• 제목/요약/키워드: rapid loss detection

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Field Studios of In-situ Aerobic Cometabolism of Chlorinated Aliphatic Hydrocarbons

  • Semprini, Lewts
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.3-4
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    • 2004
  • Results will be presented from two field studies that evaluated the in-situ treatment of chlorinated aliphatic hydrocarbons (CAHs) using aerobic cometabolism. In the first study, a cometabolic air sparging (CAS) demonstration was conducted at McClellan Air Force Base (AFB), California, to treat chlorinated aliphatic hydrocarbons (CAHs) in groundwater using propane as the cometabolic substrate. A propane-biostimulated zone was sparged with a propane/air mixture and a control zone was sparged with air alone. Propane-utilizers were effectively stimulated in the saturated zone with repeated intermediate sparging of propane and air. Propane delivery, however, was not uniform, with propane mainly observed in down-gradient observation wells. Trichloroethene (TCE), cis-1, 2-dichloroethene (c-DCE), and dissolved oxygen (DO) concentration levels decreased in proportion with propane usage, with c-DCE decreasing more rapidly than TCE. The more rapid removal of c-DCE indicated biotransformation and not just physical removal by stripping. Propane utilization rates and rates of CAH removal slowed after three to four months of repeated propane additions, which coincided with tile depletion of nitrogen (as nitrate). Ammonia was then added to the propane/air mixture as a nitrogen source. After a six-month period between propane additions, rapid propane-utilization was observed. Nitrate was present due to groundwater flow into the treatment zone and/or by the oxidation of tile previously injected ammonia. In the propane-stimulated zone, c-DCE concentrations decreased below tile detection limit (1 $\mu$g/L), and TCE concentrations ranged from less than 5 $\mu$g/L to 30 $\mu$g/L, representing removals of 90 to 97%. In the air sparged control zone, TCE was removed at only two monitoring locations nearest the sparge-well, to concentrations of 15 $\mu$g/L and 60 $\mu$g/L. The responses indicate that stripping as well as biological treatment were responsible for the removal of contaminants in the biostimulated zone, with biostimulation enhancing removals to lower contaminant levels. As part of that study bacterial population shifts that occurred in the groundwater during CAS and air sparging control were evaluated by length heterogeneity polymerase chain reaction (LH-PCR) fragment analysis. The results showed that an organism(5) that had a fragment size of 385 base pairs (385 bp) was positively correlated with propane removal rates. The 385 bp fragment consisted of up to 83% of the total fragments in the analysis when propane removal rates peaked. A 16S rRNA clone library made from the bacteria sampled in propane sparged groundwater included clones of a TM7 division bacterium that had a 385bp LH-PCR fragment; no other bacterial species with this fragment size were detected. Both propane removal rates and the 385bp LH-PCR fragment decreased as nitrate levels in the groundwater decreased. In the second study the potential for bioaugmentation of a butane culture was evaluated in a series of field tests conducted at the Moffett Field Air Station in California. A butane-utilizing mixed culture that was effective in transforming 1, 1-dichloroethene (1, 1-DCE), 1, 1, 1-trichloroethane (1, 1, 1-TCA), and 1, 1-dichloroethane (1, 1-DCA) was added to the saturated zone at the test site. This mixture of contaminants was evaluated since they are often present as together as the result of 1, 1, 1-TCA contamination and the abiotic and biotic transformation of 1, 1, 1-TCA to 1, 1-DCE and 1, 1-DCA. Model simulations were performed prior to the initiation of the field study. The simulations were performed with a transport code that included processes for in-situ cometabolism, including microbial growth and decay, substrate and oxygen utilization, and the cometabolism of dual contaminants (1, 1-DCE and 1, 1, 1-TCA). Based on the results of detailed kinetic studies with the culture, cometabolic transformation kinetics were incorporated that butane mixed-inhibition on 1, 1-DCE and 1, 1, 1-TCA transformation, and competitive inhibition of 1, 1-DCE and 1, 1, 1-TCA on butane utilization. A transformation capacity term was also included in the model formation that results in cell loss due to contaminant transformation. Parameters for the model simulations were determined independently in kinetic studies with the butane-utilizing culture and through batch microcosm tests with groundwater and aquifer solids from the field test zone with the butane-utilizing culture added. In microcosm tests, the model simulated well the repetitive utilization of butane and cometabolism of 1.1, 1-TCA and 1, 1-DCE, as well as the transformation of 1, 1-DCE as it was repeatedly transformed at increased aqueous concentrations. Model simulations were then performed under the transport conditions of the field test to explore the effects of the bioaugmentation dose and the response of the system to tile biostimulation with alternating pulses of dissolved butane and oxygen in the presence of 1, 1-DCE (50 $\mu$g/L) and 1, 1, 1-TCA (250 $\mu$g/L). A uniform aquifer bioaugmentation dose of 0.5 mg/L of cells resulted in complete utilization of the butane 2-meters downgradient of the injection well within 200-hrs of bioaugmentation and butane addition. 1, 1-DCE was much more rapidly transformed than 1, 1, 1-TCA, and efficient 1, 1, 1-TCA removal occurred only after 1, 1-DCE and butane were decreased in concentration. The simulations demonstrated the strong inhibition of both 1, 1-DCE and butane on 1, 1, 1-TCA transformation, and the more rapid 1, 1-DCE transformation kinetics. Results of tile field demonstration indicated that bioaugmentation was successfully implemented; however it was difficult to maintain effective treatment for long periods of time (50 days or more). The demonstration showed that the bioaugmented experimental leg effectively transformed 1, 1-DCE and 1, 1-DCA, and was somewhat effective in transforming 1, 1, 1-TCA. The indigenous experimental leg treated in the same way as the bioaugmented leg was much less effective in treating the contaminant mixture. The best operating performance was achieved in the bioaugmented leg with about over 90%, 80%, 60 % removal for 1, 1-DCE, 1, 1-DCA, and 1, 1, 1-TCA, respectively. Molecular methods were used to track and enumerate the bioaugmented culture in the test zone. Real Time PCR analysis was used to on enumerate the bioaugmented culture. The results show higher numbers of the bioaugmented microorganisms were present in the treatment zone groundwater when the contaminants were being effective transformed. A decrease in these numbers was associated with a reduction in treatment performance. The results of the field tests indicated that although bioaugmentation can be successfully implemented, competition for the growth substrate (butane) by the indigenous microorganisms likely lead to the decrease in long-term performance.

