• Title/Summary/Keyword: 여천공단

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A Study on the Characteristics of Waste Heat from the Industrial Complexes for Residential and Commercial Sectors (가정.상업부문 이용을 위한 산업체 폐열특성 연구)

  • 최영찬;박태준;홍재창;조선영
    • Journal of Energy Engineering
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    • v.8 no.2
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    • pp.242-247
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    • 1999
  • The characteristics of waste heat effluents from 11 industrial complexes of 7 areas were analyzed to investigate the possibility of waste heat recovery of huge amount of waste heat producing from various industrial complexes. This study presents a part of the research work for the industrial waste heat for development of energy integrated network system in broad city area, which will utilize industrial waste heat for residential and commercial areas, where they are located at some distances from the complexes. The amount of waste heat from the investigated complexes was detected as 148,913 TOE/year. However, It was analyzed 83% of the waste heat was analyzed the temperature range from 0$^{\circ}C$ to 200$^{\circ}C$. Also, it was evaluated that 82% of waste heat was exhausted by flue gases. Especially, the characteristics of waste heat for the areas where most heat concentrated, such as Tae-gu industrial complex, Ul-san petrochemitry complex, Yio-chun petrochemistry complex, and Chun-ju industrial complex were investigated more precisely. Total amount of waste heat discharged from these four areas were analyzed 114,402 TOE/year, which was occupied as 77% of the total waste heat for the studied areas, and 87% of the waste heat from the industries was exhausted by flue gaseous phase and temperature range was from 0$^{\circ}C$ to 200$^{\circ}C$ 18.1 million TOE/year waste heat was released from the fossil fuel power plants, however 95% of waste heat was analyzed as cooling water from surface condensers at power plants. The temperature range was measured from 27$^{\circ}C$ to 34$^{\circ}C$, which are unable to utilize due to its low temperature. Otherwise, 5% (894,800 TOE/year) waste heat released from power plants were observed as flue gas, which temperature ranged from 90$^{\circ}C$ to 170$^{\circ}C$.

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Physicochemical Composition and Heavy Metal Contents on the Sediment of Kwangyang Bay (광양만의 퇴적물에 대한 이화학적 조성 및 중금속 함량)

  • Park, Jong-Chun;Kim, Jin;Lee, Woo-Bum;Lee, Sung-Woo;Joo, Hyun-Soo
    • Korean Journal of Ecology and Environment
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    • v.33 no.1 s.89
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    • pp.31-37
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    • 2000
  • For the purpose of surveying the physicochemical composition of sediment collected from Kwangyang Bay, the percentage of water loss, COD, $H_2S$, grain size and 10 heavy metals were studied at 17 sites. During the surveying period, the changes of the percentage of water loss were appeared $35.5\;{\sim}\;53.8%$. COD and $H_2S$ were showed $3.8\l{\sim}\;12.9\;mg/g$, and $0.1\;{\sim}11.4\;{\mu}g/g$, respectively, In composition of grain size on the sediment, percentages of grain sizes under $74\;{\mu}m$ were varied from 40.5% to 86.7% and above $74\;{\mu}m$ were varied from 11.5% to 43.0%. From the spatial distribution of heavy metal using contour map, we can suppose some heavy metal discharges which affect sediment of Kwangyang Bay, It was estimated that Shinpung creek, Ssang-bong creek, and draining area of sewange treatment plant were the main discharge among the heavy metal output sources. By comparison between present study and heavy metal guideline of nonpolluted sea sediment that is provided by EPA, US, it was showed that the contents of Pb and Hg were acceptable but contents of Mn, Zn, Cu, Fe, As, and Cr were higher than those of EPA guideline.

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Isolation and Characterization of 3,4-Dichloroaniline Degrading Bacteria from a Sandbank (갯벌에서 분리한 3,4-Dichloroaniline 분해 미생물의 특성)

