• 제목/요약/키워드: Capacity retention

검색결과 511건 처리시간 0.023초

히드록시알킬 메틸셀룰로오스가 시멘트 모르타르의 보수성에 미치는 영향에 관한 연구 (Study on the Factor of Water Retention Capacity of Cement Mortar by Hydroxyalkyl Methylcellulose Ether)

  • 이무진
    • 콘크리트학회논문집
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    • 제11권3호
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    • pp.153-160
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    • 1999
  • Water soluble hydroxyalkyl methycellulose ethers are used in a variety of applications incluing building industry as a supplementary agent used for incresing adhesives, water retention capacity, workability and viscosity modify. Water retention capacity(WRC) is the capability to contain water in the ploymer chain under condition of being mixed with cement. In general, the WRC is affected by the viscosity, the adding amount, the particle size, the rate of dissolving and the amount of substituted chemical in cellulose ethers. In the other words, WRC is increased as higher the viscosity, more adding amount, finer the particle size and longer the dissolving time of cellulose ethers. This thesis investigated each factor that effect the WRC, particularly the relation between degree of substitution(DS), molar of substitution(MS) and WRC. It is observed that WRC is not nearly affected by DS of cellulose ethers, but is changes proportionally as MS increases in the narrow range(0.10~2.25)

활엽수 낙엽의 수분저류 특성에 대한 실험적 분석 (Experimental Analysis of Water Retention Characteristics in the Litter of Different Deciduous Trees)

  • ;최형태;이은재;임상준
    • 한국환경복원기술학회지
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    • 제19권2호
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    • pp.83-93
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    • 2016
  • This study purposed to examine the water retention capacity of floor litter in deciduous forests. Water holding capacity(WHC) and interception storage capacity of Alnus hirsuta Turcz. ex Rupr., Quercus acutissima, Quercus mongolica litters were experimentally estimated. Physical characteristics of litters were also obtained to understand the relationships between water-retention capacity and litter characteristics. Experiments showed that WHC increases with specific volume of litter, varying 244.4% to 416.8% of its dry mass. Interception storage have estimated with rainfall simulation experiments. Maximum interception storage ($C_{max}$) and minimum interception storage ($C_{min}$) of litters were 220% and 138% of dry mass in Alnus hirsuta Turcz. ex Rupr., 218% and 137% in Quercus acutissima, and 240% and 156% in Quercus mongolica. Both $C_{max}$ and $C_{min}$ increased linearly with litter mass, and the values of $C_{min}$ in broadleaf litters have also linear relation to leaf area.

소수성 파라메터를 적용한 알킬벤젠류의 역상컬럼내의 용출거동 예측 (Prediction of Retention Behavior of Alkyl Benzenes by Hydrophobicity Parameters in Reversed-Phase Column)

  • 이창영;박명용;이용문
    • 약학회지
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    • 제53권5호
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    • pp.281-285
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    • 2009
  • The retention of solutes in reversed-phase high-performance liquid chromatography depends on their hydrophobicity. Although the retention behaviors of alkyl benzenes have been reported so far, quite a few authors have mentioned the retention behavior of alkyl benzenes with plural hydrophobicity parameters. In this sense, we were interested in the retention behaviors of alkyl benzenes having benzene moiety and increasing alkyl chain. In this study, we therefore investigated the retention behavior of alkyl benzenes in reversed-phase high-performance liquid chromatography in order to obtain information concerning the effects of the aromatic moiety and the carbon chain on the retention mechanism by comparing their capacity factor (k') in relation to the carbon chain length. The eluent acetonitrile ($CH_3CN$) showed high selectivity on alkyl benzenes, showing the high difference of capacity factor (${\Delta}log\;k'$) between toluene and octyl benzene. Indeed, the ${\Delta}log\;k'$ of 80% $CH_3CN$ represented 1.42- and 4.25-times longer than 90% MeOH and 60% THF, respectively. The hydrophobicity parameters, van der Waals volume, bond constant, partition constant, $\pi$-energy effect and enthalpy were evaluated with the capacity factor (k') of alkyl benzenes eluted on 80% CH3CN, 90% MeOH and 60% THF, respectively. The best eluent for predicting retention behavior of alkyl benzenes was 90% MeOH ($R^2$ 0.999). The three parameters, van der Waals volume, bond constant and partition constant were well coincident to log k' by increasing alkyl benzenes. However, $\pi$-energy effect and enthalpy were severely disagreeable. Taken together, van der Waals volume, bond constant and partition constant were a reliable parameters to predict the retention behaviors of alkyl benzenes on reversed-phase column.

