Search Results - "Balakrishnan, V. K."

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  1. 1

    Toxicity of four sulfonamide antibiotics to the freshwater amphipod Hyalella azteca by Bartlett, Adrienne J., Balakrishnan, V.K., Toito, J., Brown, L.R.

    Published in Environmental toxicology and chemistry (01-04-2013)
    “…Sulfonamides are a widely used class of antibiotics; however, there are few toxicological data available with which to conduct environmental risk assessments…”
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    Journal Article
  2. 2

    Bioaccumulation of sediment-associated dinonylnaphthalene sulfonates in the freshwater mussel Lampsilis siliquoidea and oligochaete Tubifex tubifex by Matten, K.J., Gillis, P.L., Milani, D., Parrott, J.L., Bartlett, A.J., Toito, J., Balakrishnan, V.K., Prosser, R.S.

    Published in Chemosphere (Oxford) (01-02-2021)
    “…Naphthalene sulfonic acids (NSAs) are used primarily as additives in a wide range of industrial products (e.g., rubber materials, coatings, sealants, fuels,…”
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    Journal Article
  3. 3

    Toxicity of dinonylnaphthalene sulfonates to Pimephales promelas and epibenthic invertebrates by Matten, K.J., Parrott, J.L., Bartlett, A.J., Gillis, P.L., Milani, D., Toito, J., Balakrishnan, V.K., Prosser, R.S.

    Published in The Science of the total environment (01-11-2020)
    “…Dinonylnaphthalene sulfonic acids (NSAs) are high production volume chemicals that are used primarily as additives in a wide range of industrial products…”
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    Journal Article
  4. 4

    The influence of organic carbon on the toxicity of sediment-associated dinonylnaphthalene sulfonic acids to the benthic invertebrates Tubifex tubifex and Hyalella azteca by Matten, K.J., Bartlett, A.J., Milani, D., Gillis, P.L., Parrott, J.L., Toito, J., Balakrishnan, V.K., Prosser, R.S.

    Published in Environmental pollution (1987) (01-12-2020)
    “…Naphthalene sulfonic acids (NSAs) are used extensively in industrial applications as dispersants in dyes, rubbers, and pesticides, and as anti-corrosive agents…”
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    Journal Article
  5. 5

    Effect of substituted phenylamine antioxidants on three life stages of the freshwater mussel Lampsilis siliquoidea by Prosser, R.S., Gillis, P.L., Holman, E.A.M., Schissler, D., Ikert, H., Toito, J., Gilroy, E., Campbell, S., Bartlett, A.J., Milani, D., Parrott, J.L., Balakrishnan, V.K.

    Published in Environmental pollution (1987) (01-10-2017)
    “…Substituted phenylamines (SPAs) are incorporated into a variety of consumer products (e.g., polymers, lubricants) in order to increase the lifespan of the…”
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    Journal Article
  6. 6

    Variation in the toxicity of sediment-associated substituted phenylamine antioxidants to an epibenthic (Hyalella azteca) and endobenthic (Tubifex tubifex) invertebrate by Prosser, R.S., Bartlett, A.J., Milani, D., Holman, E.A.M., Ikert, H., Schissler, D., Toito, J., Parrott, J.L., Gillis, P.L., Balakrishnan, V.K.

    Published in Chemosphere (Oxford) (01-08-2017)
    “…Substituted phenylamine antioxidants (SPAs) are produced in relatively high volumes and used in a range of applications (e.g., rubber, polyurethane); however,…”
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    Journal Article
  7. 7

    Electrochemical and quantum chemical study of 4-[(E)-[(2,4-dihydroxy phenyl) methylidine] amino]-6-methyl-3-sulphanylidine-2,3,4,5-tetra hydro-1,2,4-triazin-5-one [DMSTT] by John, Sam, Joseph, Bincy, Balakrishnan, K.V., Aravindakshan, K.K., Joseph, Abraham

    Published in Materials chemistry and physics (01-09-2010)
    “…The inhibition of mild steel in aerated 1 M hydrochloric acid solution was studied using conventional weight loss method, potentiodynamic polarization studies…”
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    Journal Article
  8. 8

    Bioaccumulation of sediment-associated substituted phenylamine antioxidants in Tubifex tubifex and Lampsilis siliquoidea by Prosser, R. S., Gillis, P. L., Milani, D., Holman, E. A. M., Ikert, H., Schissler, D., Toito, J., Palabrica, V., Parrott, J. L., Bartlett, A. J., Balakrishnan, V. K.