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노인 폐결핵의 임상적 특정 (Clinical Features of Pulmonary Tuberculosis In The Elderly)

  • 이재호;황보빈;유철규;이춘택;김영환;한성구;심영수;정희순
    • Tuberculosis and Respiratory Diseases
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    • 제51권4호
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    • pp.334-345
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    • 2001
  • 연구 배경 : 폐결핵은 아직도 노인들에게 있어서 높은 유병률을 보이며 심각한 임상문제로 남아 있다. 그러나 노인 폐결핵은 젊은 연령 군에 비해서 증상이 비전형적이고 약제에 대한 부작용이 많아서 조기 진단 및 치료가 어려운 경우가 많다. 본 연구는 노인 폐결핵의 진단 및 치료에 있어서의 임상 양상이 젊은 연령 군과 비교하여 차이가 있는지 알아보기 위해 시행되었다. 연구 방법 : 1991년 11월에서 1997년 1월까지 서울 시립 보라매병원에서 폐결핵으로 진단, 치료받은 65세 미만인 젊은 연령 군 125명과 65셰 이상인 노인 군 70명올 대상으로 의무기록을 후향적으로 분석하였다. 결 과 : 노인 폐결핵 환자들은 젊은 연령 군에 비하여 식욕 감소(12% vs 31.4%), 전신 쇠약감(20.0% vs 54.3%), 호흡곤란(21.6% vs. 37.1%), 의식 변화(0.8% vs. 15.7%) 등의 비전형적인 증상으로 내원한 경우가 유의하게 많았다. 반변에 젊은 연령인 군에서는 노인 군에 비하여 객혈(32.8% vs. 10.0%), 발열(58.4% vs. 35.7%)의 빈도가 높았다. 기저질환에 있어 노인 군은 젊은 연령 군에 비하여 심혈관 질환과 만성폐쇄성 폐질환의 빈도가 유의하게 높았다. 흉부 X-선 소견 상 폐결핵 병변의 위치는 양군간에 차이가 없었으나 병변의 모양은 노인 군에서 폐렴이나 폐암으로 오인되는 경우가 많았다(8.8% vs. 30.0 %, p<0.05). 양군 간에 객담 항산균 포말 및 배양 검사상 차이는 없었으며, 치료에 대한 반응이나 치료 중 이탈률에도 차이가 없었다. 노인 군에서 젊은 연령 군에 비하여 약제 부작용이 많았고(13.6% vs. 45.7%, p<0.05), 치료 도중 약제 변경도 노인 군에서 많았다(4.9% vs. 25.7%, p<0.05). 젊은 연령 군 125명 중 1명, 노인 군 70명 중 6명이 결핵으로 인해 사망하였다. 결 론 : 노인 폐결핵은 임상적, 방사선학적으로 비전형적인 소견을 보이는 경우가 있으므로 노인에서 폐결핵이 의심될 때는 즉시 객담 도말 및 배양 검사를 시행해야 한다. 노인 폐결핵 환자는 약재 부작용이 사망률도 높았으나 치료에 대한 반응은 대체로 좋고 반응도 빨랐다.

