KR100538123B1 - Apparatus for purifying water in use of compound contact and method thereof - Google Patents

Apparatus for purifying water in use of compound contact and method thereof Download PDF

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KR100538123B1
KR100538123B1 KR1020050031601A KR20050031601A KR100538123B1 KR 100538123 B1 KR100538123 B1 KR 100538123B1 KR 1020050031601 A KR1020050031601 A KR 1020050031601A KR 20050031601 A KR20050031601 A KR 20050031601A KR 100538123 B1 KR100538123 B1 KR 100538123B1
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water purification
carrier
river
natural
microorganisms
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KR1020050031601A
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Korean (ko)
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이미란
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(주)대성그린테크
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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F3/00Biological treatment of water, waste water, or sewage
    • C02F3/02Aerobic processes
    • C02F3/10Packings; Fillings; Grids
    • C02F3/105Characterized by the chemical composition
    • C02F3/108Immobilising gels, polymers or the like
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F3/00Biological treatment of water, waste water, or sewage
    • C02F3/02Aerobic processes
    • C02F3/06Aerobic processes using submerged filters
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W10/00Technologies for wastewater treatment
    • Y02W10/10Biological treatment of water, waste water, or sewage

Abstract

본 발명은 복합접촉제를 이용한 자연형 하천수질 정화장치 및 그 정화방법에 관한 것으로, 보다 상세하게는 하천으로 유입되는 하수 및 미처리된 폐수의 유입 등에 의한 하천의 오염물질을 PE담체에 미생물 부착을 용이하게 하여 하천수를 처리하여 자연형 하천으로 복원하는 생물학적 처리방법으로, 하천 및 강의 저면에 설치되는 저면판, 저면판의 일측에 설치되는 전면판으로 이루어지는 수질정화장치에 있어서,The present invention relates to a natural stream water purification device using a composite contact agent and a method for purification thereof, and more specifically, microorganisms are attached to PE carriers by contaminants in streams caused by inflow of sewage and untreated wastewater into the stream. In the biological treatment method to easily treat the river water to restore the natural stream, in the water purification device consisting of a bottom plate installed on the bottom of the river and river, a front plate installed on one side of the bottom plate,

콘트리트 구조체(2)의 상부에 식재가 가능하도록 모래 및 자갈 등의 자연석(5)을 채워 설치하고; 그 하단에 폐타이어의 흡착을 이용한 독성유기물질 및 중금속을 사전처리하기 위하여 폐타이어(4) 분쇄물을 그물망에 넣어 설치하고; 그 하부에 생물학적 처리를 위한 사각형태의 PE담체(3)를 설치하고; PE담체(3)가 타설된 하부면과 콘크리트 구조체(2)의 내측 상부면에 의해 형성되는 일정 빈 공간(23)을 구비하여 구성되는 하천 수질정화장치(1)와 그 장치를 이용한 수질 정화방법으로, 폐타이어를 재활용하여, 환경개선과 재활용에 따른 비용 절감 효과가 발생하며, 폐타이어의 흡착을 이용한 독성유기물질 및 중금속을 사전처리한 후, 미생물이 부착된 PE담체로 최종 수질 정화를 함으로써, 보다 효율적인 정화처리 효과가 발생한다.Filling the natural stone 5 such as sand and gravel to be planted on the upper portion of the concrete structure 2; At the bottom of the waste tire (4) crushed matter is installed in the net to pre-treat toxic organic substances and heavy metals using the adsorption of waste tires; A rectangular PE carrier 3 for biological treatment is installed underneath; River water purification device (1) comprising a constant empty space (23) formed by the lower surface on which the PE carrier (3) is poured and the inner upper surface of the concrete structure (2) and the water purification method using the device By recycling the waste tires, cost reduction effect is generated due to environmental improvement and recycling, and pretreatment of toxic organic substances and heavy metals using the adsorption of waste tires, followed by final water purification with PE carriers with microorganisms This results in more efficient purification.

