• 제목/요약/키워드: Dissolved Gas Analysis

검색결과 116건 처리시간 0.02초

알칼리 처리에 의한 Zeolite 광물의 물리화학적 특성 (Physicochemical Characteristics of Zeolite Mineral by Alkali Solution Treatment)

  • 임굉
    • 자연과학논문집
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    • 제8권2호
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    • pp.119-127
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    • 1996
  • Zeolite인 mordenite 광물을 수산화나트륨용액으로 화학처리한 효과에 대해서 화학분석, X-선 분말회절, 열분석, 이산화탄소의 흡착측정 및 GC를 통하여 조사하였다. 출발원료로 mordenite 광물을 3시간동안 water bath 중 약 $95^{\circ}C$에서 NaOH 0.1-5N의 농도범위로 화학 처리한 결과, 시료중 함유된 모든 화학성분은 NaOH 0.5N 이하의 농도에서는 불용이고 mordenite 구조는 변화하지 않았으며 1N 이상의 농도에서는 실리카, 알루미나 등과 같이 성분들이 용해되었고 시료중 실리카의 용해비율이 알루미나의 용해보다 높으며 실리카와 알루미나의 비가 2-3N 농도 범위에서는 급격히 감소하였다.Mordenite 의 (202)면의 X-선 회절피크 강도와 $CO_2$ 흡착량은 1N 이상의 NaOH 농도가 증가함에 따라 감소하며 이로 인하여 mordenite 구조의 붕괴가 나타났다.산소, 질소 및 일산화탄소의 GC분리공정에서는 NaOH 용액 처리에 의한 영향을 받지 않으나 메탄과 크립톤의 용출피크가 넓어지는 경향이 나타나며 retention time 은 단축되었고 이 두 기체모두 용리피크는 산소 또는 질소와 중복되기 쉬운 경향을 보여주었다.

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백두산 화산활동 평가를 위한 화산가스 및 온천수에 대한 연구 (Study of Volcanic Gases and Hot Spring Water to Evaluate the Volcanic Activity of Mt. Baekdu)

  • 이상철;윤성효
    • 자원환경지질
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    • 제50권2호
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    • pp.171-180
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    • 2017
  • 본 연구에서는 2015년 7월부터 2016년 8월까지 백두산 주롱 온천 지역에서 화산가스 및 온천수를 채취하여 분석을 실시하였다. 또한 이전 연구(Lee et al. 2014)에서 보고된 온천수의 측정값 중 $HCO_3{^-}$ 농도에 오류가 있음을 확인하고, 이를 개선하고자 했다. 온천수의 용존 $CO_2$는 이전 연구에서는 가스 크로마토그래프를 이용하여 분석하였지만, 이를 개선하여 2015년부터 TOC-IC를 이용하여 분석을 실시했다. 또한, 여러 농도의 $Na_2CO_3$ 표준 시료를 GC로 분석하여, 실제 농도와 표준시료 사이의 상관관계를 확인하였다. 그리고 이를 토대로 2014년 온천수의 용존 $CO_2$ 농도를 추정하고자 했지만, 실제 주롱(Julong) 온천 주변의 물을 채취하여 GC로 분석했을 때는 이 상관관계가 잘 적용되지 않아서 2014년 온천수의 용존 $CO_2$ 농도를 추정할 수가 없었다. 연구기간 동안 화산가스 내 $CO_2/CH_4$의 농도는 꾸준히 감소하였는데, 이에 대하여 두 가지 해석이 가능하다. 첫 번째는 화산체 내부의 환경이 조금 더 환원환경에 가까워져 상대적으로 화산가스 내 탄소가 $CO_2$ 보다는 $CH_4$ 또는 CO로 분배되기 유리해 진 것이다. 두 번째 가능성은 화산가스와 물의 상호작용이 강화되어 물에 대한 용해도가 훨씬 높은 $CO_2$의 농도가 상대적으로 감소한 것이다. 일반적으로 화산가스가 물에 희석되는 현상(scrubbing)의 영향은 화산활동이 활발한 시기보다는 잠잠한 시기에 강화된다. 한편, 온천수의 분석은 화산가스 연구에서 중요한 산성기체 성분의 음이온들과 주요 양이온, 그리고 Cd, Re, As에 대해 이루어졌다.

