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교반속도 변화가 음식쓰레기의 퇴비화에 미치는 영향에 관한 연구
허관,신대윤,정병건,박치홍 한국환경보건학회 1998 한국환경보건학회지 Vol.24 No.2
This study investigates the react characteristics to suggest the condition of the utilization and disintegration of food garbage as composting by varying the supply amount of air of the fermentation reactors. With the initial temperature and agitation velocity maintained 50$\circ$C and 1 rpm, the supply amount of air gives variety to 0.5, 1, 2, 4 l/kg$\cdot$ min. In the case of the amount of air operated at the 0.5 l/kg$\cdot$ min, reaction temperature shows a rising to the maximum 66$\circ$C after the 48hr, and the oxygen used rate of the micro-organisms shows the largest level at 18.4% after the 8hr. In the case of $NH_3, H_2, H_2S$ and SO$_2$ among the react gas, the sanitary utilization shows the possibility of the microorganisms gas disintegration, with most high gas generate rate. In the case of the amount of air operated at the 1, 2 and 4 l/kg$\cdot$ min, initial react was advanced rapidly and the product of the 72 hr after shows big weight reduction. As the experimentation result, when the amount of air operated at the 1 l/kg$\cdot$ min over, the reduction by disintegration would be more effectively, for the reactor maintains the color tone and shape of the straw (bulking agent).
순천시의 생활폐기물 발생량 예측 및 재활용시설의 용량산정에 관한 연구
허관,문옥란,왕승호,Hu, Kwan,Moon, Ok-Ran,Wang, Seung-Ho 유기성자원학회 2001 유기물자원화 Vol.9 No.4
The purpose of this study is to provide basic information for a future countermeasure municipal and to establish several wastes policy after investigating solid wastes from Sunchon City. In addition, this research can be supported to manage of recycling plant and to reuse plant of each wastes. Results are as bellows after checking up and analysis type of waste in Sunchon city Unit solid waste generation rate from single family is $0.50kg/person{\cdot}day$, and total solid wastes are 41.9ton/day. Unit solid waste generation rate from apartments is $0.45kg/person{\cdot}day$, and solid wastes generation is 55.5ton/day. Unit solid waste generation rate from agricultural is $0.22kg/person{\cdot}day$ and total solid wastes are 13.5ton/day. That show total amount of municipal solid wastes from residential are 110.9ton/day. Unit solid waste generation rate from traditional markets is $1.85kg/person{\cdot}day$, and solid waste total volume is 5,400kg/day. Unit solid waste generation rate from small store is $2.03kg/person{\cdot}day$, and solid waste total are 25,101kg/day. Therefore, this show that total wastes are 30.50kg from downtown and commercial area. Solid waste quantity from Industrial area (Factory region) is 8.5ton and in case of school and hospitals are 7.2kg/day and 3.0kg/day. Solid waste amount from Institutional is 6.6kg/day. Food wastes were eliminated from municipal solid wastes as standard 63.4ton/day, and combustible wastes were 126.9ton/day. If it schedule about 5 years (by 2006) as durable year for food wastes treatment plant, it is expected 42.5ton/day for treatment capacity. We can judge that it is effective to be set 2 lines equipment ${\times}25ton/day$ as treatment ability under considering unexpected working condition such as any repair, trouble and an electrical load. If it schedule about 10 years (by 2011) as durable year for food wastes treatment plant, it is expected 150 ton/day for treatment capacity. We can conclude that it is effective to be set 2 lines equipment ${\times}80ton/day$ as treatment ability under considering working condition such as low loaded operating and the repair for incineration. 순천시 생활계폐기물의 배출특성을 제시하고 장래 폐기물대책을 수립하는 기본적인 자료로 정보를 제공하고자 폐기물별 자원화시설의 용량을 산정하고 재활용시설의 운영관리 및 제반폐기물정책 수립에 활용하도록 하기 위해서 조사분석하여 다음과 같은 결과를 얻었다. 일반주택의 배출량원단위는 0.50kg/인${\cdot}$일로 배출량은 41.9톤/일, 공동주택의 배출량원단위는 0.45kg/인${\cdot}$일로 배출량은 55.5톤/일, 읍 면지역의 배출량원단위는 0.22kg/인${\cdot}$일로 배출량은 13.5톤/일로 나타나 주택지역의 생활계폐기물 배출량은 110.9톤/일이다. 재래시장의 배출량원단위는 1.85kg/상가 일로 배출량은 5,400kg/일이며, 소규모점포의 배출량원단위는 2.03kg/상가 일로 배출량은 25,101kg/일로 나타나 상가지역의 생활계폐기물 배출량은 30,501kg/일이다. 공장지역에서 배출되는 사업장생활계폐기물은 1일 평균 8.3톤, 학교와 병원 및 업무지역에서 배출되는 생활계폐기물의 1일 평균배출량은 각각 7.2kg과 3.0kg 및 6.6kg이다. 생활폐기물 중에서 음식물쓰레기는 평균 63.4톤/일 배출되었으며, 소각대상 가연성폐기물은 126.9톤/일 배출되었다. 음식물쓰레기처리시설의 내구년도를 약 5년(2006년도)으로 계획하면 처리대상량은 1일 42.4톤이 예상되며, 저부하 운전이나 고장보수로 인한 가동중지 등의 문제를 고려하여 처리능력을 25톤/일${\times}$2계열로 설치하는 것이 효율적일 것으로 판단된다. 소각처리시설의 내구년도를 약 10년(2011년도)으로 계획하면 처리대상량은 1일 150톤/일이 예상되며, 저부하 운전이나 고장보수로 인한 소각작업 중지 등의 문제를 고려하여 처리능력을 80톤/일${\times}$2계열로 설치하는 것이 효율적일 것으로 판단된다.
