Academic literature on the topic 'Manganeso'

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Journal articles on the topic "Manganeso"

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Mahdavi, Mansoureh, Rahim Dabiri, and Elham Shah Hosseini. "Magmatic Evolution and Compositional Characteristics of Tertiary Volcanic Rocks Associated with the Venarch Manganese Mineralization, Sw Qom, Central Iran." Earth Sciences Research Journal 19, no. 2 (2015): 141–45. http://dx.doi.org/10.15446/esrj.v19n2.49372.

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<p>The manganese (Mn) deposits of Iran date from late Proterozoic to Pliocene but the major high-grade Mn ore deposits are associated with tertiary basic to intermediate volcanic rocks. The Venarch Mn deposit is located in the SW Qom city and considered as one of the largest in Iran. The Mn mineralization is mostly hosted by Eocene high-k volcanic and pyroclastic rocks of Urmia-Dokhtar Magmatic Arc (UDMA). The study area mainly consists of basalt, trachybasalt, andesite, and basaltic-andesite that are intruded by Eocene-Oligocene monzodiorite, monzonite, and granodiorite intrusions. The
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Ortega, L., M. Arribas, AR Zubia, and J. San Martín. "Manganeso oligoelemento esencial." Boletin Sociedad Española Hidrologia Medica 16, no. 3 (2001): 143–46. http://dx.doi.org/10.23853/bsehm.2001.0511.

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Jiménez García, Francy Nelly, Hugo Hernán Ortiz Álvarez, and Luis Alberto Toro Carvajal. "Obtención de películas de ZnO impurificadas con Mn mediante la combinación de las técnicas Baño Químico y SILAR." BISTUA REVISTA DE LA FACULTAD DE CIENCIAS BASICAS 17, no. 1 (2018): 112. http://dx.doi.org/10.24054/01204211.v1.n1.2019.3140.

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En este trabajo se presentan los resultados obtenidos al impurificar películas de ZnO con Mn al emplear un procedimiento combinando las técnicas SILAR y Baño Químico. Las películas se crecieron sobre sustratos de vidrio usando como precursores: cloruro de zinc (ZnCl2), cloruro de manganeso (MnCl2) y sulfato de manganeso (MnSO4), y como agentes complejantes: hidróxido de amonio (NH4OH) y trietanolamina (TEA). Se varió el tiempo que permanecen las películas en la solución de manganeso y la temperatura de la solución para estudiar su influencia en las propiedades de las películas. La caracterizac
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Hueso, L. E., A. Fondado, J. Rivas, F. Rivadulla, and M. A. López-Quintela. "Efectos intergranulares en perovskitas de manganeso nanocristalinas." Boletín de la Sociedad Española de Cerámica y Vidrio 39, no. 3 (2000): 259–62. http://dx.doi.org/10.3989/cyv.2000.v39.i3.837.

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Vargas-Ramírez, M., A. Romero-Serrano, M. Angeles-Hernández, and F. Chávez-Alcalá. "Inyección de mineral de manganeso en acero líquido." Revista de Metalurgia 39, no. 2 (2003): 123–31. http://dx.doi.org/10.3989/revmetalm.2003.v39.i2.323.

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San Martín Bacaicoa, J. "Manganeso en las aguas minerales." Boletin Sociedad Española Hidrologia Medica 10, no. 3 (1995): 139–44. http://dx.doi.org/10.23853/bsehm.1996.0754.

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Durán Ferreras, Eduardo, and José Rafael Chacón Peña. "Parkinsonismo probablemente inducido por manganeso." Revista de Neurología 33, no. 05 (2001): 434. http://dx.doi.org/10.33588/rn.3305.2000626.

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Reyes Morales, Quinik Luis, Victor Esteban Reyes Cruz, Ariadna Trujillo Estrada, Jose Angel Cobos Murcia, Gustavo Urbano Reyes, and Miguel Pérez Labra. "Efecto de las alteraciones en las membranas aniónicas sobre la reducción de Mn2+ a partir de soluciones sulfatadas." Tópicos de Investigación en Ciencias de la Tierra y Materiales 7, no. 7 (2020): 45–49. http://dx.doi.org/10.29057/aactm.v7i7.6193.

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El electrodepósito de manganeso es un proceso sumamente energético, dado que se requieren corrientes y potenciales considerablemente altos; al mismo tiempo, el control sobre estas condiciones debe ser sumamente estricto, dado que las propiedades reactivas del manganeso lo hacen propenso a formar otras especies. Entre los elementos más importantes para la obtención de manganeso están las membranas aniónicas, pues son vitales para asegurar la eficiencia del proceso y la pureza del producto obtenido. Actualmente, se desconoce la forma como las membranas pueden variar su comportamiento a lo largo
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Prieto, O., and V. Rives. "Preparación y caracterización de óxidos de manganeso no estequiométricos." Boletín de la Sociedad Española de Cerámica y Vidrio 39, no. 3 (2000): 233–38. http://dx.doi.org/10.3989/cyv.2000.v39.i3.832.