수세에 의한 생활폐기물 소각재 중 비산재로부터 염소성분의 제거 (Removal of Chlorine from Fly Ash in Municipal Solid Waste Incineration Ash by Water Washing)

  • 안지환;한기천;김형석
    • 자원리싸이클링
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    • 제10권5호
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    • pp.36-43
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    • 2001
  • The chlorine component in fly ash from municipal solid waste incineration ash was removed by water washing for the purpose of recycling fly ash as a raw material of ordinary portland cement. The samples were a different kind of 리y ashes using $Ca(OH)_2$and NaOH as media of wet scrubber for flue gas cleaning. The content of soluble salts of fly ash using $Ca(OH)_2$and NaOH was 32.8%, 50.1% and the content of chlorine component, 22.9% and 26.0% respectively, which was KCl, NaCl, CaC1OH mainly. When each fly ash was washed using water under conditions of a agitation speed of 300 rpm, a liquid to solid ratio of 10, most soluble salts in fly ash were dissolved within 30 minutes and the content of chlorine component in ash was diminished to the content of 4.4%, 2.O% at $20^{\circ}C$ and 1.7%, 0.8% at $50^{\circ}C$ respectively. And the main compound of residual chlorine component in ash after water washing was friedel`s salt ($3CaO.A1_2$$O_3$.$CaCl_2$.$10H2$O). From analysis results of water quality for wastewater by water washing, the components exceeding discharged wastewater standard were only Pb and Cd. But As pH was controlled to 10 with addition of $CO_2$(g) or $Na_2$$_CO3$in water, the concentration of heavy metals such as Pb and Cd was also under discharged wastewater standard.

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고밀도 축제식 양식장의 질소역학과 대하 (Fenneropenaeus chinensis) 성장 (Nitrogen Dynamics and Growing of Shrimp (Fenneropenaeus chinensis) in the High Density Aquaculture Ponds)

  • 강윤호;윤양호
    • 한국수산과학회지
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    • 제37권1호
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    • pp.24-32
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    • 2004
  • A mathematical model is used to investigate nitrogen dynamics in the intensive aquaculture ponds in the western coast of Korea. Parameters associated with water quality, sediments and growing of shrimp (Fenneropenaeus chinensis) are measured to calibrate the model for feeding ponds A and B and storage ponds. The model describes the fate of nitrogen including loadings of ammonia from feeds, phytoplankton assimilation, nitrification, sedimentation, volatilization and discharge. The model obtains good agreements with the measured values of TAN $(NH_4,\;NH_3),\;NO(NO_2,\;NO_3)$ and Chl (chlorophyll a). Impacts of water exchange on TAN and Chl are investigated, showing that the range of 0.01-0.2 (/day) cannot effectively reduce TAN but reduces Chl. Nitrogen in the ponds A is removed by sedimentation $66\%,$ volatilization $8\%,$ discharge of particulate and dissolved $8\%.$ The pond B shows $56\%\;and\;26\%$ of sedimentation and volatilization, respectively, to yield $10\%.$ decrease and 8c/o increase compared to those in the pond A. While the pond A has larger area (1.02:0.66 ha) and same stocking density (0.025 md./L) at the beginning of culture, the pond B obtains higher stocking density (0.0065:0.0091 md./L), longer feeding period (103:121 day) and resultant higher shrimp production (1.15:2.13 t/ha/cycle) at harvest. This is possibly due to the hydraulic characteristics driven by paddlewheels. At low ratio of the low speed area and the pond area, the rate of sedimentation is high, while the rate of gas exchange is low. Thus, the measurement and model analysis suggest that water quality and shrimp production are positively correlated with the hydraulic characteristics in the shrimp ponds.

