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      • 차량 유비쿼터스 시스템(CUbiS) 개발

        지상우(Sang-Woo Ji),윤헌중(Hun-Joong Youn),배현철(Hyun-Cheol Bae) 한국자동차공학회 2012 한국자동차공학회 부문종합 학술대회 Vol.2012 No.5

        Hyundai Motor Company & Kia Motors developed vehicle communication system with a CAN network controller and a Bluetooth technology for Location Based Service(LBS). This paper presents vehicle management for the real time vehicle diagnosis, driving information, eco-driving, consumption parts via CAN and Bluetooth communication. To ensure the stability of LBS. CUbiS supports internet connected service to drivers for free of charge. CUbiS also integrates vehicle information and supports driver’s vehicle maintenance with Vehicle Relation Management(VRM) service. CUbiS delivers data communication with a secure algorithm in Bluetooth. As a result, we successfully verified the stability of QoS in LBS.

      • KCI등재

        산성광산배수로 오염된 지하수 정화용 투수성 반응벽체 반응매질 선정 기초실험

        지상우(Sang Woo Ji),정영욱(Young Wook Cheong) 대한자원환경지질학회 2005 자원환경지질 Vol.38 No.3

        The batch tests were performed to evaluate the applicability of the permeable reactive barrier (PRB) to in-situ treatment of groundwater with high concentration of heavy metals. The leachates used in this study were collected from waste rock dump of the Imgy mine, and have a low pH and high metal concentration. The acidity loading was 65 kg as CaCO 3 /day, metal loading of Fe+Al+Mn was 11.6 kg/day. This type of water could be treated with biological-mediated sulfate reduction using the organic carbon mixture as a reactive media. The batch tests were carried out with five mixtures that were composed with different mixing ratios of mushroom compost, pine-tree bark, and limestone cheep. Results indicated that the PRB could reduce the acidity loading CaCO 3 /day to 12.3 kg and reduce the metal loading to 3.3 kg/day. Considering about the low pH and high metal loading, the contaminated water may be ameliorated by passing it through the buffering PRB composed with inorganic carbonate materials and then through the PRB composed with the organic carbon mixture which can induce sulfate reduction. 중금속으로 오염된 산성 지하수의 현장 정화방법으로 투수성반응벽체 기술의 적용 가능성을 평가하기 위하여 반응 매질 선정을 위한 실내실험을 수행하였다. 처리대상 오염지하수로 이용한 임기광산 폐석적치장 침출수는 낮은 pH와 높은 금속농도를 갖는다(산도부하량으로 65 kg CaCO 3 /일, 금속부하량(Fe+Al+Mn)으로 11.6 kg/일). 이러한 특성의 오염지하수는 반응매질로 유기탄소 혼합물을 이용하여 황산염환원 반응에 의한 처리가 가능할 것으로 판단된다. 다섯 가지 서로 다른 배합비를 갖는 버섯퇴비, 소나무 바크, 석회석의 혼합 반응매질을 이용한 배치실험 결과를 통해 보면 투수성반응벽체를 적용할 경우 산도부하량은 12.3 kg CaCO 3 /일, 금속부하량은 3.3 kg/일로 줄일 수 있다. 대상 지하 수의 낮은 pH와 높은 금속부하량을 고려하여 무기탄소를 위주로 한 완충용 반응벽체를 먼저 두고, 이어서 유기탄소 혼합물로 구성되는 반응벽체로 황산염 환원을 유도하는 방법 적용한다면 보다 효과적인 광산배수에 대한 정화를 기대할 수 있을 것이다.

      • KCI등재
      • KCI등재

        대황과 실리마린의 병용투여의 간섬유화 보호 효과

        정일하,지상우,노성수,Il-ha Jeong,Sang-woo Ji,Seong-soo Roh 대한한방내과학회 2023 大韓韓方內科學會誌 Vol.44 No.3