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Alguacil, Francisco J. "Eliminación de metales tóxicos presentes en efluentes líquidos mediante resinas de cambio iónico. Parte VI: Manganeso(II))/H+/Lewatit K2621." Revista de Metalurgia 54, no. 2 (2018): 116. http://dx.doi.org/10.3989/revmetalm.116.

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En esta sexta parte de la serie de trabajos sobre la eliminación de metales tóxicos de disoluciones acuosas, se presentan datos sobre el sistema manganeso(II)-Lewatit K2621. La investigación se ha llevado a cabo empleando diferentes condiciones experimentales como son la velocidad de agitación asociada al sistema, el pH del medio acuoso, la temperatura, la adicción de distintas cantidades de resina a la disolución acuosa que contiene Manganeso(II) y la fuerza iónica de esta disolución. El comportamiento de la resina Lewatit K2621 respecto a la eliminación del Manganeso(II) se ha evaluado en pr
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Dissertations / Theses on the topic "Manganeso"

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Romero, Manzanares Antonio Domingo. "Lixiviación de manganeso del concentrado plomo-plata para la producción de sulfato de manganeso." Bachelor's thesis, Universidad Nacional Mayor de San Marcos, 2014. https://hdl.handle.net/20.500.12672/3784.

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El concentrado de plomo-plata que es materia de investigación tiene un contenido de plata de 210.7 oz/tc, 16.20% de plomo y 18.7 % manganeso, el cual es difícil comercializar. El objetivo de esta investigación consiste en minimizar el contenido de manganeso del concentrado de plomo-plata, por ser este elemento que diluye los contenidos de plomo y plata, perjudicando la comercialización del concentrado mencionado. El proceso de disminución de manganeso de un concentrado plomo-plata se puede adaptar a minerales con el mismo problema, alto contenido de manganeso (18.7%). Como subproducto
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Garcia, i. Cirera Beltzane. "Compostos polinuclears de manganès mimètics d'enzims redox. Inserció en suports mesoestructurats. Estudi de les propietats magnètiques i catalítiques." Doctoral thesis, Universitat de Barcelona, 2016. http://hdl.handle.net/10803/396332.

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Els organismes aerobis, com a subproducte del metabolisme, produeixen espècies reduïdes d'oxigen (ROS) de manera incompleta com: el radical superòxid (01, el peròxid d'hidrogen (H202) o el radical hidroxil (*OH), entre d'altres. Malgrat que les ROS tenen un paper essencial en l'organisme, una sobreproducció de ROS en l'organisme pot generar estrès oxidatiu. Aquest, sol estar associat a malalties degeneratives com l'Alzheimer, el Parkinson, l'esclerosi lateral amiotròfica, l'esclerosi múltiple o el càncer i a processos d'envelliment. Tot i així, el cos té certs mecanismes de defensa per control
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Cejudo, Marín Rocio. "Complejos metálicos de cobre y manganeso con ligandos biologicamente activos." Doctoral thesis, Universitat de València, 2002. http://hdl.handle.net/10803/10275.

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La tesis doctoral presentada tiene como objetivo general la síntesis y caracterización de complejos metálicos de Mn(II), Mn(III) y Cu(II) con sulfonamidas N-derivadas. Además del estudio químico de caracterización de los complejos obtenidos, se ha analizado su actividad biológica cuando actúan como agentes miméticos del enzima natural superóxido dismutasa y como nucleasas químicas. Los ligandos utilizados para las síntesis de los diferentes complejos han sido: 4-amino-N-(5-metil-1,3,4-tiadiazol-2-il)bencenosulfonamida (sulfametizol; Hsmtz), 4-amino-N-(4,6-dimetil-2-pirimidinil)bencenosulfonami
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Clarasó, Petit Carlota. "Rational design of bioinspired iron and manganese catalysts for the effective and selective epoxidation of alkenes and oxidation of alkanes." Doctoral thesis, Universitat de Girona, 2019. http://hdl.handle.net/10803/666958.