Nannochloris eucaryotum growth: Kinetic analysis and use of 100% CO2

  • Concas, Alessandro;Lutzu, Giovanni Antonio;Locci, Antonio Mario;Cao, Giacomo
    • Advances in environmental research
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    • 제2권1호
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    • pp.19-33
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    • 2013
  • Microalgae are receiving an increasing attention because of their potential use as $CO_2$ capture method and/or as feedstock for biofuels production. On the other hand the current microalgae-based technology is still not widespread since it is characterized by technical and economic constraints that hinder its full scale-up. In such contest the growth kinetics of Nannochloris eucaryotum (a relatively unknown marine strain) in batch and semi-batch photobioreactors is quantitatively investigated with the aim of obtaining the corresponding kinetic parameters suitable for process engineering and its optimization. In particular the maximum growth rate was evaluated to be 1.99 $10^{-3}\;h^{-1}$. Half saturation concentrations for nitrates ($K_N$) and phosphates uptake ($K_P$) were evaluated as 5.4 $10^{-4}\;g_N\;L^{-1}$ and 2.5 $10^{-5}\;g_P\;L^{-1}$, respectively. Yield factors for nitrogen ($Y_N$) and phosphorus ($Y_P$) resulted to be 5.9 $10^{-2}\;g_N\;g^{-1}$ biomass and 6.0 $10^{-3}\;g_P\;g^{-1}{_{biomass}}$, respectively. The possibility of using 100% (v/v) $CO_2$ gas as carbon source is also evaluated for the first time in the literature as far as N. eucaryotum is concerned. The strain showed a good adaptability to high concentrations of dissolved $CO_2$ as well as to low pH. The lipid content under 100% $CO_2$ is about 16.16 %wt $wt^{-1}$ and the fatty acid methyl esters composition of the extracted oil is in compliance with the European regulation for quality biodiesel.

반도체급 삼염화실란중의 극미량 붕소의 분광 광도법적 측정 (Spectrophotometric Determination of Traces of Boron in Semiconductor-grade Trichlorosilane)

  • 김동권;김희영
    • 대한화학회지
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    • 제35권5호
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    • pp.534-538
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    • 1991
  • 흡착 분리 방법을 이용하여 고순도 삼염화실란(TCS) 중의 미량 붕소 농도를 분광광도법적으로 측정하는 방법을 제안하였다. TCS중의 붕소 화합물과 복합체를 잘 형성하고 황산-quinalizarin계 발색 시약에 잘 녹으며 측정시 간섭 효과를 나타내지 않는 Lewis 염기성 물질로 NaCl이 선택되었다. 이러한 흡착 분리 방법을 통해 TCS분석 도중에 실리카겔 및 기포가 생성되는 문제를 방지할 수 있었는데, 반도체급 TCS중의 붕소 농도는 ${\pm}$20%의 표준편차 범위내에서 6.1 ${\mu}$g/l로 측정되었다. 반면 NaCl로 붕소화합물을 제거시킨 정제된 TCS 중의 붕소 농도는 0.2 ${\mu}$g/l이어서 NaCl의 우수한 흡착 성능을 확인할 수 있었다. 또한 NaCl이 TCS 정제 중 붕소 제거에 효과적임을 다른 잘 알려진 흡착제들과 비교 분석하였다.

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DGA Gases related to the Aging of Power Transformers for Asset Management

  • Kweon, Dongjin;Kim, Yonghyun;Park, Taesik;Kwak, Nohong;Hur, Yongho
    • Journal of Electrical Engineering and Technology
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    • 제13권1호
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    • pp.372-378
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    • 2018
  • Life management technology is required as the failure risk of aged power transformers increases. Asset management technology is developed to evaluate the remaining life, establish the replacement strategies, and decide the optimal investment based on the reliability and economy of power transformers. The remaining life assessment uses data such as installation, operation, maintenance, refurbishment, and failure of power transformers. The optimal investment also uses data such as maintenance, outage, and social costs. To develop the asset management system for power transformers, determining the degradation parameters related to the aging of power transformers and evaluating the condition of power transformers using these parameters are important. In this study, since 1983, 110,000 Dissolved Gas Analysis (DGA) data have been analyzed to determine the degradation parameters related to the aging of power transformers. The alarm rates of combustible gases ($H_2$, $C_2H_2$, $C_2H_4$, $CH_4$, and $C_2H_6$), TCG, CO, and $CO_2$ were analyzed. The end of life and failure rate (bathtub curve) of power transformers were also calculated based on the failure data from 1981 to 2014. The DGA gases related to discharge, overheating, and insulation degradation were determined based on alarm and failure rates. $C_2H_2$, $C_2H_6$, and $CO_2$ were discharge, oxidation, and insulation degradation parameters related to the aging of power transformers.