지리산국립공원 내 조릿대 임분의 수원함양기능 분석 (Analysis of Water Retention Capacity at Sasa borealis Stands in Jirisan National Park)

  • 지형우;박재현
    • 한국환경복원기술학회지
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    • 제11권3호
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    • pp.1-11
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    • 2008
  • Although landslides were frequently occurred under Tripterygium regelii and Rubus sp. vegetations, the damage of landslide was not observed in sasa (Sasa borealis) stands. These phenomena may be affected by forest vegetation types. This result suggested that the landslide occurred in Jirisan (Mt.) National Park may be closely related to water retention capacity at Sasa borealis stands. This study compared and analyzed the water retention capacity of each soil horizon of sasa, larch (Larix leptolepis) and mongolian oak (Quercus mongorica) stands. Soil bulk density in A horizon was lower in sasa (0.776g/$cm^3$) than in mongolian oak (0.828g/$cm^3$) and in larch stands (1.282g/$cm^3$). Water permeability in A horizon was 0.02055cm/sec for sasa, 0.00575cm/sec for mongolian oak, and 0.0007cm/sec for larch stands, respectively. The water permeability of sasa stand was about 3.6 times and about 29 times higher than in mongolian oak and in larch stands, respectively. This result indicates that water infiltration of soil surface during a rain event is more rapid in sasa than in other two stands. Soil organic matter content in B horizon was lower in larch (0.7%) than in mongolian oak (6.5%) and in Sasa (3.3%) stands. The solid ratio in A horizon was highest in larch among three stands, but that of mongolian oak and larch stands showed a similar rate. Pore space rates was 70.7% for A horizon and 70.6% for B horizon of sasa, 68.9% for A horizon and 70.6% for B horizon of sasa, 68.9% for A horizon and 70.6% for B horizon of mongolian oak forests and 51.7% for A horizon and 49.2% for B horizon of larch forests, respectively. According to pore space rates, the water retention capacity may be poor in larch stand compared with other two stands. Soil strength in sasa and mongolian stands was over 25kgf/$cm^2$ from 40cm depth, while the strength was over 25kgf/$cm^2$ from 25cm depth in larch stand. The result indicates that tree growth and water permeability in larch stand could be limited due to high soil strength. Larch stand was poor for soil pore space development to be offered to the water retention capacity, but water retention capacity of A horizon soil in sasa stand was high than that of other two stands. Therefore, establishment of sasa stand under larch stand could help to prevent landslides.

도시 물 순환 개선을 위한 생태저류지의 최적설계용량 결정 (Determination of Optimum Design Capacity of Bio-retention for Improvement of Urban Water Cycle)

