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      • SCOPUSKCI등재

        Geochemical Investigation of Contaminated River Waters (Part Ⅳ) Fluorine Contents of River Water in Seoul

        이용근,황규자,Lee, Yong Keun,Whang Kyu Ja Korean Chemical Society 1972 대한화학회지 Vol.16 No.4

        Geochemical investigation of river waters and reservoirs in Seoul city on fluorine contents were conducted between June in 1969 and February in 1970. Fluorine contents of most river waters and reservoirs in Seoul city were between 0.09 and 0.32 mg/l. It was found that fluorine contents of Han River and rivers running through the outskirt of the city were relatively less than those of the river waters running through the residential areas and the industrial areas. Fluorine contents were less seasonally variable than chlorine ones. Some implications of those results were discussed in detail.

      • SCOPUSKCI등재

        배기가스중 질소산화물의 신속측정법과 그 제거에 관한 연구 (제1보). NO$_x$의 신속 정량법

        이용근,서동오,팽기정,김만구,황규자,Yong Keun Lee,Tong Oh Seo,Kee Jung Paeng,Man Koo Kim,Kyu Ja Whang 대한화학회 1985 대한화학회지 Vol.29 No.1

        본 연구는 대기중의 질소산화물(이하 NO$_x$로 약기)을 신속 정확하게 측정하기 위해 현 방법을 개선한 것으로써, 대기중의 NO$_x$를 0.03${\%}$ 과산화수소(H$_2$O$_2$)를 함유한 0.1N수산화나트륨의 알칼리성 흡수액에 흡수 시킴으로써, 정량이 가능했다. 완전한 흡수를 위해서는 100ppm정도의 NO$_x$인 경우 흡수액과 2분간의 진탕이 필요했으나, 고농도의 NO$_x$ (>200 ppm 이상)인 경우에는 산화제로 공기나 산소기체를 첨가시켜 반응물을 맹렬히 진탕시켜 줌으로써 30분이내에 완전한 산화흡수가 가능했다. 남아있는 여분의 H$_2$O$_2$는 흡광도에 미치는 영향이 매우 크지만 아연분말 0.5g으로서 완전히 분해할 수 있었으며, 시료용액은 질산이온에서 아질산이온으로의 환원이 가능하도록 완충용액으로 액성이 pH 6.1~6.6으로 조정되어야 했다. 흡수된 NO$_x$는 sulfanilamide와 NEDA로서 diazo coupling 반응시켜 비색 정량하였다. 이상의 방법은 몰흡광계수가 크며(4.48 ${\times}$ 10$^4$), 한국공업규격에 채택된 O$_3$산화-아연 환원 NEAD 법보다 훨씬 신속, 간편할 뿐 아니라. 측정값의 재현성이 우수한 배기가스중의 NO$_x$분석법임이 확인되었다. Oxides of nitrogen (NO$_x$) in exhaust gases was determined by absorbing the gas in alkaline peroxide solution containing 0.03${\%}$ H2O2 and 0.1N NaOH. About 100 ppm of NO$_x$ was rapidly oxidized to NO$_2$ or N$_2$O$_5$ by H$_2$O$_2$ and required a contact time of 2 minutes with the absorbing solution for complete absorption. With vigorous shaking including air or oxygen gas, high concentration of NO$_x$ (>200 ppm) can be absorbed within 30 minutes. The remaining H$_2$O$_2$ affect the absorbance of color solution strongly. However, the excess H$_2$O$_2$ was completely decomposed by zinc powder 0.5g and the sample solution should be adjusted to the pH range 6.1∼6.6 before the reduction so that conversion of nitrate to nitrite ion is possible. The absorbed NO$_x$ is determined colorimetrically by the diazotization-coupling method with sulfonilamide and NEDA as the coupling agent. The sensitivity of the new method was 4.48 ${\times}$ 10$^4$ as molar absorptivity which was high sensitive compared with that obtained for the usual zinc reduction NEDA method with O$_3$. This method was far more rapid, brief and accurate than previously published O$_3$-NEDA method in Korean industrial standard.

      • KCI등재

        백서 패혈증 모델에서 HSP70의 과도 발현이 iNOS의 발현에 미치는 효과에 관한 연구

        이용근,안융,임대호,백진아,고승오,신효근,Lee, Yong-Keun,Ahn, Yung,Leem, Dae-Ho,Baek, Jin-A,Ko, Seung-O,Shin, Hyo-Keun 대한구강악안면외과학회 2010 대한구강악안면외과학회지 Vol.36 No.5