    Published in Ecotoxicology (London) (01-07-2018)
    “…Substituted phenylamine antioxidants (SPAs) are additives in a variety of commercial polymers (e.g., lubricants, plastics, etc.). Based on their…”
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    Journal Article
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  10. 10

    Micellar Catalyzed Degradation of Fenitrothion, an Organophosphorus Pesticide, in Solution and Soils by Balakrishnan, Vimal K, Buncel, Erwin, vanLoon, Gary W

    Published in Environmental science & technology (01-08-2005)
    “…We report on a study of the decomposition of fenitrothion (an organophosphorus pesticide that is a persistent contaminant in soils and groundwater) as…”
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    Journal Article
  11. 11

    Sorption and stability of the polycyclic nitramine explosive CL-20 in soil by Balakrishnan, V.K, Monteil-Rivera, F, Gautier, M.A, Hawari, J

    Published in Journal of environmental quality (01-07-2004)
    “…The polycyclic nitramine CL-20 (2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane) is being considered for use as a munition, but its environmental…”
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    Journal Article
  12. 12

    Alkaline Hydrolysis of the Cyclic Nitramine Explosives RDX, HMX, and CL-20:  New Insights into Degradation Pathways Obtained by the Observation of Novel Intermediates by Balakrishnan, Vimal K, Halasz, Annamaria, Hawari, Jalal

    Published in Environmental science & technology (01-05-2003)
    “…Hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX, I) and octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX) hydrolyze at pH > 10 to form end products including…”
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    Journal Article
  13. 13

    Bioaccumulation of the synthetic hormone 17a-ethinylestradiol in the benthic invertebrates Chironomus tentans and Hyalella azteca by Dussault, E B, Balakrishnan, V K, Borgmann, U, Solomon, K R, Sibley, P K

    Published in Ecotoxicology and environmental safety (01-09-2009)
    “…The present study investigated the bioaccumulation of the synthetic hormone 17a-ethinylestradiol (EE2) in the benthic invertebrates Chironomus tentans and…”
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    Journal Article
  14. 14

    Decomposition of the Polycyclic Nitramine Explosive, CL-20, by Fe super(0) by Balakrishnan, Vimal K, Monteil-Rivera, Fanny, Halasz, Annamaria, Corbeanu, Aurelian, Hawari, Jalal

    Published in Environmental science & technology (15-12-2004)
    “…The decomposition of the polycyclic nitramine explosive, 2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane (CL-20), by zero-valent iron was…”
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    Journal Article
  15. 15

    Physico-chemical measurements of CL-20 for environmental applications: Comparison with RDX and HMX by Monteil-Rivera, Fanny, Paquet, Louise, Deschamps, Stéphane, Balakrishnan, Vimal K., Beaulieu, Chantale, Hawari, Jalal

    Published in Journal of Chromatography A (30-01-2004)
    “…CL-20 is a polycyclic energetic nitramine, which may soon replace the monocyclic nitramines RDX and HMX, because of its superior explosive performance…”
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    Journal Article Conference Proceeding
  16. 16

    Acceleration of Nucleophilic Attack on an Organophosphorothioate Neurotoxin, Fenitrothion, by Reactive Counterion Cationic Micelles. Regioselectivity as a Probe of Substrate Orientation within the Micelle by Balakrishnan, Vimal K, Han, Xiumei, VanLoon, Gary W, Dust, Julian M, Toullec, Jean, Buncel, Erwin

    Published in Langmuir (03-08-2004)
    “…31P NMR and UV−vis spectrometric evidence has revealed an unexpected regioselectivity in the reaction of fenitrothion, 1, an organophosphorus pesticide, with…”
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    Journal Article
  17. 17

    Decomposition of the polycyclic nitramine explosive, CL-20, by Fe(0) by Balakrishnan, Vimal K, Monteil-Rivera, Fanny, Halasz, Annamaria, Corbeanu, Aurelian, Hawari, Jalal

    Published in Environmental science & technology (15-12-2004)
    “…CL-20 (2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane), C6H6N12O12, is an emerging energetic chemical that may replace RDX, but its degradation…”
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    Journal Article
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