• Title/Summary/Keyword: Endosulfan

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Susceptibility of sweetpotato whitefly, Bemisia tabaci (Homoptera : Aleyrodidae) to commercially registered insecticides in Korea (외래해충인 담배가루이의 약제감수성)

  • Kim, Gil-Hah;Lee, Young-Su;Lee, In-Hwan;Ahn, Ki-Su
    • The Korean Journal of Pesticide Science
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    • v.4 no.1
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    • pp.51-58
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    • 2000
  • These studies were carried out to investigate the toxicities of 43 registered insecticides to the sweetpotato whitefly(Bemisia tabaci, B. biotype). Insecticide activities were evaluated by testing systemic action and residual effect in the laboratory, and control efficacy in the greenhouse. All experiments were tested at the recommended concentration(ppm) of each insecticides. Insect growth regulators (IGRs), pyriproxyfen and teflubenzuron showed >95% ovicidal effect. The insecticides that showed >95% larvicidal activity on 3rd nymphal instars were abamectin, acetamiprid, imidacloprid, pyriproxyfen, and acetamiprid+ ethofenprox. Insecticides with >95% adulticidal activity were abamectin, acetamiprid, diazinon, endosulfan, fenitrothion, imidacloprid, methidathion, pirimiphos-methyl, pymetrozine, spinosad, acetamiprid+ ethofenprox, cartap kydrochloride+buprofezin, and fenpropathrin+fenitrothion. Abamectin, acetamiprid, imidacloprid, pyriproxyfen, and acetamiprid+ethofenprox showed both residual effect and systemic activity. In the control efficacy test on B. tabaci, 90% control values were obtained at 1st day after treatment of the insecticides including abamectin, acetamiprid, imidacloprid, pyriproxyfen and acetamiprid+ethofenprox but in pyriproxyfen, 90% control value was reached at 7th day after treatment. These results indicate that abamectin, acetamiprid, imidacloprid, pyriproxyfen and acetamiprid+ethofenprox can be used in control for B. tabaci in field.

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Evaluation of Toxicity of Pesticides against Honeybee (Apis mellitera) and Bumblebee (Bombus terrestris) (꿀벌과 서양뒤영벌에 대한 농약의 독성평가)

  • Ahn, Ki-Su;Oh, Mann-Gyun;Ahn, Hee-Geun;Yoon, Chang-Mann;Kim, Gil-Hah
    • The Korean Journal of Pesticide Science
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    • v.12 no.4
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    • pp.382-390
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    • 2008
  • This study was performed to evaluate the acute toxicity and residual toxicity of the 69 kinds of agrochemicals (41 insecticides, 18 fungicides, and 10 acaricides) against honeybee, Apis mellifera and bumblebee, Bombus terrestris. According to the IOBC standard, the toxicity showed below 30% was classified as non-toxic. Among 41 insecticides, five insecticides (acetamiprid, chlorfenapyr, thiacloprid, milbemectin, and buprofezin+amitraz) against the honeybee; eight insecticides (methomyl, thiodicarb, acetamiprid, chlorfenapyr, thiacloprid, abamectin, spino sad, buprofezin+amitraz) against the bumblebee did not show any toxic effect. Therefore, it thought to being safe. Other 18 fungicides and 10 acaricides were safe against the honeybee and bumblebee. In residual toxicity against the honeybee, eight insecticides (dichlorvos, methomyl, imidachlorprid, emamectin benzoate, spinosad, cartap hydrochloride, chlorfenapyr, and endosulfan) among 41 insecticides tested were safe at three days after treatment; however, sixteen insecticides (dimethoate, fenitrothion, fenthion, methidathion, phenthoate, pyraclofos, fenpropathrin, clothianidin, dinotefuran, thiamethoxam, abamectin, acetamiprid+ethofenprox, acetamiprid+indoxacarb, bifenthrin+imidacloprid, ethofenprox+phenthoate, imidacloprid+methiocarb) still remain high toxicity at eleven days after treatment. Against the bumblebee, residual toxicity showed as safe in seven insecticides (dimethoate, methidation, a-cypermethion, ethofenprox, indoxcarb, chlorpyrifos+a-cypennethrin, esfenvalerate+fenitrochion) at three days after treatment; however, eight insecticides (fenitrothion, pyraclofos, clothianidin, fipronil, acetamiprid+ethofenprox, chlorpyrifos+bifenthrin, ethofenprox+phenthoate, imidacloprid+methiocarb) still showed high toxicity at seven days after treatment. From above results, it will be useful information to select insecticides being safe and effective against the honeybee and bumblebee.

