• Title/Summary/Keyword: Reusing rate

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Estimation on the Performance of CB Scheme in Cellular System with Radio Interference (전파간섭이 존재하는 셀룰러 시스템에서의 CB 기법의 성능 평가)

  • 이성수;김종호;박상준;강영훙;이정식
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2002.11a
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    • pp.156-160
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    • 2002
  • In this paper, we have estimated by means of the theoretical analysis and the simulation of FCA(Fixed Channel Assignment) and CB(Channel Borrowing) in order to consider the CB as a technique to meet ducting interference from adjacent countries. Also, we assumed that the receiving power level of ducting interference with time rate can be characterized by the normal distribution due to the previous measured results, and the ducting interferences which are exceeding the reference power level can be regarded as calls. These calls can be processed by CR assignment and by which sharing channels between cells brings to us the method of meeting the ducting interference to use spectrum resources effectively. However, the spectrum frequency reusing and the interference effects between channels should be considered in CB simulation in the future.

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Reusing Techniques of Nutrient Solution for Recycling Hydroponic Culture of Lettuce (순환식 상추 양액재배시 양액재활용 기술)

  • 이성재;서명훈;이상우;심상연;이수연
    • Journal of Bio-Environment Control
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    • v.8 no.3
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    • pp.172-182
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    • 1999
  • Leaf lettuce(Lacaug sativa L.) was cultivated in deep flow culture to investigate growth and yield in relation to different reusing method of nutrient solution after once cultivation. Five different treatments were allocated to the nutrient solutions - Control(total renewal of solution), NSS(nutrient solution supplement), U control, NSAC(nutrient solution analysis and compensation), NSAC and Humus supply(NSAC with supply of Humus). The pH of solution was kept stable below 7.0 during 4 successive culture in NSAC and NSAC and Humus supply. U was sharply declined in NSS as the number of cultivation was increased. Gmwth and yield of NSAC was similar to those of Control because nutrient elements were kept the balance to the better growth, while the lettuce grown in NSS and EC control was shown lower growth rate. In the nutrient solutions, Content of N $O_3$-N and N $H_4$-N were remarkably decreased after the cultivation in all treatments. Ca and Mg were shown to be accumulated in nutrient solution regardless of culture times and treatments. After the first culture in NSAC and Humus supply, total N and P$_2$ $O_{5}$ content in leaves were lower than any other treatments, but Ca content was higher. Those were not significant as following cultures, and no significant difference of K and Mg content were shown among the treatments.

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Application of Electrochemical Technology for Reusing Biologically Treated Water (생물학적 처리수 재이용을 위한 전기화학 기술의 적용)

  • Kang, Gu-Young
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.4
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    • pp.453-458
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    • 2008
  • Laboratory experiments were conducted to investigate disinfection as well as removal of color and residual organics from reclaimed municipal wastewater by electrochemical processes with Nb/Pt anode installed. RNO was rapidly bleached by OH$\cdot$ and the second order rate constants of RNO removal were $\frac{0.223l}{mg{\cdot}min}$, $\frac{1.679l}{mg{\cdot}min}$ and $\frac{2.322l}{mg{\cdot}min}$ with for 5 A, 10 A, and 15 A, respectively, with r$^2$ of > 96%. In batch electrochemical processes, after 15 min at currency of 15 A and initial pH of 5, 7,5 and 9, COD$_{Mn}$ was below 4 mg/L, color unit below 5 degree and general bacteria was not detected, the concentration of which are suitable for drinking water regulation. In the continuous electrochemical process, with HRT of 3.7$\sim$49.2 min, free chlorine were 0.2$\sim$0.7 mg/L, general bacteria was not detected, color unit below 5 degree and THMs was 0.017 mg/L. Therefore, electrochemical process with Nb/Pt anode was employed satisfactory to meet for reusing biologically treated water as well as disinfection.

Historical Changes and Future Counterplan of Food Culture in Korea (우리나라 식문화의 변천과 향후 대책)

  • Choe Jin Ho
    • Proceedings of the Korean Society of Crop Science Conference
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    • 1999.11a
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    • pp.25-79
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    • 1999
  • To evaluate the historical changes and future counterplan of food culture in Korea . the following were surveyed : the scale of foodseivice industry. the consumer attitude on functional health food. the fancy and using frequency of fastfood in the growing generation, the actual state on use of imported food. consumer opinions in selecting factor of functional and organic foods. the actual state and consumer attitude on the imported foods, long-term prospect of food service industry in futures. the production of food rubbishes and their reusing rates. the production scales and toxicity problems of agricultural medicines including the postharvest agricultural medicine. the consumer anxiety such as potential environmental and human health risks associated with GMOs (genetically modified organisms) and the import state of GMOs, long-term prospect of population increase in world, and aged population of over 65 years and their social index in Korea, self-supporting rate and national security of food in Korea. the prospect for demand and supply of grains in Korea and world. decrease of the farming population and the decrease problem of agricultural productivity. the problem on the introduction of direct payment system for a farmhouse, and other social problem etc. In cases of 1996, self-supporting rate of food in Korea was the lowest as $26.4{\%}$ in the world but those countries such as USA, UK France, Canada and Denmark were $134.0{\%}\;122.0{\%}$. $190.0{\%}$. $179.0{\%}\;and\;134.0{\%}$, respectively. in 1997 Therefore. our food security appeared as a very serious problem in a viewpoint of the national security That's why this very important Symposium will be held by agriculture-related three Societies to see the last year of 1999 out and the new millennium in.