        Objective: Liver fibrosis is a highly conserved wound-healing response and the final common pathway of chronic inflammatory injury. This study aimed to evaluate the potential anti-fibrotic effect of the combination of Rhei Radix et Rhizoma water extract (RW) and silymarin in a thioacetamide (TAA)-induced liver fibrosis model. Methods: The liver fibrosis mouse model was established through the intraperitoneal injection of TAA (1 week 100 mg/kg, 2-3 weeks 200 mg/kg, 4-8 weeks 400 mg/kg) three times per week for eight weeks. Animal experiments were conducted in five groups; Normal, Control (TAA-induced liver fibrosis mice), Sily (silymarin 50 mg/kg), RSL (RW 50 mg/kg+silymarin 50 mg/kg), and RSH (RW 100 mg/kg+silymarin 50 mg/kg). Biochemical analyses were measured in serum, including aspartate aminotransferase (AST), alanine aminotransferase (ALT), malondialdehyde (MDA), and ammonia levels. Liver inflammatory cytokines and fibrous biomarkers were measured by Western blot analysis, and liver histopathology was evaluated through tissue staining. Results: A significant decrease in the liver function markers AST and ALT and a reduction in ammonia and total bilirubin were observed in the group treated with RSL and RSH. Measurement of reactive oxygen species and MDA revealed a significant decrease in the RSL and RSH administration group compared to the TAA induction group. The expression of extracellular matrix-related proteins, such as transforming growth factor β1, α-smooth muscle actin, and collagen type I alpha 1, was likewise significantly decreased. All drug-administered groups had increased matrix metalloproteinase-9 but a decreasing tissue inhibitor of matrix metalloproteinase-1. RSL and RSH exerted a significant upregulation of NADPH oxidase 2, p22<sup>phox</sup>, and p47<sup>phox</sup>, which are oxidative stress-related factors. Furthermore, pro-inflammatory proteins such as cyclooxygenase 2 and interleukin-1β were markedly suppressed through the inhibition of nuclear factor kappa B activation. Conclusions: The administration of RW and silymarin suppressed the NADPH oxidase factor protein level and showed a tendency to reduce inflammation-related enzymes. These results suggest that the combined administration of RW and silymarin improves acute liver injury induced by TAA.

      • KCI등재

        호주의 석탄재 재활용 사례와 석탄재 재활용과 관련된 환경 문제

        박진희,지상우,신희영,조환주,안지환,Park, Jin Hee,Ji, Sang-Woo,Shin, Hee-Young,Jo, Hwanju,Ahn, Ji-Whan 한국자원리싸이클링학회 2019 資源 리싸이클링 Vol.28 No.4

        Coal combustion products are generated during coal combustion and can be grouped into fly ash and bottom ash depending on collection methods. Fly ash and bottom ash can be recycled for various purposes based on their characteristics. Australia is the fourth largest coal production country in the world and reuses coal ash as cement, concrete, mine filler, and agricultural soil amendment. When fly ash is used as a supplement for cement and concrete, strength of the cement and the durability of the concrete can be improved. Use of coal combustion product for mine backfill stabilizes underground mine voids and stores a large amount of coal ash in the voids. Because of alkalinity of coal combustion products, it can neutralize acid mine drainage when used for mine backfill. In addition, it can be used as an agricultural soil amendment to improve acidity and physical properties of the soil and to supply plant nutrients. Recycling of fly ash in Australia will be further expanded because of its low trace element contents that can be toxic to plants and low radioactive element contents existing within soil background concentrations. The characteristics of coal combustion products are related to the characteristics of the coal used for combustion, and since Korea imports coal from Australia, Korean coal combustion products also can be recycled for various purposes.

      • KCI등재

        폐 콘크리트 재생순환자원 부산물 슬러지의 활용 기초연구

        신희영,지상우,우정연,안기오,안상호,Shin, Hee-young,Ji, Sangwoo,Woo, Jeong-youn,Ahn, Gi-oh,An, Sang-ho 한국자원리싸이클링학회 2016 資源 리싸이클링 Vol.25 No.3

        폐콘크리트의 순환자원화 과정에서 발생되는 슬러지의 활용 방안을 찾기 위하여, 기본특성 분석과 고알칼리 상등수의 pH 중화실험을 수행하였다. 슬러지의 평균입도(d50)는 $42.4{\mu}m$이며, -$45{\mu}m$ (-325 mesh) 크기의 미립자가 전체 슬러지 질량의 60% 이상을 차지한다. 미립자의 주요광물은 백운모와 탄산염광물이었으며, 미립으로 갈수록 탄산염 광물의 비율이 늘어났다. 또한 미립으로 갈수록 중금속의 함량이 증가했는데, 토양오염 우려기준의 2지역 기준값 보다는 낮았다. 고액분리를 위한 응집제의 사용은 기존 공정에서 과량의 응집제를 사용하고 있어서 별다른 효과를 관찰할 수 없었다. 슬러지 pH (약 12)가 높기 때문에 산 첨가에 의한 중화효과가 미미하였지만, 슬러지가 포함하고 있는 높은 농도의 Ca이온으로 인해 $CO_2$ 가스를 주입하는 방법으로 8.5 미만으로 중화가 가능하였다. 또한 침전물에 대한 XRD 분석 결과는 고순도의 $CaCO_3$로 회수될 수 있음을 보여주었다. The characteristics analysis and pH neutralization test were carried out to use of slurry generated from recycling processes of construction wastes. D (5.0) of raw sludge was $42.4{\mu}m$ and over 60 % of sludge distribute under 45 um (-325 mesh). Muscovite and carbonate minerals were main minerals of fine particles, and the portion of carbonate minerals increased as particle size decreased. Although the more heavy metals were observed in the finer particle size, the contents was found to be less than Korean contaminated soil regulation (area 2). The effects of flocculants addition for accelerating solid-liquid separation were negligible because the slurry already contains excess of coagulant added in the waste concrete recycling process. It was difficult to neutralize the sludge supernatant due to high pH (about 12) by adding acids, but the introduction of $CO_2$ decreased the pH to 8.5, The precipitate recovered during $CO_2$ introduction was determined to be $CaCO_3$ with XRD, and it indicates that high pure $CaCO_3$ could be obtained during the process.

