用户名: 密码: 验证码:
Acute Toxicity of Water-Accommodated Fraction and Chemically Enhanced WAF of Bunker C Oil and Dispersant to a Microalga Tetraselmis tetrathele
详细信息    查看全文
  • 作者:Sheryll S. Santander-Avanceña…
  • 关键词:Water ; accommodated fraction (WAF) ; Chemically enhanced WAF (CEWAF) ; Dispersant ; Tetraselmis tetrathele ; Acute toxicity test
  • 刊名:Bulletin of Environmental Contamination and Toxicology
  • 出版年:2016
  • 出版时间:January 2016
  • 年:2016
  • 卷:96
  • 期:1
  • 页码:31-35
  • 全文大小:545 KB
  • 参考文献:Anderson JA, Kuhl AJ, Anderson AN (2014) Toxicity of oil and dispersed oil on juvenile mud crabs Rhithropanopeus harrisii. Bull Environ Contam Toxicol 92:375–380CrossRef
    Baek SH, Son M, Shim WJ (2013) Effects of chemically enhanced water-accommodated fraction of Iranian heavy crude oil on periphytic microbial communities ion microcosm experiment. Bull Environ Contam Toxicol 90:605–610CrossRef
    Blaise C, Ferard JF, Vasseur P (1998) Microplate toxicity tests in the microalage: a review. In: Wells PG, Lee K, Blaise C (eds) Microscale testing in aquatic toxicology; advances, techniques and practices. CRC Press, Boca Raton, pp 575–587
    Chen CY, Wang YJ, Yang CF (2009) Estimating low-toxic-effect concentrations in closed-system algal toxicity tests. Ecotoxicol and Environ Saf 72:1514–1522CrossRef
    Cohen JH, McCormick MR, Burkhardt SM (2014) Effects of dispersant and oil on survival and swimming activity in a marine copepod. Bull Environ Contam Toxicol 92:381–387CrossRef
    Fabregas J, Herrero C, Veiga M (1984) Effect of oil and dispersant on growth and chlorophyll a content of microalgae Tetrasemlis suesica. Appl Environ Microbiol 47:445–447
    Gilde K, Pinckney JL (2012) Sublethal effects of crude oil on the community structure of estuarine phytoplankton. Estuaries Coasts 35:853–861CrossRef
    Gonzalez J, Figueiras FG, Aranguren M, Crespo BG, Fernandez E, Moran XAG, Nieto-Cid M (2009) Effect of a stimulated oil spill on natural assemblages of marine phytoplankton enclosed in microcosms. Estuarine Coast Shelf Sci 83:265–276CrossRef
    Koyama J, Kakuno A (2004) Toxicity of heavy fuel, dispersant, and oil-dispersant mixtures to a marine fish, Pagrus major. Fish Sci 70:587–594 (Tokyo, Jpn) CrossRef
    Lee KW, Shim WJ, Yim UH, Kang JH (2013) Acute and chronic toxicity of the water accommodated fraction (WAF), chemically enhanced WAF (CEWAF) of crude oil and dispersant in the rock pool copepod Tigriopus japonicas. Chemosphere 92:1161–1168CrossRef
    Lessard LS, Demarco G (2000) The significance of oil spill dispersants. Spill Sci Technol Bull 6(1):68–69CrossRef
    Liao IC, Huang TL (1970) Experiments on the propagation and culture of prawn in Taiwan. In: Proceedings of the 14th Session of the Indo-Pacific Council, pp 1–26
    Nayar S, Logh BP, Chou LM (2005) Environmental impacts of diesel fuel on bacteria and phytoplankton in an tropical estuary assessed using in situ mesocosms. Ecotoxicology 14:397–412CrossRef
    Okumura Y, Koyama J, Uno S (2003) The relationship between logPow and molecular weight of polycyclic aromatic hydrocarbons and EC50 values of marine microalgae. La Mer 41:182–191
    Othmana HB, Leboulangera C, Le Floc E, Mabroukb HH, Hlail AS (2012) Toxicity of benz (a) anthracene and fluoranthene to marine phytoplankton in culture: does cell size really matter? J Hazard Mater 243:204–211CrossRef
    Ozhan K, Bargu S (2014) Can crude oil toxicity on phytoplankton be predicted based on toxicity data on benzo (a) pyrene and naphthalene? Bull Environ Contam Toxicol 92:225–230CrossRef
    Ozhan K, Miles SM, Gao H, Bargu S (2014) Relative phytoplankton growth responses to physically and chemically dispersed South Louisiana sweet crude oil. Environ Monit Assess 186:3941–3956CrossRef
    Pahila IG, Taberna HS Jr, Gamarcha LT, de la Rama S, Uno S, Koyama J (2010) Early monitoring of potentially toxic hydrocarbon species in sediment and biological samples from Southern Guimaras, Philippines after oil spill. Mem Fac Fish Kagoshima Univ 59:11–16
    Prescott GW (1968) The algae: a review. Houghton Mifflin, Boston
    Ramachandran D, Hodson PV, Khan CW, Lee K (2004) Oil dispersant increases PAH uptake by fish exposed to crude oil. Ecotoxicol Environ Saf 59:300–308CrossRef
    Singer MM, Aurand D, Bragin GE, Clark JR, Coelho GM, Sowby ML, Tjeerdema RS (2000) Standardization of the preparation and quantitation of water-accommodated fractions of petroleum for toxicity testing. Mar Pollut Bull 40:1007–1016CrossRef
    USEPA (1996) Method 8270C, Semivolatile organic compounds by gas chromatography/mass spectrometry (GC/MS). http://​www.​caslab.​com/​EPA-Methods/​PDF/​8270c.​pdf . Accessed 3 May 2008
  • 作者单位:Sheryll S. Santander-Avanceña (1) (2)
    Resurreccion B. Sadaba (1)
    Hilario S. Taberna Jr. (1) (4)
    Gilma T. Tayo (1)
    Jiro Koyama (3)

    1. College of Arts and Sciences and Oil Spill Response Program, University of the Philippines Visayas, Miagao, Iloilo, Philippines
    2. Aquaculture Department/Southeast Asian Fisheries Development Center, Tigbauan, Iloilo, Philippines
    4. Iloilo Science and Technology University, Lapaz, Iloilo City, Philippines
    3. Faculty of Fisheries, Education and Research Center for Marine Resources and Environment, Kagoshima University, Kagoshima, Japan
  • 刊物主题:Pollution, general; Environmental Health; Ecotoxicology; Soil Science & Conservation; Environmental Chemistry; Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution;
  • 出版者:Springer US
  • ISSN:1432-0800
文摘
This study assessed the toxicity of water-accommodated fraction (WAF) and chemically enhanced WAF (CEWAF) of bunker C oil and dispersant (DISP) to a microalga, Tetraselmis tetrathele. The 72-h median effective concentration (72-h EC50) of CEWAF and DISP were determined at 3.30 % and 2.40 %, respectively. The no observed effect concentration (NOEC) of CEWAF to T. tetrathele was at 2.0 % and lowest observed effect concentration (LOEC) was at 3.0 % while NOEC and LOEC of DISP to T. tetrathele were determined at 1.0 % and 2.0 %, respectively. The addition of dispersant to oil increased the amount of total PAH present in the CEWAF test solutions. DISP alone was highly toxic, and the toxicity of CEWAF was primarily caused by the presence of dispersant.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700