• Title/Summary/Keyword: 유기인계 농약

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Monitoring of the residues of some pesticides in mulberry leaves and their safety evaluation (뽕잎중 잔류농약의 monitoring 및 안전성 평가)

  • Lee, Jae-Koo;Kwon, Jeong-Wook;Ahn, Ki-Chang;Moon, Jae-Yu
    • The Korean Journal of Pesticide Science
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    • v.2 no.2
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    • pp.45-52
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    • 1998
  • In order to evaluate the safety of mulberry leaves for sericultural purpose to the contamination by pesticide residues, the analyses of dichlorvos, acephate, phenthoate, pyrazophos, deltamethrin, and cypermethrin were done for 24 samples collected in spring and fall over two consecutive years (1996 and 1997), each, from 8 provinces across the country, by selecting three representative farmhouses in each province. In spring samples of 1996, the residual amounts of dichlorvos, acephate, and phenthoate were $0.018{\sim}0.032$, $0.013{\sim}0.072$, and 0.051 ppm, respectively, whereas, pyrazophos was not detected, and the detection frequencies were 29, 58, and 4%, respectively. In fall samples, on the other hand, those of the above pesticides were $0.012{\sim}0.048$, $0.020{\sim}0.156$, and $0.018{\sim}0.050$ ppm, respectively, and pyrazophos was not detected either and the detection frequencies were 42, 17, and 13%, respectively. While in spring samples of 1997, the residual amounts of dichlorvos, acephate, and cypermethrin were $0.014{\sim}0.064$, $0.033{\sim}0.061$, and $0.019{\sim}0.068$ ppm, respectively, and deltamethrin was not detected. The detection frequencies were 75, 13, and 8%, respectively. In fall samples, on the other hand, those of the above pesticides were $0.013{\sim}0.062$, 0.015, and $0.009{\sim}0.013$ ppm, respectively, and deltamethrin was not detected either. The detection frequencies were 88, 4, and 17%, respectively. Almost all of the samples turned out to be non-toxic to silkworms, except that one sample (No. 10, spring 1997) contaminated by a high concentration of cypermethrin (0.068 ppm) was judged to do harm to silkworms. In the GC analyses, the selection of columns, the change in column temperature, and the use of MSD made the separation and identification of the vague compounds possible.

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An Integrated Biological Control Using an Endoparasitoid Wasp (Cotesia plutellae) and a Microbial Insecticide (Bacillus thuringiensis) against the Diamondback Moth, Plutella xylostella (배추좀나방에 대한 프루텔고치벌과 미생물농약의 통합생물방제)

  • Kim, Kyusoon;Kim, Hyun;Park, Young-Uk;Kim, Gil-Hah;Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.52 no.1
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    • pp.35-43
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    • 2013
  • All tested Korean populations of the diamondback moth, Plutella xylostella, are known to be resistant especially against pyrethroid insecticides by mutation in its molecular target, para-sodium channel. Moreover, P. xylostella is able to develop resistance against most commercial insecticides. This study was performed to develop an efficient control technique against P. xylostella by a combined treatment of an endoparasitoid wasp, Cotesia plutellae, and a microbial insecticide, Bacillus thuringiensis. To investigate any parasitism preference of C. plutellae against susceptible and resistant P. xylostella, five different populations of P. xylostella were compared in insecticide susceptibilities and parasitism by C. plutellae. These five P. xylostella populations showed a significant variation against three commercial insecticides including pyrethroid, organophosphate, neonicotinoid, and insect growth regulator. However, there were no significant differences among five P. xylostella populations in their parasitic rates by C. plutellae. Moreover, parasitized larvae of P. xylostella showed significantly higher susceptibility to B. thuringiensis. As an immunosuppressive agent, viral ankyrin genes (vankyrins) encoded in C. plutellae were transiently expressed in nonparasitized larvae. Expression of vankyrins significantly enhanced the efficacy of B. thuringiensis against the third instar larvae of P. xylostella. Thus an immunosuppression induced by C. plutellae enhanced the insecticidal efficacy of B. thuringiensis. These results suggest that a combined treatment of C. plutellae and B. thuringiensis may effectively control the insecticide-resistant populations of P. xylostella.

