• 제목/요약/키워드: Biodegradation capacity

검색결과 63건 처리시간 0.026초

디젤로 오염된 토양의 효과적인 Bioventing

  • 왕성환;오영진;문원재;박태주
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2002년도 총회 및 춘계학술발표회
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    • pp.66-69
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    • 2002
  • In this work, cost effective venting is considered by comparing flow rates of 5$m\ell$/min, 10$m\ell$/min, and 20$m\ell$/min. Studies were performed on a soil artificially contaminated with diesel oil (the initial TPH(Total Petroleum Hydrocarbon) concentration of 7098mg/kg), and nutrient condition was C:N:P rate of 100:10:1. The soil has a sandy texture with pH of 6.8, 2.16 ~2.38% organic matter, a total porosity of 47~52% and field capacity 16.2~ 17.2%. The column experiments was made of glass column of 60cm length and 10cm I.D. at controlled temperature of 2$0^{\circ}C$($\pm$2.5$^{\circ}C$). The efficiency of continuous flow rate of 5, 10 and 20$m\ell$/min resulted in separately 61.3%, 58.1%, and 55% reduction of initial TPH concentration(7098mg/kg). Hydrocarbon utilizing microbial count and dehydrogenase activity in air flow of 5$m\ell$/min were higher than those of the others. The first order degradation rate of n-alkanes ranging from C10 to C28 was higher than that of pristane and phytane as isoprenoids. The $C_{17}$/pristane and $C_{18}$phytane ratios for monitoring the degree of biodegradation were useful only during the early stages of oil degradation. Degradation contributed from about 89% to 93% of TPH removal. Volatilization loss of diesel oil in contaminated soil was about 7% to 11%, which was significantly small compared to degradation.n.

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Biodegradation of Aromatic Compounds by Nocardioform Actinomycetes

  • CHA CHANG-JUN;CERNIGLIA CARL E.
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2001년도 추계학술대회
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    • pp.157-163
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    • 2001
  • Mycolic acid-containing gram-positive bacteria, so called nocardioform actinomycetes, have become a great interest to environmental microbiologists due to their metabolic versatility, multidegradative capacity and potential for bioremediation of priority pollutants. For example, Rhodococcus rhodochrous N75 was able to metabolize 4-methy1catechol via a modified $\beta$-ketoadipate pathway whereby 4-methylmuconolactone methyl isomerase catalyzes the conversion of 4-methylmuconolactone to 3-methylmuconolactone in order to circumvent the accumulation of the 'dead-end' metabolite, 4-methylmuconolactone. R. rhodochrous N75 has also shown the ability to transform a range of alkyl-substituted catechols to the corresponding muconolactones. A novel 3-methylmuconolactone-CoAsynthetase was found to be involved in the degradation of 3-methylmuconolactone, which is not mediated in a manner analogous to the classical $\beta$-ketoadipate pathway but activated by the addition of CoA prior to hydrolysis of lactone ring, suggesting that the degradative pathway for methylaromatic compounds by gram-positive bacteria diverges from that of proteobacteria. Mycobacterium sp. Strain PYR-l isolated from oil-contaminated soil was capable of mineralizing various polyaromatic hydrocarbons (PAHs), such as naphthalene, phenanthrene, pyrene, fluoranthrene, 1-nitropyrene, and 6-nitrochrysene. The pathways for degradation of PAHs by this organism have been elucidated through the isolation and characterization of chemical intermediates. 2-D gel electrophoresis of PAH-induced proteins enabled the cloning of the dioxygenase system containing a dehydrogenase, the dioxygenase small ($\beta$)-subunit, and the dioxygenase large ($\alpha$)-subunit. Phylogenetic analysis showed that the large a subunit did not cluster with most of the known sequences except for three newly described a subunits of dioxygenases from Rhodococcus spp. and Nocardioides spp. 2-D gel analysis also showed that catalase-peroxidase, which was induced with pyrene, plays a role in the PAH metabolism. The survival and performance of these bacteria raised the possibility that they can be excellent candidates for bioremediation purposes.