A Study on Residual Pesticides in Commercial Fruits & Vegetables (시중 유통 과채류 중의 잔류농약에 관한 연구)

  • Kim, Young-Gook;Lim, Tae-Gon;Park, Sang-Su;Heo, Nam-Chil;Hong, Suk-Soon
    • Korean Journal of Food Science and Technology
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    • v.32 no.4
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    • pp.763-771
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    • 2000
  • The 88 kinds of pesticide residues were analyzed in 12 kinds(289 samples) of fruits and vegetables brought at department store & mart in Kwangju from Feburary to September in 1999. The detection rate of pesticide residue in 12 kinds(289 samples) of fruits and vegetables was 21.1%, and the rate exceeds standard was 5.2%. The order of highly exceed rate in fruits and vegetables were perilla leaf, lettuce, spinach and chickery. The order of pesticide which founded frequently in fruits and vegetables were procymidone, endosulfan, vinclozoline, chlorpyrifos, cyprermethrin, pirimiphos-M, fenvalerate, fenarimol, and monocrotophos. And that of pesticide which exceed highly standard were procymidone, vinclozolin, endosulfan, pirimiphos-M, fenarimol, monocrotophos, etc. Eight different washing methods were compared for removal efficiencies of residual pesticides(procymidone, vinclozoline) on the perilla leap, the lettuce, the spinach, the strawberry, and the minitomato. Residual pesticides such as procymidone and vinclozoline were removed most efficiently by ultrasonic washing.

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Investigation of Resiudal Organochlorine Pesticides in Green Perilla (Perilla frutescens var. japonica Hara) Greenhouse Soil and Its Leaves (들깨 생산단지 시설재배지 중 잔류성유기염소계 농약류 잔류량 조사)

  • Lim, Sung-Jin;Oh, Young-Tak;Ro, Jin-Ho;Yang, Ji-Yeon;Choi, Geun-Hyoung;Ryu, Song-Hee;Moon, Byeong-Chul;Park, Byung-Jun
    • The Korean Journal of Pesticide Science
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    • v.20 no.3
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    • pp.221-227
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    • 2016
  • This study was conducted to investigate residual organochlorine pesticides in green house soil and green perilla leaves. Extraction and clean-up method were developed using the modified QuEChERS method for residual organochlorine pesticides (ROCPs) in soil and green perilla leaves. Recovery and limit of quantitation (LOQ) of ROCPs in greenhouse soil and green perilla leaves were 76.3-113.4 and 79.4-107.3%, 0.03-0.24 and $0.33-0.50{\mu}g/kg$, respectively. Detected ROCPs in greenhouse soil were dieldrin and endosulfan sulfate, the residue were 1.6-9.2 and $22.0-87.8{\mu}g/kg$, respectively. But two pesticides in all green perilla leaf samples were not detected. These results showed that ROCPs residue in greenhouse soil was lower than the level of bioaccumulation occurring.

Analysis on Pesticide Residue in Medicinal Dried Fruits (약용건조과실류의 잔류농약분석)

  • Lee, Kyeong-Ah;Kang, Sung-Tae;Kim, Ouk-Hee;Park, Sung-Kyu;Ha, Kwang-Tae;Choi, Young-Hee;Jo, Han-Bin;Choi, Byung-Hymn
    • The Korean Journal of Pesticide Science
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    • v.14 no.3
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    • pp.209-218
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    • 2010
  • There experiment were carried out to analyze for pesticide residues in 4 kinds of dried fruits collected in northern area of Seoul in 2007~2009. Total of 213 samples were analyzed. According to the results, 20 kinds of residual pesticides were detected. Residual pesticides were detected in 66 samples (31.0%) and 8 samples (3.8%) exceeded maximum residue limits (MRL). Cypermethrin, fenvalerate, endosulfan, chlorpyrifos, bifenthrin were detected frequently. The Pesticide types which were detected in dried furits were revealed in order of pyrethroid > organophosphate > organochloride > dicarboximide. Detection rates of dried fruits were dried chinese matrimony vein (53.0%), dried jujube (34.9%), dried rubi fructus (7.6%) and dried maximowiczia chinensis (4.6%). Based on these results, we investigated the risk assessment from amount of residual pesticide in dried jujube. Range of %ADI were 0.0001~0.0081%, but the value has not effected on human health.