Degradation Patterns of Orgaonophosphorus Insecticide, Chlorpyrifos by Functionalized Zerovalent Iron (기능화된 Zerovalent Iron에 의한 유기인계 살충제 Chlorpyrifos의 분해 특성)

  • Kim, Dai-Hyeon;Choi, Choong-Lyeal;Kim, Tae-Hwa;Park, Man;Kim, Jang-Eok
    • Applied Biological Chemistry
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    • v.50 no.4
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    • pp.321-326
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    • 2007
  • An organophosphorus insecticide, chlorpyrifos, has been of a great concern due to persistence, toxicity and accumulation in soils and groundwaters. This study deals with degradation efficiency and dechlorination kinetics of chlorpyrifos by various types of zerovalent irons (ZVIs) for effective remediation of the soils contaminated with chlorinated pesticides. Chlorpyrifos degradation rate was increased with increasing ZVI treatment amount and reaction time. The degradation rate and dechlorination kinetics of chlorpyrifos increased in the order of mZVI > nZVI > cZVI in solutions and soils. Dechlorination number value of chlorpyrifos by cZVI, nZVI and mZVI treatment exhibited 1.08, 3.09 and 3.18, respectively. In soils, degradation efficiency and kinetics of chlorpyrifos significantly were affected by moisture content because of the limited contact between ZVIs and chlorpyrifos. These results suggest that nanosized and functionalized mZVI could be effectively applied to degradation of chlorinated pesticides in the soil and aqueous environments.

Adsorption and residues of EPN in the soil of Cheju Island (제주도 토양에서 EPN의 용탈과 잔류)

  • Kim, Jung-Ho;Kam, Sang-Kyu
    • The Korean Journal of Pesticide Science
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    • v.4 no.1
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    • pp.19-25
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    • 2000
  • The adsorption and leaching of organophosphorus pesticide, EPN (O-ethyl-O-4 -nitrophenyl phenyl phosphonothioate) were investigated in Namwon soil(black volcanic soil), Aewol soil(very dark brown volcanic soil) and Mureung soil(dark brown nonvolcanic soil) in Cheju Island. The residue of EPN was surveyed on coastal environment of Cheju in Aug. 1996. The organic matter of Namwon soil, Aewol soil and Mureung soil was 19.8, 6.2 and 2.4%, respectively. The cation exchange capacity of Namwon soil, Aewol soil and Mureung soil was 24.8, 13.0 and 9.5 meq/100 g, respectively. The Freundlich constant, k value, was 89.4, 26.9 and 9.25 for Namwon soil, Aewol soil and Mureung soil, respectively. The k value of Namwon soil with very high organic matter content and cation exchange capacity was the highest for Aewol soil and Mureung soil. The Freundlich constant, 1/n, show a high correlation with organic matter content, i.e. it is less than unity for organic matter rich soil of Namwon soil and greater than unity for organic matter poor soil of Mureung soil. The leaching of EPN was slower for Namwon soil with high k values, and faster for Mureung soil with low k values. The results of the study was demonstrated the potential of pollution for EPN have little leached into soil environment. EPN was not detected in seawater and sediment in the coastal environment in Cheju Island. EPN used in the farm on tile Cheju island were not residued in the coastal environment.

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Photodegradation of some Organophosphorous Pesticides (일부 유기인계 농약의 광분해성)

  • 민경진;차춘근
    • Journal of Food Hygiene and Safety
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    • v.14 no.4
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    • pp.339-345
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    • 1999
  • The present study was performed to investigate photodegradation rate constants and degradation products of dichlorvos and methidathion by the USEPA method. The two pesticides were very stable in sunlight for 16 days from September 2 to 18, 1998 and humic acid had no sensitizing effect on the photolysis of each pesticide in sunlight. The photolysis rate was fast-est for methidathion, followed by dichlorvos in the presence of UV irradiation. Photodegradation rate constant and half-life of dichlorvos were 0.0208 and 33.3 min, respectively. Photodegradation rate constant and half-life of methidathion were 0.6789 and 1.0min, respectively. The two pesticides were degraded completely in the presence of UV irradiation and UV irradiation with TiO$_2$in about 3 hours. Therefore, it is suggested that UV treatment will be effective for the degradation of pesticides in the process of drinking water purification. In case of dichlorvos and methidathion, UV irradiation with TiO$_2$was more effective for degradation than W irradiation. In order to identify photolysis products, the extracts of degradation products were analyzed by GC/ MS. The mass spectrum of photolysis products of dichlorvos was at m/z 153, those of the photolysis of methidathion were at m/z 198 and 214, respectively. Photolysis products of dichlorvos was Ο, Ο-dimethyl phosphate(DMP), those of methidathion were Ο, Ο-dimethyl phosphorothioate(DMTP) and Ο, Ο-dimethyl phosphorodithioate (DMDTP).

