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New Approach for n-Hexadecane Biodegradation by Sol-Gel Entrapped Bacterial Cells

Microbiol. 1996;16:79-101. DOI: 10.1007/BF01570068. [9] Padil VVT, Wacławek S, Černík M. Ecol Chem Eng S. 2016;23(4):533-557. DOI: 10.1515/eces-2016-0038. [10] Pandey S, Mishra SB. J Sol-Gel Sci Technol. 2011;59:73-94. DOI: 10.1007/s10971-011-2465-0. [11] Elnashar MMM. J Biomat Nanobiotechnol. 2010;1:61-77. DOI: 10.4236/jbnb.2010.11008. [12] Darder M, Aranda P, Ruiz-Hitzky E. Adv Mater. 2007;19:1309-1319. DOI: 10.1002/adma.200602328. [13] Pandey RP, Shahi VK. J Membrane Sci. 2013;444:116-126. DOI: 10.1016/j.memsci.2013.04.065. [14

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Synthesis of ternary bioactive glass derived aerogel and xerogel: study of their structure and bioactivity

References Al-Noaman A, Rawlinson SCF, Hill RG (2012) The role of MgO on thermal properties, structure and bioactivity of bioactive glass coating for dental implants. J. Non-Cryst. Solids 358: 3019-3027. Bellucci D, Cannillo V, Sola A (2011) Calcium and potassium addition to facilitate the sintering of bioactive glasses. Mater. Lett. 65: 1825-1827. Catauro M, Bollino F, Renella RA, Papale F (2015) Sol gel synthesis of glasses: influence of the heat treatment on their bioactivity and biocompatibility. Ceram. Int

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Comparative Study of the Bacteriological Activity of Zinc Oxide and Copper Oxide Nanoparticles

References [1] Hench, L.L.; West, J.K., The sol-gel process, Chem. Rev ., 1990 , 90 , 33-72 [2] Wright, J. D.; Sommerdijk, N. A. J. M., Sol-gel materials: chemistry and applications. Advanced chemistry texts , 2001 , 4 . Amsterdam: Gordon and Breach Science Publishers. [3] Brinker, C. J.; Scherer, G. W., Sol-Gel Science: Physics and Chemistry of Sol-Gel Processing Academic Press , 1990 [4]. Nejati, A.; Rezvani, Z.; Pakizev, R., Synthesis of ZnO Nanoparticles and Investigation of the Ionic Template Effect on Their Size and Shape

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Preparation and characterization of a porous material from an Algerian desert sand

Abstract

The objective of the present work is to prepare and characterize a porous material using quite particular and localized dunar sand (erg) of the desert near the El-Oued (south-east of Algeria). The porous material is prepared according to the mechanism of co-operative self-assembly. The method consists of polymerizing a silicic precursor (sodium silicate obtained by alkali fusion of sand with the sodium carbonate) around micelles of surfactant in an acid aqueous solution according to the sol-gel process. The elimination of the surfactant by calcining at high temperature leads to the final material which was characterized by XRF, XRD, MEB-EDX, FTIR and BET techniques.

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Terminalia catappa L. extract improves survival, hematological profile and resistance to Aeromonas hydrophila in Betta sp.

., Carturan G., Cavazza A. 1993 – Entrapment of viable microorganisms by SiO2 sol-gel layers on glass surfaces: Trapping, catalytic performance and immobilization durability of Saccharomyces cerevisiae – J. Biotechnol. 30: 197-210. Julius O.O., Mariatu K. 2015 – Effect of Terminalia catappa on growth and heamatology of Clarias gariepinus juveniles – J. Aquacult. Feed Sci. Tech. 7: 1-5 Kakaei S., Shahbazi Y. 2016 – Effect of chitosan-gelatin film incorporated with ethanolic red grape seed extract and Ziziphora clinopodioides essential oil on survival of

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Wood color analysis and integrated selection of Paulownia clones grown in Hubei Province, China

-dried European white birch (Betula pubescens) boards. - Wood Science and Technology, 42, 103-115. Huang, H., Wang, Y., Cheng, L.M. 2009. Wood surface visual physical magnitude and sensory characteristics. - Jiangxi Forest Science and Technology, 6, 20-22. (In Chinese with English abstract). Ibach, E.I., Mandla, A.T., Starr, C. 2010. Performance enhancement of wood surfaces used in outdoor applications: the effect of sol-gel treatment on the weathering performance of solid wood-polymer composites. - Proceedings of the fi fth European conference

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Some Environmentally Relevant Reactions of Cerium Oxide

References ALIFANTI, M., BAPS, B., BLANGENOIS, N., NAUD, J., GRANGE, P., DELMON, B.: Characterization of CeO2 −ZrO2 mixed oxides. Comparison of the citrate and sol−gel preparation methods. Chem. Mater., 15, 2003, 395-403. ANSARI, A. A., KAUSHIK, A., SOLANKI, P. R., MALHOTRA, B. D.: Sol-gel derived nanoporous cerium oxide film for application to cholesterol biosensor. Electrochem. Commun., 10, 2008, 1246-1249. BENADDA, A., DJADOUN, A., GUESSIS, H., BARAMA, A.: Effect of the preparation method on the structural

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A Critical View on the Phenol Index as a Measure of Phenol Compounds Content in Waters. Application of a Biosensor

. Highly sensitive amperometric biosensors for phenols based on polyaniline-ionic liquid-carbon nanofiber composite. Biosens Bioelectron. 2009;24(7):1858-1863. DOI: 10.1016/j.bios.2008.09.012. Kochana J, Gala A, Parczewski A, Adamski J. Titania sol-gel-derived tyrosinase-based amperometric biosensor for determination of phenolic compounds in water samples. Examination of interference effects. Anal Bioanal Chem. 2008;391(4):1275-1281. DOI: 10.1007/s00216-007-1798-6. Bayne ChK, Rubin IB. Practical experimental designs and

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Polycyclic aromatic hydrocarbons removal from produced water by electrochemical process optimization

water discharges to the North Sea, fate and effects in the water column. OLF (Oljeindustriens Landsforening); December 1998. http://www.olf.no/staticen/rapporter/producedwater/ . [12] Panić VV, Dekanski AB, Mišković-Stanković VB, Milonjić SK, Nikolić BŽ. Differences in the electrochemical behavior of ruthenium and iridium oxide in electrocatalytic coatings of activated titanium anodes prepared by the sol-gel procedure. J Serb Chem Soc. 2010;75(10):1413-1420. DOI: 10.1039/B921582D. [13] Kristóf J, Mihály J, Daolio S, De-Battisti A, Nanni L, Piccirillo C

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Covalent immobilization of rabbit-antiaflatoxin-antibodies onto the poly-acrylamideacrylonitrile as well as hybrid material UREASIL and developing an optical immunosensor

Campas, Silvana Andreescu, Jean-Louis Marty Trends in Flow-based Biosensing Systems for Pesticide Assessment. Sensors (Basel). 2006; ; 6(10):1161-1186. [6]. González-Martínez MA, Puchades R, Maquieira A. Optical immunosensors for environmental moniroring: How far have we come? Anal. Bioanal. Chem. 2007; 387:205-218. http://dx.doi.org/10.1007/s00216-006-0849-8 [7]. M Armand, C Poinsignon, JV Sanches, V de Zea Bermudez U.S. Patent 5283310 (1994) [8]. VI Boev, A Soloviev, C Silva, M Gomes, D Barber J. Sol-Gel Sci. Techn. 41

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