Academic literature on the topic 'Glutaraldehido'

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Journal articles on the topic "Glutaraldehido"

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Deviyani, Larisa, and Isdiriayani Nurdin. "Inhibisi korosi baja dalam air laur mengandung sulfida menggunakan glutaraldehida." Jurnal Teknik Kimia Indonesia 5, no. 1 (2018): 341. http://dx.doi.org/10.5614/jtki.2006.5.1.2.

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Most of steel corrosion on process equipment using seawater as utilities is due to corrosive seawater contaminants; one of which is sulfide. Corrosion control, which is commonly applied to steel in sulfide containing seawater, is chemical inhibition. In this research, the influence of H2S concentration on corrosion of steel in artificial seawater, and determination of the optimum doses of glutaraldehyde as corrosion inhibitor, are carried out by corrosion rate measurement according Tafel method; while prediction of inhibition mechanism is studied according to cyclic voltammetry method. The exp
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Santillán Espinozaa, Fátima Amanda, and Ily Marilú Maza Mejía. "REMOCIÓN DE COLORANTES AZOICOS ROJO ALLURA (ROJO 40) MEDIANTE EL USO DE PERLAS DE QUITOSANO MAGNETIZADAS EN MEDIO ACUOSO." Revista de la Sociedad Química del Perú 84, no. 1 (2018): 18–26. http://dx.doi.org/10.37761/rsqp.v84i1.161.

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En este estudio se evaluó el uso de perlas de quitosano magnetizadas en la remoción de colorantes azoicos de la industria textil y alimentarias (Rojo Allura) tomando en cuenta factores como el pH, concentración del colorante y cantidad de perlas magnetizadas. Para la obtención de las perlas se utilizó quitosano al 2 %, glutaraldehido y magnetita (previamente sintetizada mediante un proceso de hidrólisis oxidativa), posteriormente se caracterizaron las perlas y la magnetita mediante espectroscopía infrarroja y microscopía electrónica de barrido.
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Oliveira del Rio, Juan A., Patrícia E. Bravo-Cevallos, and Alba M. Mendoza-Castro. "Algunas técnicas alternativas al formocresol en las pulpotomías de dientes temporales." Polo del Conocimiento 2, no. 10 (2017): 3. http://dx.doi.org/10.23857/pc.v2i10.373.

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<p style="text-align: justify;">El objetivo principal de los tratamientos pulpares en dentición temporal, es mantener la integridad y la salud de los tejidos orales. Es deseable poder mantener la vitalidad de la pulpa de los dientes afectados por caries o traumatismos. Sin embargo, un diente puede seguir siendo funcional eliminando la pulpa parcial o totalmente. Se realizó una revisión bibliográfica con el objetivo actualizar algunas técnicas alternativas al formocresol en las pulpotomías de dientes temporales. Las técnicas con glutaraldehido, sulfato férrico y MTA son, la que los estudi
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Bertel Hoyos, Saúl, Yamid Núñez, Jairo Segura Bermúdez, and Álvaro Arrieta. "ELABORACIÓN, CARACTERIZACIÓN ELECTROQUÍMICA Y ESTUDIO MOTRIZ DE UN ACTUADOR TRICAPA." Revista de la Sociedad Química del Perú 82, no. 2 (2016): 208–15. http://dx.doi.org/10.37761/rsqp.v82i2.125.

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En este trabajo se presenta la obtención de una biopelícula con propiedades semiconductoras, desarrollada a partir de almidón de yuca dopada con perclorato de litio y plastificantes como glicerina y glutaraldehido, que le proporcionaron propiedades eléctricas y mecánicas necesarias para generar movimiento. Se empleó la síntesis electroquímica de Polipirrol (PPy) con el fin de obtener las capas externas para la constitución de un actuador tricapa (PPy/biopelícula/PPy) capaz de responder a estímulos eléctricos y funcionar en el aire. El dispositivo fue sometido a potenciales recurrentes que gene
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Nasution, Pajri Samsi, Muhamad Alif Hamimdal, Gustini Syahbirin, and Budi Arifin. "Optimalisasi Sifat Reologi Hidrogel Kitosan-Hialuronat yang Ditaut-Silang dengan Glutaraldehida." ALCHEMY Jurnal Penelitian Kimia 15, no. 1 (2019): 24. http://dx.doi.org/10.20961/alchemy.15.1.22536.24-43.