Description

복합접촉제를 이용한 자연형 하천수질 정화장치 및 그 정화방법{APPARATUS FOR PURIFYING WATER IN USE OF COMPOUND CONTACT AND METHOD THEREOF}Natural river water purification device using composite contact agent and its purification method {APPARATUS FOR PURIFYING WATER IN USE OF COMPOUND CONTACT AND METHOD THEREOF}

본 발명은 복합접촉제를 이용한 자연형 하천수질 정화장치 및 그 정화방법에 관한 것으로, 보다 상세하게는 하천으로 유입되는 하수 및 미처리된 폐수의 유입 등에 의한 하천의 오염물질을 PE담체에 미생물 부착을 용이하게 하여 하천수를 처리하여 자연형 하천으로 복원하는 생물학적 처리방법으로, 하천 및 강의 저면에 설치되는 저면판, 저면판의 일측에 설치되는 전면판으로 이루어지는 수질정화장치에 있어서,The present invention relates to a natural stream water purification device using a composite contact agent and a method for purification thereof, and more specifically, microorganisms are attached to PE carriers by contaminants in streams caused by inflow of sewage and untreated wastewater into the stream. In the biological treatment method to easily treat the river water to restore the natural stream, in the water purification device consisting of a bottom plate installed on the bottom of the river and river, a front plate installed on one side of the bottom plate,

콘트리트 구조체(2)의 상부에 식재가 가능하도록 모래 및 자갈 등의 자연석(5)을 채워 설치하고; 그 하단에 폐타이어의 흡착을 이용한 독성유기물질 및 중금속을 사전처리하기 위하여 폐타이어(4) 분쇄물을 그물망에 넣어 설치하고; 그 하부에 생물학적 처리를 위한 사각형태의 PE담체(3)를 설치하고; PE담체(3)가 타설된 하부면과 콘크리트 구조체(2)의 내측 상부면에 의해 형성되는 일정 빈 공간(23)을 구비하여 구성되는 하천 수질정화장치(1)와 그 장치를 이용한 수질 정화방법으로, 폐타이어를 재활용하여, 환경개선과 재활용에 따른 비용 절감 효과가 발생하며, 폐타이어의 흡착을 이용한 독성유기물질 및 중금속을 사전처리한 후, 미생물이 부착된 PE담체로 최종 수질 정화를 함으로써, 보다 효율적인 정화처리 효과가 발생한다.Filling the natural stone 5 such as sand and gravel to be planted on the upper portion of the concrete structure 2; At the bottom of the waste tire (4) crushed matter is installed in the net to pre-treat toxic organic substances and heavy metals using the adsorption of waste tires; A rectangular PE carrier 3 for biological treatment is installed underneath; River water purification device (1) comprising a constant empty space (23) formed by the lower surface on which the PE carrier (3) is poured and the inner upper surface of the concrete structure (2) and the water purification method using the device By recycling the waste tires, cost reduction effect is generated due to environmental improvement and recycling, and pretreatment of toxic organic substances and heavy metals using the adsorption of waste tires, followed by final water purification with PE carriers with microorganisms This results in more efficient purification.

폐수중에 포함되어 있는 유기성 독성물질 또는 중금속 등은 미생물에 의해 분해가 되지 않거나, 처리되더라도 그 처리정도가 매우 미진하여 보통 이러한 오염물질이 포함된 폐수는 약품에 의한 침전 및 흡착에 의해 제거되며, 이러한 흡착제로는 주로 활성탄이 활용되고 있다.Organic toxic substances or heavy metals contained in the waste water are not decomposed by microorganisms, or even if treated, the treatment is very poor. Usually, waste water containing these pollutants is removed by precipitation and adsorption by chemicals. Activated carbon is mainly used as the adsorbent.

이러한 활성탄은 흡착면에 있어서 매우 뛰어난 성질을 가지고 있으나, 그 가격면에 있어서 고가이며, 사용후 폐활성탄의 재활용의 문제 및 폐활성탄의 폐기에 따른 또 다른 환경문제가 발생된다.Such activated carbon has excellent properties in terms of adsorption, but it is expensive in terms of cost, and there is a problem of recycling of used activated carbon and other environmental problems caused by disposal of used activated carbon.