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Metalloenzymes are a fundamental source of inspiration for synthetic chemists. Oxidation metalloenzymes catalyze oxidation reactions with high efficiency under very mild experimental conditions exhibiting exquisite regio- and stereoselectivity. The present dissertation aims at designing efficient and selective bioinspired oxidation catalysts. Looking at the literature there’s a very limited number of aliphatic diamines incorporated as ligand backbones in tetradentate aminopyridine based complexes, which have been revealed as one of the most successful catalysts for these transformations with p
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Tirado, Sommella Ares Salvador. "Dentificación de genes que participan en la respuesta transcripcional al ion Mn2+ en Ceriporiopsis subvermispora y análisis bioinformático de los promotores de genes relacionados." Tesis, Universidad de Chile, 2009. http://www.repositorio.uchile.cl/handle/2250/105176.

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Tesis para optar al grado académico de Magíster en Bioquímica, área de especialización en Proteínas Recombinantes y Biotecnología y Memoria para optar Título Profesional de Bioquímico<br>El manganeso es un componente esencial para los organismos, pues está involucrado en muchos de los procesos elementales de la célula. El estado de oxidación +2 es la forma más abundante de este metal en los sistemas biólógicos, en donde es requerido por una amplia diversidad de enzimas y proteínas. El ion Mn2+ destaca además por su capacidad de controlar especies reactivas del oxígeno al interior de la
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Escriche, Tur Luis. "Polynuclear manganese compounds with carboxylate bridging ligands models of redox enzymes: insertion inside mesoporous supports: study of their magnetic and catalytic properties." Doctoral thesis, Universitat de Barcelona, 2016. http://hdl.handle.net/10803/400860.

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The main objective of this work is the synthesis of manganese compounds and hybrid materials that may be relevant from a bioinorganic and magnetic point of view. The developed strategy comprises three main steps that form different sections in this thesis: (a) Synthesis and characterization of molecular manganese compounds and study of the magnetic properties The crystal structure of twenty-three new Mn compounds of different nucleartities were obtained in which the Mn oxidation state is II, III, or IV. The magnetic properties of all these compounds were profoundly studied and they have
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Maturana, Sepúlveda Andrés Óscar. "Estudio preliminar de partículas nanoestructuradas de óxido de manganeso para su utilización en catálisis." Tesis, Universidad de Chile, 2012. http://www.repositorio.uchile.cl/handle/2250/112348.

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Ingeniero Civil Químico<br>En el ámbito de los nanomateriales, los óxidos metálicos siempre han generado especial interés debido a sus excelentes propiedades físicas y químicas. Dentro de éstos, los óxidos de manganeso son de particular interés debido a sus excelentes propiedades catalíticas y a que ofrecen innumerables posibilidades de modificación dependiendo del tipo de aplicación que se necesite. El presente Trabajo de Título tuvo como objetivo sintetizar y caracterizar partículas nanoestructuradas de óxidos de manganeso y además estudiar sus posibles propiedades catalíticas en la oxidaci
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Sabaté, Fornons Ferran. "Estudio, síntesis y caracterización de óxidos de manganeso de tipo criptomelana y aplicaciones catalíticas." Doctoral thesis, Universitat Politècnica de València, 2021. http://hdl.handle.net/10251/167054.

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[ES] La presente tesis doctoral se sitúa en el marco de la síntesis de óxidos metálicos con aplicaciones en Catálisis Heterogénea para la obtención de productos de Química Fina de alto interés industrial. En este caso concreto se han estudiado los óxidos de manganeso de tipo criptomelana K-OMS2, los cuales resultan muy útiles para la fabricación de dispositivos electrónicos y como catalizadores, debido a sus propiedades redox, a su inocuidad a nivel medioambiental y a su bajo coste. En la primera parte de este trabajo se ha estudiado la síntesis de g - valerolactona mediante la carboesterifica
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Garcia, Bosch Isaac. "Managanese and dicopper complexes for bioinspired oxidation reactions: catalytic and mechanistic studies on C-H and C=C oxidations." Doctoral thesis, Universitat de Girona, 2011. http://hdl.handle.net/10803/78940.

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Enzymes are high-weight molecules which catalyze most of the metabolic processes in living organisms. Very often, these proteins contain one or more 1st row transition metal ions in their active center (Fe, Cu, Co, Mn, Zn, etc.), and are known as metalloenzymes or metalloproteins. Among these, metalloenzymes that activate molecular oxygen and use it as terminal oxidant stand out because of the wide range of catalyzed reactions and their exquisite selectivity. In this PhD dissertation we develop low-weight synthetic bioinspired complexes that can mimic structural and/or functional features of t
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Rojas, Soto Luis Gustavo Alejandro. "Análisis de la expresión génica diferencial del basidiomicete Ceriporiopsis subvermispora en respuesta a distintas concentraciones de manganeso mediante la técnica cDNA-AFLP." Tesis, Universidad de Chile, 2006. http://repositorio.uchile.cl/handle/2250/105569.

