Academic literature on the topic 'P-chlorobenzoic acid'

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Journal articles on the topic "P-chlorobenzoic acid"

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Rivas, F. J., F. J. Beltrán, B. Acedo, J. F. García Araya, and M. Carbajo. "Kinetics of the Ozone-p-Chlorobenzoic Acid Reaction." Ozone: Science & Engineering 27, no. 1 (2005): 3–9. http://dx.doi.org/10.1080/01919510590916734.

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Gorokhova, Larisa G., Nadezhda N. Mikhailova, Evgeniya V. Ulanova, and Tatyana K. Yadykina. "Assessment of the toxicity of benzoic acid derivatives in the intragastric intake." Hygiene and sanitation 99, no. 7 (2020): 755–60. http://dx.doi.org/10.47470/0016-9900-2020-99-7-755-760.

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Introduction. Benzoic acid and its numerous derivatives are widely used in all areas of chemical production. However, there is no information about the toxic properties of a large number of benzoic acid derivatives. The purpose of the study was to study the toxic properties of several derivatives of benzoic acids in intragastric intake in an experiment.Material and methods. The following derivatives of benzoic acid were studied: 4-chlorobenzoic, 4-methoxybenzoic, p-acetoxybenzoic and 2-methoxy-5-sulfamoylbenzoic acids. The studies were performed on white laboratory rats; toxicity was studied i
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Tan, Zhi-Cheng, Li-Xian Sun, Shuang-He Meng, et al. "Heat capacities and thermodynamic functions of p-chlorobenzoic acid." Journal of Chemical Thermodynamics 34, no. 9 (2002): 1417–29. http://dx.doi.org/10.1016/s0021-9614(02)00165-9.

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Carter, Korey P., Cecília H. F. Zulato, and Christopher L. Cahill. "Exploring supramolecular assembly and luminescent behavior in a series of RE-p-chlorobenzoic acid-1,10-phenanthroline complexes." CrystEngComm 16, no. 44 (2014): 10189–202. http://dx.doi.org/10.1039/c4ce01806k.

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Nihei, Taka-aki, Shin'ichi Ishimaru, and Ryuichi Ikeda. "35Cl NQR Studies of Hydrogen Transfer in Crystalline p-Chlorobenzoic Acid." Zeitschrift für Naturforschung A 55, no. 1-2 (2000): 355–58. http://dx.doi.org/10.1515/zna-2000-1-264.

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35Cl NQR frequencies and spin-lattice relaxation times T1Q were measured in p-ClC6H4CO2H(PCB A) and p-ClC6H4CO2D(PCBA-d1) at 77-333 K. T1Q in PCB A gave a shallow minimum of 8.0 ms at ca. 110 K, which could be explained by a double proton transfer mechanism in the carboxylic acid dimer referring to 1H NMR data giving a T1H minimum at almost the same temperature. PCBA-d1, showed temperature dependent NQR frequencies quite analogous to those in PCBA, whereas their T1Q behaviour was quite different in its minimum value and its temperature as well as temperature gradient. These results were explai
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ingh, Surjeet S., Neha Bahuguna, Kiran Singhal та Prem Raj. "Synthetic, Spectroscopic and Biological Studies on Some μ-Oxy-bis[triphenylantimony(V)]carboxylates and Cyclic Organoantimonates". Asian Journal of Chemistry 33, № 2 (2021): 387–92. http://dx.doi.org/10.14233/ajchem.2021.23045.

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A series of hitherto unreported μ-oxy-bis[triphenylantimony(V)]dicarboxylates and μ-oxy-bis[triphenylantimony(V)] chlorocarboxylates of general formula Ph3Sb(L)-O-Sb(L)Ph3 and Ph3Sb(Cl)-O-Sb(L)Ph3, respectively have been synthesized by the metathetical reaction of μ-oxybis-[triphenylantimony(V)]dichloride and silver salts of corresponding carboxylic acids in 1:2 and 1:1 molar ratio [where L = thiosalicyclic acid, p-nitrobenzoic acid, p-aminobenzoic acid, p-fluorobenzoic acid, o-chlorobenzoic acid]. The newly isolated antimony carboxylates have been identified on the basis of melting points, el
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Vanderford, Brett J., Fernando L. Rosario-Ortiz, and Shane A. Snyder. "Analysis of p-chlorobenzoic acid in water by liquid chromatography–tandem mass spectrometry." Journal of Chromatography A 1164, no. 1-2 (2007): 219–23. http://dx.doi.org/10.1016/j.chroma.2007.07.035.