자동차의 보급이 증가하면서, 그에 따른 폐타이어가 산적하여 그 처리가 골칫거리이며, 타이어와 같은 처리가 용이하지 않은 폐기물은 전세계적으로 증가추세에 있으며, 그에 따른 환경문제가 대두되고 있다. 따라서 증가하는 폐기물을 효율적으로 처리하여 환경을 개선하고자 하는 연구가 진행되고 있으며, 이러한 연구의 일환으로, 폐타이어를 이용한 오염물질을 처리 방법이 제시되고 있다.As the spread of automobiles increases, waste tires are piled up, and their disposal is troublesome, and non-disposable waste such as tires is increasing all over the world, and environmental problems are emerging. Therefore, research is being conducted to improve the environment by efficiently treating the increasing waste, and as part of the research, a method of treating pollutants using waste tires has been proposed.

그 일례로 대한민국공고특허 특1994-0007730(공고일:1994.08.24)에 폐타이어의 흡착성질을 이용하여 미생물에 의해 처리가 용이하지 않은 물질을 처리하는 방법이 제시되어, 타이어의 주성분인 스타이린 부타딘 러버로 유해 유기물질을 흡착하여, 고가의 활성탄을 대신하여 폐타이어를 재활용함으로써, 유기성 독성물질 및 중금속물질등과 같은 분해되기 어려운 물질을 제거하는 기술을 공지하고 있다.For example, Korean Patent Publication No. 1994-0007730 (Notice date: 1994.08.24) proposes a method of treating a material that is not easily processed by microorganisms by using the adsorbent properties of waste tires, and is a main component of tires, styrin buta. By adsorbing harmful organic substances with Dean rubber and recycling waste tires in place of expensive activated carbon, there is known a technique for removing difficult substances such as organic toxic substances and heavy metal substances.

그러나 상기와 같은 구성으로는 슬러지양의 증가에 따른 혐기화 및 미생물에 의한 효율적인 폐수처리를 기대하기 어려워, 수질정화장치로써 부적합하다.However, it is difficult to expect an efficient anaerobic treatment and wastewater treatment by microorganisms due to the increase in sludge amount, which is not suitable as a water purification device.

상기와 같이 재활용가능한 폐타이어를 활용하여, 미생물에 의해 처리가 어려운 유기성 독성물질 및 중금속물질을 분해하고, 또한 PE담체를 이용하여 미생물에 의해 폐수를 처리함으로써 강 및 하천수를 자연정화 할 수 있는 정화장치 및 그 정화방법이 요구된다.Purification to decompose organic toxic substances and heavy metals, which are difficult to be processed by microorganisms, and to treat wastewater by microorganisms using PE carriers. There is a need for an apparatus and method of purification thereof.

상기와 같은 목적을 달성하기 위하여 본 발명은,The present invention to achieve the above object,

하천으로 유입되는 하수 및 미처리된 폐수의 유입 등에 의한 하천의 오염물질을 폐타이어 및 PE담체에 미생물 부착을 용이하게 하여 하천수를 처리하여 자연형 하천으로 복원하는 생물학적 처리방법으로, 복합접촉제는 자연석, 폐타이어 및 PE담체로 구성되며, 그 구체적인 구성을 도면과 함께 살펴보도록 한다.It is a biological treatment method that recovers the pollutants of the stream by the inflow of sewage and untreated wastewater into the stream and facilitates the microbial adhesion to the waste tires and PE carriers and restores them to natural rivers by treating the river water. , Composed of waste tires and PE carriers, and the detailed configuration thereof will be described together with the drawings.

도1에 도시된 바와 같이, 하천의 저면에 설치되는 저면판, 저면판의 일측에 설치되는 전면판으로 이루어지는 수질정화장치에 있어서,As shown in Figure 1, in the water purification device consisting of a bottom plate installed on the bottom of the river, a front plate installed on one side of the bottom plate,

콘트리트 구조체(2)의 상부에 식재가 가능하도록 모래 및 자갈 등의 자연석(5)을 채워 설치하고; 그 하단에 폐타이어의 흡착을 이용한 독성유기물질 및 중금속을 사전처리하기 위하여 폐타이어(4) 분쇄물을 그물망에 넣어 설치하고; 그 하부에 생물학적 처리를 위한 사각형태의 PE담체(3)를 설치하고; PE담체(3)가 타설된 하부면과 콘크리트 구조체(2)의 내측 상부면에 의해 형성되는 일정 빈 공간(23)을 구비하여, 수질정화장치(1)가 구성되는 것을 그 특징으로 한다.Filling the natural stone 5 such as sand and gravel to be planted on top of the concrete structure 2; At the bottom of the waste tire (4) crushed matter is installed in the net to pre-treat toxic organic substances and heavy metals using the adsorption of waste tires; A rectangular PE carrier 3 for biological treatment is installed underneath; It is characterized in that the water purifying apparatus 1 is constituted by the predetermined empty space 23 formed by the lower surface on which the PE carrier 3 is poured and the inner upper surface of the concrete structure 2.

