Academic literature on the topic 'Bentazone'

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Journal articles on the topic "Bentazone"

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Hustert, Klaus, and Mohammed Mansour. "Photoisomerization of bentazone." Tetrahedron Letters 30, no. 45 (1989): 6159–60. http://dx.doi.org/10.1016/s0040-4039(01)93330-1.

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Liu, Z. Q. "Bentazone uptake into plant foliage as influenced by surfactants and carrier pH." Australian Journal of Agricultural Research 55, no. 9 (2004): 967. http://dx.doi.org/10.1071/ar04046.

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The influence of surfactants and carrier pH on the foliar uptake of bentazone, a representative weak acid herbicide, was studied using bean (Vicia faba) and mustard (Sinapis alba) plants. The promoting effect of surfactants on bentazone uptake varied with surfactant hydrophobe structure, ethylene oxide (EO) content, and surfactant and bentazone concentrations. Among the 5 hydrophobe moieties tested, the efficiency order was C13 /C15 linear alcohols > C10 linear alcohol > C16 /C18 linear alcohols > nonylphenol > octylphenol. For C13 /C15 linear alcohol surfactants of differing EO co
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Paszko, Tadeusz, Joanna Matysiak, Daniel Kamiński, Sylwia Pasieczna-Patkowska, Miłosz Huber, and Beata Król. "Adsorption of bentazone in the profiles of mineral soils with low organic matter content." PLOS ONE 15, no. 12 (2020): e0242980. http://dx.doi.org/10.1371/journal.pone.0242980.

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The current laboratory adsorption study aimed at determination of the values of adsorption distribution coefficient (Kd) of bentazone in the profiles of Arenosols, Luvisols, and Cambisols, which are the most common arable mineral soils in Poland. The study attempted to identify the soil components that bind bentazone and the principal adsorption mechanisms of this compound as well as create a model capable of predicting its adsorption in soils. The Kd values determined in batch experiments after 24 h of shaking were very low, and ranged from 0.05 to 0.30 mL/g for the Ap horizon and 0 to 0.07 m
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Guo, Jing, Xiuli Song, Shiqi Sun, Baihui Shao, Bo Tao, and Lili Zhang. "RNA-Seq Transcriptome Analysis of Potato with Differential Tolerance to Bentazone Herbicide." Agronomy 11, no. 5 (2021): 897. http://dx.doi.org/10.3390/agronomy11050897.

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Potato (Solanum tuberosum), an important food crop worldwide, is threatened by broadleaf weeds. Bentazone is an effective herbicide for controlling weeds; however, as a photosynthesis inhibitor, it can also affect potato plants. Therefore, screening potato seedlings for bentazone resistance and determining the genes involved is essential. Herein, we selected potato varieties with tolerance and sensitivity to bentazone. The photosynthetic rate of sensitive plants was notably affected by bentazone application, whereas the tolerant plants showed a significantly higher photosynthetic rate. We obse
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&NA;. "Fatal bentazone herbicide poisoning." European Journal of Emergency Medicine 8, no. 1 (2001): 71. http://dx.doi.org/10.1097/00063110-200103000-00023.

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Beltran-Heredia, Jesus, F. Javier Benitez, Teresa Gonzalez, Juan L. Acero, and Begoña Rodriguez. "Photolytic Decomposition of Bentazone." Journal of Chemical Technology & Biotechnology 66, no. 2 (1996): 206–12. http://dx.doi.org/10.1002/(sici)1097-4660(199606)66:2<206::aid-jctb498>3.0.co;2-#.

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Hedegaard, Mathilde J., Carsten Prasse, and Hans-Jørgen Albrechtsen. "Microbial degradation pathways of the herbicide bentazone in filter sand used for drinking water treatment." Environmental Science: Water Research & Technology 5, no. 3 (2019): 521–32. http://dx.doi.org/10.1039/c8ew00790j.

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Pinto, Lucas Italo Freitas, Alexandro de Sousa Sá, Valdeci Bosco dos Santos, Edson Cavalcanti Silva Filho, and Josy Anteveli Osajima. "Assessment of the Photocatalytic Efficiency of TiO2 in the Presence of Sulphate." Materials Science Forum 930 (September 2018): 589–93. http://dx.doi.org/10.4028/www.scientific.net/msf.930.589.

