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    • 6. 实用新型
    • 초음파 및 펄스 UV를 이용한 수처리장치
    • 使用超声波和脉冲UV处理水的设备
    • KR2020140006207U
    • 2014-12-10
    • KR2020140007612
    • 2014-10-21
    • 아름다운 환경건설(주)
    • 이종열최삼룡허남국한종훈이한욱
    • C02F1/72C02F1/32C02F1/36C02F103/06
    • C02F1/36C02F1/32C02F2101/30C02F2103/06
    • 본 고안에 따른 초음파 및 펄스 UV를 이용한 수처리장치는 길이 방향을 따라 여러 단으로 구성되어 오염수를 보관 및 처리하되 각 단마다 서로 다른 주파수가 조사되고 전단에서 후단으로 진행할수록 더 높은 주파수의 초음파가 조사되는 반응조로서, 오염수를 유입하는 제1유입구, 처리된 오염수를 집수하는 집수조, 처리된 오염수를 배출하도록 집수조의 상측에 구비된 제1배출구, 전반사의 초음파를 조사하도록 1쌍씩 서로 경사지게 대향하는 다수의 판형상의 초음파진동자를 각각 구비하되, 1쌍의 초음파진동자 사이의 대향 각도가 100°내지 140°를 유지하고, 각 초음파진동자가 수평으로부터 20°내지 40°각도를 유지하며, 초음파진동자에서 조사되는 초음파의 주파수 범위가 500㎑ 내지 650㎑인 초음파반응조; 상기 초음파반응조에서 처리된 오염수를 유입하는 제2유입구와 펄스UV 처리된 오염수를 배출하는 제2배출구를 각각 구비하되, 유속에 의한 와류가 발생하도록 상기 제2유입구를 일측면에 구비하고 상기 제2배출구를 타측면에 구비하며, 파장이 380 ㎚ 이하, 펄스 폭이 20 ㎲ 이하인 펄스UV를 조사하되 내부에 균일한 에너지의 펄스UV가 도달되도록 내부 중앙에 등 간격을 유지하면서 직렬로 설치된 복수개의 펄스UV장치를 구비하고, 오염수를 보관하고 처리하되 펄스UV장치로부터 30 cm 이하의 거리에서 오염수를 펄스UV처리하는 펄스UV반응조; 상기 초음파반응조의 집수조에서 상기 펄스UV반응조의 제2유입구로 상기 초음파반응조에서 처리된 오염수를 이송하는 이송관; 상기 이송관에 연결되어 오염수이송 동력을 공급하는 순환펌프; 및 외부에서 공급되는 오염수와 상기 펄스UV반응조에서 처리되어 상기 제2배출구로 배출되는 오염수를 상기 초음파반응조의 제1유입구로 혼합시켜 유입시키는 분배장치를 포함하고, 벤젠, 톨루엔, 에틸벤젠 및 자일렌로 이루어진 군으로부터 선택된 어느 하나 이상의 오염물질을 포함하는 오염수를 초음파반응조 및 펄스UV반응조에서 순환반복처리하여 최종 배출하는 것을 특징으로 한다.
    • 7. 发明授权
    • 외부 탄소원을 이용한 화약물질의 생물학적 분해방법
    • 使用外部碳源的爆炸性化合物的生物降解方法
    • KR101401073B1
    • 2014-06-27
    • KR1020130032479
    • 2013-03-27
    • 가천대학교 산학협력단아름다운 환경건설(주)서울대학교산학협력단
    • 배범한이종열남경필
    • B09C1/10C02F3/00
    • B09C1/10A62D3/02C02F3/00
    • The present invention relates to a method for decomposing an explosive compound using an external carbon source and, more particularly, to an explosive compound decomposition method including a step in which at least one m selected from a group consisting of glucose, acetate, and starch are injected as the external carbon source into contaminated soil, water, deposit soil, and the like to be purified so that the activity of indigenous microbes is increased and the activated indigenous microbes decomposes the explosive compound. According to the method of the present invention, the indigenous microbes which are present in the soil are activated, and thus the decomposition of the explosive compound by the activated microbes can be accelerated. In addition, since no toxicity is caused, the explosive compound can be effectively decomposed by injecting the external carbon source into the soil, the water, the deposit soil, and the like.