도2는 본 발명에 따른 수질정화장치의 사용상태도를 나타낸 것으로,2 is a view showing a state of use of the water purification device according to the present invention,

전면판(21) 및 후면판(22)의 빈 공간에 모래 및 자갈등의 자연석(5)으로 채워 넣음으로써, 식재가 가능하며, 식재로 인한 주위 환경이 미려해지고 또한 수초등에 의해 오염물질을 자연석과 병행하여 걸러지는 역할을 하게 된다. 자연석(5)에 의해 형성된 공극으로 오염물질이 유입되고 이러한 오염물질 중 미생물에 의해 처리가 어려운 유기성 독성물질 내지 중금속 물질은 폐타이어(4)의 흡착에 의해 처리하게 되는데, 이는 폐타이어를 재활용하여 활성탄과 같은 흡착성질을 이용하여 폐수를 처리한다는 면에서 상당히 고무적이다.By filling the empty space of the front plate 21 and the back plate 22 with natural stones 5 such as sand and gravel, it is possible to plant, and the surrounding environment is beautiful by planting and pollutants are removed by plants, etc. In parallel with the natural stone will play a role. Contaminants are introduced into the pores formed by the natural stone (5), and organic toxic substances or heavy metal substances, which are difficult to be processed by microorganisms, are treated by adsorption of the waste tires (4). It is encouraging in terms of treating wastewater using adsorbents such as activated carbon.

폐타이어 분쇄물에 접촉시켜 처리된 폐수는 폐타이어(4) 하부에 설치된 PE담체(3)로 유입되고, 유입된 폐수는 PE담체(3)에 부착되어 있는 미생물에 의해 최종적으로 처리된다.The wastewater treated by contacting the waste tire pulverized product is introduced into the PE carrier 3 installed under the waste tire 4, and the introduced wastewater is finally treated by the microorganisms attached to the PE carrier 3.

따라서, 상기 정화장치는 자연석(5)에 의해 1차적으로 오염물질을 차단하게 되고, 유기성 독성물질 내지 중금속등 미생물에 의해 처리하기 어려운 오염물질이 폐타이어(4)에서 2차적으로 처리된 후, 최종적으로 PE담체(3)의 미생물에 의해 최종적으로 폐수를 처리하여, 처리된 폐수가 수질정화장치(1)의 내부상부면과 과 PE담체(3)하부면에 의해 형성된 빈 공간(23)으로 배출되며, 배출된 처리수는 흐르는물과 섞이게 된다.Therefore, the purification device is to block the pollutants primarily by the natural stone (5), and after the pollutants that are difficult to be processed by microorganisms such as organic toxic substances or heavy metals are secondarily treated in the waste tire (4), Finally, the wastewater is finally treated by the microorganisms of the PE carrier 3, and the treated wastewater is formed into the empty space 23 formed by the inner upper surface of the water purification apparatus 1 and the lower surface of the PE carrier 3. The discharged treated water is mixed with running water.

본 발명에 쓰이는 PE담체의 제조장치 및 제조방법은 다음과 같다.Apparatus and method for producing a PE carrier used in the present invention are as follows.