알코올모델용액을 이용한 여러 종류 활성탄의 휘발성화합물 흡착특성 (Characteristics of Volatile Compound Adsorption from Alcoholic Model Solution onto Various Activated Carbons)

  • 박승국;이명수;김병호;김대옥
    • 산업식품공학
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    • 제14권3호
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    • pp.249-255
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    • 2010
  • 4가지 서로 다른 소재(대나무, 목재, 피탄, 석탄)로 제조된 10가지 활성탄에 대해서, 30% 알코올모델용액에 용해되어 있는 6가지 휘발성화합물(isoamyl alcohol, hexanal, furfural, ethyl lactate, ethyl octanoate, 2-phenyl ethanol)의 흡착효율을 평가하였다. 이들 6가지 휘발성화합물은 알코올음료에서 종종 발견되며, 농도가 높을 경우에는 숙취의 원인이 될 뿐만이 아니라 위스키나 보드카와 같은 술에서 이취의 원인물질이 되기도 한다. 6가지 휘발성화합물이 용해되어 있는 30% 알코올모델용액 200 mL에 0.2 g의 활성탄을 넣고 16시간 일정한 속도로 교반한 후에 처리된 용액을 2가지 시료처리방법(direct liquid injection and headspace-solid phase microextraction)을 이용 GC분석을 수행하여 활성탄의 제거효율을 구하였다. 활성탄의 제거효율은 휘발성화합물의 종류와 활성탄제조의 소재에 따라 차이가 있었으며, ethy octanoate, 2-phenyl ethanol, hexanal에 대한 제거율은 34-100%로 높은 편이나, isoamyl alcohol, ethyl lactate, furfural의 제거율은 5-13%로 비교적 낮은 편이었다. 활성탄의 종류에 따른 제거율은 대나무활성탄인 A가 isoamly alcohol, hexanal, ethyl lactate, furfural 등 대부분의 휘발성화합물에 대해서 유의적으로 높았으며(p < 0.05), 특히 알코올음료에서 숙취와 이취물질이며 fusel oil의 주성분인 isoamyl alcohol, aldehydes(hexanal, furfural), 2-phenyl ethanol에 대한 흡착효율이 높은 것으로 확인되었다.