허관,신대윤 한국환경보건학회 1998 한국환경보건학회지 Vol.24 No.1
The utilization of food garbage as composting was investigated by using the batch reactor and by varying the initial temperature of the fermentation reactors. As the straw controlled under 50 to 55% of moisture content and mixed 5% of EM(Effective Micro-organisms) microbial agent. An agitator continuously operated 1 rpm, supplying the amount of air(2l/kg.min). Reactor temperature changed three type of 40$\circ$C, 50$\circ$C, 60$\circ$C. In the case of 50$\circ$C operated 72 hr after organic contents showed lowest 48%, and weight reduction rate of showed 77%. The reaction gas was showed 30 min after 19. 9% of the lowest level at 20.9% concentration of oxygen and CO$_2$ gas was produced 0.9% due to organic disintegration on initial react time. NH$_4$, H$_2$ and CH$_4$ gas concentration showed 589 ppm lhr after, 83 ppm and 0.3%, but 8hr after gas product was complete. As using the straw of bulking agent, the Reduction by disintegration should be more effectively than composting.
무선 센서 네트워크를 위한 Hop-by-Hop 기반의 신뢰성 있는 혼잡제어 기법 설계
허관,김현태,나인호,Heo Kwan,Kim Hyun-Tae,Ra In-Ho 한국정보통신학회 2006 한국정보통신학회논문지 Vol.10 No.6
In Wireless Sensor Networks(WSNs), a sensor node broadcasts the acquisited sensing data to neighboring other nodes and it makes serious data duplication problem that increases network traffic loads and data loss. This problem is concerned with the conflict condition for supporting both the reliability of data transfer and avoidance of network congestion. To solve the problem, a reliable congestion control protocol is necessary that considers critical factors affecting on data transfer reliability such as reliable data transmission, wireless loss, and congestion loss for supporting effective congestion control in WSNs. In his paper, we proposes a reliable congestion protocol, called HRCCP, based on hop-hop sequence number, and DSbACK by minimizing useless data transfers as an energy-saved congestion control method. 무선 센서 네트워크의 센서 노드는 브로드캐스트 방식을 사용하여 수집한 데이터를 이웃한 다른 센서노드로 전달하기 때문에 데이터 중복성 문제가 발생한다. 데이터 중복성은 네트워크 로드를 가중시키며 데이터 손실의 원인이 되며, 이러한 문제점은 데이터 전송의 신뢰성과 네트워크 혼잡 회피간의 상충조건에 의해 발생한다. 따라서 무선 센서 네트워크에서 효율적으로 혼잡제어를 수행하기 위해서는 신뢰성 있는 전송(reliable transmission), 무선 손실(wireless loss), 혼잡 손실(congestion loss) 등과 같은 여러 요소를 고려한 신뢰성 있는 혼잡제어 기법이 필요하다. 본 논문에서는 Hop-by-Hop 순서 번호, DSbACK(Delayed and Selective ACK, Buffer Condition)을 사용하여 신뢰성 있는 전송을 보장하고 불필요한 전송을 최소화한 에너지 절약형 혼잡 제어 기법으로 HRCCP(Hop-by-Hop Reliable Congestion Control Protocol)를 제안하여 무선 센서 네트워크에서 신뢰성 있는 전송과 흔잡 제어가 동시에 이루어 질수 있도록 하였다.