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디젤오염토양의 Bench Scale 처리에 있어서 벤팅모드 비교 (Comparison of Venting Modes for Bench Scale Treatment of Diesel Contaminated Soil)

  • 김영암;이용희;이동선;서명교
    • 한국환경보건학회지
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    • 제32권5호
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    • pp.499-505
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    • 2006
  • Bioventing efficiency was compared in a continuous and an intermittent(6hr injection and 6hr rest) air injection mode. Two lab-scale columns which packed with 5 kg of soil artificially contaminated by diesel oil were operated. The columns were maintained at the $25^{\circ}C{\pm}2.5$ in order to minimize the effect of exterior temperature variation. The flow rate of air injection mode were maintained constantly at the flow rate of 10 ml/min. The moisture of the columns was stably maintained at $60{\sim}80%$ of field capacity. The nutrient compounds were added to make C:N:P ratio as 100:10:l. The continuous and intermittent injection modes showed 67.56% and 69.63% reduction of initial TPH concentration during 90 days, respectively. Two venting modes showed similar results in the analysis of the trends of the hydrocarbon utilizing bacterial counts for operating periods. The carbon dioxide production rate of the continuous injection mode was higher than that of intermittent injection mode. The loss of diesel oil by volatilization in the continuous and intermittent injection modes were about 5% and 1%, respectively. The lower volatilization loss in the intermittent injection mode suggested that the biodegradation of TPH in the intermittent injection mode was greater than that of the continuous mode. These results suggested that the intermittent injection mode is more efficient than the continuous venting mode.

Survival and Performance of Two Cellulose-Degrading Microbial Systems Inoculated into Wheat Straw-Amended Soil

  • Li, Peipei;Zhang, Dongdong;Wang, Xiaojuan;Wang, Xiaofen;Cui, Zongjun
    • Journal of Microbiology and Biotechnology
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    • 제22권1호
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    • pp.126-132
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    • 2012
  • A cellulose-degrading composite microbial system containing a mixture of microbes was previously shown to demonstrate a high straw-degrading capacity. To estimate its potential utilization as an inoculant to accelerate straw biodegradation after returning straw to the field, two cellulose-degrading composite microbial systems named ADS3 and WSD5 were inoculated into wheat straw-amended soil in the laboratory. The microbial survival of the inoculant was confirmed by a denaturing gradient gel electrophoresis (DGGE) analysis, whereas the enhancement of straw degradation in soil was assessed by measuring the mineralization of the soil organic matter and the soil cellulase activity. The results indicated that most of the DGGE bands from ADS3 were detected after inoculation into straw-amended autoclaved soil, yet only certain bands from ADS3 and WSD5 were detected after inoculation into straw-amended non-autoclaved soil during five weeks of incubation; some bands were detected during the first two weeks after inoculation, and then disappeared in later stages. Organic matter mineralization was significantly higher in the soil inoculants ADS3 and WSD5 than in the uninoculated controls during the first week, yet the enhanced degradation did not persist during the subsequent incubation. Similar to the increase in soil organic matter, the cellulase activity also increased during the first week in the ADS3 and WSD5 treatments, yet decreased during the remainder of the incubation period. Thus, it was concluded that, although the survival and performance of the two inoculants did not persist in the soil, a significant enhancement of degradation was present during the early stage of incubation.

Flavimonas oryzihabitans와 Pseudomonas sp.간 원형질체 융합에 의한 Aniline과 4-chlorobiphenyl 분해균주 개발 (Development of Fusant Degrading Aniline and 4-chlorobiphenyl by Spheroplast Fusion between Pseudomonas sp. and Flavimonas oryzihabitans)

  • 박형수;박용근;김무훈;고범준;조미영;김치경
    • 미생물학회지
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    • 제36권4호
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    • pp.259-266
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    • 2000
  • 아닐린분해능이 있는 Flavimonas oryzihabitans과 4-chlorobiphenyl (4-CBP)를 분해하는 Pseudomonas sp.를 원형질체 융합하여 아닐린과 4-CBP를 모두 분해하는 융합균주를 개발하고, 융합체의 특성을 조사하였다. F. oryzibhavitans는 융합체 선별표지 위애 NTG처리하여 chloramphenicol 내성 ($Cm^r$)을 유발하였다. Lysozyme-EDTA에 의한 각 모균주의 원형질체 생성율은 약 99%이었고, 원형질체의 재생율은 5.0~6.6%이었다. 원형질체는 40% PEG 6000을 사용하였을 때 효과적으로 융합이 이루어졌으며 융합율은 $3.16{\times}10^{-4} $이었다. 융합균인 F22의 DNA양는 모균주에 비해 약 2배 정도 증가 하였으며, 생화학적 특성은 모균주의 특성이 혼합하여 나타났다. F22는 5 mM 아닐린 최소배지에서는 모균주와 성장능과 분해능이 거의 비슷하였고, 10 mM 아닐린 최소배지에서는 1.5배 빠른 성장속도를 나타내었으나, 4-CBP 분해능은 모균주보다 약간 낮게 나타났다.