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Effect of pozzolans on mechanical behavior of recycled refractory brick concrete in fire

  • Nematzadeh, Mahdi;Baradaran-Nasiri, Ardalan;Hosseini, Mehdi
    • Structural Engineering and Mechanics
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    • v.72 no.3
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    • pp.339-354
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    • 2019
  • Reusing building materials and concrete of old buildings can be a promising strategy for sustained development. In buildings, the performance of materials under elevated temperatures is of particular interest for determining fire resistance. In this study, the effect of pozzolan and aggregate type on properties of concrete exposed to fire was investigated. In doing so, nanosilica with cement-replacement levels of 0, 2, and 4% as well as silica fume and ultrafine fly ash with cement-replacement levels of 0, 7.5, and 15% were used to study effect of pozzolan type, and recycled refractory brick (RRB) fine aggregate replacing natural fine aggregate by 0 and 100% was utilized to explore effect of aggregate type. A total of 126 cubic concrete specimens were manufactured and then investigated in terms of compressive strength, ultrasonic pulse velocity, and weight loss at $23^{\circ}C$ and immediately after exposure to 400 and $800^{\circ}C$. Results show that replacing 100% of natural fine aggregate with recycled refectory brick fine aggregate in the concretes exposed to heat was desirable, in that it led to a mean compressive strength increase of above 25% at $800^{\circ}C$. In general, among the pozzolans used here, silica fume demonstrated the best performance in terms of retaining the compressive strength of heated concretes. The higher replacement level of silica fume and ultrafine fly ash pozzolans in the mixes containing RRB fine aggregate led to a greater weight loss rate, while the higher replacement level of nanosilica reduced the weight loss rate.

Recovery of Copper from Waste Printed Circuit Boards by High-temperature Milling Process (고온 밀링 공정을 통한 폐인쇄회로기판으로부터 구리 회수)

  • Woo-chul Jung;Byoungyong Im;Dae-Geun Kim
    • Resources Recycling
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    • v.33 no.4
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    • pp.22-28
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    • 2024
  • Waste PCBs contain a large amount of valuable resources, including copper, and technology to recover them is constantly being developed. Generally, to recycle waste PCBs, a physical pretreatment process such as shredding and crushing is required. However, during this stage, the loss rate of metals is high and the sorting efficiency is low, indicating a need for a more efficient recycling pretreatment process. In this study, a high-temperature milling process, which simultaneously employs heat treatment and ball milling, was utilized to efficiently recover copper from waste PCBs. An experiment was conducted at 350 ℃ with milling time, milling speed, and the weight of the balls as variables. The results showed a copper recovery rate of over 90% under the conditions of a ball weight of 500 g, a milling speed of 70 RPM, and a milling time of 5 hours. The purity of the recovered copper was approximately 93%, and through post-processing after the high-temperature milling process, the feasibility of reusing the recovered copper as a high-purity material was confirmed.

Portability Evaluation Technique of Application for Heterogeneous Mobile Platform (이기종 모바일 플랫폼에 애플리케이션 이식성 평가 기법)

  • Park, Hae-Yoon;Yoo, Hae-Young
    • The KIPS Transactions:PartD
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    • v.18D no.2
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    • pp.123-132
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    • 2011
  • However a mobile application has limited compatibility to other platforms and device. So a mobile application should be rebuilt as particular restrictions of platforms or mobile phones when the mobile application is reused for other platforms. However a mobile application has limited compatibility to other platforms and device. So a mobile application should be rebuilt as particular restrictions of platforms or mobile phones when the mobile application is reused for other platforms. This paper ascertains problems when a mobile application is transplanted for reusing into other platforms, and suggests to evaluation systems of portability's quality that we can check the portability convenience of the existing mobile application. As we confirm its grade that shows convenience of suggested portability, we are able to check problems issued when a mobile application implants to other platforms. Then it is expected that we can check capability of rebuilding and endeavor rate. Also if the method will be considered at the first step of designing a mobile application, it will be the best way to develop the better mobile application that we can easily implant many other mobile platforms.