Glass Dissolution Rates From MCC-1 and Flow-Through Tests

  • Jeong, Seung-Young
    • 한국방사성폐기물학회:학술대회논문집
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    • 한국방사성폐기물학회 2004년도 학술논문집
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    • pp.257-258
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    • 2004
  • The dose from radionuclides released from high-level radioactive waste (HLW) glasses as they corrode must be taken into account when assessing the performance of a disposal system. In the performance assessment (PA) calculations conducted for the proposed Yucca Mountain, Nevada, disposal system, the release of radionuclides is conservatively assumed to occur at the same rate the glass matrix dissolves. A simple model was developed to calculate the glass dissolution rate of HLW glasses in these PA calculations [1]. For the PA calculations that were conducted for Site Recommendation, it was necessary to identify ranges of parameter values that bounded the dissolution rates of the wide range of HLW glass compositions that will be disposed. The values and ranges of the model parameters for the pH and temperature dependencies were extracted from the results of SPFT, static leach tests, and Soxhlet tests available in the literature. Static leach tests were conducted with a range of glass compositions to measure values for the glass composition parameter. The glass dissolution rate depends on temperature, pH, and the compositions of the glass and solution, The dissolution rate is calculated using Eq. 1: $rate{\;}={\;}k_{o}10^{(ph){\eta})}{\cdot}e^{(-Ea/RT)}{\cdot}(1-Q/K){\;}+{\;}k_{long}$ where $k_{0},\;{\eta}$ and Eaare the parameters for glass composition, pH, $\eta$ and temperature dependence, respectively, and R is the gas constant. The term (1-Q/K) is the affinity term, where Q is the ion activity product of the solution and K is the pseudo-equilibrium constant for the glass. Values of the parameters $k_{0},\;{\eta}\;and\;E_{a}$ are the parameters for glass composition, pH, and temperature dependence, respectively, and R is the gas constant. The term (1-Q/C) is the affinity term, where Q is the ion activity product of the solution and K is the pseudo-equilibrium constant for the glass. Values of the parameters $k_0$, and Ea are determined under test conditions where the value of Q is maintained near zero, so that the value of the affinity term remains near 1. The dissolution rate under conditions in which the value of the affinity term is near 1 is referred to as the forward rate. This is the highest dissolution rate that can occur at a particular pH and temperature. The value of the parameter K is determined from experiments in which the value of the ion activity product approaches the value of K. This results in a decrease in the value of the affinity term and the dissolution rate. The highly dilute solutions required to measure the forward rate and extract values for $k_0$, $\eta$, and Ea can be maintained by conducting dynamic tests in which the test solution is removed from the reaction cell and replaced with fresh solution. In the single-pass flow-through (PFT) test method, this is done by continuously pumping the test solution through the reaction cell. Alternatively, static tests can be conducted with sufficient solution volume that the solution concentrations of dissolved glass components do not increase significantly during the test. Both the SPFT and static tests can ve conducted for a wide range of pH values and temperatures. Both static and SPFt tests have short-comings. the SPFT test requires analysis of several solutions (typically 6-10) at each of several flow rates to determine the glass dissolution rate at each pH and temperature. As will be shown, the rate measured in an SPFt test depends on the solution flow rate. The solutions in static tests will eventually become concentrated enough to affect the dissolution rate. In both the SPFt and static test methods. a compromise is required between the need to minimize the effects of dissolved components on the dissolution rate and the need to attain solution concentrations that are high enough to analyze. In the paper, we compare the results of static leach tests and SPFT tests conducted with simple 5-component glass to confirm the equivalence of SPFT tests and static tests conducted with pH buffer solutions. Tests were conducted over the range pH values that are most relevant for waste glass disssolution in a disposal system. The glass and temperature used in the tests were selected to allow direct comparison with SPFT tests conducted previously. The ability to measure parameter values with more than one test method and an understanding of how the rate measured in each test is affected by various test parameters provides added confidence to the measured values. The dissolution rate of a simple 5-component glass was measured at pH values of 6.2, 8.3, and 9.6 and $70^{\circ}C$ using static tests and single-pass flow-through (SPFT) tests. Similar rates were measured with the two methods. However, the measured rates are about 10X higher than the rates measured previously for a glass having the same composition using an SPFT test method. Differences are attributed to effects of the solution flow rate on the glass dissolution reate and how the specific surface area of crushed glass is estimated. This comparison indicates the need to standardize the SPFT test procedure.

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MD-GC/MS를 활용한 석유화학제품의 가소제(DOA, DOP) 분석방법 연구 (Study on the Method of Analyzing the Plasticizer of Petrochemical Products using MD-GC/MS)

  • 도진우;연주민;강형규;황인하;하종한;나병기
    • 한국응용과학기술학회지
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    • 제34권4호
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    • pp.1085-1093
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    • 2017
  • 가소제는 딱딱한 특성을 지닌 플라스틱에 유연성 및 탄성을 주어 제품으로서의 부드러운 특성을 갖출 수 있도록 첨가되는 물질로서, 주로 고분자 물질에 첨가되어 유연성을 부여함으로써 가공성을 개선하고, 내한성, 내휘발성, 전기적 특성을 강화할 목적으로 이용되고 있다. 대부분의 가소제는 비활성 액체로서 용매의 기능과 유사한 역할을 하지만 분자량이 크고 휘발성이 없다. 또한, 석유화학제품에 용해되어 있는 경우, 다른 화합물과의 중첩효과(matrix effect)에 의해 가소제만을 분리하여 정성 및 정량분석하기에 어려움이 있다. 본 연구에서는 석유화학제품에서 검출될 수 있는 가소제의 대표적 성분인 DOA와 DOP에 대해 MD-GC/MS를 활용하여 정성 및 정량분석을 실시하여 최적의 가소제 분석 방법을 개발하고자 하였다.