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Changes in Susceptibility of Killifish (Oryzias latipes) to Three Pesticides with Growth (농약에 대한 송사리 생육단계별 감수성의 변화)

  • Shin, Chun-Chul;Lee, Sung-Kyu;Kim, Young-Bae;Kim, Young-Hwa;Roh, Jung-Koo
    • Korean Journal of Environmental Agriculture
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    • v.6 no.1
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    • pp.50-60
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    • 1987
  • Sensitivity, expressed in the $96h-LC_{50}$ determined with continuous flow system, was compared for eight developmental stages of Oryzias latipes with butachlor, diazinon and fenitrothion. Significance of the laboratory determined $96h-LC_{50}$ in real field situation was evaluated for butachlor using outdoor model agrosystem. In the laboratory tests, the most sensitive stage was post-larva stage IV(7 days after hatching) with $96h-LC_{50}$ of 0.14, 1.4, and 1.6ppm for butachlor, diazinon and fenitrothion, respectively, whereas the least sensitive stage was early embryo stage(1 day after fertilization), and then the susceptibility was somewhat stable after 21days after hatching. In the model agrosystem test, the highest concentration of 0.53ppm of butachlor in water was obtained at the 2nd day after application. The stages IV and VIII showed mortality of over 50% at 96 hours after application. It is concluded that the conventional use of butachlor in the field would cause significant adverse effect on O. latipes. It is suggested that sensitivity test at the early life stages with fish is an important part of the ecotoxicological assessment of chemicals.

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Disappearance of Organic Phosphate Insecticides Residue on Vegetables and Fruit Crops (과실 및 채소류에 대한 유기 인계 농약의 잔류소장)

  • Woo, Ki-dae
    • Korean Journal of Agricultural Science
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    • v.4 no.2
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    • pp.229-238
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    • 1977
  • Sumithion and EPN residues on grapes, EPN and Diazinon on chinese cabbage, Parathion on peaches, Dimethoate on tomatoes, and EPN and Malathion on cucumber were analyzed in terms of 0, 3, 7, 14, 21 and 30 days after last application for the pesticides safty use. From the disappearance rate for various organo-phosphate insecticides on vegetables and fruit crops, following results are obtained. 1. On Chinese cabbage, Diazinon residues were 0.25~0.38p.p.m three weeks after one application, and EPN were 1.39~2.69p.p.m seven days after one application and 0.96~2.34p.p.m two weeks after twice application. 2. EPN residues on grapes were 1.09~1.80p.p.m seven days after one application and Sumithion were 0.17~0.53p.p.m fourteen days after one application. 3. On peaches, Parathion residues were 0.40~0.61p.p.m two weeks after last application. 4. Dimethoate residues on tomatoes were 0.141p.p.m seven days after four times application. 5. On cucumber, EPN residues were 2.11~2.14p.p.m three days after twice application, and Malathion were 0.46p.p.m 3 day after four times application but 0.062~0.025p.p.m three days after last application. 6. Rate of degradation of organo-phosphate chemicals is inversely related to half-life of its. 7. Minimum intervals between last treatment and harvest to prevent unsafty residues are as follows. 7 days for EPN with one application and 14 days with twice application on chinese cabbage, 3 days on cucumber and 7 days on grape, 14 days for parathion, 7 days for dimethoate on tomatoes, 0 to 3 days for Malathion on cucumber, 21 days for Sumithion on grape, 21 days on chinese cabbage for Diazinon.

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작업환경을 위한 TLV의 근거 - PARATHION(1)