        Introduction: Heat shock protein70 (HSP70) is a highly conserved family of proteins produced after a variety of stresses. Many studies reported that the overexpression of HSP70 can improve the prognosis of the patients with sepsis through a reduction of the nitric oxide concentration. However, these results only revealed the effect of HSP70 and nitric oxide. No studies have examined the relationship between HSP70 and nitric oxide. The aim of this study was to evaluate the effect of the overexpression of HSP70 on the expression of inducible nitric oxide synthase and the nitric oxide concentration. In addition, the mechanism of the relationship of HSP70 and inducible nitric oxide synthase (iNOS) in sepsis was examined. Materials and Methods: The experiments were performed on male sprague-dawley rats. Sepsis was induced by a cecal ligation and puncture (CLP). Glutamine (GLN) or saline was administered 1 hour after the initiation of sepsis. Serum and lung tissues were acquired from the rats 12 hours or 24 hours after the initiation of sepsis. The nitric oxide concentration, the expression of HSP70 in lung, and the gene expression of iNOS in lung were analyzed. The three groups, sham operation, CLP and CLP+GLN, were compared. Results: Compared to the other groups, in CLP+GLN, GLN administered after the initiation of sepsis enhanced the expression of HSP70 in the lung at 12 hours ($47.19{\pm}10.04$ vs. $33.22{\pm}8.28$, P=0.025) and 24 hours ($47.06{\pm}10.60$ vs. $31.90{\pm}4.83$, P=0.004). In CLP+GLN, GLN attenuated the expression of iNOS messenger RNA (mRNA) in the lung at 12 hours ($5,513.73{\pm}1,051.60$ vs. $4,167.17{\pm}951.59$, P=0.025) and 24 hours ($18,740.27{\pm}8,241.20$ vs. $9,437.65{\pm}2,521.07$, P=0.016), and reduced the concentration of nitric oxide in the serum at 12 hours ($0.86{\pm}0.48$ vs. $3.82{\pm}2.53$, P=0.016) and 24 hours ($0.39{\pm}0.25$ vs. $1.85{\pm}1.70$, P=0.025). Conclusion: The overexpression of HSP70 induced by the administration of GLN in sepsis attenuates the expression of the iNOS gene but reduces the nitric oxide concentration.

      • SCOPUSKCI등재

        배기가스중 질소산화물의 신속측정법과 그 제거에 관한 연구 (제 2 보). 암모니아에 의한 $NO_x$의제거

        이용근,팽기정,황규자,Yong Keun Lee,Kee Jung Paeng,Kyu Ja Hwang 대한화학회 1986 대한화학회지 Vol.30 No.2

        본 연구는 대기중의 질소산화물($NO_x$)을 효율적으로 제거하기 위하여 기존의 방법을 개선한 것으로서, $NH_3$를 이용한 환원법을 개량하였다. 상대습도 60%에서 50 ppm의 $NO_x$는 1% hr-1의 분해율을 나타낸 반면 5배 이상의 $NH_3$를 첨가함으로써 50 ppm $NO_x$인 경우에는 6% $hr^{-1}$, 20ppm인 경우는 10% $hr^{-1}$의 제거율을 나타내었다. 그러나 실제 배기기체에서는 과량의 수분과 탄화수소나 일산화탄소같은 환원성 기체가 포함되고 미량의 금속이온들이 공존되므로 최고 15% $hr^{-1}$까지 $NO_x$의 제거가 촉진되었다. 또한 SO_2와 같은 산성기체의 공존은 분해율을 감소시켰다. 이 $NO_x$의 분해현상은 주로 계에 가해진 수증기의 응축으로 생긴 수막에 NO_x가 용해되는 동시에 염기성인 $NH_3$기체도 용해되어 이루어진 이들 이온들의 환원반응에 기인된다고 생각된다. A new method was proposed to improve removal of nitrogen oxides $(NO_x)$ in exhaust gas by the reduction method using ammonia. At the relative humidity of 60%, 50 ppm of $NO_x$ was decomposed at the rate of 1% per hour in the reaction chamber. On the other hand, by adding $NH_3$ which was 5 times more concentrated than NOx, the decomposition rate increased to 6% per hour for 50 ppm $NO_x$ and 10% per hour for 20ppm $NO_x$. Within the actual exhausted gases, the decomposition rate of $NO_x$ reached the maximum 15% per hour because of coexisted reducing gases, such as hydrocarbon and carbon monoxide, and excess humidity containing trace metal ions. In the presence of acidic $SO_2$ gas, the decomposition rate of $NO_x$ decreased. The decomposition of $NO_x$ seems to be caused by the mist which is added to the system, and $NH_3$ in the mist which reduces $NO_x$.