      • KCI등재

        광산배수 자연정화시설 내 버섯퇴비의 중금속 흡착능력 평가

        용보영,조동완,정진웅,임길재,지상우,안주성,송호철,Yong, Bo-Young,Cho, Dong-Wan,Jeong, Jin-Woong,Lim, Gil-Jae,Ji, Sang-Woo,Ahn, Joo-Sung,Song, Ho-Cheol 대한자원환경지질학회 2010 자원환경지질 Vol.43 No.1

        휴 폐 광산으로부터 유출되는 산성광산배수는 낮은 pH와 다량의 중금속 이온을 포함하고 있어 지하수·하천 오염 및 주변 환경 파괴의 원인이 되고 있다. 본 연구는 자연정화시설에서 기질물질의 흡착 특성 평가에 중점을 두었다. 이를 위해 버섯퇴비에 의해 광미로부터 용출된 중금속이 흡착 처리 되는 과정에서 황산염환원균의 영향을 파악하였고, $Cd^{2+}$, $Cu^{2+}$, $Pb^{2+}$, $Zn^{2+}$을 포함한 인공 광산배수와 버섯퇴비를 반응시켜 중금속 흡착 처리 효율 평가 및 등온흡착곡선에 관해 고찰하였다. 연구 결과 광미에서 용출된 Mn은 미생물 혹은 흡착에 의한 안정화가 이루어지지 않은 것으로 나타났으며. Zn의 경우 황산염환원균에 의한 제거 기작이 중요한 역할을 하고 있음을 보여주었다. Fe는 미생물을 제거한 경우보다 미생물이 존재할 경우 다량의 Fe가 용출되었으며 이는 철환원박테리아가 $Fe^{3+}$를 소모함에 따라 Fe를 포함한 광물이 용해되어 용출되었기 때문이라고 추측된다. 버섯퇴비 투여 시 산화환원전위 (Oxidation Reduction Potential) 와 pH 측정을 통해 환원 환경 및 중성 환경이 조성됨을 확인 할 수 있었다. 인공 광산배수를 사용한 흡착실험결과 pH 6 조건에서 버섯퇴비의 중금속 흡착 효율이 90% 이상으로 매우 높게 나타났으며, pH 3 조건에서는 보다 낮은 흡착 효율을 보였다. Acid mine drainage (AMD) from abandoned mine sites typically has low pH and contains high level of various heavy metals, aggravating ground- and surface water qualities and neighboring environments. This study investigated removal of heavy metals in a biological treatment system, mainly focusing on the removal by adsorption on a substrate material. Bench-scale batch experiments were performed with a mushroom compost to evaluate the adsorption characteristics of heavy metals leached out from a mine tailing sample and the role of SRB in the overall removal process. In addition, adsorption experiments were perform using an artificial AMD sample containing $Cd^{2+}$, $Cu^{2+}$, $Pb^{2+}$ and $Zn^{2+}$ to assess adsorption capacity of the mushroom compost. The results indicated Mn leached out from mine tailing was not subject to microbial stabilization or adsorption onto mushroom compost while microbially mediated stabilization played an important role in the removal of Zn. Fe leaching significantly increased in the presence of microbes as compared to autoclaved samples, and this was attributed to dissolution of Fe minerals in the mine tailing in a response to the depletion of $Fe^{3+}$ by iron reduction bacteria. Measurement of oxidation reduction potential (ORP) and pH indicated the reactive mixture maintained reducing condition and moderate pH during the reaction. The results of the adsorption experiments involving artificial AMD sample indicated adsorption removal efficiency was greater than 90% at pH 6 condition, but it decreased at pH 3 condition.

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