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Proteomic Analysis of Diesel Oil Biodegradation by Bacillus sp. with High Phosphorus Removal Capacity Isolated from Industrial Wastewater

  • Hee-Jung Kim;Deok-Won Kim;Jin-Hyeok Moon;Ji-Su Park;Eun-Ji Oh;Jin Yoo;Deok-Hyun Kim;Sun-Hwa Park;Keun-Yook Chung
    • 공업화학
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    • 제34권6호
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    • pp.649-659
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    • 2023
  • This study was initiated to evaluate the phosphorus (P) removal and diesel oil degradation by bacteria isolated from industrial wastewater. The bacteria isolated were identified as Bacillus sp. The P removal efficiencies by Bacillus sp. were 99% at the initial 20 mg/L P concentration. The diesel degradation efficiencies by Bacillus sp. were 86.4% at an initial 1% diesel concentration. Lipophilicity by bacteria was the highest in the log phase, whereas it was the lowest in the death phase. As the diesel was used as a carbon source, P removal efficiencies by Bacillus sp. were 68%. When glucose, acetate, and a mixture of glucose and acetate as second carbon sources were added, the diesel degradation efficiencies were 69.22%, 65.46%, and 51.46%, respectively. The diesel degradation efficiency was higher in the individual additions of glucose or acetate than in the mixture of glucose and acetate. When P concentration increased from 20 mg/L to 30 mg/L, the diesel degradation efficiency was increased by 7% from 65% to 72%, whereas when P concentration was increased from 30 mg/L to 40 mg/L, there was no increase in diesel degradation. One of the five proteins identified by proteome analysis in the 0.5% diesel-treated samples may be involved in alkane degradation and is known as the cytochrome P450 system. Also, two of the sixteen proteins identified in the 1.5% diesel-treated samples may be implicated in the fatty acid transport system and alcohol dehydrogenation.

수종의 생분해성 차폐막의 생채분해도, 생채친화도 및 조직재생유도 능력에 관한 실험적 연구 (EVALUATION OF BIODEGRADABILITY, BIOCOMPATIBILITY AND TISSUE REGENERATIVE CAPACITY OF SYNTHETIC BIODEGRADABLE MEMBRANES IN BEAGLE DOGS)

  • 설양조;김태일;이재일;배철민;이승진;정종평
    • Journal of Periodontal and Implant Science
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    • 제25권3호
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    • pp.603-613
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    • 1995
  • The purpose of this investigation was to evaluate on the biodegradability, biocompatibility and tissue regenerative capacity of synthetic bioabsorbable membranes in beagle dogs. For animal study, 9 adult beagle dogs were used to examination, on the surgical implantation of membranes and histological analysis. In each animal, the 3rd and 4th premolars of the both sides of the mandible were selected as test teeth. Two types of bioresorbable membranes including "Guidor membrane", "S-membranes" were used to examining for biological activity, and also Gore-tex membranes was used for positive control. Surgically created defects were made in 2 premolars of both sides of the mandible at $3{\times}4mm^2$ in size and tested membranes were implanted in the defected area. A plaque control regimen was instituted with daily tooth brushing with a 0.1% chlorhexidine digluconate during experimental periods. All the experimental animals were sacrificed after 2, 4, and 8 weeks from surgery and undecalcified slides were prepared using the "sawing and grinding" technique described by Donath and Breuner". In biodegradability, all the membranes were started their biodegradation from two weeks after implantation and gradually demolished of their frame morphology from eight weeks. However, demolition of membranes in 8 weeks after implantation was highest in Guidor membranes and followed by S-membranes. Biocompatibilityof two kinds of biodegradable membranes including Guidor and S-mambrane were shown to be well tolerated to the surrounding tissue, and were minimal accumulation of inflammatory cell infiltration around the implanted membranes to compare with Gore-tex membrane. Regeneration of defected alveolar bone was initiated from two weeks of membrane implantation and new bone formation was gradually increased from that time. However, pattern of new bone formation on the defected areas of two kinds of biodegrable membranes was almost similar and quite competitive comparing with Gore-tex membrane. These results implicate that bioresorbable membranes should be highly useful tool for guided tissue regeneration of periodontal defects.

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중공사막 결합형 생물반응기를 이용한 기체상 톨루엔 제거 특성 검토 (Performance of a Hollow Fiber Membrane Bioreactor for the Treatment of Gaseous Toluene)