도3 내지 도4에 도시된 바와 같이, 폴리에틸렌수지를 120 ~ 150℃에서 전기히터에 의하여 가열 용융시켜 형성되는 폴리머를 토출시키는 압출기(100)와, 이 압출기(100)의 측으로 외주면에 도4를 참조하여 다수의 반원형 토출공(111a)이 형성되는 내측노즐(111)과, 내주면에 상기 내측노즐(111)의 토출공(111a)과 상응되도록 다수의 반원형 토출공(112a)이 형성되는 외측노즐(112)이 결합되어 상호 반대방향으로 회전되는 성형노즐부(110)와, 상기 성형노즐부(110)에서 토출되는 폴리머를 냉각수를 이용하여 냉각 고화시키는 수냉 냉각부(130)와, 상기 수냉 냉각부(130)를 거쳐 원활하게 배출될 수 있도록 설치되는 인취부(140)와, 상기 인취부(140)를 거친 성형물을 필요로 하는 크기로 절단하는 절단부(150)가 순차적으로 설치되고, 상기 성형노즐부(110)와 수냉 냉각부(130) 사이에 진공 냉각부(120)가 설치된 제조장치를 이용하여, 압출기에서 폴리에틸렌수지를 가열 용융시킨 폴리머를 외주면에 다수의 미세한 턱이 형성된 다수의 반원형 토출공이 형성되는 내측노즐과, 내주면에 상기 내측노즐의 토출공과 상응되게 다수의 미세한 턱이 형성된 다수의 반원형 토출공이 형성되는 외측노즐이 결합되어 상호 반대방향으로 회전되는 성형노즐부를 통하여 상기 용융된 폴리머가 토출되면서 내측노즐의 토출공과 외측노즐의 토출공이 만나는 부분에서 토출되는 폴리머가 교차되어 융착되면서 망형상의 원통구를 형성하고, 이 원통구는 제 1진공 냉각부와 제 2수냉 냉각부를 거치면서 냉각 고화된 후, 인취부와 절단부를 통하여 필요로 하는 크기로 절단하여 PE담체가 제조된다.3 to 4, an extruder 100 for discharging a polymer formed by heating and melting a polyethylene resin at 120 to 150 ° C. by an electric heater, and FIG. 4 on the outer circumferential surface toward the side of the extruder 100. With reference to the inner nozzle 111 is formed with a plurality of semi-circular discharge holes (111a), and the outer nozzle is formed with a plurality of semi-circular discharge holes (112a) to correspond to the discharge hole (111a) of the inner nozzle 111 on the inner peripheral surface The molding nozzle unit 110 coupled to each other and rotated in opposite directions, the water cooling unit 130 for cooling and solidifying the polymer discharged from the molding nozzle unit 110 using cooling water, and the water cooling unit The take-out part 140 installed to be discharged smoothly through the part 130 and the cut-out part 150 for cutting to a size that requires the molded product having passed through the take-out part 140 are sequentially installed, and the molding Between the nozzle unit 110 and the water cooling cooling unit 130 By using a manufacturing apparatus equipped with a vacuum cooling unit 120, the inner nozzle is formed with a plurality of semi-circular discharge holes formed with a plurality of fine jaws formed on the outer peripheral surface of the polymer heat-melted polyethylene resin in the extruder, and the discharge of the inner nozzle on the inner peripheral surface The outer nozzle, which is formed with a plurality of semi-circular discharge holes formed with a plurality of fine jaws corresponding to the ball, is coupled to each other and the discharge nozzle of the inner nozzle and the discharge hole of the outer nozzle meet as the molten polymer is discharged through the molding nozzle part rotated in opposite directions. The polymer discharged from the fusion crosses and forms a cylindrical cylindrical sphere, which is solidified by cooling through the first vacuum cooling unit and the second water-cooling cooling unit, and is cut into the required size through the take-out and the cutting unit. PE carriers are prepared.

도 5는 압출기(100)를 거쳐 내측노즐(111)의 토출공(111a)과 외측노즐(112)의 토출공(112a)이 상호 반대 방향으로 회전되는 성형노즐(110)을 통하여 압출 성형되는 과정에서 내측노즐(111)의 토출공(111a)과 외측노즐(112)의 토출공(112a)이 만나는 부분에서 각각의 폴리머가 교차되면서 융착된 후, 진공 냉각부(120)와 수냉 냉각부(130)를 거쳐 냉각 및 고화되면서 인취부(140)를 통하여 인취되면서 절단부(150)에 의하여 원하는 크기로 절단된 망형상의 원통구(300)가 형성된 것을 도시한 도면이며, 상기 원통구(300)의 내면 또는 외면에는 주름턱부(300a)가 형성된다.5 is a process in which the ejection hole 111a of the inner nozzle 111 and the ejection hole 112a of the outer nozzle 112 are extruded through the molding nozzle 110 rotated in opposite directions through the extruder 100. After the polymers are fused in a portion where the discharge holes 111a of the inner nozzle 111 and the discharge holes 112a of the outer nozzle 112 cross each other, the vacuum cooling unit 120 and the water-cooling cooling unit 130 are fused. Cooling and solidifying through) while being drawn through the take-off portion 140 is a view showing that the mesh-shaped cylindrical hole 300 is cut to the desired size by the cutting portion 150 is formed, the inner surface of the cylindrical hole 300 Or on the outer surface is formed wrinkled jaw portion (300a).