      • SCOPUSKCI등재

        環境汚染 重金屬의 選擇的 濃縮 및 簡易分析法 : DPC 겔의 의한 크롬 (VI) 의 定量

        이용근,황규자,우인화,Yong Keun Lee,Kyu Ja Whang,In Hwa Woo 대한화학회 1981 대한화학회지 Vol.25 No.4

        A simple semiquantitative procedure was developed for the determination of sub-ppm level of chromium(VI) in aquatic samples by using an analytical micro-column packed with diphenylcarbazide(DPC) gel beads. DPC gel beads were prepared by swelling XAD-2 resin(115∼150 mesh in dry condition) in ethanol for 10min, packing into a glass column(1.5 mm bore, 65nm length) and adsorbing 1ml of ethanol solution of $2{\times}10^{-3}M$ DPC for 20min at room temperature. When 0.5ml of ethanol solution containing chromium(VI) was passed through the DPC gel column for 40min, the original white color of the reagent gel turned to red-violet from the up-stream of the column. As the length of colored band was proportional to the total amount of chromium(VI) in the sample solution passed through the column, the concentration of chromium(VI) could be determined from the calibration line which had been prepared by using the standard solution. Chromium(VI) ion as small as from 0.1 to 0.8 ppm could be determined with ${\pm}5{\sim}{\pm}15{\%}$ relative errors. Since other interfering cations were few, 100-fold excess of Fe(III), 50-fold excess of Cu(II) could be masked with EDTA. This method was successfully applied to the analysis of chromium(VI) in industrial effluents. 試藥겔 粒子를 채운 마이크로分析컬럼을 사용하여 水溶液중의 ppm레벨 이하의 크롬(VI)이온의 簡易分析法을 開發하였다. 115∼150 mesh의 XAD-2 樹脂를 실온에서 10분동안 에탄올에 膨潤시킨 다음, 유리관(안지름 1.5 mm, 길이 65 mm)에 채워 넣고 $2.0{\times}10^{-3}M$ diphenylcarbazide(DPC)-에탄올용액 1ml를 20분 동안에 흘려 분석컬럼을 만든다. 이 컬럼에 크롬(VI)이온을 포함한 황산산성의 試料水(pH 1) 0.5 ml를 40분 동안에 흘리면 컬럼의 위 끝으로부터 DPC겔의 흰색은 赤紫色으로 변색된다. 着色帶의 길이는 컬럼을 통과한 試料水중의 크롬(VI)濃度에 比例하므로 일정량의 試料水를 흘린 다음, 着色帶의 길이를 측정하여 미리 작성한 檢量線으로부터 크롬(VI)이온의 濃度를 구할 수 있다. 이 법으로 0.1∼0.8 ppm의 크롬(VI)이온을 ${\pm}5{\sim}{\pm}15{\%}$의 相對誤差로 정량할 수 있다. 본법은 妨害이온의 영향이 적기 때문에 가리움劑로 EDTA를 써서 크롬(VI)이온 (0.6 ppm)의 100배량의 철(III)이온과 50배 양의 구리(II)이온을 음폐시킬 수 있으며, 工場廢水중의 크롬(VI)이온의 分析에 應用하여 만족한 결과를 얻었다.

      • SCOPUSKCI등재

        Geochemical Investigation in Contaminated River Waters(Part III) Bromine Contents of River Water in Seoul

        이용근,Lee, Yong-Keun Korean Chemical Society 1970 대한화학회지 Vol.14 No.3

        Halogen contents of the river water of Seoul city and of municipal reservoirs were investigated from June in 1969 to February in 1970. Bromine contents were ranging from 0.006 to 0.048 mg/1 of the reservoirs, 0.021 to 0.048 mg/1 of Han River, 0.051 to 0.540 mg/1 of rivers running through residential areas and 0.083 to 0.920 mg/1 of rivers running through industrial areas. Bromine contents increased as the river water became contaminated. Most of Br/Cl of Han River and the reservoirs were higher than $3.4{\times}10^{-3}$ of sea water. Bromine contents at 17 different places were the largest in November. The contents of chlorine, iodine and COD (chemical oxygen demand) were nearly correlated with that of bromine. Bromine contents of the river waters in Seoul chiefly originated from consumption of domestic and industrial salt.

      • SCOPUSKCI등재

        汚濁河川水의 地球化學的인 硏究 (第 II 報) 서울市內 河川水 및 工場排水의 化學的 酸素要求量

        이용근,Lee, Yong-Keun 대한화학회 1970 대한화학회지 Vol.14 No.1

        River water and industrial waste water in Seoul were studied by means of chemical oxygen demand(COD) as an indicator for water pollution, from August 1967 to July 1968. Rivers flowing through residential and industrial areas are badly contaminated and COD of water in Han River increases as it progresses to downstream. Seasonal variation of COD showed that higher value of COD was observed in spring and lower in autumn. It is clear that the seasonal variation of COD is influenced by the precipitation. Close relationship was found between COD and population density. The lowest COD curve obtained by plotting COD values against population density and show that the curve slopes upward. The discontinuation of the curve was shown at the population density of 14,000/km$^2$; an increase in COD was acute over the population density of 14,000/km$^2$.

      • KCI등재

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