    • 本发明涉及一种使用外部碳源分解爆炸性化合物的方法,更具体地,涉及一种爆炸性化合物分解方法,其包括以下步骤:选自葡萄糖,乙酸盐和淀粉中的至少一种m为 作为外部碳源注入被污染的土壤,水,沉积物等中以进行纯化,使得本地微生物的活性增加,活化的土着微生物分解爆炸性化合物。 根据本发明的方法,土壤中存在的本土微生物被活化,因此可以加速活化微生物对爆炸性化合物的分解。 此外,由于不产生毒性,因此通过将外部碳源注入土壤,水,沉积物等中,可以有效地分解爆炸性化合物。
    • 8. 发明授权
    • 토양의 오염제거시스템
    • 去除土壤系统
    • KR101301218B1
    • 2013-08-28
    • KR1020120101963
    • 2012-09-14
    • 아름다운 환경건설(주)
    • 이종열최삼룡
    • B09C1/02B09C1/06C02F1/52C02F11/12
    • B09C1/02A62D3/40B07B13/11B09C1/065
    • PURPOSE: A contamination removal system for processing fine soil adapted to consecutively process soil by separating the soil according to the particle size is provided to increase washing efficiency. CONSTITUTION: A contamination removal system for processing fine contains a cleaning system (1000) for separating polluted matters by washing the soil according to the size of the particle with the multi-phase steps, a thermal desorption system (2000) for thermal-desorption processing sludge from the soil polluted by the organic compound or from the cleaning system. The cleaning system has an input part (100) with an input hopper for transferring the soil polluted by the organic compound to the thermal desorption system, a first cleaning station (200) for washing the soil and separating and discharging the soil over the fixed size outside and transferring the remaining soil and washing water to a second cleaning station, the second cleaning station (300) for discharging the washed soil over the fixed size outside and transferring the remaining soil and washing water to a third cleaning station, the third cleaning station(400) for discharging the washed soil over the fixed size outside and transferring the remaining fine soil and washing water to a cohesion-floating processing station, the cohesion-floating processing station (500) for performing the aggregation reaction and the floating effect to produce floating sludge and to dehydrating and discharging the floating sludge outside, and a cohesion-precipitation processing station for performing the aggregation reaction and the precipitation effect and dehydrating and discharging the precipitated sludge outside. [Reference numerals] (100) Input part; (1000) Cleaning system; (200) First cleaning station; (2000) Thermal desorption system; (300) Second cleaning station; (400) Third cleaning station; (500) Cohesion-floating processing station; (600) Cohesion-settling processing station; (710) Preheating drier; (720) Rotary kiln; (730) Purified soil treatment device; (740) Hot-air supplying device; (750) Discharging device of fine particles; (760) Separating device of fine particles; (AA,BB,DD) Taking soil out; (CC) Wasted material and waste water; (EE,FF) Discharging sludge
    • 目的:提供一种污染物去除系统,用于处理适合通过根据粒度分离土壤连续处理土壤的细土,以提高洗涤效率。 构成:用于加工精细的污染物去除系统包含用于通过多相步骤根据颗粒尺寸洗涤污物来分离污染物质的清洁系统(1000),用于热解吸处理的热解吸系统(2000) 有机化合物污染土壤污泥或清洁系统污染。 清洁系统具有输入部分(100),其具有用于将被有机化合物污染的土壤转移到热解吸系统的输入料斗;用于清洗土壤并在固定尺寸上分离和排出土壤的第一清洁站(200) 外部并将剩余的土壤和洗涤水转移到第二清洁站,第二清洁站(300),用于将洗涤的土壤排出固定尺寸的外部,并将剩余的土壤和洗涤水转移到第三清洁站,第三清洁站 (400),用于将固定尺寸的洗涤后的土壤排出外部,并将剩余的细土和洗涤水转移到凝聚浮动处理站,用于进行聚集反应的内聚漂浮处理站(500)和浮动效应产生 漂浮污泥,脱水和排出浮选污泥外,还有凝聚降水处理站 e聚集反应和沉淀效应,并将沉淀的污泥脱水和排出。 (附图标记)(100)输入部; (1000)清洁系统; (200)第一清洁站; (2000)热解吸系统; (300)第二清洗站; (400)第三清洗站; (500)凝聚浮动加工站; (600)凝聚沉降处理站; (710)预热干燥器; (720)旋转窑; (730)净化土壤处理装置; (740)热风供给装置; (750)微粒放电装置; (760)微粒分离装置; (AA,BB,DD)取土; (CC)废物和废水; (EE,FF)排放污泥
    • 10. 发明授权
    • 변압기의 초음파 세정공정, 초음파 세정장치, 상기 초음파 세정공정에 사용된 솔벤트 회수공정 및 솔벤트 회수장치
    • 超声波清洗工艺和变压器设备,以及清洗过程中使用的溶剂回收工艺和设备
    • KR100906013B1
    • 2009-07-06
    • KR1020080106400
    • 2008-10-29
    • 아름다운 환경건설(주)
    • 이종열
    • B08B3/12B08B3/14
    • An ultrasonic-wave cleaning process, an ultrasonic-wave cleaning apparatus, a solvent retrieving process used for ultrasonic cleaning process and a solvent recovery system of a voltage transformer are provided to retrieve the solvent used in the cleaning process efficiently. A solvent retrieving process used for ultrasonic cleaning process of a voltage transformer comprises a step(S11) for vacuum-inhaling PCBs(Polychlorinated Biphenyls) containing insulating oil from a voltage transformer and removing it; a step(S17) for inputting the disassembled transformer into the ultrasonic-wave cleaning tub; a step(S21) for filling the solvent into the ultrasonic-wave cleaning tub; a step(S22) for increasing the inner temperature of the ultrasonic-wave cleaning tub up to a primary preset temperature; a step(S23) for cleaning the voltage transformer disassembled by applying the ultrasonic-wave to the inside of the ultrasonic-wave cleaning tub; and a step(S24) for discharging the solvent within the ultrasonic-wave cleaning tub.
    • 提供超声波清洗工艺,超声波清洗装置,用于超声波清洗处理的溶剂回收工艺和电压互感器的溶剂回收系统以有效地回收清洗过程中使用的溶剂。 用于电压互感器的超声波清洗处理的溶剂回收方法包括:用于真空吸入来自变压器的绝缘油的PCB(多氯联苯)的步骤(S11)并将其去除; 用于将分解的变压器输入到超声波清洗槽中的步骤(S17); 用于将溶剂填充到超声波清洗槽中的步骤(S21); 步骤(S22),用于将超声波清洗桶的内部温度升高到初级预设温度; 用于清洗通过将超声波施加到超声波清洗槽的内部而拆卸的电压互感器的步骤(S23); 以及用于在超声波清洗槽内排出溶剂的工序(S24)。