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소형 라이시메터시험을 통한 토양특성에 따른 질산과 인산의 이동성 비교 (Mobility of Nitrate and Phosphate through Small Lysimeter with Three Physico-chemically Different Soils)

  • 한경화;노희명;조현준;김이열;황선웅;조희래;송관철
    • 한국토양비료학회지
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    • 제41권4호
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    • pp.260-266
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    • 2008
  • 질산과 인산의 수직이동성에 대한 토양특성의 영향을 구명하고자 비가림 하우스에서 소형라이시메터(지름 300 mm, 토양깊이 450 mm) 시험을 수행하였다. 대상토양은 농경지 세 지점으로부터 표토 0~20cm를 채취한 후 이 토양의 풍건세토분획을 이용하여 수행하였다: mesic family of Typic Dystrudepts (토양 A, 사양토, 유기물함량 1.4%); mixed, mesic family of Typic Udifluvents (토양 B, 양토, 유기물함량 2.6%); 시설재배토양(토양 C, 사양토, 유기물함량 5.6%). 2주 동안 안정화시킨 토양의 표면에 질소와 인을 $150kg\;urea-N\;ha^{-1}$$100kg\;KH_2PO_4-P_2O_5\;ha^{-1}$ 만큼 처리하고, 65일 동안 7번 관수(총관수량 213 mm, 약 1 pore volume)하며 주기적으로 깊이 10, 20, 30 cm의 토양용액과 용탈액을 채취하여 질산과 인산농도를 분석하였다. 총 용탈액량은 토양 C > 토양 A > 토양 B 순으로 질산 용탈량, 토양 B > 토양 A > 토양 C 과 역의 관계를 가졌다. 토양 A와 B에서는 요소처리 후 깊이 10 cm에서 토양용액 중 질산 농도 증가가 뚜렷이 나타난 반면, 토양 C에서는 나타나지 않았다. 토양 B의 높은 질산이동성은 상대적으로 높은 점토함량으로 음전하를 띤 교질의 음이온배척과 느린 수분흐름으로 물의 머무름시간이 길어 토양매트릭스 질산의 추출을 촉진하기 때문으로 볼 수 있었다. 반면 토양 C는 질산의 이동성이 낮게 나타났다. 이는 유기물 함량이 높아 생기는 발수성으로 선택류와 질산의 미생물 부동화 때문으로 추정할 수 있었다. 인산용탈은 질산과 달리 인포화도가 가장 높은 토양 C에서만 검출되었다. 토양용액 중 인산농도는 인포화도의 순서와 동일하게 토양 C > 토양 B의 순서였고 토양 A에서는 검출되지 않았다. 따라서 인산의 이동성은 인포화도에 의해 크게 영향을 받으며, 일정 수준으로 축적될 때 까지는 용탈손실은 나타나지 않는다고 판단할 수 있었다.