• 제목/요약/키워드: toxicity reduction

검색결과 444건 처리시간 0.027초

태양광 $TiO_2$ 광촉매를 이용한 Parathion의 분해와 독성저감에 관한 연구 (A Study on the Degradation of Parathion and Reduction of Acute Toxicity in Solar $TiO_2$ Photocatalysis)

  • 김탁수;김정곤;최경호;조경덕
    • 대한환경공학회지
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    • 제27권8호
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    • pp.822-828
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    • 2005
  • 본 연구에서는 대표적인 유기인계 농약인 parathion을 대상으로 태양광의 조사 하에 $TiO_2$ 광촉매반응과 광반응에 의한 처리를 수행하였다. 실험의 결과 $TiO_2$ 광촉매반응이 광반응과 $TiO_2$ 흡착 조건에 비하여 효과적으로 parathion을 제거시켰다. 10 mg/L의 parathion은 90분 이내에 광촉매 반응으로 완전히 제거되었으며 반응시간 150분 후에 TOC는 약 63% 정도 감소되었다. 광촉매 반응에 의한 parathion의 분해에 따라, 질소 형태의 이온 부산물은 ${NO_2}^-$, ${NO_3}^-$, 그리고 ${NH_4}^+$가 발견이 되었고, 황은 ${SO_4}^{2-}$로 약 80%, 그리고 인은 ${PO_4}^{3-}$로 5% 이하로 회수되었다. 또한 parathion의 분해시 유기중간 생성물은 paraoxon과 4-nitrophenol 등이 측정되었으며, 이들 부산물들은 반응이 진행되어 가며 계속 분해됨을 보였다. 광촉매 반응과 광반응에 의하여 처리된 용액의 독성의 감소를 평가하기 위하여 두 가지 생물종인 V. fischeri와 D. magna를 이용하여 처리수의 급성 독성의 감소를 알아보았다. 두 가지 생물종 모두 광촉매반응 조건에서는 처리수의 상대독성이 초기에 비해 반응시간 150분 후에 거의 모두 감소되었고, 광반응 조건에서는 V. fischeri와 D. magna 각각에 대해서 76%와 57%의 상대독성 감소가 관찰되었다. Parathion과 TOC의 감소와 급성독성의 저감양상은 유사한 경향을 보였다.

방사선으로 처리된 항생물질의 수서 생태위해성 평가 (A study on the aquatic eco-risk assessment of antibiotics treated by radiation)

  • 강선홍;장재구;가순규;김현영;김상돈;이면주
    • 상하수도학회지
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    • 제26권3호
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    • pp.373-381
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    • 2012
  • Antibiotics have been issued recently in water environments because of potential impacts on ecosystem and public health. This study was aimed to investigating the degradation of antibiotics such as tetracycline, lincomycin, sulfamethazine and cephradine using gamma ray irradiation. And the toxicity before and after irradiation on antibiotics was tested in order to examine the aquatic eco-risk assessment by aquatic organisms. In addition, comparing tests on toxicity for gamma ray and UV irradiated antibiotics was conducted. Four different antibiotics were prepared by concentration of 30 mg/L with demi-water respectively. The absorption dose of gamma ray was ranged from 0.2 to 2 kGy. The concentration of four antibiotics was gradually decreased corresponding to the increase of the absorption dose. A method for toxicity assessment using Pseudokirchneriella subcapitata was evaluated to the most acceptable compared with methods by Daphnia magna and Microtox$^{(R)}$ in terms of sensibility. It showed that the reduction of toxicity on antibiotics treated by gamma ray was superior comparing to the test results obtained from UV treatment. By-products from antibiotics treated by gamma ray were easily decomposed by microorganism and their toxicity was also evaluated to low.

아세트아미노펜 독성평가를 위한 μCCA-μGI 디바이스의 개발 (The Design and Fabrication of μCCA-μGI Device for Toxicity Evaluation of Acetaminophen)

  • 장정윤
    • Journal of Pharmaceutical Investigation
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    • 제36권4호
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    • pp.263-269
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    • 2006
  • Deficiencies in the early ADMET(absorption, distribution, metabolism, elimination and toxicity) information on drug candidate extract a significant economic penalty on pharmaceutical firms. Microscale cell culture analogue-microscale gastrointestinal(${\mu}CCA-{\mu}GI$) device using Caco 2, L2 and HEp G2/C3A cells, which mimic metabolic process after absorption occurring in humans was used to investigate the toxicity of the model chemical, acetaminophen(AAP). The toxicity of acetaminophen determined after induction of CYP 1A1/2 in Caco 2 cells was not significant. In a coculture system, although no significant reduction in viability of HEp G2/C3A and L2 cells was found, approximately 5 fold increase in the CYP 1A1/2 activity was observed. These results appear to be related to organ-organ interaction. The oral administration of a drug requires addition of the absorption process through small intestine to the current ${\mu}CCA$ device. Therefore, a perfusion coculture system was employed for the evaluation of the absolution across the small intestine and resulting toxicity in the liver and lung. This system give comprehensive and physiologic information on oral uptake and resulting toxicity as in the body. The current ${\mu}CCA$ device can be used to demonstrate the toxic effect due to organ to organ interaction after oral administration,

