• Title/Summary/Keyword: Membrane Separation

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Nano-Structure Control of SiC Hollow Fiber Prepared from Polycarbosilane (폴리카보실란으로부터 제조된 탄화규소 중공사의 미세구조제어)

  • Shin, Dong-Geun;Kong, Eun-Bae;Cho, Kwang-Youn;Kwon, Woo-Tek;Kim, Younghee;Kim, Soo-Ryong;Hong, Jun-Sung;Riu, Doh-Hyung
    • Journal of the Korean Ceramic Society
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    • 제50권4호
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    • pp.301-307
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    • 2013
  • SiC hollow fiber was fabricated by curing, dissolution and sintering of Al-PCS fiber, which was melt spun the polyaluminocarbosilane. Al-PCS fiber was thermally oxidized and dissolved in toluene to remove the unoxidized area, the core of the cured fiber. The wall thickness ($t_{wall}$) of Al-PCS fiber was monotonically increased with an increasing oxidation curing time. The Al-PCS hollow fiber was heat-treated at the temperature between 1200 and $2000^{\circ}C$ to make a SiC hollow fibers having porous structure on the fiber wall. The pore size of the fiber wall was increased with the sintering temperature due to the decomposition of the amorphous $SiC_xO_y$ matrix and the growth of ${\beta}$-SiC in the matrix. At $1400^{\circ}C$, a nano porous wall with a high specific surface area was obtained. However, nano pores grew with the grain growth after the thermal decomposition of the amorphous matrix. This type of SiC hollow fibers are expected to be used as a substrate for a gas separation membrane.

Development and Application of Convergence Process with Solid-Liquid Separation and Membrane for Wastewater Treatment and Reuse (초고속 고액분리 시스템과 분리막을 이용한 농업용수 재이용 수처리시스템 개발 및 현장적용)

  • Choi, Sunhwa;Kim, Haedo;Jang, Kyusang
    • Proceedings of the Korea Water Resources Association Conference
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    • 한국수자원학회 2016년도 학술발표회
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    • pp.591-591
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    • 2016
  • 최근에는 재이용을 위한 하 폐수의 처리 공정에 막을 이용한 기술적용이 증가되고 있는 추세이다(현 등, 2005). 막(membrane)을 이용한 수처리 공정은 원수에 상관없이 고도처리가 가능하며, 재이용수 이용 용도에 따른 수질제어가 가능할 뿐만 아니라 운용의 편리성 때문에 많은 각광을 받고 있다(박 등, 2004). 본 연구에서는 하수처리에 이용되는 분리막의 성능을 극대화하고, 분리막의 오염부하를 줄여주기 위하여 분리막 직전 전처리 시설로 부상방식의 고액분리장치를 개발하였다. 초고속 고액분리시스템은 기존의 응집부상공정을 응용한 기술로서 유기물의 응집시간을 최대 10초~2분 이내로 줄이는 기술을 바탕으로 타워형 모듈 형태로 개발하였다. 초고속 고액분리시스템과 분리막을 연계한 재이용수 수처리시스템의 성능 평가 및 현장적용을 위해 제주도 서부 하수 처리장에 일 $3,000m^3$ 규모의 Test-bed를 구축하였다. 구축된 하수재이용시스템의 처리 공정도는 "유입${\rightarrow}$고액분리시스템${\rightarrow}$분리막(UF, RO)${\rightarrow}$농경지 공급"으로 구성되어 있다. 먼저 하수처리장 방류수를 1차 유입조에 압송하면 전처리시설인 고액분리시스템을 통해 SS 등 입자성 물질이 처리되고, 다음 공정인 2차 처리공정(UF/RO)을 통과한 처리수는 인근지역의 농업용수로 공급되고 있다. 고액분리시스템은 ZT(Zeta Potential Tower) 모듈에서 유입수에 함유되어 있는 부유물질(SS), 유기물(질소, 인)을 응집제와 순간 반응시켜 응결, 응집, 부상방식으로 제거하는 공정이다. 고속 고액분리장치는 분리막 공정과 융 복합하여 다양한 유입수 성상에 따른 수처리를 가능하게 하여 재이용수 수질 향상뿐만 아니라 안정된 수자원 확보 측면에서 긍정적인 기술로 평가되었다.

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The Status of Production and Processing of Fruits and New Processing Technology (과실류의 생산 및 가공현황과 신가공기술)

  • 윤광섭;김순동
    • Food Science and Preservation
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    • 제6권4호
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    • pp.521-529
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    • 1999
  • The high influx of imported fruits into Korea is threatening to price and quality competition of domestic fruits. This investigation was conducted to raise price and quality competition of domestic fruits and to develop new products. The scale of production and processing, amount of processing and new processing technology were discussed. The area of cultivation land as well as the rate of processing is decreasing annually, an item of processing is limited to several kinds. Accordingly in this study, the status of production and manufacturing of some fruits and the new processing technologies such as high voltage pulsed electric fields, high hydrostatic pressure, ohmic heating, membrane separation and microwave treatment have investigated to fruit processing. Consequently, the minimal processing technology has to take advantage of various agricultural products in the food industry.