Research on the Standardization and Reuse of XBRL Documents Based on the Core Component Methodology (핵심 컴포넌트 방법론 기반의 XBRL 문서 표준화 및 재활용 방안 연구)

  • Kim, Hyoung-Do;Park, Chan-Kwon
    • The Journal of Society for e-Business Studies
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    • v.11 no.4
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    • pp.67-86
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    • 2006
  • In parallel with emphasizing more transparency and social responsibility of businesses, usage rate of XBRL, a XML-based language specific to business reporting, is rapidly increasing. XBRL takes the same approach with the standardization of B2B electronic documents in that it defines components (concepts and their structures) of business reporting documents using XSD(XML Schema Definition). However, it is fundamentally different from the standardization of B2B electronic documents because it restricts concepts to specific types and it defines diverse relationship types for connecting the concepts to themselves and other additional information. As XBRL applications are getting activated, one hot issue is the necessity for standardization of XBRL documents in the national level and reusing the components systematically This paper proposes an alternative based on the problem analysis in order to make it possible to standardize and reuse XBRL documents systematically by applying the UN/CEFACT Core Component methodology.

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Effect of the Conducting Agent on Characteristics of Cathode for Zn/Air Batteries (도전재 종류 및 함량에 따른 아연공기전지의 cathode특성연구)

  • Kim, Jee-Hoon;Eom, Seung-Wook;Moon, Seong-In;Yun, Mun-Soo;Kim, Ju-Yong;Yug, Gyeong-Chang;Park, Jeong-Hoo
    • Journal of the Korean Electrochemical Society
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    • v.5 no.2
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    • pp.74-78
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    • 2002
  • Zinc Air battery obtain their energy density advantage over the other batteries by utilizing ambient oxygen as the cathode materials, and reusing cathode as recycled form. And specific capacity of zinc powder is as high as 820 mAh/g. However, if the pore size in cathode is small then the flow rate of air decreased, and as a result of that discharge voltage of batteries becomes low. We focused on resistance and porosity of cathode. So we studied the effects of conducting agents to zinc air batteries performance, capacity, power density, average discharge voltage, resistance. And we also measured porosity of cathode by the ASTM. So we have got optimum contents of conducting agent.

Integrated Eco-Engineering Design for Sustainable Management of Fecal Sludge and Domestic Wastewater

  • Koottatep, Thammarat;Polprasert, Chongrak;Laugesen, Carsten H.
    • Journal of Wetlands Research
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    • v.9 no.1
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    • pp.69-78
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    • 2007
  • Constructed wetlands and other aquatic systems have been successfully used for waste and wastewater treatment in either temperate or tropical regions. To treat waste or wastewater in a sustainable manner, the integrated eco-engineering designs are explained in this paper with 2 case studies: (i) a combination of vertical-flow constructed wetland (CW) with plant irrigation systemfor fecal sludge management and (ii) integrated CW units with landscaping at full-scale application for domestic wastewater treatment. The pilot-scale study of fecal sludge management employed 3 vertical-flow CW units, each with a dimension of $5{\times}5{\times}0.65m$ (width ${\times}$ length ${\times}$ media depth) and planted with cattails (Typha augustifolia). At the solid loading rate of 250 kg total solids (TS)/$m^2.yr$ and a 6-day percolate impoundment, the CW system could achieve chemical oxygen demand (COD), TS and total Kjeldahl nitrogen (TKN) removal efficiencies in the range of 80 - 96%. The accumulated sludge layers of about 80 - 90 cm was found at the CW bed surface after operating the CW units for 7 years, but no clogging problem has been observed. The CW percolate was applied to 16 irrigation Sunflower plant (Helianthus annuus) plots, each with a dimension of $4.5{\times}4.5m$ ($width{\times}length$). In the study, the CW percolate were fed to the treatment plots at the application rate of 7.5 mm/day but the percolate was mixed with tap water at different ratio of 20%, 80% and 100%. Based on a 1-year data of 3-crop plantation were experimented, the contents of Zn, Mn and Cu in soil of the experimental plots were found to increase with increasing in CW percolate ratios. The highest plant biomass yield and oil content of 1,000 kg/ha and 35%, respectively, were obtained from the plots fed with 20% or 50% of the CW percolate, whereas no accumulation of heavy metals in the plant tissues (i.e. leaves, stems and flowers) of the sunflower is found. In addition to the pilot-scale and field experiments, a case study of the integrated CW systems for wastewater treatment at Phi Phi Island (a Tsunami-hit area), Krabi province, Thailand is illustrated. The $5,200-m^2$ CW systems on Phi Phi Island are not only for treatment of $400m^3/day$ wastewater from hotels, households or other domestic activities, but also incorporating public consultation in the design processes, resulting in introducing the aesthetic landscaping as well as reusing of the treated effluent for irrigating green areas on the Island.

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