감마선 처리가 섬유와 안료폐수의 생물독성에 미치는 영향 (Effect of Gamma-ray Treatment on Toxicity of Textile and Pigment Wastewaters)

  • 김은애;조훈제;박은주;김효진;김정규;정진호
    • 한국물환경학회지
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    • 제22권1호
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    • pp.145-149
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    • 2006
  • Textile and pigment wastewater samples collected from an industrial complex showed toxic effect on Daphnia magna. For textile wastewater, 48 h acute toxicity of effluent was not detected while toxic unit (TU) of influent was 1.79. The toxicity of influent was completely disappeared by gamma-ray treatment at 10 kGy or by suspended solids (SS) removal. In case of pigment wastewater, both influent and effluent were toxic to D. magna though the effluent satisfied current water quality standards. Gamma-ray treatment had little effect on the toxicity reduction of pigment wastewater since the toxicity was mainly caused by metal ions, in particular, Cr(VI). This work suggests the bioassay technique for monitoring adverse effects of wastewater should be introduced, and also shows the usefulness of gamma-rays as an advanced treatment technique for textile wastewater.

감마선 조사에 의한 endosulfan의 면역독성 저감 (Radiation-induced Degradation and Immune Toxicity Reduction of Endosulfan)

  • 김현주;김태훈;함준상;김기혁;조철훈
    • 한국식품저장유통학회지
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    • 제19권3호
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    • pp.451-454
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    • 2012
  • Endosulfan is an organochlorine pesticide that is widely used throughout the world for higher agricultural production. Its extreme toxicity, however, has caused health and environment concerns that have led to an interest in detoxification. In this study, the radiolytic degradation of endosulfan was investigated. Endosulfan in methanol solution (100 ppm) was irradiated at 0, 10, 30, and 50 kGy, and subsequent changes in immune toxicity and degradation of endosulfan were observed. The concentration of endosulfan that was used in this experiment did not affect the cell proliferation. The irradiation of endosulfan decreased the production of NO, indicating a decrease in the immune toxicity of endosulfan by irradiation. The concentration of endosulfan was significantly reduced by irradiation in a dose-dependent manner. The results suggest that gamma irradiation can degrade endosulfan and can reduce its immune toxicity.

How do Citrus Crops Cope with Aluminum Toxicity?

  • Arunakumara, K.K.I.U.;Walpola, Buddhi Charana;Yoon, Min-Ho
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.928-935
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    • 2012
  • World Agriculture faces daunting challenges in feeding the growing population today. Reduction in arable land extent due to numerous reasons threatens achievement of food and nutritional security. Under this back ground, agricultural use of acidic soils, which account for approximately 40 % of the world arable lands is of utmost important. However, due to aluminum (Al) toxicity and low available phosphorous (P) content, crop production in acidic soils is restricted. Citrus, in this context, gains worldwide recognition as a crop adapted to harsh environments. The present paper reviewed Al toxicity and possible toxicity alleviation tactics in citrus. As reported for many other crops, inhibition of root elongation, photosynthesis and growth is experienced in citrus also due to Al toxicity. Focusing at toxicity alleviation, interaction between boron (B) and Al as well as phosphorus and Al has been discussed intensively. Al toxicity in citrus could be alleviated by P through increasing immobilization of Al in roots and P level in shoots rather than through increasing organic acid secretion, which has been widely reported in other crops. Boron-induced changes in Al speciation and/or sub-cellular compartmentation has also been suggested in amelioration of root inhibition in citrus. Despite the species-dependent manner of response to Al toxicity, many commercially important citrus species can be grown successfully in acidic soils, provided toxicity alleviation Agro-biological tactics such as addition of phosphorous fertilizers are used properly.

The Role of Modern Radiotherapy Technology in the Treatment of Esophageal Cancer

  • Moon, Sung Ho;Suh, Yang-Gun
    • Journal of Chest Surgery
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    • 제53권4호
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    • pp.184-190
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    • 2020
  • Radiation therapy (RT) has improved patient outcomes, but treatment-related complication rates remain high. In the conventional 2-dimensional and 3-dimensional conformal RT (3D-CRT) era, there was little room for toxicity reduction because of the need to balance the estimated toxicity to organs at risk (OARs), derived from dose-volume histogram data for organs including the lung, heart, spinal cord, and liver, with the planning target volume (PTV) dose. Intensity-modulated RT (IMRT) is an advanced form of conformal RT that utilizes computer-controlled linear accelerators to deliver precise radiation doses to the PTV. The dosimetric advantages of IMRT enable better sparing of normal tissues and OARs than is possible with 3D-CRT. A major breakthrough in the treatment of esophageal cancer (EC), whether early or locally advanced, is the use of proton beam therapy (PBT). Protons deposit their highest dose of radiation at the tumor, while leaving none behind; the resulting effective dose reduction to healthy tissues and OARs considerably reduces acute and delayed RT-related toxicity. In recent studies, PBT has been found to alleviate severe lymphopenia resulting from combined chemo-radiation, opening up the possibility of reducing immune suppression, which might be associated with a poor prognosis in cases of locally advanced EC.