이하, 본 발명에 따른 수질정화 방법을 구체적으로 살펴보도록 한다.Hereinafter, the water purification method according to the present invention will be described in detail.

각종 오염수가 수질정화장치로 유입되는 단계; 유입된 오염수가 식재 가능하도록 조성된 모래 및 자갈등의 자연석(5)에 의해 차단되어 1차 처리되는 단계; 자연석(5)의 공극을 통해 저면으로 유입된, 1차 처리된 처리수 중 미생물에 의해 처리가 용이하지 않은 유기성 독성물질 및 중금속물질을 폐타이어(4)에 접촉시켜 2차 처리하는 단계; 상기 단계에서 처리된 폐수를 PE담체(3)의 미생물에 의해 최종처리하는 단계; 최종처리된 처리수는 수질정화장치(1)의 내부상부면과 PE담체(3)의 하부면에 의해 형성된 빈 공간(23)으로 배출되어 흐르는 물과 섞여 처리된다.Introducing a variety of contaminated water into the water purification device; A step of blocking the introduced polluted water by natural stones (5) such as sand and gravel formed to be plantable and treating the first water; Contacting the waste tire 4 with organic toxic substances and heavy metal substances, which are not easily treated by the microorganisms, in the first treated water, introduced into the bottom through the pores of the natural stone 5, and performing secondary treatment; Final treatment of the wastewater treated in the above step by the microorganism of the PE carrier (3); The final treated water is discharged into the empty space 23 formed by the inner upper surface of the water purification apparatus 1 and the lower surface of the PE carrier 3 and mixed with the flowing water.

상기한 바와 같은 수질정화장치 및 정화방법은 강, 하천수외에도 오염물질을 처리하고자 하는 다수의 장소에서 충분히 활용 가능하여 그 활용도면에서 매우 광범위 하다고 하겠다.Water purification device and purification method as described above can be used in a number of places to treat pollutants in addition to rivers and rivers, so that it is very extensive in terms of utilization.

상기와 같은 구성을 갖는 본 발명은 수질정화에 있어서 미생물에 의해 처리하기 힘든 오염물질을 폐타이어에 의해 처리함으로써 자원재활용 및 환경개선의 효과를 갖으며, 유기성 독성물질 및 중금속을 폐타이어 박편에 접촉시켜 처리한 후 미생물이 충진되어 있는 PE담체에 의해 재처리됨으로써 수질정화의 효율이 증대된다는 효과를 갖는다.The present invention having the configuration described above has the effect of recycling resources and improving the environment by treating waste pollutants that are difficult to be treated by microorganisms in water purification, and recycling organic toxic substances and heavy metals to waste tire flakes. After the treatment, the microorganisms are retreated with PE carriers, thereby increasing the efficiency of water purification.

또한 추가적으로 수질정화장치에 따른 옹벽의 설치로 식재등에 의한 환경이 미려해진다.In addition, by installing the retaining wall according to the water purification device, the environment by planting is beautiful.

제 1도는 본 발명에 따른 수질정화장치를 도시한 단면도.1 is a cross-sectional view showing a water purification device according to the present invention.

제 2도는 본 발명에 따른 수질정화장치의 사용상태도.2 is a state of use of the water purification device according to the present invention.

제 3도는 본 발명에 따른 PE담체의 제조장치를 도시한 개략도.Figure 3 is a schematic diagram showing an apparatus for producing a PE carrier according to the present invention.

제 4도는 본 발명의 제조장치 성형노즐부의 작동 상태를 도시한 작동상태도.4 is an operating state diagram showing an operating state of the manufacturing apparatus forming nozzle portion of the present invention.

제 5도는 본 발명에 PE담체를 도시한 요부사시도.Figure 5 is a yobu perspective view showing a PE carrier in the present invention.

