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    • 4. 发明申请
    • 생물 전기화 장치
    • 生物电力创造装置
    • WO2011074892A2
    • 2011-06-23
    • PCT/KR2010/009017
    • 2010-12-16
    • 부산대학교 산학협력단이태호김창원유재철최명원
    • 이태호김창원유재철최명원
    • H01M14/00H01M8/16H01M8/04
    • H01M8/16C02F3/005H01M4/246H01M4/8626H01M8/2455Y02E60/527Y02W10/15
    • 본 발명은 하폐수 처리시설의 호기조 또는 혐기조에 설치되어 하폐수 내 유기물을 제거하는 동시에, 유기물 분해 과정에서 생성되는 전자 및 수소이온을 이용하여 전기를 생산하는 생물 전기화 장치에 관한 것으로, 다수의 미생물 연료전지를 간편하게 설치 또는 탈거 할 수 있도록 함으로서 폐수성상, 크기, 종류 등 설치 환경에 효율적으로 대응할 수 있게 하며, 미생물 연료전지에 사용되는 환원전극부를 외부 공기에 노출시킴으로서 산소공급장치 등 별도의 장치를 배제시키고, 분리막을 가격대비 고효율의 소재로 대체함으로서 장치의 설치, 운전, 유지비용을 감소시킬 뿐만 아니라 산화전극의 구조변화를 통해 박테리아의 서식량 증가, 처리수의 효율적인 흐름유도 및 슬러지 침강현상 억제 등의 효과를 구현할 수 있도록 한 것이 장점이다.
    • 生物发电装置技术领域本发明涉及生物发电装置,其设置在污水/废水处理设备的需氧罐或厌氧池中,并且通过使用电子而产生电,同时排除污水/废水中的有机物质, 在分解有机物的过程中产生的氢离子; 其中设计出多个微生物燃料电池,使得能够通过易于安装和移除而能够对其安装的环境有效地响应于包括污水/废水性质,尺寸和类型的方面,并且其中 微生物燃料电池中使用的还原电极部件暴露于外部空气,由此不仅有利于减少设备的安装,操作和维护成本,因为诸如供氧装置之类的额外设备被消除并且分离膜是 以高成本效益的材料代替,而且还可以通过改变氧化电极的结构来表现出增加驻留细菌的量,诱导有效的处理水流量并抑制污泥沉淀的效果。
    • 5. 发明公开
    • 고농도 영양염 함유 폐수 처리를 위한 고도 처리공정 및처리장치
    • 用于处理含高浓度营养盐的废水的先进生物处理方法及其设备
    • KR1020010086936A
    • 2001-09-15
    • KR1020000010940
    • 2000-03-04
    • 김창원최명원주식회사 환경비젼이십일
    • 김창원최명원하지연이해군최광수임정훈고주형
    • C02F3/30
    • PURPOSE: An advanced biological treatment process for treatment of wastewater containing high concentration nutrient salt is provided, which can treat livestock farming wastewater or leachate which change in the amount and load greatly, minimize the requirement of foreign substrate for denitrification by utilizing raw water as denitrification substrate during anoxic period, minimize man power requirement by automating the operation of reactor and eliminates the requirement of recycle facility and settling tank of continuous process. CONSTITUTION: The process comprises as follows: (i) intermittent aeration step that consists of alternate continuous operations of anoxic and aerobic aeration; (ii) utilize organic matter contained in raw water as denitrification substrate by selectively feeding raw water during only anoxic period; (iii) supply sufficient alkalinity required for complete nitrification during aerobic period; (iv) real time control at controller by detecting nitrate state in continuous batch reactor; (v) induce complete denitrification of residue nitrate using foreign substrate that has high denitrification rate in stead of raw water during final anoxic period; (vi) oxidize organic matter completely.
    • 目的:提供一种治疗含高浓度营养盐废水的生物处理工艺,可以大量处理牲畜养殖废水或渗滤液的数量和负荷变化,通过利用原水作为反硝化作用,最大限度地减少异物脱氮的需要 在缺氧期间,通过使反应堆运行自动化,减少人力需求,消除了连续过程循环利用设施和沉淀池的需要。 构成:该过程包括:(i)间歇性曝气步骤,由缺氧和有氧曝气的交替连续操作组成; (ii)在缺氧期间选择性喂养原水,利用原水中含有的有机物作为脱氮底物; (iii)在有氧期间提供充分硝化所需的足够碱度; (iv)通过连续间歇反应器中硝酸盐状态的检测实时控制; (v)在最终缺氧期间,使用具有较高脱氮率代替原水的外来底物诱导残留硝酸盐的完全脱氮; (vi)完全氧化有机物。
    • 6. 发明授权
    • 폐알루미나를 이용한 황산알루미늄 수용액 제조장치 및 그 제조방법
    • 用于制造使用废铝的硫酸铝水溶液的装置及其制造方法
    • KR101105719B1
    • 2012-01-17
    • KR1020110094364
    • 2011-09-20
    • 최명원
    • 최명원
    • C01F7/74B09B3/00
    • C01F7/74B09B3/00Y02W30/54
    • PURPOSE: An apparatus and a method for manufacturing an aluminum sulfate aqueous solution using waste alumina are provided to recycle the waste alumina scrapped from an oil refinery and to use the aluminum sulfate aqueous solution as a phosphorus eliminating agent for treating sewage. CONSTITUTION: An apparatus(10) for manufacturing an aluminum sulfate aqueous solution using waste alumina includes a dry grinder(100), an ignitor(200), a reactor(300), and a filter(400). The dry grinder grinds waste alumina such that the particle size of the waste alumina becomes 103um or less. The ignitor ignites the ground waste alumina at a temperature between 500 and 600 degrees Celsius for 5 to 10 minutes. The reactor generates 7-20% of aluminum sulfate based on the ignited waste aluminum and a sulfuric acid solution of 40-70 weight% concentration and obtains an aluminum sulfate aqueous solution by mixing the aluminum sulfate and water. The filter filters the aluminum sulfate aqueous solution.