Effects of Organic Matter and pH on Chromium Oxidation Potential of Soil

  • Chung, Jong-Bae;Eum, Jin-Sup
    • 한국환경농학회지
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    • 제20권5호
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    • pp.346-351
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    • 2001
  • Oxidation of Cr(III) to Cr(VI) can increase availability and toxicity of chromium. In this study, possible mechanisms by which pH and organic matter can control the chromium oxidation and reduction in soil system were examined using four soils of different pHs and organic matter contents. Reduction of Mn-oxides occurred in the soils of higher organic matter content (4.0%), but Mn-oxide was quite stable during the incubation in the soil of pH 7.0 and 0.5% organic matter content. Manganese oxides can be reductively dissolved at lower pH and higher organic matter conditions. The soil of pH 7.0 and 4.0% organic matter content showed the highest Cr-oxidation potential. Reduction of soluble Cr(VI) was observed in all the soils examined. The most rapid reduction was found in soil of pH 5.5 and 4.0% organic matter content, but the reduction was slow in soil of pH 7.0 and 0.5% organic matter content. Thus, the reductive capacity of organic matter added soils was much higher as compared to other two soils of lower organic matter content. In all the soils examined, the reductive capacity of soluble chromium was much higher than the oxidative capacity. Organic matter was found to be the most important controlling factor in the chromium oxidation and reduction. Reduction of Cr(VI) to Cr(III) could be a potentially useful remediation or detoxification process, and availability and toxicity of chromium in soil would be controlled by controlling organic matter content and pH of the soils.

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포제(炮製)에 의한 반하(半夏)와 천남성(天南星)의 침상결정 유발 독성 감소 기전 고찰 (Review on the mechanism for the reduction of raphide-induced toxicity via processing of Pinelliae Tuber and Arisaematis Rhizoma)

  • 김정훈;이금산;최고야;김영식;이승호;김홍준
    • 대한본초학회지
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    • 제36권5호
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    • pp.15-27
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    • 2021
  • Objectives : The processing of Pinelliae Tuber and Arisaematis Rhizoma is a crucial step to reduce the severe acrid irritation mainly due to the needle-like crystals (raphides). Ginger, alum and bile juice have been used as adjuvant materials for the processing. Methods : Bibliographic research on ancient processing and experimental processing was performed to investigate the toxicity reduction mechanisms of the processing with ginger, alum and bile juice. Results : Ginger has been a major adjuvant for the processing of Pinelliae Tuber, followed by alum and bile juice since Song (宋) and Myeong (明) dynasties, and Arisaematis Rhizoma has been mainly used as Damnamseong (膽南星). The raphides consisting of calcium oxalate, lectin, agglutinin and polysaccharides can induce acrid irritation and the inflammatory reactions. The lipophilic components in the ginger denatured the structure of raphides and 6-gingerol-contained ginger extract attenuated the inflammatory reaction. The calcium ion (Ca2+) of calcium oxalate was substituted to the aluminium ion (Al3+) of the alum, which damaged the calcium oxalate structure. Lectin attached to the surface of raphides was dissolved in alum solution and consequently its structure was denatured. The cholate in the bile juice formed the complex with the oxalate anion or the calcium cation. Moreover, the enzymes activated by Lactobacillus or Bifidobacterium during the fermentation promoted the fragmentation of oxalate. Conclusion : The adjuvant materials damaged the raphides by denaturing or degrading the calcium oxalate, resulting in the reduction of acrid irritation. Further experimental studies would support the toxicity reduction mechanism of the processing.

Evaluation of Almaty City Soil's Toxicity by the Representatives of the Microflora and Microfauna

  • Mynbayeva, Bakhyt N.;Esimov, Bolat K.
    • 환경생물
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    • 제29권3호
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    • pp.208-211
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    • 2011
  • The lowest amount of heavy metals was found outside the city (25 km away), the highest amount was found near the thermoelectric power plant, and the average amount was discovered in the central part of the city. The presence of heavy metals in soil samples resulted in reduction of several important soil characteristics (pH, humus content, soil "breathing"). Use of simple and quick methods to examine soil with high heavy metals pollution resulted in the discovery of a pedobiota group, consisting of nematodes, fungi (genus Fusarium) and Protozoa which indicated the toxicity of the Almaty city soils.