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Chlorella sp. KR-1 열분해에 의한 지질 회수 및 열분해 오일 특성 분석
이호세 ( Ho Se Lee ),전상구 ( Sang Geo Jeon ),오유관 ( You Kwan Oh ),김광호 ( Kwang Ho Kim ),정수현 ( Soo Hyun Chung ),나정걸 ( Jeong Geol Na ),여상도 ( Sang Do Yeo ) 한국화학공학회 2012 Korean Chemical Engineering Research(HWAHAK KONGHA Vol.50 No.4
Lipids in microalgal biomass were recovered by using pyrolysis method. The pyrolysis experiments of two Chlorella sp. KR-1 samples, which have triglyceride contents of 10.8% and 36.5%, respectively were carried out at 600 oC to investigate the effects of lipid contents in the cells on the reaction characteristics. The conversion and liquid yield of the lipid-rich sample were higher than those of the lipid-lean sample since its carbon to hydrogen ratio was low. There were low molecular weight organic acids, ketones, aldehydes and alcohols in the liquid products from both KR-1 samples, but the pyrolysis oil of the lipid-rich sample was abundant in free fatty acids, particularly palmitic acid, oleic acid and stearic acid while the content of nitrogen containing organic compounds was low. The microalgal pyrolysis oil had two layers composed of the light hydrophobic fraction and the heavy hydrophilic fraction. The light fraction might be originated from triglycerides and the heavy fraction might be from carbohydrates and proteins. In the light fraction of the liquid products, there were considerable linear alkanes such as pentadecane and heptadecane as well as free fatty acids, implying that deoxygenation reaction including decarboxylation was occurred during the pyrolysis. The yield of the liquid products from the pyrolysis of the KR-1 sample having triglyceride content of 36.5% was 56.9% and the light fraction in the liquid products was 68.2%. Also more than 80% of the light fraction was free fatty acids and pure hydrocarbons, thus showing that most triglycerides could be extracted in the form of suitable raw materials for biofuels.
아두이노를 이용한 위치정보 기반 안전한 자전거 애플리케이션
김동건,이호세,김소영,김태우,이형우,Kim, Dong-Gun,Lee, Ho-Se,Kim, So-Young,Kim, Tae-Woo,Lee, Hyung-Woo 한국사물인터넷학회 2016 한국사물인터넷학회 논문지 Vol.2 No.1
최근 자전거 이용자가 천만 명을 돌파하면서 자전거 라이딩은 일상생활의 요소로 자리 잡고 있다. 하지만, 이용자가 늘어날수록 사고의 위험에 무방비로 노출되면서 보다 안전하게 라이딩을 할 수 있는 예방 대책 수립이 절실하다. 이에 본 논문에서는 GPS 정보를 통하여 획득된 위치정보를 활용하여 사용자에게 주행 상황에 맞는 다양한 서비스를 제공할 수 있는 애플리케이션을 개발하였다. 이를 위해 안드로이드와 아두이노 기반 디바이스간 블루투스 송수신을 통해 자전거 전용 내비게이션 기능을 제공하여 안전성을 향상시킬 수 있었다. 향후 다양한 형태의 아두이노 센서로 확장할 경우 개인 맞춤형 모바일 IoT 서비스로 발전시킬 수 있을 것이라 기대한다. Bicycle users were surpassed a million recently as bicycle riding will be a key element of daily life. As users increase, we can expect that the user is more exposed to the risk of an unexpected accident. Therefore, we need to establish several preventive measures for a safe riding environment. In this paper, we developed mobile application by using the acquired GPS-based location information that provide safety services for the bike riding as a LBS service. In detail, we have been able to provide a bicycle safety navigation service by using the bluetooth transmission and reception method between Android and Arduino-based devices. As a future work, the safety could be improved if we expand various forms of Arduino sensors. As a result, a service developed in this study will be able to converge ahead to connect into several personalized mobile IoT services.