Establishment of Simultaneous Analysis Method for the Detection of Multi-Pesticide Residue Used in Golf Courses (골프장 농약 검사를 위한 다성분 동시분석방법 확립에 관한 연구)

  • Yun, Jeong-Ki;Lee, Min-Hyo;Noh, Hoe-Jung;Park, Jong-Gyum;Kim, Hyuk;Kim, Chan-Sub
    • Journal of Soil and Groundwater Environment
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    • v.11 no.4
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    • pp.18-24
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    • 2006
  • The possibility of multiresidue analysis of 24 pesticides out of 30 residual pesticides which are subjected to test in the golf courses was examined. The utility of multiresidue method for pesticide residue test was evaluated by recovery test through a standard addition method of pesticides in water, soil, and lawn grass. The experimental results of the recovery test for individual pesticides are as follows : The number of pesticide of which average recovery rate was over 70% regardless of media was 16 pesticides. These pesticides were composed of 8 organophosphorus pesticides (chlorpyrifos, chlorpyrifosmethyl, diazinon, EPN, fenitrothion, phenthoate, phosalone, and toclofos-methyl). 4-organochlorinated pesticides (daconil, captan, endosulfan, and tetradifon), 2-pyrethroid pesticides(fenpropathrin, lambda-cyhalothrin) and 2 other pesticides (bromopropylate, pendimethalin). On the other hand, in case of dicofol, average recovery rate was over 70% for water and lawn grass but only 53.3% for soil. Therefore, the multiresidue method applied in this experiment is not appropriate for analysis of dicofol in soil. Furthermore, among 7 pesticides, 2 pesticides(amitraz and pyraclofos) showed that theirs average recovery rate deviated from criteria($70{\sim}130%$) in almost ail media, while 5 pesticides(bensulide, deltamethrin, iprodione, phosphamidon and tralomethlin) were not detected from all media by GC/NPD or GC/ECD.

Monitoring of Residual Pesticides in Commercial Agricultural Products (유통중인 농산물의 잔류농약 모니터링)

  • Nam, Hye-Seon;Choi, Yong-Hoon;Yoon, Sang-Hyeon;Hong, Hye-Mi;Park, Yong-Chjun;Lee, Jin-Ha;Kang, Yun-Sook;Lee, Jong-Ok;Ahn, Yeong-Sun;Hong, Yeong-Pyo;Kim, Hee-Yun
    • Korean Journal of Food Science and Technology
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    • v.38 no.3
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    • pp.317-324
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    • 2006
  • Pesticide residues were monitored in agricultural products purchased at Gyeongin and Jeolla-do provinces. Total 245 pesticides were analysed by GC-MS and LC-MS/MS, and residual pesticides were detected in 70 samples (19.7%), with spinach and chard showing high detection frequency of 35%. Fifteen samples (4.2%) exceeded Korea Maximum Residue Limits (MRLs), and 30 types of pesticides were detected in samples with azoxystrobin, procymidine, endosulfan showing considerably high frequencies in respectively 14, 13, and 13 samples. The amount of 11 pesticide including chlorpyrifos, indoxacarb among them were detected over Korea MRLs. No residual pesticides were detected in 285 (80.3%) samples, and residual pesticides levels of 55 samples (15.5%) were lower than Korea MRLs, indicating 95.8% samples were relatively safe.