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<p>Kitosan membentuk hidrogel polikationik dengan penambahan glutaraldehida sebagai penaut-silang. Penambahan hialuronat yang bersifat polianionik diharapkan akan meningkatkan sifat reologis hidrogel tersebut. Penelitian ini mengevaluasi pengaruh konsentrasi glutaraldehida dan hialuronat pada kekuatan gel, titik pecah, dan ketegaran, serta sifat pembengkakan dan pengerutan hidrogel kitosan, dan menentukan konsentrasi optimum keduanya melalui analisis data dengan perangkat lunak Modde 5<sup>Ò</sup>. Hialuronat meningkatkan kekuatan gel, titik pecah, dan ketegaran hidrogel kito
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Vargas Valverde, Erick. "Condiciones de control, fuentes de contaminación y agentes desinfectantes empleados en una sala blanca." Pensamiento Actual 17, no. 28 (2017): 99. http://dx.doi.org/10.15517/pa.v17i28.29526.

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Una sala blanca o limpia es un área científicamente construida para trabajar en condiciones de asepcia, es así como las instalaciones nucleares, microelectrónicas, alimentarias, cosméticas, farmacias de formulación magistral, de terapia celular, las instalaciones de metrología, laboratorios de investigación tecnológica y las industrias farmacéuticas las utilizan. Específicamente en la industria farmacéutica, para garantizar las condiciones en los laboratorios donde se realizan las pruebas de esterilidad, se deben conocer los principales factores de control, operación y desinfección de las sala
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Distantina, Sperisa, Mujtahid Kaavessina, and Fadilah Fadilah. "Matriks Pengontrol Pelepasan Urea Berbasis Karagenan: Pengaruh Konsentrasi Glutaraldehid." Jurnal Teknik Kimia Indonesia 18, no. 1 (2020): 17. http://dx.doi.org/10.5614/jtki.2019.18.1.3.

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Abstrak. Pada penelitian ini, matrik hidrogel berbasis karagenan dibuat dan diaplikasikan untuk mengontrol pelepasan urea. Tujuan penelitian ini adalah mempelajari pengaruh konsentrasi glutaraldehid terhadap kecepatan pelepasan urea dan menyusun model kecepatan pelepasan urea. Film karagenan dimodifikasi secara kimiawi menggunakan ikatan silang atau crosslinking dengan glutaraldehid. Larutan karagenan 7 g/100 mL dicetak menjadi lembaran dan kemudian dikeringkan sehingga diperoleh lapisan film. Film direndam dalam larutan glutaraldehid dengan konsentrasi tertentu selama 2 menit dan dilanjutkan
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Rudyardjo, Djony Izak. "PENGARUH PENAMBAHAN PLASTICIER GLISEROL TERHADAP KARAKTERISTIK HIDROGEL KITOSAN-GLUTARALDEHID UNTUK APLIKASI PENUTUP LUKA." JURNAL ILMIAH SAINS 14, no. 1 (2014): 18. http://dx.doi.org/10.35799/jis.14.1.2014.4883.

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PENGARUH PENAMBAHAN PLASTICIER GLISEROL TERHADAP KARAKTERISTIK HIDROGEL KITOSAN-GLUTARALDEHID UNTUK APLIKASI PENUTUP LUKA ABSTRAK Telah dilakukan penelitian untuk mengetahui pengaruh penambahan plasticizer gliserol terhadap karakteristik hidrogel kitosan-glutaraldehid untuk aplikasi penutup luka. Penambahan gliserol bertujuan agar hidrogel kitosan-glutaraldehid lebih fleksibel dan memiliki sifat mekanik yang baik sehingga dapat diaplikasikan sebagai penutup luka sesuai dengan standar yang ada. Pembuatan hidrogel dilakukan dengan cara mencampurkan kitosan yang dilarutkan dalam 1% asam asetat de
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Torres-Rodríguez, Carolina, Ana Milena Santiago Medina, and Edgar Delgado-Mejía. "Medios de almacenamiento de dientes para estudios de color." CES Odontología 33, no. 2 (2020): 136–46. http://dx.doi.org/10.21615/cesodon.33.2.12.

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Todos los medios de almacenamiento usados para ensayos de investigación alteran las propiedades físicas y/o químicas de los dientes, especialmente el color dental. El objetivo es establecer cual el medio de almacenamiento más indicado para dientes que van a ser usados en estudios de color basados en una revisión sistematizada, y proponer un protocolo específico. Mediante las palabras clave ¨storage, medium¨, ¨teeth¨, ¨color¨, ¨stability¨, ¨saliva¨, ¨formalin¨, ¨thymol¨, ¨ethanol¨conectadas por AND o OR y consultando las bases de datos PubMed, ScienceDirect, Embase, Scopus, Scielo, Lilacs y Goo
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Rizkawati, Dian Marta, Izak R. Djony, and Prihartini Widiyanti. "Effect of Glutaraldehid on Human Amniotic Membrane Characteristics as Wound Dressing." Journal of Biomimetics, Biomaterials and Biomedical Engineering 31 (March 2017): 61–69. http://dx.doi.org/10.4028/www.scientific.net/jbbbe.31.61.