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Memoria para optar al título profesional de Bioquímico<br>El objetivo de este trabajo fue identificar genes expresados diferencialmente en un organismo cuyo genoma no ha sido secuenciado. Investigamos los patrones globales de expresión en respuesta a cambios en la concentración de Mn2+ en el medio de cultivo, con el fin de identificar genes involucrados en el metabolismo y homeostasis de este catión. El organismo modelo usado fue Ceriporiopsis subvermispora, un hongo ligninolítico altamente selectivo, el cual posee una maquinaria enzimática compuesta por peroxidasas dependientes de mang
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Books on the topic "Manganeso"

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Pascual, Josefa. La ceramica verde-manganeso bajomedieval valenciana. Ajuntament de València, 1986.

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Piedra, Carlos Cano. La cerámica verde-manganeso de Madīnat Al-Zahrā. Sierra Nevada 95, 1996.

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Crispín, Alvaro Sánchez. Los mineros del manganeso: Aspectos de la organización territorial de la explotación de ferrosos en el norte de Hidalgo. Gobierno del Estado de Hidalgo, Instituto Hidalguense de la Cultura, 1992.

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Diliūnas, Jonas. Manganas Lietuvos gėlame požeminiame vandenyje = Manganese in fresh groundwater of Lithuania. Geologijos ir geografijos institutas, 2002.

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Manganese. Benchmark Books, 2005.

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Saxton, Robert. Manganese. Carcanet, 2003.

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Boucher, L. J., Karl Koeber, and Dieter Tille. Mn Manganese. Edited by Helga Demmer, Helga Köttelwesch, Edith Schleitzer-Rust, and Dieter Tille. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-662-08178-5.

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Sarbas, Bärbel, and Wolfgang Töpper. Mn Manganese. Edited by Reiner Ditz and Wolfgang Töpper. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-662-08907-1.

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Cairncross, B. The manganese adventure: The South African manganese fields. Associated Ore & Metal Corp., 1997.

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Lula, R. A. Manganese stainlesss steels. Manganese Centre, 1986.

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Book chapters on the topic "Manganeso"

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Sarbas, Bärbel, and Wolfgang Töpper. "Natural Occurrence. Minerals." In Mn Manganese. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-662-08907-1_1.

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Sarbas, Bärbel, and Wolfgang Töpper. "Native Element, Solid Solution, Silicide, and Carbide." In Mn Manganese. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-662-08907-1_2.

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Sarbas, Bärbel, and Wolfgang Töpper. "Sulfides and Related Compounds." In Mn Manganese. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-662-08907-1_3.

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Sarbas, Bärbel, and Wolfgang Töpper. "Halogenides and Oxyhalogenides." In Mn Manganese. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-662-08907-1_4.

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Sarbas, Bärbel, and Wolfgang Töpper. "Oxides." In Mn Manganese. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-662-08907-1_5.

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Boucher, L. J., Karl Koeber, Dieter Tille, Helga Demmer, Helga Köttelwesch, and Edith Schleitzer-Rust. "Coordination Compounds of Manganese." In Mn Manganese. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-662-08178-5_1.

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Boucher, L. J., Karl Koeber, Dieter Tille, Helga Demmer, Helga Köttelwesch, and Edith Schleitzer-Rust. "Complexes with Schiff Bases." In Mn Manganese. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-662-08178-5_2.

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Boucher, L. J., Karl Koeber, Dieter Tille, Helga Demmer, Helga Köttelwesch, and Edith Schleitzer-Rust. "Complexes with Hydrazones or Related Compounds." In Mn Manganese. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-662-08178-5_3.

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Boucher, L. J., Karl Koeber, Dieter Tille, Helga Demmer, Helga Köttelwesch, and Edith Schleitzer-Rust. "Complexes with Carbazones, Thiocarbazones, and Formazans." In Mn Manganese. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-662-08178-5_4.

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Durand, B., J. M. Paris, E. Kostiner, and M. H. Rapposch. "Manganese Diphosphate (Manganese Pyrophosphate)." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132500.ch27.

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Conference papers on the topic "Manganeso"

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Morgan, Charles L. "Manganese nodules, again?" In OCEANS 2011. IEEE, 2011. http://dx.doi.org/10.23919/oceans.2011.6106912.

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Alvani, Carlo, Mariangela Bellusci, Aurelio La Barbera, et al. "Reactive Pellets for Improved Solar Hydrogen Production Based on Sodium Manganese Ferrite Thermochemical Cycle." In ASME 2008 2nd International Conference on Energy Sustainability collocated with the Heat Transfer, Fluids Engineering, and 3rd Energy Nanotechnology Conferences. ASMEDC, 2008. http://dx.doi.org/10.1115/es2008-54170.