Comparative Evaluation of the Analytical Methods used to Determine Pesticide Residues in Milk via Dispersive Solid Phase Extraction (Dispersive Solid Phase Extraction을 사용한 우유 내 잔류농약 다성분 동시 분석법 비교연구)

  • Oh, Nam Su;Shin, Yong Kook;Lee, Ji Young;Baick, Seung Chun
    • Journal of Dairy Science and Biotechnology
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    • v.33 no.1
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    • pp.27-34
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    • 2015
  • The aim of this study was to optimize a simple, fast, and economic analytical method for the simultaneous determination of various pesticides (aldrin, p,p'-DDT, o,p'-DDT, p,p'-DDE, ${\alpha}$-endosulfan, ${\beta}$-endosulfan, dieldrin, heptachlor, permethrin, chlordane, deltamethrin, diazinon, bifenthrin, methoprene, propargite, fenpropathrin, cypermethrin, fenvalerate, and fenpropathrin) in milk by using dispersive solid phase extraction (SPE). In this study, two different extraction methods (low temperature cleanup and liquid-liquid partitioning), which were followed by a cleanup process based on dispersive-SPE, were evaluated and compared for the 19 pesticides. The results for all the pesticides were determined by gas chromatography mass spectrometry (GC/MS) with selected-ion monitoring mode, and the matrix effect of the method was evaluated. Comparison of these approaches yielded higher and more consistent recoveries of most pesticides at fortification levels of $1{\mu}g/mL$ using low-temperature fat precipitation, followed by cleanup process based on dispersive-SPE with PSA and C18 as sorbents, than other preparation process. The relative standard deviation was <20 % and the combination of this method were very effective for the cleanup.

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Residual Pesticides in Dried Agricultural Products Collected from Gyeonggi Province (경기도내 유통 건조농산물의 잔류농약 실태)

  • Lee, Myung-Jin;Kim, Myung-Gil;Jeong, Hong-Rae;Yun, Hee-Jeong;Kim, Nan-Young;Kim, Han-Taek;Kim, Chol-Young;Lee, Woon-Hyung;Yoon, Mi-Hye
    • The Korean Journal of Pesticide Science
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    • v.15 no.3
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    • pp.238-245
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    • 2011
  • This study was carried out to examine residual pesticides in dried agricultural products collected from Gyeonggi province in 2010. A total of 102 samples was collected and analyzed for 206 pesticides by multiresidue method using GC-${\mu}ECD$, GC-NPD, GC/TOF/MSD, HPLC-UVD, HPLC-FLD and HPLC/MS/MS. The detection rate of residual pesticides was 23.5% (24 of 102 samples) and the agricultural products exceeding their MRLs (Maximum Residue Limits) were 1 sample of pepper leaves. Additionally, the frequently detected pesticide were chlorothalonil, fenvalerate, chlorpyrifos, endosulfan, bifenthrin, cypermethrin, hexaconazole and iprodione. The pesticide types detected in the dried agricultural products showed in the descending order of organophosphorus (22%), pyrethroid (22%), organochloride (17%), dicarboxymide (11%), carboxymide (6%), carbamate (6%), triazole (5%) and the others (11%).

A Survey for Pesticide Residues in Major Rivers of Korea (주요하천수(主要河川水)에 대(對)한 농약잔류(農藥殘留) 실태조사(實態調査))

  • Lee, Hae-Keun;Lee, Young-Deuk;Park, Young-Sun;Shin, Yong-Hwa
    • Korean Journal of Environmental Agriculture
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    • v.2 no.2
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    • pp.83-89
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    • 1983
  • To obtain basic information for the safe use of pesticides, the aquatic environment of 5 major rivers was surveyed in April and August 1982 for organochlorine and organophosphorus pesticide residues. Regardless of sampling times and sites, pesticide residue levels were very low. Of the organophosphorus pesticides surveyed, only IBP and diazinon were detected in water samples while fenthion, fenitrothion, chlorpyriphos, chlorpyriphos-methyl, chlorfenvinphos, phenthoate, and edifenphos were not detected in any water samples. Residue levels and detection frequencies of IBP or diazinon were much higher in water samples collected in August than those collected in April. Detection frequencies of organochlorine pesticides, on the other hand, were high, but their actual residue levels were very low. BHC was detected nearly in all water samples while aldrin was not found in any samples. Detection frequencies of heptachlor, endosulfan, and o.p`-DDT were considerably high but dieldrin and p.p`-DDT were detected in a few water samples and their residue levels were also very low.

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