  • 이옥정;최정현;이정훈;김상단
    • Korean Chemical Engineering Research
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    • 제55권6호
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    • pp.745-753
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    • 2017
  • 본 연구에서는 도시 개발에 따라 왜곡된 도시 물 순환을 LID 시설을 통하여 자연적인 물 순환으로 되돌리고자 하는 설계전략이 제안된다. 이는 도시 개발 전과 후의 유황곡선이 동일하게 유지되는 최적의 LID 시설 설계용량을 결정함으로서 구현된다. 부산 녹산 국가산업단지의 일부지역이 연구대상지역으로 선정되었으며, 다양한 토지이용시나리오 및 LID 시설 설계용량에 대한 강우유출수 모의를 위하여 EPA SWMM이 구축되었다. 연구대상지역이 개발이전에 임야지역 또는 농경지역이라 가정하였을 경우, 도시 개발 이후에도 유황곡선이 도시 개발 전과 동일하게 유지되기 위해서는 불투수지역의 7.3% 또는 5.5%를 생태저류지의 면적으로 할당해야 함을 확인하였다. 또한 지역별 강우특성에 따른 생태저류지 설계용량의 민감도 분석을 수행한 결과, 농경지역의 개발 시에는 불투수지역의 3.8~5.5% 정도의 설계용량이 필요한 것으로 나타남에 따라 지역별 강우특성에 따라 생태저류지의 최적용량이 유의하게 달라질 수 있음을 살펴볼 수 있었다. 반면에, 생태저류지 각 층별 깊이의 변화에 따른 설계용량의 민감도 및 처리대상구역의 크기에 따른 민감도를 분석한 결과, 생태저류지의 설계 제원 및 처리대상구역의 크기에 따른 최적설계용량의 민감도는 크지 않은 것으로 나타났다.

Effects of Compost and Gypsum on Soil Water Movement and Retention of a Reclaimed Tidal Land

  • Lee, Jeong-Eun;Yun, Seok-In
    • 한국토양비료학회지
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    • 제47권5호
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    • pp.340-344
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    • 2014
  • Compost and gypsum can be used to ameliorate soil physicochemical properties in reclaimed tidal lands as an organic and inorganic amendment, respectively. To evaluate effects of compost and gypsum on soil water movement and retention as a soil physical property, we measured the soil's saturated hydraulic conductivity and field capacity after treating the soil collected in a reclaimed tidal land with compost and gypsum. Saturated hydraulic conductivity of soil increased when compost was applied at the conventional application rate of $30Mg\;ha^{-1}$. However, the further application of compost insignificantly (P > 0.05) increased saturated hydraulic conductivity. On the other hand, additional gypsum application significantly increased soil saturated hydraulic conductivity while it decreased soil field capacity, implying the possible effect of gypsum on flocculating soil colloidal particles. The results in this study suggested that compost and gypsum can be used to improve hydrological properties of reclaimed tidal lands through increasing soil water retention and movement, respectively.

Potential Water Retention Capacity as a Factor in Silage Effluent Control: Experiments with High Moisture By-product Feedstuffs

  • Razak, Okine Abdul;Masaaki, Hanada;Yimamu, Aibibula;Meiji, Okamoto
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권4호
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    • pp.471-478
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    • 2012
  • The role of moisture absorptive capacity of pre-silage material and its relationship with silage effluent in high moisture by-product feedstuffs (HMBF) is assessed. The term water retention capacity which is sometimes used in explaining the rate of effluent control in ensilage may be inadequate, since it accounts exclusively for the capacity of an absorbent incorporated into a pre-silage material prior to ensiling, without consideration to how much the pre-silage material can release. A new terminology, 'potential water retention capacity' (PWRC), which attempts to address this shortcoming, is proposed. Data were pooled from a series of experiments conducted separately over a period of five years using laboratory silos with four categories of agro by-products (n = 27) with differing moisture contents (highest 96.9%, lowest 78.1% in fresh matter, respectively), and their silages (n = 81). These were from a vegetable source (Daikon, Raphanus sativus), a root tuber source (potato pulp), a fruit source (apple pomace) and a cereal source (brewer's grain), respectively. The pre-silage materials were adjusted with dry in-silo absorbents consisting wheat straw, wheat or rice bran, beet pulp and bean stalks. The pooled mean for the moisture contents of all pre-silage materials was 78.3% (${\pm}10.3$). Silage effluent decreased (p<0.01), with increase in PWRC of pre-silage material. The theoretical moisture content and PWRC of pre-silage material necessary to stem effluent flow completely in HMBF silage was 69.1% and 82.9 g/100 g in fresh matter, respectively. The high correlation (r = 0.76) between PWRC of ensiled material and silage effluent indicated that the latter is an important factor in silage-effluent relationship.