    • 目的:提供一种使用废氧化铝制造硫酸铝水溶液的装置和方法,用于回收从炼油厂废弃的废氧化铝,并使用硫酸铝水溶液作为磷消除剂来处理污水。 构成:使用废氧化铝制造硫酸铝水溶液的设备(10)包括干式研磨机(100),点火器(200),反应器(300)和过滤器(400)。 干式研磨机研磨废氧化铝,使得废氧化铝的粒径达到103um以下。 点火器在500至600摄氏度的温度下点燃地面废氧化铝5至10分钟。 反应器基于点火的废铝和40-70重量%浓度的硫酸溶液产生7-20%的硫酸铝,通过混合硫酸铝和水得到硫酸铝水溶液。 过滤器过滤硫酸铝水溶液。
    • 7. 发明公开
    • 사전 예측 제어 기반 하·폐수 처리 시스템 및 하·폐수 처리 방법
    • 废水处理系统及基于PRIDICTON控制的废水处理方法
    • KR1020110001532A
    • 2011-01-06
    • KR1020090059099
    • 2009-06-30
    • 부산대학교 산학협력단
    • 김창원최명원이성학김예진김효수강동완
    • C02F9/00C02F3/30
    • C02F9/00C02F3/30C02F2201/002Y02W10/10
    • PURPOSE: A wastewater treatment system and a method thereof are provided to control the change of an operation without an operator and to enable the operator to obtain information for treatment processes regardless of time and space issues. CONSTITUTION: A wastewater treatment system for treating wastewater based on a prediction control comprises a pollution source density measurement sensor, a database, an inflow water concentration estimator, an outflow water concentration estimator, and a treatment process controller. The pollution source density measurement sensor senses the concentration of pollutants in real time by being installed on an effluent tank, an inflow water tank, and a reaction tank. The database stores the sensed concentration value from the pollution source density measurement sensor.
    • 目的:提供一种废水处理系统及其方法,以便在没有操作者的情况下控制操作的变化,并且使得操作者能够获得处理过程的信息,而不管时间和空间问题如何。 规定:基于预测控制处理废水的废水处理系统包括污染源密度测量传感器,数据库,流入水浓度估算器,流出水浓度估算器和处理过程控制器。 污染源密度测量传感器通过安装在污水箱,流入水箱和反应罐上实时感测污染物的浓度。 数据库存储来自污染源密度测量传感器的感测浓度值。
    • 10. 发明公开
    • 하폐수 처리장의 공정진단 시스템 및 방법
    • 一种用于在废水处理设备运行中诊断算法开发的系统和方法
    • KR1020120001116A
    • 2012-01-04
    • KR1020100061753
    • 2010-06-29
    • 부산대학교 산학협력단
    • 김창원최명원문태섭김예진김효수
    • C02F3/12G06Q50/06G06F19/00
    • G06Q10/0633
    • PURPOSE: A system for diagnosing the operation of a sewage and wastewater treating plant and a method for the same are provided to accurately diagnose the operation of the sewage and wastewater treating plant regardless of human factors. CONSTITUTION: A system for diagnosing the operation of a sewage and wastewater treating plant includes a data collecting part(10), a data processing part(20), a data diagnosing part(30), a regulation obtaining part(40), and a data predicting part(50). The data collecting part collects data related to operational histories and water quality histories. The data processing part processes the data related to the operational histories and the water quality histories. The data diagnosing part applies diagnosing results to the processed data. The regulation obtaining part obtains diagnosing regulations based on a decision tree algorithm. The data predicting part obtains predicted diagnosis with respect to new data based on the diagnosing regulation.
    • 目的:用于诊断污水处理厂和污水处理厂的运行的系统及其方法,无论人为因素,都能准确诊断污水处理厂和污水处理厂的运行情况。 构成:用于诊断污水和污水处理设备的操作的系统包括数据收集部分(10),数据处理部分(20),数据诊断部分(30),监管获取部分(40)和 数据预测部(50)。 数据采集​​部分收集与操作历史和水质历史有关的数据。 数据处理部分处理与操作历史和水质历史有关的数据。 数据诊断部分将诊断结果应用于处理后的数据。 调节获取部分基于决策树算法获得诊断规则。 数据预测部分根据诊断规则获取关于新数据的预测诊断。