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이영무,이선용,Lee Young Moo,Lee Sun Yong The Membrane Society of Korea 2004 멤브레인 Vol.14 No.3
Crosslinked PVA membranes were achieved by esterification between the hydroxyl groups of PVA and carboxyl group of sulfosuccinic acid (SSA). SSA containing sulfonic group was used as a chemical crosslinking agent as well as a donor of fixed anionic group ($-SO_3$H). The crosslinking density of membranes was controlled by SSA content and calculated using polar and non-polar solvent. The crosslinking density measured by using non-polar solvent such as xylene and benzene increases with SSA content. However, using the polar solvent such as water and methanol, the crosslinking density increases up to SSA content of 20 wt% and above the content decrease due to sulfonic acid groups. The crosslinked PVA membranes were studied in relation with water diffusion coefficient and mechanical property as well as proton conductivity and methanol permeability as a function of crosslinking density. These properties were all dependent on the effect of SSA content. 본 연구에서는 polyvinylalcohol(PVA)의 hydroxyl 작용기와 sulfosuccinic acid (SSA)의 carboxylic acid 작용기의 반응을 통하여 열가교된 PVA막을 제조하였다. 설폰산기를 함유한 SSA는 PVA 매트릭스에 대한 가교제의 역할뿐만 아니라 수소이온의 전도도를 높이는 역할 모두를 수행하였다. PVA의 가교도(degree of crosslinking)는 SSA의 함량으로 조절하였고 가교밀도(crosslinking density)는 극성 및 비극성 용매를 이용하여 계산하였다. Xylene 및 benzene과 같은 비극성 용매를 사용한 경우 가교밀도는 SSA함량에 따라 증가하였다. 그러나, 물과 methanol과 같은 극성 용매를 사용한 경우 가교밀도는 SSA함량 20%까지 증가하다가 그 이상의 함량에서는 설폰산기의 영향으로 감소하였다. 가교도와 확산계수, 기계적 물성 및 전도도, 메탄올 투과도 등에 대한 PVA막의 특성을 평가하였고 이들 특성은 SSA함량에 의존하였다.
이영무,Lee, Yeong-Mu 한국대학교육협의회 2005 大學敎育 Vol.136 No.-
한국의 고등교육을 담당하고 있는 대학에서 연구중심대학의 필요성은 세계 경제의 급속한 통합과정과 밀접한 관계가 있다. 21세기 지식기반 사회에서 국가경쟁력은 그 국가가 보유한 연구중심대학의 역량에 의해 크게 좌우되기 때문이다.
이영무,Lee, Young-Moo 한국조경학회 2007 韓國造景學會誌 Vol.34 No.6
Unlike conventional roof landscaping, where various kinds of plants and structures are employed, a grass roof is a roof on which herbaceous plants are grown in planting medium and which is not accessed or maintained, mainly because it doesn't have sufficient load capacity to support a regular roof garden. They are mostly built on existing roofs, whether flat slab or gabled. Planting on roofs has numerous advantages, such as creating a biotope, purifying urban air, adding moisture to the atmosphere, storing rain water, preventing flash floods, reducing energy use for heating and air conditioning, enhancing the urban landscape and providing relaxation to the city dwellers, not to mention the alleviation of global warming by absorbing $CO_2$. In addition to the general merits of roof planting, the grass roof has its own unique qualities. Only herbaceous species are planted on the roof, resulting in light weight which allows roofs of existing buildings to be planted without structural reinforcement. The species chosen are mostly short, tough perennials that don't need to be maintained. These conditions provide an ideal situation where massive planting can be done in urban areas where roofs are often the only and definitely the largest space available to be planted. If roofs are planted on a massive scale they can play a significant role in alleviating global warming, heat island effects and energy shortages. Despite the advantages of grass roofs, there are some problems. The most significant problem is the invasion of neighboring plants. They may be brought in with the planting medium, by birds or by wind. These plants have little aesthetic value comparing to the chosen species and are usually taller. Eventually they dominate and prevail over the original species. The intended planting design disappears and the roof comes to look wild. Since the primary value of a grass roof is ecological, a change in attitude towards what constitutes beauty on the roofscape is necessary. Instead of keeping the roof neat through constant maintenance, people must learn that the wild grass with bird's nests on their roof is more beautiful as it is.