  • Kim, Young-Mog
    • Journal of Marine Bioscience and Biotechnology
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    • v.1 no.4
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    • pp.275-281
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    • 2006
  • The compound 3,4-dichloroaniline (DCA) is an aromatic amine used as an intermediate product in the synthesis of herbicides, azo-dyes and harmaceuticals. It is also a degradation product of some herbicides (diuron, propanil, and linuron) and of trichlorocarbanilide, a chemical used as active agent in the cosmetic industry. 3,4-DCA, however, is considered potential pollutants due to their toxic and recalcitrant properties to humans and other species. A bacterium capable of growth on 3,4-DCA was isolated by dilution method from 3,4-DCA-containing enrichment culture. Finally, a strain, YM-14, capable of degrading efficiently 3,4-DCA was isolated from a sandbank. The isolated strain, YM-14 was identified to be Arthrobacter sp.. Fifty ppm 3,4-DCA in 1/10 LB media was completely degraded by the growth of Arthrobacter sp. YM-14 for 12 h at $30^{\circ}C$. The isolated strain is capable of growth on 3,4-DCA as sole carbon source and also able to degrade other chloroaniline compounds. Also, the isolated strain showed high level of catechol 1,2-dioxygenase activity by 3,4-DCA exposure. The catechol 1,2-dioxygenase was supposed to be ones of the important factors for 3,4-DCA degradation.

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Evaluation of the Effects of Sulfur Dioxide Gas using the Water-Soluble Sulfur Content, Photosynthetic Rate and the Visible Injured Index of Pear(Pyrus serotina) in the Ulsan Industrial Complex Area (배나무잎의 수용성 황 함량, 광합성속도, 가시피해도 분석을 이용한 울산공단지역 아황산가스 영향 평가)

  • Lee, Yong-Beom;Choi, Ki-Young
    • Korean Journal of Environmental Agriculture
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    • v.14 no.2
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    • pp.144-154
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    • 1995
  • This study was conducted for the evaluation of air-pollution using pear plant. Twenty-three sites around the Ulsan Industrial Complex Area were selected for the study. The water soluble sulfur content, photosynthetic rate and the visible injured index of pear leaves were evaluated and the results are summarized as follows: 1. Water-soluble sulfur content of pear leaves at survey sites was shown to be an average of 0.201%. The content of their leaves at polluted sites ranged from 0.220 to 0.496%. Water-soluble sulfur content of the pear leaves decreased as the distance became far from the Industrial Complex. 2. The photosynthetic rate of pear leaves decreased with an accumulation of water-soluble sulfur content. However it increased as the distance became greater within the five-kilometer radius of the pollutant. 3. More than 60% of injured rate was shown in pear plant within the five-kilometer radius of the pollutant in 1993. There were high correlations between the visible injured index items. Compared with 1988, the most severely injured sites in 1988 were Yochon-dong and Yaum-dong. But in 1993, they moved to the Yongcham-dong and Bugok-dong area. 4. Water-soluble sulfur content of pear leaves was correlated with the photosynthetic rate of pear leaves. The same tendency was shown between water-soluble sulfur and total injured index. This method using pear plant will be applied to the evaluation of air pollution.

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Removal of Nitrogen and Phosphorus Using Struvite Crystallization (Struvite 결정화에 의한 질소 및 인의 제거)

  • Weon, Seung-Yeon;Park, Seung-Kook;Lee, Sang-Ill
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.4
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    • pp.599-607
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    • 2000
  • In this research, ${NH_4}^+-N$ and ${PO_4}^{3-}-P$ in wastewater were removed by crystallization. Nitrogen and phosphate have been regarded as key nutrients in the eutrophication of rivers and lakes. Struvite, $MgNH_4PO_4{\cdot}6H_2O$, is insoluble in alkaline solutions. Fertilizer industry wastewater contains organic and nitrogen concentration of 330 mg/L and 550 mg/L, respectively. Nitrogen in this wastewater cannot be treated by conventional biological treatment without physicochemical pretreatment, because nitrogen concentration is relatively high compared to organic concentration. Magnesium ions used in this study were from bittern and commercial magnesium salts of $MgCl_2$ and $Mg(OH)_2$. Bittern obtained as a by-product of seasalt manufacture contains $8,000mg\;Ca^{2+}/L$ and $32,000mg\;Mg^{2+}/L$. Optimum initial pH was 10.5~11.0 and the reaction was complete or done in 2 min. Nitrogen removal efficiency using bittern, $MgCl_2 $ and $Mg(OH)_2$ (as source of $Mg^{2+}$) was 71 %, 81% and 83%. respectively. Phosphate removal efficiency was 99%, 98% and 93%, respectively. Therefore, bittern, $MgCl_2$ and $Mg(OH)_2$ can be efficiently used as $Mg^{2+}$ source for crystallization of nitrogen and phosphate. However, bittern is economically favorable $Mg^{2+}$ source for removing nitrogen and phosphate in wastewater.

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