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The wound dressing which have good mechanical properties, non toxic, anti inflammation, anti infection and has potency to accelerate wound healing are important to be found. This study aimed to determine the effect of glutaraldehyde on the human amniotic membrane cross linking, tensile strength, material toxicity and tissue response to a biomaterial which could be applied as an ideal wound dressing. Human amniotic membrane used was derived from one individual and was obtained from the Biomaterial Center and Tissue Bank in Dr. Soetomo General Hospital Surabaya Indonesia while the glutaraldehyde
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Dissertations / Theses on the topic "Glutaraldehido"

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Carrasco, Ramos Ana Karina. "Inmovilización de rennina sobre la membrana de cáscara de huevo: potencial uso como bioreactor." Tesis, Universidad de Chile, 2015. http://repositorio.uchile.cl/handle/2250/131842.

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Memoria para optar al Título Profesional de Médico Veterinario<br>La membrana de la cáscara de huevo (MCH) es una red de biopolímeros, esencialmente organizada por 2 capas de fibras entrecruzadas de proteínas (una externa y otra interna) que tienen flexibilidad en solución acuosa y son permeables al agua y a los gases. Aquí se utilizó como una bioplataforma para la inmovilización de la enzima rennina. En este estudio, la rennina se inmovilizó sobre la capa externa de la membrana de cáscara de huevo a través de adsorción por atrapamiento y luego fue tratada con glutaraldehido como agente reticu
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Jacinto, Hernández Christian Ronald. "Liberación controlada del difosfato de cloroquina a través de micropartículas de quitosano entrecruzadas con glutaraldehido." Universidad Nacional de Ingeniería. Programa Cybertesis PERÚ, 2010. http://cybertesis.uni.edu.pe/uni/2010/jacinto_hc/html/index-frames.html.

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En este trabajo se obtuvieron micropartículas de quitosano entrecruzadas con glutaraldehido para los estudios de liberación controlada del difosfato de cloroquina in vitro. Las micropartículas de quitosano se prepararon por el método de coacervación simple, las cuales se entrecruzaron con glutaraldehido en diferente grado de entrecruzamiento. Estas micropartículas de quitosano entrecruzadas se hicieron pruebas de hinchamiento y erosión en HCl 0,1 M y buffer pH 7,4 de fosfato, medios que simulaban los jugos gástricos e intestinales respectivamente, los resultados mostraron que el grado de entre
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Nitschke, Monika. "Glutaraldehyde exposures and health effects among South Australian hospital nurses /." Title page, table of contents and abstract only, 1997. http://web4.library.adelaide.edu.au/theses/09MPM/09mpmn732.pdf.

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Crum, Morris G. (Morris Glenn). "Some Responses of Bacillus subtilis Spores to Glutaraldehyde." Thesis, North Texas State University, 1985. https://digital.library.unt.edu/ark:/67531/metadc331507/.

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Bacillus subtilis (ATCC 19659) were damaged by exposure to various concentrations of glutaraldehyde, as shown by decreased germination rates. The damage caused was repaired or otherwise obviated by the presence of sodium lactate in the holding medium. When two different salts of lactic acid were compared for ability to overcome the effect of glutaraldehyde, it was found that calcium salt of lactate was more effective than the sodium salt. The damage repair system involved l-alanine, lactate and either the sodium or calcium ions. The study involved in determining the difference in efficiency of
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Hong, Soklida. "Glutaraldehyde Removal from Produced Water Using Photolysis and Photocatalysis." Thesis, North Dakota State University, 2017. https://hdl.handle.net/10365/28665.

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Glutaraldehyde (GA) has been used extensively as a biocide in hydraulic fracturing fluids leading to the contamination of the compound in produced water. In this study, the performances of photolysis and photocatalysis for removal of GA in synthetic produced water were investigated. The photolytic degradation rate of GA increased with increasing incident ultraviolet light intensity and decreasing pH. Increasing initial GA concentration resulted in a reduced rate of GA degradation. At high salt concentrations, similar to the levels found in produced water, the photodegradation rate of GA was be
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McFarlane, Margaret R. "Glutaraldehyde hazard assessment and risk control in a hospital setting /." Online version, 1998. http://www.uwstout.edu/lib/thesis/1998/1998mcfarlanem.pdf.