* 도면의 주요부분에 대한 부호 설명 *           Explanation of symbols on the main parts of the drawings

1 : 수질정화장치 2 : 콘크리트 구조체 3 : PE담체1: water purification device 2: concrete structure 3: PE carrier

4 : 폐타이어 5 : 자연석 6 : 옹벽4: waste tire 5: natural stone 6: retaining wall

21: 전면판 22: 후면판 23: 빈공간21: front panel 22: rear panel 23: empty space

100: 압출기 110: 성형노즐부 111: 내측노즐DESCRIPTION OF SYMBOLS 100 Extruder 110 Molding nozzle part 111 Inner nozzle

111a, 112a: 토출공 111a', 112': 턱 112: 외측노즐111a and 112a: discharge holes 111a 'and 112': jaw 112: outer nozzle

120: 진공 냉각부 130: 수냉냉각부 140: 인취부120: vacuum cooling unit 130: water cooling unit 140: take-out

150:절단부150: cutting part

Claims (3)

하천으로 유입되는 하수 및 미처리된 폐수의 유입 등에 의한 하천의 오염물질을 PE담체에 미생물 부착을 용이하게 하여 하천수를 처리하여 자연형 하천으로 복원하는 생물학적 처리로, 하천 및 강의 저면에 설치되는 저면판, 저면판의 일측에 설치되는 전면판으로 이루어지고, 상기 전면판(21)과 옹벽(6)사이의 공간은, PE담체(3)를 콘크리트 구조체(2)의 내부에 타설하고; PE담체(3)의 상부에 미생물로 용이하게 정화할 수 없는 물질을 처리하기 위해 폐타이어 분쇄물을 그물망에 넣어 설치하고; 폐타이어(4)의 상부에 식재가 가능하도록 조성된 모래 및 자갈의 자연석(5)을; 순차적으로 채워 설치하며, PE담체(3)가 타설된 하부면과 콘크리트 구조체(2)의 내측 상부면에 의해 형성되는 일정 빈 공간(23)을 구비하여 구성되는 것에 있어서,It is a biological treatment that restores the contaminants in the streams by the inflow of sewage and untreated wastewater into the PE carriers to facilitate the microbial attachment to PE carriers and to treat them as natural streams, which are installed on the bottom of rivers and rivers. A front plate installed on one side of the bottom plate, and the space between the front plate 21 and the retaining wall 6 is to place a PE carrier 3 inside the concrete structure 2; A waste tire crushed net is installed in the upper part of the PE carrier 3 to treat a material that cannot be easily purified by microorganisms; A natural stone 5 of sand and gravel formed so as to be planted on top of the waste tire 4; In order to fill and install sequentially, the PE carrier (3) is provided with a predetermined empty space 23 formed by the lower surface and the inner upper surface of the concrete structure (2), 상기 PE담체(3)는 망형상의 원통구로 원통구(300)의 내면 또는 외면에는 주름턱부(300a)가 형성된 것을 특징으로 하는 복합접촉제를 이용한 자연형 하천 수질 정화장치.The PE carrier (3) is a natural cylindrical water quality purification device using a composite contact agent, characterized in that the pleated jaw portion (300a) is formed on the inner surface or the outer surface of the cylindrical sphere as a cylindrical cylinder. 삭제delete 삭제delete
KR1020050031601A 2005-04-15 2005-04-15 Apparatus for purifying water in use of compound contact and method thereof KR100538123B1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100597886B1 (en) * 2006-01-20 2006-07-06 (주)대성그린테크 Ds-mprbs
KR100944988B1 (en) 2009-09-30 2010-03-02 (주)대성그린테크 Km-rf system
CN105544343A (en) * 2015-12-05 2016-05-04 华中科技大学 Source rainwater purification and storage system based on low impact development and installation method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100597886B1 (en) * 2006-01-20 2006-07-06 (주)대성그린테크 Ds-mprbs
KR100944988B1 (en) 2009-09-30 2010-03-02 (주)대성그린테크 Km-rf system
CN105544343A (en) * 2015-12-05 2016-05-04 华中科技大学 Source rainwater purification and storage system based on low impact development and installation method
CN105544343B (en) * 2015-12-05 2018-02-23 华中科技大学 It is a kind of that system and installation method are saved based on the low source rainwater purification for influenceing exploitation

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