• Title/Summary/Keyword: Daphnia magna

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Quantitative Structure-Toxicity Relationships (QSTRs) of Fungicidal Phenylthionocarbamate Derivatives (살균성, Phenylthionocarbamate 유도체들의 정량적인 구조와 독성과의 관계)

  • Sung, Nack-Do;Yang, Sook-Young;Park, Kwaun-Yong
    • Korean Journal of Agricultural Science
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    • v.28 no.1
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    • pp.33-40
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    • 2001
  • The authors attempted to derive a comprehensive quantitative structure-toxicity relationships (QSTRs) between various physicochemical parameters of phenyl substituents in fungicidal phenylthionocarbamate derivatives and toxicity evaluated using TOPKAT calculation. On the basis of this approach we made preditions for toxicity values for not yet tested substances with respect to these systems. The results suggested that the optimal values, $(B_2)_{opt.}=1.54_{\AA}$(Ames mutagenicity), $(R)_{opt.}=0.16$ (car-cinogenicity of male rat), $(\pi)_{opt.)=0.16$ (carcinogenicity of male mouse), $({\varepsilon}LOMO)_{opt}=-0.52e.v.$ ($LD_{50}$ of rat oral), $(B_3){opt.}=1.54_{\AA}$(chronic LOAEU), $(logP)_{opt.}=4.25$ ($LC_{50}$ of Fathead minnow) and $({\sigma})_{opt}=-0.68$ ($EC_{50}$ of Daphnia magna) of phenyl substituents were strongly correlated with the acute and chronic toxicities.

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Ecotoxicity Assessment for Livestock Waste Water Treated by a Low Impact Development(LID) Pilot Plant (파일럿 규모의 LID공법을 적용한 축산폐수 처리수에 대한 생태독성 평가)

  • Park, Da Kyung;Chang, Soon-Woong;Choi, Hanna
    • Korean Journal of Environmental Biology
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    • v.35 no.4
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    • pp.662-669
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    • 2017
  • This study evaluated the ecotoxicological properties of livestock waste water treated by a LID (Low Impact Development) system, using a mixture of bio-reeds and bio-ceramics as suitable bed media for a subsequent treatment process of a livestock wastewater treatment plant. The relationship between the pollutant reduction rate and the ecotoxicity was analyzed with the effluents from the inlet pilot plant, with vegetated swale and wetlands and the batch type of an infiltration trench. Each pilot plant consisted of a bio process using bio-reeds and bio-ceramics as bed media, as well as a general process using general reeds and a bed as a control group. The results indicated that, after applying the HRT 24 hour LID method, the ecotoxicity was considerably lowered and the batch type pilot plant was shown to be effective for toxicity reduction. The LID method is expected to be effective for water quality management, considering ecotoxicity by not only as a nonpoint source pollution abatement facility but also, as a subsequent treatment process linked with a livestock manure purification facility. It is necessary to take the LID technic optimization study further to apply it as a subsequent process for livestock wastewater treatment.

Fish Safety and Antimicrobial Activity of Natural Sulfur Solution on Aquatic Microorganisms (Saprolegnia parasitica) Isolated from Misgurnus mizolepis (미꾸라지(Misgurnus mizolepis)에서 분리된 수생균 (Saprolegnia parasitica)에 대한 천연유황수의 항균 활성 및 처리에 대한 어류 안전성)

  • Yi, Seung-Won;Lee, Seung-Hyeop;Lee, Sang-Jong;Kim, Mi-Hee;Lee, Hye-Hyun;Chu, Saet-Byul;Kim, Kyung-Hee;Lee, Hee Jung
    • Korean Journal of Environmental Biology
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    • v.35 no.2
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    • pp.116-122
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    • 2017
  • Basic dyes such as malachite green and methylene blue have been used as disinfectants to control water fungal infections since the 1930s. However, after succeeding reports of carcinogenicity and bioaccumulation of the dye, their use was forbidden in lieu of public health. This study undertook to evaluate the therapeutic effect of sulfur solution processed by effective microorganisms (EM-PSS) against Saprolegnia parasitica infection, and its safety in fish. In vitro antifungal evaluation of EM-PSS inhibited the growth of S. parasitica mycelia at concentrations of 50 ppm or higher. The acute toxicity test of EM-PSS to the mud fish (Misgurnus mizolepis) measured a no effect concentration (NOEC) at 100 ppm, the lowest effect concentration (LOEC) at 125 ppm, and the half-lethal concentration ($LC_{50}$) at 125 ppm in juvenile and 250 ppm in the immature stage. In addition, the ecotoxicity test of EM-PSS using Daphnia magna inhibited swimming of D. magna at concentrations of 100 ppm or less. Lastly, the EM-PSS prevented infection of S. parasitica to mud fish, at concentrations of 50 ppm. Furthermore, at 100 ppm concentration, the EM-PSS showed no acute toxicity on mud fish, nor any eco-toxic effects on D. magnano. Therefore, we conclude that carcinogenic disinfectants such as malachite green and methylene blue could be replaced by EM-PSS to remove S. parasitica in mud fish farming, and might be a potential eco-friendly disinfectant in aquaculture.

Study on ZnO Nanoparticle Dispersions in Test Media Including Natural Organic Matter for Ecotoxicological Assessment (천연유기물을 포함한 산화아연 나노입자 분산배지의 생태독성평가 적용성 연구)

  • Park, Sun-Young;Kim, Kyung-tae;Shin, Yu-jin;Kim, Ji-eun;Lee, Jae-woo;Jo, Eunhye;Sung, Hwa kyung;Kim, Pil-je;Choi, Kyung-hee;Eom, Ig-chun
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.11
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    • pp.634-640
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    • 2017
  • Toxicity and fate assessment is necessary in the evaluation of the environmental, health and safety risks of engineered nanomaaterials (ENMs). Therefore, in order to ensure the reproducibility, reliability and relevance of ENMs toxicity results, stable and monomodal dispersion protocols in toxicity test media are needed. Zinc oxide nanoparticles (nZnO) are widely used in various products such as cosmetic products, paper, paints etc. In this study, nZnO dispersions in ecotoxicity test media were produced by following a series of steps of modified National Institute of Standards and Technology (NIST) Special publication 1200-5. In addition, natural organic matter (humic acid (HA)) was used as a stabilizing agent to disperse nZnO in the test media. The hydrodynamic diameters (HDD) of the nZnO in dispersion ranged between 150 and 200 nm according to the dynamic light scattering (DLS) measurement. Based on these dispersions in ecotoxicity test using ecological species (Oryzias latipes, Daphnia magna, Pseudokirchneriella subcapitata and Chironomusus riparius), dispersion protocol was found to have a considerable potential in ecotoxicity test of ENMs.