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Separation of Heme-iron by Dialysis (투석법에 의한 Heme-iron의 분리)

  • Kang, In-Kyu;In, Man-Jin;Oh, Nam-Soon
    • Applied Biological Chemistry
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    • 제46권2호
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    • pp.130-133
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    • 2003
  • A method for separating heme-iron from hemoglobin (Hgb) hydrolysate by dialysis was developed. Recovery of heme-iron increased with increasing Hgb concentration, whereas rejection of peptide and separation effciency expressed by HP ratio (heme-iron/peptide) did not show significant differences. HP ratio increased with increases in the degree of hydrolysis of Hgb and $KH_2PO_4$ concentrations of dialysis solution. Recovery of heme-iron decreased with increase in the pH of dialysis solution due to wash-out of heme-iron across the dialysis membrane caused by increase in solubility of heme-iron. Rejections of peptide were 74.5 and 87.5% (2 and 5 kDa of cut off size, respectively), whereas recovery of heme-iron decreased from 86.5 (2 kDa) to 63.1% (25 kDa). Amounts of heme-iron and peptide of dried heme-iron product were 21.7 and 77.0%, and HP ratio and production yield were 28.2 and 6.5%, respectively.

Separation of Nanomaterials Using Flow Field-Flow Fractionation (흐름 장-흐름 분획기를 이용한 나노물질의 분리)

  • Kim, Sung-Hee;Lee, Woo-Chun;Kim, Soon-Oh;Na, So-Young;Kim, Hyun-A;Lee, Byung-Tae;Lee, Byoung-Cheun;Eom, Ig-Chun
    • Journal of Korean Society of Environmental Engineers
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    • 제35권11호
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    • pp.835-860
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    • 2013
  • Recently, the consumption of nanomaterials has been significantly increased in both industrial and commercial sectors, as a result of steady advancement in the nano-technologies. This ubiquitous use of nanomaterials has brought up the concern that their exposure to environments may cause detrimental effects on human health as well as natural ecosystems, and it is required to characterize their behavior in various environmental media and to evaluate their ecotoxicity. For the sake of accomplishing those assessments, the development of methods to effectively separate them from diverse media and to quantify their properties should be requisitely accompanied. Among a number of separation techniques developed so far, this study focuses on Field-Flow Fractionation (FFF) because of its strengths, such as relatively less disturbance of samples and simple pretreatment, and we review overseas and domestic literatures on the separation of nanomaterials using the FFF technique. In particular, researches with Flow Field-Flow Fractionation (FlFFF) are highlighted due to its most frequent application among FFF techniques. The basic principle of the FlFFF is briefly introduced and the studies conducted so far are classified and scrutinized based on the sort of target nanomaterials for the purpose of furnishing practical data and information for the researchers struggling in this field. The literature review suggests that the operational conditions, such as pretreatment, selection of membrane and carrier solution, and rate (velocity) of each flow, should be optimized in order to effectively separate them from various matrices using the FFF technique. Moreover, it seems to be a prerequisite to couple or hyphenate with several detectors and analyzers for quantification of their properties after their separation using the FFF. However, its application has been restricted regarding the types of target nanomaterials and environmental media. Furthermore, domestic literature data on both separation and characterization of nanomaterials are extremely limited. Taking into account the overwhelmingly increasing consumption of nanomaterials, the efforts for the area seem to be greatly urgent.

Gas Separation Membranes Containing $Re_6Se_8(MeCN)_6^{2+}$ Cluster-Supported Cobalt-Porphyrin Complexes

  • Park Su Mi;Won Jongok;Lee Myung-Jin;Kang Yong Soo;Kim Se-Hye;Kim Youngmee;Kim Sung-Jin
    • Macromolecular Research
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    • 제12권6호
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    • pp.598-603
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    • 2004
  • Cellulose nitrate (CN) composite membranes, containing cobalt porphyrin (CoP) complexes self-assembled within nanometer-sized rhenium clusters (ReCoP), have been prepared and their oxygen and nitrogen gas perme­abilities were analyzed. The solubility of ReCoP and the characteristics of the corresponding composite membranes were analyzed using a Cahn microbalance, FT-IR spectroscopy, wide-angle X-ray scattering, and differential scanning calorimetry. The nitrogen permeability through the CN composite membranes decreased upon addition of ReCoP and CoP, which implies that the presence of these oxygen carrier complexes affects the structure of the polymer matrix. The oxygen permeability through the composite membranes containing small quantities of ReCoP decreased, but it increased upon increasing the concentration. The oxygen gas transport was affected by the matrix at low ReCoP concentrations, but higher concentrations of ReCoP increased the oxygen permeability as a result of its reversible and specific interactions with oxygen, effectively realizing ReCoP carrier-mediated oxygen transport.