  • Kim, Chi-Nyeon
    • 월간산업보건
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    • s.247
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    • pp.16-19
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    • 2008
  • 파라티온(Parathion)은 폭넓고 다방면으로 사용되는 유기 인계 해충 진드기의 살충제이다. 파라티온의 첫 번째 생물학적 반응은 콜린에스테라아제 효소의 활성도 저감이다. 파라티온의 다양한 수준의 동물 노출 실험 결과, 경구 투여량 0.5-6 mg/kg 수준에서 악영향이 관찰되었다. 인간의 경우 파라티온 0.1 mg/kg 이하 수준에서는 RBC 콜린에스테라아제 효소의 활성도 감소가 나타나지 않았다. $0.2-0.8\;mg/m^3$의 작업장 노출 수준에서는 RBC 콜린에스테라아제 효소의 감소가 관찰되었다. 본 연구 결과에 근거하여 흡입 노출농도 $0.35\;mg/m^3$에 해당되는 0.05 mg/kg 이하 용량에서는 파라티온과 관련한 건강상의 생물학적 장애 증상이 유발되지 않았다. 따라서 흡입성 에어로졸과 증기상 형태로 $0.05\;mg/m^3$의 TLV-TWA가 파라티온의 작업장 노출기준으로 권고되었다. 이 노출기준은 부교감 신경의 이상과 다른 생물학적 장애 증상을 예방하는 목적에서 설정되었다. 이 수치는 인간을 대상으로 한 연구에서 얻어진 NOAEL로부터 근거를 둔 것이고, 작업자들의 RBC 콜린에스테라아제 효소의 활성도 저하를 방지하는 용량에 해당되는 것으로 예상된다. 이러한 접근은 RBC 콜린에스테라아제 효소의 억제가 단독 사용자에게서는 나타나지 않는다는 것을 확인하는데 이용되는 Biological Exposure Index의 활용과 일치된다. 인간에게 있어 파라티온 피부노출이 죽음까지도 이를 수 있다는 임상적 증세와 연관되어 있기 때문에 피부경고주석이 권고되었다. 쥐들을 대상으로 한 사료 공급 연구들에서 파라티온의 노출을 통한 명확한 종양의 발생 증가가 관찰되지 않아 비발암성 물질(A4)로 설정하였다. 파라티온의 TLV-STEL과 SEN notation을 설정하기에는 아직 충분한 데이터가 확보되어 있지 않고 있으며 파라티온의 작업 노출 모니터링에 대한 자세한 정보를 얻으려면 아세털콜린에스터라제 억제 농약의 BEI 문서들을 참고하는 것이 필요하다.

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A Study of Current Status on Pesticide Residues in Commercial Dried Agricultural Products (서울시 유통 건조농산물 중의 농약잔류 실태 연구)

  • Kim, Bog-Soon;Park, Seoung-Gyu;Kim, Mi-Sun;Cho, Tae-Hee;Han, Chang-Ho;Jo, Han-Bin;Choi, Byung-Hyun;Kim, Sung-Dan
    • Korean Journal of Food Science and Technology
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    • v.39 no.2
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    • pp.114-121
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    • 2007
  • The purpose of this study was to investigate 253 kinds of pesticide residues in 58 commercial dried agricultural products in Seoul. The determinations of the pesticide residues were performed using multiresidue methods and were carried out by a gas chromatography-nitrogen phosphorus detector (GC-NPD), an electron capture detector ($GC-{\mu}ECD$), a mass spectrometry detector (GC-MSD) and high performance liquid chromatography-ultraviolet detector (HPLC-UV), and a fluorescence detector (HPLC-FLD). The pesticide residue detection rate in the commercial dried agricultural products was 24.1% (14 of 58 samples). Twelve pesticide residues without maximum residue limits (MRLs) were detected. In the vegetable groups, the frequency of pesticide residues was found to be in the increasing order of dried fruiting vegetables > dried leafy vegetables > dried stalk and stem vegetables. The pesticides used on dried red pepper in the dried fruiting vegetables were varied (7 kinds) and numerous (4 of 8 samples). The pesticide types detected in the commercial dried agricultural products were in the order of pyrethroid > organochloride > organophosphorus and insecticide > fungicide > herbicide ${\cdot}$ nematicide. The primary pyrethroid pesticide detected was cypermethrin. According to the producing areas of products, large numbers of pesticide residues were found in the order of Korea, China, North Korea, USA, and Vietnam.

Organophosphorus Insecticide Residues in Fruits and Vegetables (과실채소중(果實菜蔬中) 유기인계(有機燐系) 농약잔류(農藥殘留)에 관(關)한 연구(硏究))

  • Suh, Y.S;Rhu, H.I.;Kim, I.K.;Kim, H.Y.;Jun, S.H.
    • Korean Journal of Environmental Agriculture
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    • v.3 no.2
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    • pp.30-36
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    • 1984
  • This study was to investigate the organophosphorus insecticide residues in crops including five kinds of vegetables and two kinds of fruits. The pesticides investigated in spring-radish, spring Chinese cabbage, cucumber and tomato were diazinon, DEP and malathion, in unripe pepper EPN and PAP, in peach EPN, parathion and demeton-methyl, and in grape EPN, PAP and MEP. All samples were analysed by gas chromatographic technique with NPD detector. No one sample was found to approach proposed national maximum residue limits in Korea.

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