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The use of salts on the degradation of toxic substances may cause the acceleration or delay of radicals production originating from the degradation process. This work had as its objective to investigate the presence and absence of potassium sulphate salt on the photocatalysis of Bentazone using TiO2 as a catalyzer. The effect of the sulphate ion on the photodegradation of the Bentazone herbicide was studied using concentrations of 0,05; 0,10 and 0,20 g L-1 with 0,5 g L-1 of TiO2, in suspension of 180 mL from bentazone solution (3,0x10-5 mol L-1). The samples were analyzed through UV-Vis spectr
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Romero, Esperanza, Francisco Sánchez-Rasero, Aranzazu Peña, Clara de la Colina, and Gonzalo Dios. "Bentazone Leaching in Spanish Soils." Pesticide Science 47, no. 1 (1996): 7–15. http://dx.doi.org/10.1002/(sici)1096-9063(199605)47:1<7::aid-ps377>3.0.co;2-z.

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Qi, Xuan, Zhong Tian Fu, Liang Li, Xiao Min Hu, and Hong Bin Sun. "A Green Synthesis Technique of Bentazone without Discharging Waste Water." Advanced Materials Research 396-398 (November 2011): 2023–26. http://dx.doi.org/10.4028/www.scientific.net/amr.396-398.2023.

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Abstract. Two applied synthesis techniques of bentazone were introduced including the disadvantages. Innovative adjustments were developed to eliminate the produce of waste water in isatoic anhydride route, and determined as: DMF as the solvent of o-amino-benzoyl isopropylamine preparation, based on certain treatments bentazone sodium salt solution as the product, soda lime as hydrolysis reagent to eliminate phosphorus oxychloride. With 95% recycling rate of 2-methyl pyridine, in the sodium salt aqueous solution, bentazone was prepared from isatoic anhydride with the yield of 85.5% and purity
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Dissertations / Theses on the topic "Bentazone"

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Nichols, K. J. "The influence of bentazone on stomatal movements." Thesis, Nottingham Trent University, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.233906.

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Miller, Paul Robert. "Non photosynthetic interactions of bentazone with plant growth and development." Thesis, Nottingham Trent University, 1989. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.327849.

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Ouldriane, Sandrine. "Impact d'une polarisation électrochimique pour le piégeage réversible de la bentazone sur carbones nanoporeux." Phd thesis, Université d'Orléans, 2010. http://tel.archives-ouvertes.fr/tel-00619386.

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De part leur surface poreuse développée, les carbones activés montrent une grande efficacité pour l'adsorption de composés organiques en solution et la dépollution de l'eau. Cependant, l'adsorption est souvent irréversible et se pose le problème de la régénération de l'adsorbant. Dans ce travail, nous avons examiné les potentialités de piégeage réversible d'un herbicide, la bentazone, sur des tissus de carbone activé en utilisant un procédé électrochimique. Nous avons montré que la polarisation cathodique permet véritablement de régénérer la porosité du tissu de carbone avec une cinétique de d
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Delpeux-Ouldriane, Sandrine. "Impact d'une polarisation électrochimique pour le piégeage réversible de la bentazone sur carbones nanoporeux." Thesis, Orléans, 2010. http://www.theses.fr/2010ORLE2067/document.

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De part leur surface poreuse développée, les carbones activés montrent une grande efficacité pour l’adsorption de composés organiques en solution et la dépollution de l’eau. Cependant, l’adsorption est souvent irréversible et se pose le problème de la régénération de l’adsorbant. Dans ce travail, nous avons examiné les potentialités de piégeage réversible d’un herbicide, la bentazone, sur des tissus de carbone activé en utilisant un procédé électrochimique. Nous avons montré que la polarisation cathodique permet véritablement de régénérer la porosité du tissu de carbone avec une cinétique de d
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Kesraoui-Abdessalem, Aida. "Dégradation des pesticides chlortoluron, carbofurane et bentazone en milieux aqueux par les procédés d'oxydation avancée." Phd thesis, Université de Marne la Vallée, 2008. http://tel.archives-ouvertes.fr/tel-00742462.

