• 제목/요약/키워드: Molecular size distribution

검색결과 206건 처리시간 0.027초

NOM의 오존처리에 따른 분자크기분포변화가 활성탄 흡착에 미치는 영향 (Molecular size distribution of NOM after ozonation and its effect on adsorption with activated carbon)

  • 이형직;홍성호
    • 상하수도학회지
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    • 제27권6호
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    • pp.805-813
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    • 2013
  • In this study, molecular size distribution of natural organic matter (NOM) after ozonation was measured and its effect on adsorption capacity of activated carbon was investigated. According to the results, the molecular size of NOM was limitedly changed. Specifically, the molecular size of NOM between 5,000 to 10,000 Da were slightly decreased with increasing ozone doses. The adsorption capacity after ozonation was evaluated using Freundlich isotherm with ideal adsorbed solution theory (IAST) which simulated the multi components adsorption. Further, mini-column test was conducted. The Freundlich constant, K was reduced after ozonation and the non-adsorbable fraction was increased with ozonation. However, no correlation between K and ozone doses was found. The present study also agreed with the correlation between adsorption capacity and pore size characteristics of activated carbon.

결절법을 이용한 전영역에서의 연기입자 응집체에 대한 브라운응집현상 해석 (Simulation of the Brownian Coagulation of Smoke Agglomerates in the Entire Size Regime using a Nodal Method)

  • 구재학
    • 한국대기환경학회지
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    • 제27권6호
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    • pp.681-691
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    • 2011
  • The size distributions of smoke particles from fire are prerequisite for the studies on fire detection and adverse health effects. Above the flame of the fire, coagulation dominates and the smoke particles grow from 1 to 50 nm up to 100 to 3,000 nm, sizes ranging from the free-molecular regime to the continuum regime. The characteristics of the agglomeration of the smoke particles are well known, independently for each of the free-molecular and continuum regimes. However, there are not many systematic studies in the entire regime by the complexity of the mechanisms. The purpose of this work is to find the characteristics of the development of the size distribution of smoke particles by agglomeration in the entire size range covering the free-molecular regime, via transition regime, to the near-continuum and continuum regime for each variation of parameters such as fractal dimension, primary particle size and dimensionless coagulation time. In this work, the dynamic equation for the discrete-size spectrum of the particles was solved using a nodal method based on the modification of a sectional method. In the calculation, the collision frequency function for the entire regime, which is derived by using the concept of collision volume and general enhancement function, was applied. The self-preserving size distribution for the entire regime is compared with the ones for the free-molecular or continuum regimes for each variation of the parameters.

오존/GAC 공정에서의 부식산 분해 특성 (Degradation of Humic Acid in Ozone/GAC Process)

  • 이동석
    • 산업기술연구
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    • 제28권B호
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    • pp.47-52
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    • 2008
  • In this study, GAC adsorption, ozonation and $O_3/GAC$ hybrid processes were investigated for treatment of humic acid. The degradation characteristics and efficiencies of humic acid in each process were evaluated through pH variation, $UV_{254}$ decrease, DOC removal, change of molecular size distribution and by-products formation. DOC removal rate in $O_3/GAC$ hybrid process (80%) was higher than arithmetic sum of ozonation (38%) and GAC adsorption process (19%) by synergism. $UV_{254}$ decrease rate of humic acid was also the highest than any other processes when treated in $O_3/GAC$ hybrid process. Molecular size distribution was not significantly changed in the GAC adsorption process. Main distribution of molecular size of humic acid was converted from 3 k~30 kDa into 0.5 k~3 kDa in ozonation. But the most of large molecular sizes of humic acid converted into small molecules(smaller than 0.5 kDa) in $O_3/GAC$ hybrid process. Quantities of formaldehyde and glyoxal formed in $O_3/GAC$ hybrid process were less than the ones in ozonation.

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초음파에너지가 도입된 유화중합공정에서 Polystyrene Latex의 분산도 및 입자분포 특성 (Polydispersity and Particle Size Distribution of Polystyrene Latex Prepared by Ultrasound Induced Emulsion Polymerization)

  • 김원일;홍인권
    • Elastomers and Composites
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    • 제33권2호
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    • pp.110-116
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    • 1998
  • A new technology was introduced to the emulsion polymerization. It is the ultrasonic activation method which replaced a chemical initiator and the environmentally benign process. In this study, free radicals were produced by a pulse type ultrasound energy irradiation, then polystyrene latex was polymerized without chemical initiator. With ultrasonic energy density, the degree of polymerization, average molecular weight, and particle size were increased, but the polydispersity index for the molecular weight and the particle size were decreased. The optimum condition of emulsifier concentration and temperature was found to be 1.0 wt.% SDS and $40^{\circ}C$, respectively. As a result, the emulsion polymerization process without chemical initiator was proved to be comparable to common latex properties such as average molecular weight, molecular weight distribution, particle size, etc.