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Denis-Chambon, Martine. "Mode d'action virucide du glutaraldehyde : etude comparee de la sensibilite des poliovirus type 1 et des echovirus type 25." Clermont-Ferrand 1, 1993. http://www.theses.fr/1993CLF11009.

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Brandt, Michael Adam. "Studies towards the TiO¦2 mediated photocatalytic oxidative destruction of glutaraldehyde." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1998. http://www.collectionscanada.ca/obj/s4/f2/dsk2/ftp01/MQ30673.pdf.

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Friebe, Vincent Morris. "Neomycin enhances glutaraldehyde crosslinking and glycosaminoglycan stability in bioprosthetic heart valves." Connect to this title online, 2009. http://etd.lib.clemson.edu/documents/1263397247/.

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Tapper, Rudi. "The use of biocides for the control of marine biofilms on stainless steel surfaces." Thesis, University of Portsmouth, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.266797.

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Books on the topic "Glutaraldehido"

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Kagaku Busshitsu Hyōka Kenkyū Kikō and Shin Enerugī Sangyō Gijutsu Sōgō Kaihatsu Kikō (Japan), eds. Gurutaruarudehido: Glutaraldehyde. Seihin Hyōka Gijutsu Kiban Kikō Kagaku Busshitsu Hyōka Kenkyū Kikō, 2009.

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Baum, Judith. An assessment of exposure to glutaraldehyde in hospitals: Typical exposure levels and recommended control measures : a study on behalf of the Department of Health. Thomson Laboratories, 1991.

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executive, Health and safety. Glutaraldehyde and you. Health and Safety Executive, 2000.

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Wong, Gordon. Radiolabelling of monoclonal antibody 10B with 67Ga using glutaraldehyde desferrioxamine. Toronto General Hospital, 1990.

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Eh65.32 Glutaraldehyde. Health and Safety Executive (HSE), 1997.

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Glutaraldehyde and You. Health and Safety Executive (HSE), 1998.

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Great Britain. Health and Safety Executive., ed. Glutaraldehyde and you. HSE Books, 2000.

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United States. Dept. of Health and Human Services and National Institute for Occupational Safety and Health, eds. Glutaraldehyde: Occupational hazards in hospitals. Dept. of Health and Human Services, 2001.

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F, Evans P., and Great Britain. Health and Safety Executive., eds. Glutaraldehyde: Criteria document for an occupational exposure limit. HSE Books, 1997.

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executive, Health and safety. Glutaraldehyde in Air (Methods for the Determination of Hazardous Substances). Health and Safety Executive (HSE), 1999.

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Book chapters on the topic "Glutaraldehido"

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Kampf, Günter. "Glutaraldehyde." In Antiseptic Stewardship. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-98785-9_7.

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Johnson, Timothy J. A. "Glutaraldehyde Cross-Linking." In ACS Symposium Series. American Chemical Society, 1993. http://dx.doi.org/10.1021/bk-1993-0516.ch023.

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López-Gallego, Fernando, Jose M. Guisán, and Lorena Betancor. "Glutaraldehyde-Mediated Protein Immobilization." In Methods in Molecular Biology. Humana Press, 2013. http://dx.doi.org/10.1007/978-1-62703-550-7_3.

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Betancor, Lorena, Fernando López-Gallego, Noelia Alonso-Morales, et al. "Glutaraldehyde in Protein Immobilization." In Immobilization of Enzymes and Cells. Humana Press, 2006. http://dx.doi.org/10.1007/978-1-59745-053-9_5.

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Dahm, M., W. D. Lyman, S. M. Factor, A. B. Schwell, and R. W. M. Frater. "Immunogenicity of Glutaraldehyde-Tanned Bovine Pericardium." In Cardiac Reconstructions. Springer Berlin Heidelberg, 1989. http://dx.doi.org/10.1007/978-3-642-74629-1_51.

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Wisdom, G. Brian. "Alkaline Phosphatase Labeling of Antibody Using Glutaraldehyde." In Springer Protocols Handbooks. Humana Press, 1996. http://dx.doi.org/10.1007/978-1-60327-259-9_41.

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Ozolins, Valts, I. Ozolanta, L. Smits, A. Lacis, and V. Kasyanov. "Biomechanical Properties of Glutaraldehyde Treated Human Pericadium." In IFMBE Proceedings. Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-69367-3_39.

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Albes, J. M., and Ch Krettek. "Biophysikalische Eigenschaften des Gelatine-Resorzinformaldehyd/Glutaraldehyd-Klebers." In Fibrinklebung in der Herz-, Gefäß- und Thoraxchirurgie. Steinkopff, 1993. http://dx.doi.org/10.1007/978-3-642-72503-6_11.