  • 손영규;김용식;김지형;송지현
    • 대한환경공학회지
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    • 제27권8호
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    • pp.886-891
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    • 2005
  • 본 연구는 침지형태로 운전되는 중공사막 결합형 생물반응기(HFMB) 시스템의 VOC 처리능력 및 안정성을 평가하기 위하여 수행되었다. 일차적으로 미생물이 없는 조건에서 VOC 물질전달을 알아보기 위한 abiotic test를 통해, 본 연구에서 사용한 HFMB는 미세기포를 이용한 산기관과 유사한 물질전달율을 나타냄을 확인하였다. 그러나 HFMB는 일반 산기관 시스템과는 달리 기체 유속과 중공사막 개수를 증가시켜 물질전달율을 더욱 증대시킬 수 있을 것으로 예측된다. 또한 반응조에 톨루엔 분해 미생물을 첨가하고 다양한 유입부하 조건에서의 기체상 톨루엔 제거 실험을 수행하였는데, 50, 100, $500\;g/m^3/hr$의 유입부하 조건에서 $70{\sim}80%$ 수준의 처리효율을 얻을 수 있었다. 추가적으로 수행된 분해능 실험에서는 최대 $800\;g/m^3/hr$ 이상의 분해능을 실험적으로 확인하여, 문헌에 제시된 기존 생물여과공법의 최대분해능($50{\sim}100\;g/m^3/hr$) 보다 월등히 높았다. 따라서 HFMB는 기존의 VOC 저감기술을 대치할 수 있는 친환경적인 기술이라고 판단된다.

한강수계 고도정수처리 공정에서의 유기물과 맛·냄새의 제거특성 (Removal Characteristics of Natural Organic Matter and Taste and Odor by Advanced Water Treatment Process around the Han River Water Supply System)

  • 임재림;이경혁;김성수;채선하
    • 상하수도학회지
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    • 제21권1호
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    • pp.13-25
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    • 2007
  • The water treatment plants in Seoul Metropolitan Area, which are under Korea Water Resources Corporation(KOWACO)'s management, take water from Paldang Reservoir in Han River System for drinking water supply. There are taste and odor (T&O) problems in the finished water because the conventional treatment processes do not effectively remove the T&O compounds. As part of countermeasures for taste and odor control, KOWACO is planning to introduce advanced water treatment process such as ozone and GAC in near future. This study evaluated the removal characteristics of T&O and dissolved organic matter (DOM) to find design and operation parameters of advanced water treatment processes in a pilot-scale treatment plant. The GAC adsorption capacity for DOC in the two GAC system (GAC and $O_3$-GAC) at an EBCT of 14min was mostly exhausted after 9months. The differency of the removal efficiency of DOC between $O_3$-GAC and GAC increased with increasing operation time because the bioactivity in $O_3$-GAC process was enhanced by post-ozone process. Removal by conventional treatment was unable to reach the target TON(threshold odor number) of 3 but GAC systems at an EBCT(empty bed contact time) of 14 min were able to archive the target with few exception. During the high T&O episodes, PAC as a pretreatment together with GAC could be useful option for T&O control. However, substantial TON removal continued for more than two year (> 90,000 bed volumes). At the spiking of less concentration 26 to 61 ng/L in the influent of GAC systems, GAC absorber and $O_3$-GAC processes could meet the treatment target. The better spike control after 12 and 19 months of operation compared to that after 7 months of operation is a strong indication of biological control. The results presented in this study had shown that $O_3$-GAC process was found to be more effective for T&O control than GAC process. And the main removal mechanism in GAC systems were adsorption capacity and biodegradation.

프로판 및 부탄 이용 미생물에 의한 휘발유 첨가제 MTBE의 동시분해 (Cometabolic Biodegradation of Fuel Additive Methyl tert-Butyl Ether(MTBE) by Propane- and Butane-Oxidizing Microorganisms)

  • 장순웅
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제8권4호
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    • pp.45-52
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    • 2003
  • 국내유류오염지역 토양에서 propane과 butane을 탄소원으로 이용하여 분리된 Nocardia SW3를 대상으로 가스기질농도, 온도, pH 변화에 따른 영향, 그리고 MTBE 공대사 분해 특성을 조사하였다. 초기농도변화에 따른 기질분해속도를 비교하면 propane 및 butane이 70$\mu$㏖일때 각각 30.6, 25.4(n㏖/min/mg protein)으로 관찰되어 빠른 기질이용율을 보여주었으며, 최적온도 및 pH조건은 $30^{\circ}C$, 7이었으며, 실험조건인 온도 $15^{\circ}C$$35^{\circ}C$. pH 5∼8 범위내에서 약간의 차이는 있지만 전반적으로 propane과 butane이 효율적으로 이용되었다. Nocardia SW3를 대상으로 propane 및 butane이 탄소원으로 이용될 때 MTBE분해특성을 비교ㆍ평가한 결과, propane 및 butane의 MTBE 분해 활성도는 유사하였으며, 가스기질이 탄소원으로 이용시 MTB표의 분해량을 나타내는 transformation yield($T_y$)는 propane과 butane의 경우 각각 46.7, 35.0(n㏖ MTBE degraded $\mu$㏖ substrate utilized), transformation capacity($T_c$)는 실험 결과 각각 320, 280(n㏖ MTBE degraded/mg biomass used)로 나타났다. 또한 MTBE 부산물로 TBA가 검출되었으며, TBA의 지속적인 분해를 관찰하였다.