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Cellulase의 분자량과 섬유소의 표면공극 상이성이 여수도 및 종이의 강도적 특성에 미치는 영향 (The efect of freeness and paper physical properties treated with high and low molecular weight cellulase in the different surface pore sized fibers)

  • 김병현;신종순;강영립;어영호
    • 한국인쇄학회지
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    • 제18권1호
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    • pp.141-155
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    • 2000
  • To examine how the difference of molecular weight distribution of cellulase influenced the beating process according to surface pore size of the fiber, high molecular weight enzyme and low one were applied to soft wood pulp, hard wood pulp, cotton linter pulp. Some enzymes with the distribution of low molecular weight penetrated into cellulose in the proportion of surface pore size and the results were negative as like : the low viscosity, decrease of refining Yield, decrease of fine fibers content and so on. But in cotton linter pulp in the small surface area, the fiber softness was increased and it had a positive result that the paper intensity was high. Other enzymes with the distribution of high molecular weight had an enzyme reaction on the most surfaces of cellulose. They were effective in eliminating the fuzz of hydrophile fine fibers and the freeness was increased.

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공동캡슐화를 이용한 키토산 분해반응에서 alginate 막의 특성 및 크기에 따른 올리고당의 분자량 내외 분포

  • 이기선;최명락;송상호;임현수
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 추계학술발표대회 및 bio-venture fair
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    • pp.608-611
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    • 2000
  • To separate chitosanoligosaccharides easily by size exclusion, an coencapsulating technology of substrate and enzyme was developed. Chitosan and chitosanase were enveloped in this membrane and the product released to medium by size exclusion. The lower limit of the alginate concentration and the agitation speed were 0.5% and 40 rpm, respectively. Membrane thickness and capsules diameter were $10{\mu}m$ and approx. 3.0mm, 1.5mm, respectively. The molecular weight difference by concentration and cps of alginate were of little significance. And also, the molecular weight of distribution according to enzyme concentration was low concentration of enzyme produced high molecular weight of oligosaccharides. At 1.5mm size of capsule, product diffusion rate to outer part was higher than other capsules. The molecular weight distribution of the released oligosaccharides ranged from 1000 to 6000 Da.

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기존수처리 공정 및 고도정수처리 공정에서 NOM의 분자크기 분포 변화 (Molecular Size Distributions of NOM in Conventional and Advanced Water Treatment Processes)

  • 최일환;정유진
    • 한국물환경학회지
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    • 제24권6호
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    • pp.682-689
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    • 2008
  • The purpose of this study was to find out the variation between molecular size distribution (MSD) of natural organic matter (NOM) in raw waters after different water treatment processes like conventional process (coagulation, flocculation, filtration) followed by advanced oxidation process (ozonation, GAC adsorption). The MSD of NOM of Suji pilot plant were determined by Liquid Chromatography-Organic Carbon Detection (LC-OCD) which is a kine of high-performance size-exclusion chromatography (HPSEC) with nondispersive infrared (NDIR) detector and $UV_{254}$ detector. Five distinct fractions were generally separated from water samples with the Toyopearl HW-50S column, using 28 mmol phosphate buffer at pH 6.58 as an eluent. Large and intermediate humic fractions were the most dominant fractions in surface water. High molecular weight (HMW) matter was clearly easier to remove in coagulation and clarification than low molecular weight (LMW) matter. Water treatment processes removed the two largest fractions almost completely shifting the MSD towards smaller molecular size in DW. No more distinct variation of MSD was observed by ozone process after sand filtration but the SUVA value were obviously reduced during increase of the ozone doses. UVD results and HS-Diagram demonstrate that ozone induce not the variation of molecular size of humic substance but change the bond structure from aromatic rings or double bonds to single bond. Granular activated carbon (GAC) filtration removed 8~9% of organic compounds and showed better adsorption property for small MSD than large one.

현탁중합의 계면안정에 따른 폴리스티렌 입자 제조 (Preparation of Polystyrene particles based on interfacial stability of suspension polymerization)

  • 이진호;이상남;박문수;김은경;문명준
    • 한국인쇄학회지
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    • 제20권1호
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    • pp.65-78
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    • 2002
  • The suspension polymerization of styrene was carried out to obtain the narrow-size distribution of particle by using poly(vinyl alcohol) (PVA) as suspension stabilizer according to the degree of hydrolysis and the molecular weight. The stabilizing properties of suspension are also dependent on the interfacial tension of aqueous solution when PVA is added. When the polymerization process was carried out with low hydrolyzed PVA, it gave single, well-defined particles, while high hydrolyzed PVA gave clusters. The size of particle produced in this study ranged between 5${\mu}{\textrm}{m}$ and 10${\mu}{\textrm}{m}$. The suspending agent, PVA, influences on the drop size and drop stability, When the molecular weight of PVA is increased, the drop size decreases and the drops become more stable toward coalescence. An increase in the PVA concentration decreases the mean drop size and narrows the drop size distribution.