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L'utilisation du procédé d'oxydation avancée électrochimique est un moyen simple et économique d'obtention des radicaux hydroxyles (OH*) fortement oxydants. Au cours de ce travail les radicaux ont été utilisés pour la dégradation du chlortoluron, du carbofurane et du bentazone en solution aqueuse. La méthodologie de la recherche expérimentale a été utilisée pour étudier l'influence de quelques paramètres (concentration du chlortoluron, l'intensité du courant et la durée du traitement, etc.) sur la vitesse de dégradation et pour déterminer les conditions optimale de minéralisation. L'évolution
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Kesraoui-Abdessalem, Aïda. "Dégradation des pesticides chlortoluron, carbofurane et bentazone en milieux aqueux par les procédés d'oxydation avancée." Thesis, Paris Est, 2008. http://www.theses.fr/2008PEST0228/document.

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L’utilisation du procédé d'oxydation avancée électrochimique : procédé électro-Fenton est un moyen simple et économique d’obtention des radicaux hydroxyles (OH•) fortement oxydantes. Au cours de ce travail les radicaux ont été utilisés pour la dégradation du chlortoluron, du carbofurane et du bentazone en solution aqueuse. La méthodologie de la recherche expérimentale a été utilisée pour étudier l’influence de quelques paramètres (concentration du chlortoluron, l’intensité du courant et la durée du traitement.) sur la vitesse de disparition et pour déterminer les conditions optimales de minéra
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Brücher, Jörg. "The influence of sorption on transport of organic compounds in soil /." Uppsala : Swedish Univ. of Agricultural Sciences (Sveriges lantbruksuniv.), 1999. http://epsilon.slu.se/avh/1999/91-576-5481-6.pdf.

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Reinnicke, Sandra [Verfasser], Rainer [Akademischer Betreuer] Meckenstock, and Andreas [Akademischer Betreuer] Rossmann. "Compound specific isotope analysis of the pesticides bentazone, MCPA, dichlobenil and its main metabolite BAM: Method validation and degradation studies / Sandra Reinnicke. Gutachter: Rainer Meckenstock ; Andreas Rossmann. Betreuer: Rainer Meckenstock." München : Universitätsbibliothek der TU München, 2011. http://d-nb.info/1016741898/34.

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Corrêa, Natália Silveira, and Natália Silveira Corrêa. "Desempenho fisiológico das forrageiras cornichão e trevo vermelho em função do controle químico." Universidade Federal de Pelotas, 2017. http://guaiaca.ufpel.edu.br:8080/handle/prefix/3978.

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Submitted by Maria Beatriz Vieira (mbeatriz.vieira@gmail.com) on 2018-06-14T13:19:23Z No. of bitstreams: 2 license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5) resumo_tese_natalia_silveira_correa.pdf: 16569 bytes, checksum: ed2405236282a6dfb013ce0c61b1b3aa (MD5)<br>Approved for entry into archive by Aline Batista (alinehb.ufpel@gmail.com) on 2018-06-14T20:52:30Z (GMT) No. of bitstreams: 2 license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5) resumo_tese_natalia_silveira_correa.pdf: 16569 bytes, checksum: ed2405236282a6dfb013ce0c61b1b3aa (MD5)<br>Made ava
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Araya, Quijada Mauricio Antonio. "Estudio electroquímico y espectrofotométrico de complejos de inclusión bentazona/ciclodextrina." Tesis, Universidad de Chile, 2008. http://www.repositorio.uchile.cl/handle/2250/105254.

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En la presente memoria se informan los resultados del comportamiento electroquímico y espectrofotométrico del complejo de inclusión formado por la interacción de bentazona con β-ciclodextrina (β-CD) y sulfobutileter-β-ciclodextrina (SBE-β-CD) en solución, y una evaluación espectroscópica (IR) de la formación del complejo en estado sólido. El estudio en solución se efectuó en medio acuoso haciendo uso de técnicas electroquímicas como voltametría de pulso diferencial (VPD) y voltametría cíclica (VC) y técnica espectrofotométrica UV-visible. Bentazona presentó una respuesta anódica correspondient
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Books on the topic "Bentazone"

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Henriet, Jean. Study of the technical and economical aspects of measures to reduce water pollution caused by the discharge atrazine, bentazone and chloroprene. Office for Official Publications of the European Communities, 1994.

