absorption tower (3) and collected in the oil-water separation tank (17), Untreated fine particles are filtered in the filter 5 to discharge clean gas into the atmosphere, thereby preventing environmental pollution.

또한 응축과정을 거친 처리가스는 열교환기(2)를 통과하면서 승온된 상태로 배출되도록 하여 백연현상을 방지할 수 있으며, 유수분리탱크(17)에 포집된 오일은 회수하여 재활용함으로써 폐기물 처리비용을 절감하고, 유수분리탱크(17)에 포집된 물은 냉각기(15)를 거쳐 흡수탑(3)으로 순환 공급함으로써 유증기의 냉각 효율을 높일 수 있게 된다.In addition, the treated gas that has undergone condensation can be discharged in a heated state while passing through the heat exchanger (2) to prevent white smoke. The oil collected in the oil / water separation tank (17) is recovered and recycled to reduce waste treatment costs. The water collected in the oil-water separation tank 17 is circulated and supplied to the absorption tower 3 through the cooler 15 to increase the cooling efficiency of the oil vapor.

1 : 유증기 배출시설 2 : 열교환기
3 : 흡수탑 4 : 분사노즐
5 : 필터 6 : 롤
7 : 롤 조정기 8 : 가스 이송관
9 : 가스 배출관 10,11,12 : 응축액 이송관
13a,13b : 세정액 이송관 14a,14b : 펌프
15 : 냉각기 16,21 : 자동밸브
17 : 유수분리탱크 18 : 액위조절기
19,20 : 분리판 22 : 보충수 공급관
23 : 스택 24 : 폐수집수조
25 : 오일저장탱크
1: Steam discharge facility 2: Heat exchanger
3: absorption tower 4: spray nozzle
5: filter 6: roll
7: roll adjuster 8: gas feed pipe
9: gas discharge pipe 10,11,12: condensate transfer pipe
13a, 13b: cleaning liquid delivery pipe 14a, 14b: pump
15: cooler 16, 21: automatic valve
17: oil and water separation tank 18: liquid level regulator
19,20: separator 22: replenishment water supply pipe
23: stack 24: wastewater collection tank
25: oil storage tank

Claims (4)

유증기를 저온의 처리가스와 열교환시켜 1차 응축하는 열교환기(2);
상기 열교환기(2)에서 미처리된 유증기를 냉각물과 접촉시켜 2차 응축하는 1단 또는 2단 이상의 흡수탑(3);
상기 열교환기(2)와 흡수탑(3)에서 미처리된 미세입자를 여과하는 필터(5);
상기 열교환기(2)와 흡수탑(3)에서 응축된 오일과 물을 포집하는 유수분리탱크(17);
상기 유수분리탱크(17)에 포집된 물을 상기 흡수탑(3)으로 순환 공급하는 펌프(14a,14b); 및
상기 흡수탑(3)으로 순환 공급되는 물을 냉각시키는 냉각기(15);
를 포함하는 유증기 처리 장치.
A heat exchanger (2) for heat condensing the oil vapor with a low-temperature process gas for primary condensation;
An absorption tower (3) having one or more stages of secondary condensation by contacting the untreated oil vapor in the heat exchanger (2) with the cooling water;
A filter (5) for filtering the untreated microparticles in the heat exchanger (2) and the absorption tower (3);
Oil and water separation tank 17 for collecting the oil and water condensed in the heat exchanger (2) and absorption tower (3);
Pumps 14a and 14b for circulating and supplying water collected in the oil / water separation tank 17 to the absorption tower 3; And
A cooler (15) for cooling the water circulated to the absorption tower (3);
Vapor processing apparatus comprising a.
제1항에 있어서,
상기 유수분리탱크(17)에는 오일과 물을 층 분리하기 위한 분리판(19,20)이 구비된 것을 특징으로 하는 유증기 처리 장치.
The method of claim 1,
The oil and water separation tank (17) is characterized in that the separation plate (19, 20) for separating the oil and water layer is provided.
제1항 또는 제2항에 있어서,
상기 유수분리탱크(17) 내의 오일과 물의 액위를 측정하기 위한 액위조절기(18)와;
상기 유수분리탱크(17)에서 유수분리된 오일과 물을 각각 오일저장탱크(25)와 폐수집수조(24)로 이송하기 위해 상기 액위조절기(18)에 의해 제어되는 자동밸브(16,21)가 추가로 구비된 것을 특징으로 하는 유증기 처리 장치.
The method according to claim 1 or 2,
A level controller 18 for measuring the level of oil and water in the oil / water separation tank 17;
Automatic valves 16 and 21 controlled by the liquid level regulator 18 to transfer oil and water separated from the oil / water separation tank 17 to the oil storage tank 25 and the wastewater collection tank 24 are respectively. An apparatus for treating steam, which is further provided.
유증기를 열교환기(2)에서 저온의 처리가스와 열교환시켜 1차 응축하고, 응축되지 않은 유증기는 1단 또는 2단 이상의 흡수탑(3)으로 유입되며, 열교환된 처리가스는 스택(23)으로 배출되는 단계;
상기 흡수탑(3)으로 유입되는 유증기를 냉각기(15)를 거쳐 상기 흡수탑(3)으로 유입되는 물과 접촉시켜 2차 응축하는 단계;
상기 흡수탑(3)에서 미처리된 미세입자를 필터(5)를 통해 제거하는 단계; 및
상기 열교환기(2)와 흡수탑(3)에서 응축된 오일과 물을 유수분리탱크(17)를 이용하여 분리 회수하는 단계;
를 포함하는 유증기 처리 방법.

The oil vapor is first condensed by heat exchange with the low temperature process gas in the heat exchanger (2), and the uncondensed oil vapor is introduced into the absorption tower (3) of one or more stages, and the heat exchanged process gas is transferred to the stack (23). Discharged;
A step of condensing the secondary steam by contacting the water vapor flowing into the absorption tower 3 with the water flowing into the absorption tower 3 through the cooler 15;
Removing untreated fine particles through the filter (5) in the absorption tower (3); And
Separating and recovering oil and water condensed in the heat exchanger (2) and the absorption tower (3) using an oil / water separation tank (17);
Vapor treatment method comprising a.

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KR101627421B1 (en) 2014-09-22 2016-06-03 주식회사 엔케이 Oil vapor collection scrubber with a constant flow control valve
CN105135779B (en) * 2015-08-08 2017-05-17 刘虎 Evenly-stirring cold storage operation method for water cold storage system and device special for method
KR101869161B1 (en) * 2016-10-12 2018-06-19 한국수력원자력 주식회사 Recovery system of Turbine lubricating oil

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Publication number Priority date Publication date Assignee Title
KR20040021120A (en) * 2002-09-02 2004-03-10 주식회사 포스코 Apparatus for purifying the exhaust gas, using the change of density and shape of particle
KR20080022651A (en) * 2006-09-07 2008-03-12 주식회사 카엘 Dual jet cooling tower

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20040021120A (en) * 2002-09-02 2004-03-10 주식회사 포스코 Apparatus for purifying the exhaust gas, using the change of density and shape of particle
KR20080022651A (en) * 2006-09-07 2008-03-12 주식회사 카엘 Dual jet cooling tower

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