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다시마 (Laminaria japonica) 알긴산의 분자량 분포에 미치는 가수분해 pH의 영향 (Effects of Hydrolysis pH on Distribution of Molecular Weights of Alginates of Sea Tangle Laminaria japonica)

  • 임영선;유병진
    • 한국수산과학회지
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    • 제39권4호
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    • pp.313-317
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    • 2006
  • To prepare oligouronic acids from high-molecular-weight alginates, sea tangle (Laminaria japonica) alginates were hydrolyzed at various pHs for 1 hr at 80$^{\circ}C$. The effects of hydrolysis pH (HpH) on the average molecular weight (AMW) and MW distribution ratios (DRs) in the hydrolyzed alginates were investigated. As HpH decreased, the DRs of the alginates with MW>500 kDa and MW=300-500 kDa decreased exponentially, while it increased exponentially for MW<50 kDa. For MW=100-300 kDa, DR increased exponentially as HpH fell from 5.0 to 3.5, and then decreased exponentially. Similarly, for MW=50-100 kDa, DR increased exponentially as HpH increased to 1.0 from 5.0, and then decreased exponentially. As HpH decreased, the MW cutoff size and AMW of alginates fraction with the highest DR were decreased. For HpH 4.5 and 5.0, the MW cutoff size with the highest DRs was MW=300-500 kDa; the DRs were 28.9 and 32.6%, respectively; and the AMW of both was about 400 kDa, for HpH 3.5 and 4.0, the cutoff size was MW=100-300 kDa; the DRs were about 28%: and the AMWs were both about 200 kDa. For HpH 3.0, the cutoff size was MW=50-100; the DR was 29.0%; and the AMW was 73 kDa. For HpH values below 2.0, the MW cutoff size with the highest DRs was MW<50 kDa, and all of the AMWs were below 28 kDa.

공동캡슐화를 이용한 Capsule 내외부의 분자량 분포 (Molecular Weight Distribution Inside and Outside Capsules Using Coencapsulating Technology)

  • 이기선;임현수
    • KSBB Journal
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    • 제16권4호
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    • pp.321-326
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    • 2001
  • 막의 특성을 이용하여 기질과 효소가 공존하는 캡슐을 제조하여 이 캡슐의 장점인 membrane의 pore size를 조절하면 올리고당을 분자량별로 유출시키는 것이 가능해짐으로 기질과 효소의 유출을 조절하여 생리활성이 높은 올리거당을 얻고, 생산된 올리고당의 단순한 분리.정제를 위하여, 그리고 효소의 재 이용 측면에서 encapsulation technology를 이용하여 올리고당을 생산하는 연구를 하였다. 제조된 capsule의 막 두께와 직경은 Olympus IX50 microscope를 이용하여 측정한 결과 막의 두께는 10 $\mu$m이었으며, capsule의 크기는 대략 3.0mm, $N_2$ gas를 이용할 capsule은 대fir 1.5 mm였다. 본 실험에 사용된 기질의 용액, 효소액, 반응액, alginate 용액을 pH 5.0으로 제조하여 사용하였기 때문에 막이 보다 견고하게 형성 할 수 있었으며, 제조된 capsule를 반응 용액 즉 2% acetic acid의 pH를 CaCO$_3$로 조절한 용액에 넣었기 때문에 막이 단단하게 형성되고 유지되는 것으로 판단된다. 기질의 사용에 있어서 작은 분자량을 갖는 기질은 효소와 분해 반응에 있어서 가수분해가 빨리 일어나기 때문에 보통 capsule 밖으로 유출된 올리고당의 분자량은 평균 M.W. 1,000이었다. 그러나 분자량이 큰 기질을 사용하였을 경우 평균 M.W. 1,000-3,500이었다. 막을 이루는 alginate의 점도에 의한 차이는 없었으며, 교반 속도에 의한 기질과 효소의 유출, 그리고 분해 반응에 따른 가수분해 산물인 올리고당의 유출에 있어 alginate 농도 0.5%, 교반 속도는 40 rpm이 가장 적당하였다. (12). Capsule에서 분해 반응 후 분해 산물인 올리고당의 이동을 빨리 하기 위하여 작은 size의 capsule를 제조하여 실험한 결과 3.0 mm보다 capsule 내부의 분자량 변화가 더 빨랐으며, capsule 밖으로 유출된 올리고당의 분자량 분석 결과 M.W. 3000-6000의 올리고당이 생성되었다. 반응 시간에 따른 capsule 내부의 잔류 효소 활성을 조사한 결과, 반응 8시간째에도 약 80% 이상의 효소활성을 나타내었다. Batch-type과 비교하여 capsule의 경우에는 반응이 끝난 후 capsule를 회수하여 효소를 재 사용할 수 있을 것으로 사료된다.

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