이영무,김성수,김선정,성용길,강인규,손태일 ( Young Moo Lee,Seong Soo Kim,Seon Jeong Kim,Yong Kiel Sung,In Kyu Kang,Tae Il Son ) 한국공업화학회 1993 공업화학 Vol.4 No.2
키틴과 프로필렌 옥시드를 반응시켜 히드록시프로필 키틴(HPCH)을 얻었고 할로겐화 유기용매내에서 HPCH의 액정형성능을 관찰하였다. 키틴과 HPCH의 고체 ^(13)C NMR 스펙트럼 분석 결과 히드록시프로필기의 도입을 확인하였다. 원소분석결과 히드록시프로필기의 치환도는 0.8정도였다. WAXD패턴 측정결과 키틴에 히드록시프로필기가 도입됨에 따라 결정성은 감소하였고 유기용매에 대한 용해도는 증가하였다. HPCH를 디클로로아세트산과 1, 2-디클로로에탄 혼합용매에 녹여 편광현미경으로 관찰한 결과 25% 이상의 용액농도에서 클레스테릭 액정상에서 전형적으로 관측되는 지문영역이 나타남을 알 수 있었다. 용액의 점도는 시간변화에 따라 감소함을 알 수 있었다. Hydroxypropyl chitin(HPCH) was prepared from chitin by reacting it with propylene oxide. The formation of liquid crystalline character of HPCH was investigated using halogenated organic solvents. Solid state ^(13)C NMR spectra for chitin and HPCH confirmed the incorporation of hydroxypropyl moiety. The degree of substitution of HPCH was around 0.8 as detected by elemental analysis. WAXD patterns of chitin and HPCH showed that an incorporation of hydroxypropyl unit in chitin contributed to reducing the crystallinity and enhancing the solubility in organic solvents. Polarized light microscopic pictures of concentrated HPCH solution showed that HPCH formed cholesteric liquid crystalline character at about 25w/v% solution in dichloroacetic acid and 1, 2-dichloroethane. Inherent viscosity of HPCH solution in a mixed solvent showed a transient decrease.
$ENVIS^{(R)}$ MEMBRANE SYSTEM (평판형 정밀여과막)의 침지식 수처리 공정 적용에 관한 연구
이영무,장재영,Lee, Young-Moo,Jang, Jae-Young 한국막학회 2005 멤브레인 Vol.15 No.3
본 연구는 하수 및 오폐수 처리를 위해 침지식 수처리 공정 적용을 위한 평판형 MF막인 $ENVIS^{(R)}$을 이용한 MBR SYSTEM 적용에 관한 연구이다. (주)퓨어엔비텍에서 만든 장치를 이용하여 공장의 오수시설($10\;m^3$/일)과 폐수처리장($30\;m^3$/일) 현장에서 실험을 수행한 결과, 공장 오수처리에 있어 제거율은 각각 SS $99.7\%$, BOD $97.6\%$, COD $96.8\%$였으며, 폐수처리에 있어 제거율은 각각 SS $99.6\%$, BOD $95.6\%$, COD $80.3\%$였다. This study is investigated for the applications of MBR SYSTEM using $ENVIS^{(R)}$ which is a submerged flat membrane for treatment of sewage and wast water. The experiment was practiced on the scene of labor that are sewage facilities of factories $(10\;m^3/day)$ and wast water treatment plant $(30\;m^3/day)$ using equipments made by Pure-Envitech Co., LTD. SS, BOD and COD for the result of removal efficiency at the sewage facilities of factories were $99.7\%,\;97.6\%$, and $96.8\%$, rspectively. SS, BOD and COD for the result of removal efficiency at the waste water treatment plant were $99.6\%,\;95.6\%,\;and\;80.3\%$, respectively.