Fabrication of Fluorinated Polymeric Membranes and Their Noble Gas Separation Properties (불소 표면 개질 고분자 분리막의 제조와 노블가스 분리특성)

  • Kim, Gi-Bum;Yoon, Kuk-Ro
    • Applied Chemistry for Engineering
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    • 제21권4호
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    • pp.475-478
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    • 2010
  • Fluorinated polymeric membranes were prepared by direct surface modification of PDMS with fluorine gas ($50{\sim}2000\;{\mu}mol/mol$ in nitrogen). The formed fluorinated polymeric membranes were characterized by FT-IR spectroscopy, GC (Gas chromatography), atomic force microscopy, and scanning electron microscopy. Direct fluorination resulted in the change of permeability and selectivity of various gases (pure gases such as $CO_2$, $O_2$, $N_2$, $C_2H_4$, mixture of He, Ne, Kr, Xe) through PDMS membranes. Fluorination resulted in the maximum 50% increase of selectivity through PDMS membrane.

Flotation of cyanobacterial particles without chemical coagulant under auto-flocculation

  • Kwak, Dong-Heui;Kim, Tae-Geum;Kim, Mi-Sug
    • Membrane and Water Treatment
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    • 제9권6호
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    • pp.447-454
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    • 2018
  • Although flotation techniques are often used for the removal of algal particles, the practicality of algae-harvesting technologies is limited owing to the complex and expensive facilities and equipment required for chemical coagulation. Here, we examined the feasibility of an approach to separating algal particles from water bodies without the need for chemical coagulants, depending on the condition of the algae, and to determine the optimal conditions. Using Anabaena sp., a cyanobacterium causes algal blooms in lakes, we stimulated auto-flocculation in algal particles without coagulants and conducted solid-liquid separation experiments of algal particles under various conditions. The six cultivation columns included in our analysis comprised four factors: Water temperature, light intensity, nutrients, and carbon source; auto-flocculation was induced under all treatments, with the exception of the treatment involving no limits to all factors, and algal particles were well-settled under all conditions for which auto-flocculation occurred. Meanwhile, flotation removal of auto-flocculated algal particles was attained only when nutrients were blocked after algae were grown in an optimal medium. However, no significant differences were detected between the functional groups of the extracellular polymeric substances (EPSs) of floated and settled algal particles in the FT-IR peak, which can cause attachment by collision with micro-bubbles.

Electrodialysis of metal plating wastewater with neutralization pretreatment: Separation efficiency and organic removal

  • Park, Yong-Min;Choi, Su-Young;Park, Ki-Young;Kweon, Jihyang
    • Membrane and Water Treatment
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    • 제11권3호
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    • pp.179-187
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    • 2020
  • Electrodialysis has been applied for treatment of industrial wastewater including metal electroplating. The wastewater from metal plating industries contains high concentrations of inorganics such as copper, nickel, and sodium. The ions in the feed were separated due to the electrical forces in the electrodialysis. The concentrate compartment is exposed to the elevated concentrations of the ions and yielded inorganic precipitations on the cation exchange membranes. The presence of organic matter in the metal plating wastewater affects complex interfacial reactions, which determines characteristics of inorganic scale fouling. The wastewater from a metal plating industry in practice was collected and the inorganic and organic compositions of the wastewater were analyzed. The performance of electrodialysis of the raw wastewater was evaluated and the effects of adjusting pH of the raw water were also measured. The integrated processes with neutralization and electrodialysis showed great removal of heavy metals sufficient to discharge to aquatic ecosystem. The organic matter in the raw water was also reduced by the neutralization, which might enhance removal performance and alleviate organic fouling in the integrated system.

Fine Structure of Damaged Hair Shaft by Daily Treatment of Heat for a Beautiful Face (미용을 위한 일상적인 열처리에 의해서 손상된 모발의 미세구조)

  • Chang, Byung-Soo
    • Applied Microscopy
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    • 제33권3호
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    • pp.215-222
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    • 2003
  • The ultrastructure of damaged hair shaft from blow-drying at typical temperature $40{\sim}170^{\circ}C$ for daily beautiful face have been investigated by using transmission electron microscope and scanning electron microscope. When we used to hair dryer for a long time in our everyday life, the following morphological alternations were found in hair. First, the partial of scales in outer cuticle were detached simultaneously with separation of intercellular membrane complex of cuticle cells. Then hair broke cuticle off and exposed to cortex. Secondly, the cortical cell in the cortex was fissured into its macrofibril. The melanin granules were scattered between macrofibrils. As a result, I confirmed that blow-drying removed the hair's bonded water and made hard on hair which lost elasticity. After all, hair showed irregular, rough surface and vanished its luster.