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      Permeable tube를 利用한 toluene gas의 生物學的 處理에 관한 硏究 = Bio-treatment of toluene waste gas using permeable tube reactor

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      https://www.riss.kr/link?id=A40012704

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      다국어 초록 (Multilingual Abstract)

      Toluene gas was introduced into municipal waste water treatment plant's recycled sludge using permeable silicon tube.
      Bacterial strain was developed at the outside of tube. Toluene gas was removed by the microorganism with the removal efficiency being over 98% at the flow ate of 30㎖~180㎖/min, loading of 2,000ppm~2,560ppm and temperature 30℃. Sample taken from the sludge solution was analyzed by spectrophotometry and GC/Mass. Benzoic acid was found to prove bio-oxidation of toluene.
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      Toluene gas was introduced into municipal waste water treatment plant's recycled sludge using permeable silicon tube. Bacterial strain was developed at the outside of tube. Toluene gas was removed by the microorganism with the removal efficiency bein...

      Toluene gas was introduced into municipal waste water treatment plant's recycled sludge using permeable silicon tube.
      Bacterial strain was developed at the outside of tube. Toluene gas was removed by the microorganism with the removal efficiency being over 98% at the flow ate of 30㎖~180㎖/min, loading of 2,000ppm~2,560ppm and temperature 30℃. Sample taken from the sludge solution was analyzed by spectrophotometry and GC/Mass. Benzoic acid was found to prove bio-oxidation of toluene.

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      목차 (Table of Contents)

      • 1. 序論
      • 2. Toluene의 산업상용도
      • 3. Toluene의 毒性
      • 4. Benzene의 毒性
      • 5. 산업현장의 Toluene농도
      • 1. 序論
      • 2. Toluene의 산업상용도
      • 3. Toluene의 毒性
      • 4. Benzene의 毒性
      • 5. 산업현장의 Toluene농도
      • 6. 산업안전보건법의 규정
      • 7. 從來의 有機溶劑의 制御方法
      • 8. 生物學的 處理法의 要點
      • 9. 實驗方法
      • 10. 結果와 考察
      • 11. 結論
      • 12. 參考文獻
      • Summary
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