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Henriet, J. Study of the technical and economic aspects of measures to reduce water pollution caused by the discharge atrazine, bentazone and chloroprene. Office for Official Publications of the European Communities, 1994.

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Handy, Robert W. Treatment technology for pesticide manufacturing effluents: bentazon. Air and Energy Engineering Research Laboratory, U.S. Environmental Protection Agency, 1985.

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Division, United States Environmental Protection Agency Office of Pesticide Programs Special Review and Reregistration. Reregistration eligibility decision: Bentazon, list A, case 0182. Environmental Protection Agency, Office of Pesticide Programs, Special Review and Reregistration Division, 1995.

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World Health Organization (WHO). Bentazone Health and Safety Guide (Heath & Safety Guide). World Health Organization, 1990.

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Reregistration eligibility decision: Bentazon, list A, case 0182. Environmental Protection Agency, Office of Pesticide Programs, Special Review and Reregistration Division, 1995.

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Reregistration eligibility decision: Bentazon, list A, case 0182. Environmental Protection Agency, Office of Pesticide Programs, Special Review and Reregistration Division, 1995.

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Book chapters on the topic "Bentazone"

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Huber, Rolf, and Sören Otto. "Environmental Behavior of Bentazon Herbicide." In Reviews of Environmental Contamination and Toxicology. Springer New York, 1994. http://dx.doi.org/10.1007/978-1-4612-2662-8_3.

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Kim, Jong-Soo, and Jang-Eok Kim. "Polymerization of the Herbicide Bentazon and Its Metabolite with Humic Monomers by Oxidoreductive Catalysts." In ACS Symposium Series. American Chemical Society, 2005. http://dx.doi.org/10.1021/bk-2005-0899.ch009.

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Munger, P., M. Landes, and H. Walter. "Bentazon as a Foundation Herbicide for Weed Management Systems in Conventionally and Tilled Soybeans." In Pest Management in Soybean. Springer Netherlands, 1992. http://dx.doi.org/10.1007/978-94-011-2870-4_36.

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Lundegårdh, Bengt. "Differences in Photosynthesis Between a Diuron-Resistant, an Atrazine-Resistant, a Bentazon-Resistant and a Susceptible Biotype of the Green Alga Monoraphidium pusillum (Printz)." In Progress in Photosynthesis Research. Springer Netherlands, 1987. http://dx.doi.org/10.1007/978-94-017-0516-5_174.

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Unger, Thomas A. "Bentazone." In Pesticide Synthesis Handbook. Elsevier, 1996. http://dx.doi.org/10.1016/b978-081551401-5.50471-8.

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Manthey, Frank A., Edward F. Szelezniak, and John D. Nalewaja. "Phytotoxicity of Bentazon with Oils, Surfactants, and Fertilizer Salts." In Adjuvants for Agrichemicals. CRC Press, 2018. http://dx.doi.org/10.1201/9781351069502-45.

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Paiva, Teresa Cristina Brazil de, Paula Rodrigues de Souza, and Flávio Teixeira da Silva. "Desenvolvimento e validação de método analítico para detecção e quantificação de bentazona em água superficial." In RECURSO ÁGUA - Tecnologias e pesquisas para o uso e a conservação de ecossistemas aquáticos. Editora Cubo, 2021. http://dx.doi.org/10.4322/978-65-86819-07-6-13.

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Haack, A. E., and N. E. Balke. "COMPARATIVE METABOLISM OF CINNAMIC ACID AND BENTAZON BY SOYBEAN, RICE AND VELVETLEAF (ABUTILON THEOPHRASTI) CULTURED CELLS." In Herbicide Resistance in Weeds and Crops. Elsevier, 1991. http://dx.doi.org/10.1016/b978-0-7506-1101-5.50045-0.

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Kudsk, Per, S. Kopp Mathiassen, and Torben Olesen. "Influence of a Mineral Oil Adjuvant on the Antagonism of Sethoxydim, Cycloxydim, and Clethodim by Bentazon." In Adjuvants for Agrichemicals. CRC Press, 2018. http://dx.doi.org/10.1201/9781351069502-41.

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