• 제목/요약/키워드: de-chlorinated water

검색결과 3건 처리시간 0.018초

Daphnia magna의 배양배지로서 국내 자연수의 적절성 평가 (Suitability Assessment of Domestic Natural Waters as a Culture Medium for Daphnia magna)

  • 염동혁;전찬식
    • 생태와환경
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    • 제45권3호
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    • pp.271-277
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    • 2012
  • 본 연구에서는 D. magna의 배양배지로서의 국내 자연수의 적절성을 평가하기 위하여, Elendt M4 배지에서 생산된 태어난 지 24시간 미만 된 어린 D. magna를 Elendt M4 배지, 탈염소 수도수 및 먹는 샘물에 21일 동안 노출시켜 생존율 및 번식능력을 평가하였다. 대조배지인 Elendt M4 배지와 먹는 샘물에서 배양한 D. magna는 어미의 생존율, 첫 배를 생산하는 시기, 생존한 어미 당 생산된 총 어린 물벼룩 평균수, 생존한 어미 당 생산된 죽은 어린 물벼룩 평균수는 2회의 번식시험 모두에서 Jonczyk과 Gilron (2005) 및 OECD No. 211, Daphnia magna Reproduction Test 지침서(OECD, 2008)의 기준을 벗어나지 않았다. 그러나 탈염소 수도수에서 배양을 한 경우에는 2번의 번식시험 모두 어미의 사망률이 20% 이상으로, 배양 13일, 15일, 18일에 사망된 개체가 관찰되었다. D. magna는 경도가 80 mg $CaCO_3\;L^{-1}$ 이상인 물에서 사용을 추천하고 있으나, 본 연구에서 사용된 탈염소 수도수의 경도는 50~53 mg $CaCO_3\;L^{-1}$ 이었다. 탈염소 수도수에서 나타난 지연된 사망률은 배양배지의 급격한 경도 차이에 의한 영향으로 판단된다. 그러므로 국내의 자연수(지하수, 표면수, 탈염소 수도수 등)를 사용하여 D. magna를 배양할 경우, 배양배지의 경도를 100 mg $CaCO_3\;L^{-1}$ 이상 강화시켜 사용하는 것이 필요하다. 그리고 궁극적으로는 국내에 서식하는 토착 물벼룩류를 대상으로 국내 수 환경에 적합한 시험생물을 개발하는 국가적인 연구가 필요하다고 사료된다.

Adsorption of Three Chlorinated Herbicides on Two Activated Carbons: An Example of the Effect of Surface Charge, Pore Diameter and Molecular Size on the Adsorption Process

  • Pila Matias N.;Colasurdo Diego D.;Simonetti Sandra I.;Dodero Gabriela A.;Allegretti Patricia E.;Ruiz Danila L.;Laurella Sergio L.
    • Korean Chemical Engineering Research
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    • 제61권1호
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    • pp.97-108
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    • 2023
  • Two carbonaceous adsorbents CAT and CARBOPAL were tested for reducing the concentration of the three herbicides in water: 2,4-D (2,4-dichlorophenoxyacetic acid), TCP (2,4,6-trichlorophenol) and metolachlor. Textural and chemical characterization of the adsorbents include nitrogen isotherms, FTIR, titration and thermogravimetric analyses. Adsorption was studied in discontinuous adsorption experiments at different pH values. The experimental adsorption isotherms data were fitted to four theoretical models. Adsorbent characterization reveals that CAT has higher micropore area, lower pore diameter and lower acidity than CARBOPAL. The adsorption is a second-order process and the isotherms best fitted to Sips model. The efficiency of the process depends mainly on the charge of the adsorbate for TCP and 2,4-D, but it depends on the charge of the surface for metolachlor. Adsorption capacity is higher on CAT for 2,4-D and TCP (small molecules), and it is higher on CARBOPAL for metolachlor (large molecules). Theoretical calculations clearly support this assumption.

Fungal Load of Groundwater Systems in Geographically Segregated Islands: A Step Forward in Fungal Control

  • Joong Hee Cho;Nam Soo Jun;Jong Myong Park;Ki In Bang;Ji Won Hong
    • Mycobiology
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    • 제50권5호
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    • pp.345-356
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    • 2022
  • The fungal distribution, diversity, and load were analyzed in the geographically segregated island groundwater systems in Korea. A total of 79 fungal isolates were secured from seven islands and identified based on the internal transcribed spacer (ITS) sequences. They belonged to three phyla (Ascomycota, Basidiomycota, and Chlorophyta), five classes, sixteen orders, twenty-two families, and thirty-one genera. The dominant phylum was Ascomycota (91.1%), with most fungi belonging to the Cladosporium (21.5%), Aspergillus (15.2%), and Stachybotrys (8.9%) genera. Cladosporium showed higher dominance and diversity, being widely distributed throughout the geographically segregated groundwater systems. Based on the diversity indices, the genera richness (4.821) and diversity (2.550) were the highest in the groundwater system of the largest scale. As turbidity (0.064-0.462) increased, the overall fungal count increased and the residual chlorine (0.089-0.308) had low relevance compared with the total count and fungal diversity. Cladosporium showed normal mycelial growth in de-chlorinated sterilized samples. Overall, if turbidity increases under higher fungal diversity, bio-deterioration in groundwater-supplying facilities and public health problems could be intensified, regardless of chlorine treatment. In addition to fungal indicators and analyzing methods, physical hydrostatic treatment is necessary for monitoring and controlling fungal contamination.