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Carter, J. Mark. "Conjugation of Peptides to Carrier Proteins via Glutaraldehyde." In Springer Protocols Handbooks. Humana Press, 1996. http://dx.doi.org/10.1007/978-1-60327-259-9_117.

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Bleeker, Wim, Jacques Agterberg, Erik La Hey, Gemma Rigter, Lily Zappeij, and Joa Bakker. "Hemorrhagic Disorders After Administration of Glutaraldehyde-polymerized Hemoglobin." In Blood Substitutes. Birkhäuser Boston, 1996. http://dx.doi.org/10.1007/978-1-4612-4114-0_7.

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Conference papers on the topic "Glutaraldehido"

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Kirollos, K., K. Chapman, and G. Mihaylov. "382. Direct-Read, Passive, Glutaraldehyde Stel Monitoring System." In AIHce 1996 - Health Care Industries Papers. AIHA, 1999. http://dx.doi.org/10.3320/1.2765061.

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Ritonga, Halimahtussadiyah, Muhammad Nurdin, Fransiskus Rembon, L. O. A. N. Ramadhan, and Fitriana Fitriana. "Preparation of Hydrogel Chitosan Co-Polyacrilamide Crosslinked Glutaraldehyde." In 1st International Conference on Science and Technology, ICOST 2019, 2-3 May, Makassar, Indonesia. EAI, 2019. http://dx.doi.org/10.4108/eai.2-5-2019.2284680.

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Robinson, T., D. Cardin, and C. Casteel. "298. Sampling and Analysis of Glutaraldehyde Using Evacuated Canisters." In AIHce 2005. AIHA, 2005. http://dx.doi.org/10.3320/1.2758763.

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Pickett, K., L. Todd, K. Jones, T. Winkler, C. Bishop, and J. Archer. "19. Assessment of Glutaraldehyde Exposure in a Large Hospital." In AIHce 2004. AIHA, 2004. http://dx.doi.org/10.3320/1.2758325.

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MacMahon, K., J. Wess, C. Forrester, and M. Haring Sweeney. "312. Glutaraldehyde: A New Strategy for Updating Recommended Exposure Limits." In AIHce 2001. AIHA, 2001. http://dx.doi.org/10.3320/1.2765845.

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Bisesi, M., and M. Valigosky. "442. Determination of Airborne Glutaraldehyde Concentrations in Health Care Settings." In AIHce 1996 - Health Care Industries Papers. AIHA, 1999. http://dx.doi.org/10.3320/1.2765127.

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McGinley, Heather, Michael V. Enzien, Gary Edward Jenneman, and Jennifer Busch Harris. "Studies on the Chemical Stability of Glutaraldehyde in Produced Water." In SPE International Symposium on Oilfield Chemistry. Society of Petroleum Engineers, 2011. http://dx.doi.org/10.2118/141449-ms.

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Wehmeier, A., and W. Schneider. "FACTORS AFFECTING PLATELET VOLUME ANALYSIS." In XIth International Congress on Thrombosis and Haemostasis. Schattauer GmbH, 1987. http://dx.doi.org/10.1055/s-0038-1643538.

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Parameters of platelet volume have become widely available with the introduction of automated platelet counters. However, variant sample processing and in vitro platelet activation have prevented standardization of platelet volume analysis. We investigated the influence of anticoagulation, storage, temperature, and the presence or absence of RBC on platelet volume. Mean platelet volume (MPV) and the mode of the distribution were calculated from the platelet volume distribution curve recorded with the impedance method and plotted in 27 classes between 1.2 and 22 fl. The effects of EDTA (.335%),
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Derman, S. "116. Utilization of a Modified Glutaraldehyde Analytical Method—Results and Ramifications." In AIHce 2002. AIHA, 2002. http://dx.doi.org/10.3320/1.2766031.

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Gruenwald, G. "27. Evaluation and Control of Glutaraldehyde Exposure at a Fogging Operation." In AIHce 1996 - Health Care Industries Papers. AIHA, 1999. http://dx.doi.org/10.3320/1.2764950.

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Reports on the topic "Glutaraldehido"

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Glutaraldehyde: occupational hazards in hospitals. U.S. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, 2001. http://dx.doi.org/10.26616/nioshpub2001115.

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NIOSH skin notation (SK) profile: glutaraldehyde [CAS No. 111-30-8]. U.S. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, 2011. http://dx.doi.org/10.26616/nioshpub2011149.

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