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Khosravi, Iman, and Mohammad Yazdanbakhsh. "Preparation and characterization of novel oxo-centered basic p-chlorobenzoic bridging trinuclear complexes." Journal of the Serbian Chemical Society 75, no. 7 (2010): 929–34. http://dx.doi.org/10.2298/jsc090825066k.

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Three new oxo-centered trinuclear complexes, one of them a mixed-valence complex [Mn3O(C7H4O2Cl)6(Py)3]Py (1) and the others, mixed-metal complexes of [Fe2MnO(C7H4O2Cl)6(Py)3]NO3 (2) and [Fe2CoO(C7H4O2Cl)6(Py)3] (3) were synthesized by the direct reaction between metal nitrates and p-chlorobenzoic acid. These complexes were characterized by elemental analyses (CHN), atomic absorption spectroscopy and spectral (IR, electronic) studies. These are new type of oxo-bridged mixed-metal complexes in which the carboxylate ligand is pchlorobenzoic acid. The UV spectra of the complexes exhibited a stron
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Psaltou, Savvina, Stylianos Stylianou, Manasis Mitrakas, and Anastasios Zouboulis. "Heterogeneous Catalytic Ozonation of p-Chlorobenzoic Acid in Aqueous Solution by FeMnOOH and PET." Separations 5, no. 3 (2018): 42. http://dx.doi.org/10.3390/separations5030042.

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The oxidation of p-chlorobenzoic acid (p-CBA), used as a typical-model refractory organic compound, in aqueous solutions during the heterogeneous catalytic ozonation treatment process by applying the hydrophilic tetravalent manganese feroxyhyte (TMFx), as well as modified hydrophobic TMFx and the polyethylene terephthalate (PET) as solid (powdered) catalysts was examined in this study. TMFx was hydrophobically modified by using trichloromethylsilane (TriClMS) solutions in toluene at the concentration range 10–1000 mg/L. TMFx catalysts were characterized by the application of scanning electron
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Huang, Ruihuan, Bingyan Lan, Zhongying Chen, et al. "Catalytic ozonation of p-chlorobenzoic acid over MCM-41 and Fe loaded MCM-41." Chemical Engineering Journal 180 (January 2012): 19–24. http://dx.doi.org/10.1016/j.cej.2011.10.086.

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Dissertations / Theses on the topic "P-chlorobenzoic acid"

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Jin, Jing. "Study of UV/Chlorine Photolysis in regard to the Advanced Oxidation Processes (AOPs)." Master's thesis, 2010. http://hdl.handle.net/10048/1282.

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This thesis aims mainly at investigating the potential oxidizing abilities and possible applications of the UV/Chlorine process as an Advanced Oxidation Process (AOP). Several organic compounds were used and added into the samples as challenging radical scavengers to investigate the possibilities of the UV/Chlorine process being used in the water and wastewater treatment industry. The UV/H2O2 process was selected as a reference, and experiments were carried out parallel; the results obtained earlier in the UV/Chlorine process were compared to those of the UV/H2O2 process. Methanol was added i
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Book chapters on the topic "P-chlorobenzoic acid"

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Holze, Rudolf. "Ionic conductance of p-chlorobenzoic acid." In Electrochemistry. Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-662-49251-2_518.

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Holze, Rudolf. "Ionic conductance of p-chlorobenzoic acid." In Electrochemistry. Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-662-49251-2_520.

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Conference papers on the topic "P-chlorobenzoic acid"

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Li, Xukai, Ruihuan Huang, Qiuyun Zhang, Wenqing Yang, and Laisheng Li. "Catalytic Ozonation for the Degradation of P-Chlorobenzoic Acid in Aqueous Solution by Ni Supported Activated Carbon." In 2010 4th International Conference on Bioinformatics and Biomedical Engineering (iCBBE). IEEE, 2010. http://dx.doi.org/10.1109/icbbe.2010.5514898.

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