전해질 농도에 따른 아연-공기 전지의 전기화학적 특성 (Effects of Electrolyte Concentration on Electrochemical Properties of Zinc-Air Batteries)

  • 한지우;조용남
    • 한국재료학회지
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    • 제29권12호
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    • pp.798-803
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    • 2019
  • The self-discharge behavior of zinc-air batteries is a critical issue induced by corrosion and hydrogen evolution reaction (HER) of zinc anode. The corrosion reaction and HER can be controlled by a gelling agent and concentration of potassium hydroxide (KOH) solution. Various concentrations of KOH solution and polyacrylic acid have been used for gel electrolyte. The electrolyte solution is prepared with different concentrations of KOH (6 M, 7 M, 8 M, 9 M). Among studied materials, the cell assembled with 6 M KOH gel electrolyte exhibits the highest specific discharge capacity and poor capacity retention. Whereas, 9 M KOH gel electrolyte shows high capacity retention. However, a large amount of hydrogen gas is evolved with 9 M KOH solution. In general, the increase in concentration is related to ionic conductivity. At concentrations above 7 M, the viscosity increases and the conductivity decreases. As a result, compared to other studied materials, 7 M KOH gel electrolyte is suitable for Zn-air batteries because of its higher capacity retention (92.00 %) and specific discharge capacity (351.80 mAh/g) after 6 hr storage.

대용량 Dynamic RAM의 Data Retention 테스트 회로 설계 (Design of Data Retention Test Circuit for Large Capacity DRAMs)

  • 설병수;김대환;유영갑
    • 전자공학회논문지A
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    • 제30A권9호
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    • pp.59-70
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    • 1993
  • An efficient test method based on march test is presented to cover line leakage failures associated with bit and word lines or mega bit DRAM chips. A modified column march (Y-march) pattern is derived to improve fault coverage against the data retention failure. Time delay concept is introduced to develop a new column march test algorithm detecting various data retention failures. A built-in test circuit based on the column march pattern is designed and verified using logic simulation, confirming correct test operations.

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단기 강우 시 소규모유역에서 생태저류지의 유출 저감효과 분석 (An Analysis of the Outflow reduction effect of Bio-retention in Small watershed during Short-term rainfall)

  • 천종현;김재문;장영수;신현석
    • 한국산학기술학회논문지
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    • 제20권2호
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    • pp.434-442
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    • 2019
  • 도시 내 빈번히 발생하는 홍수 피해를 해결하기 위한 대응 방안으로 자연상태의 수문순환 체계를 회복하기 위한 저영향개발(Low Impact Development, LID) 기법이 대두되고 있다. LID 요소기술 중 하나인 생태저류지는 유역에서 발생하는 유출수를 저류 및 침투하여 우수 유출수 및 비점오염물질 저감효과를 갖는 시설로 다양한 연구가 진행되고 있으나, 유출저감효과에 대한 분석은 미흡한 실정이다. 따라서 본 연구에서는 수문 해석이 가능한 K-LIDM을 이용하여 소규모유역에서 생태저류지의 유출 저감효과를 분석하였다. 시나리오를 구성함에 있어 생태저류지의 저류용량을 증가시키거나 유역과 생태저류지를 분할하였고 확률강우량을 활용하여 단기강우를 모의하였다. 분석결과 저류용량 증가에 따라 20%, 분산형 시스템에서 5~15% 이상의 유출 저감효과를 나타냈으며 향후 생태저류지의 저류깊이, 지반의 침투능 및 유출부의 직경과 높이 등 다양한 시나리오에 대한 연구가 수행된다면 생태저류지의 물순환 효율성에 관하여 보다 정량적인 분석이 가능할 것으로 기대된다.