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Hydrogen production by water-splitting thermochemical cycle based on manganese ferrite /sodium carbonate reactive system is reported. Two different preparation procedures for manganese ferrite/sodium carbonate mixture were adopted and compared in terms of materials capability to cyclical hydrogen production. According to the first procedure conventionally synthesized manganese ferrite, i. e. high temperature (1250 °C) heating in Ar of carbonate/oxide precursors, was mixed with sodium carbonate. The blend was tested inside a TPD reactor using a cyclical hydrogen production/material regeneration
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Varsano, Francesca, Mariangela Bellusci, Carlo Alvani, Aurelio La Barbera, Franco Padella, and Luca Seralessandri. "Optimized Reactants Mixture and Products Hydrolysis in the Manganese Oxide Thermochemical Cycle." In ASME 2009 3rd International Conference on Energy Sustainability collocated with the Heat Transfer and InterPACK09 Conferences. ASMEDC, 2009. http://dx.doi.org/10.1115/es2009-90257.

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A novel system composed by an aqueous slurry prepared by MnO and NaOH mixture was tested for the hydrogen production in the sodium manganese oxide thermochemical cycle. The hydrogen evolution occurs at lower temperature than conventional mixtures utilized in the cycle. Experiments performed in a Temperature Programmed Desorption/Reaction apparatus (TPD/TPR) have evidenced hydrogen production around 500°C. The hydrolysis step of α-NaMnO2 has been studied and the importance to conduct hydrolysis reaction under inert gas is discussed. A manganese disproportion mechanism is hypothesized to explain
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Mellon, Brian, Douglas R. McCain, and Raymond M. Post. "Mitigating Manganese-Induced Pitting Failures on a Stainless Steel Surface Condenser." In ASME 2006 Power Conference. ASMEDC, 2006. http://dx.doi.org/10.1115/power2006-88119.

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In early 2005, the 4-unit, 1200 MW Cottonwood Energy facility on the Sabine River in Deweyville, TX experienced a sudden increase in condenser tube failures and eddy current pit indications. Metallurgical analysis of failed tube specimens revealed the presence of a thin, hard manganese-rich coating, with intense pits propagating at breaks in the deposit. Successful mitigation of manganese-induced pitting and repassivation of the condenser tubes requires that the surface and pits first be thoroughly cleaned prior to implementing a manganese deposit control program. This paper reviews the succes
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Fukunaga, Kazuhiro, Rikio Chijiiwa, Yoshiyuki Watanabe, et al. "Advanced Titanium Oxide Steel With Excellent HAZ Toughness for Offshore Structures." In ASME 2010 29th International Conference on Ocean, Offshore and Arctic Engineering. ASMEDC, 2010. http://dx.doi.org/10.1115/omae2010-20319.

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The feature of titanium oxide steel (Ti-O steel) is that heat affected zone (HAZ) toughness is improved due to the refinement of HAZ microstructure through the formation of intragranular ferrite (IGF). This desirable microstructure, IGF, forms radially from titanium oxide particles. Recently, it has been clarified that manganese in Ti-O steel is an indispensable element for the formation of IGF. Therefore, manganese effects on Ti-O steel have been basically studied in this work, and then a new effect has been found. In Ti-O steel, manganese has the effect of suppressing the formation of ferrit
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Abdykirova, Gulnar. "RESEARCH ON OBTAINING ELECTROLYTIC MANGANESE DIOXIDE FROM MANGANESE-CONTAINING SLUDGE LEACHING SOLUTIONS." In 16th International Multidisciplinary Scientific GeoConference SGEM2016. Stef92 Technology, 2016. http://dx.doi.org/10.5593/sgem2016/b12/s04.152.

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Park, Jeong-Yeol, and Myung-Hyun Kim. "A Comparison of Fracture Toughness and Fatigue Crack Propagation Characteristics of High Manganese and Nickel Steels." In ASME 2018 37th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/omae2018-77247.

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Recently, demands for liquefied natural gas (LNG) are increased by developing countries such as China, India and Middle East area. In addition, the International Maritime Organization (IMO) reinforced regulations to avoid the serious environmental pollution. This trend has led to manufacturing and operating various LNG vessels such as liquefied natural gas carrier (LNGC), floating liquefied natural gas (FLNG) and very large gas carrier (VLGC). In the design of LNG vessels, the structural integrity of LNG storage tank is of significant importance to satisfy the service conditions. In order to s
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Albrektienė, Ramunė, and Mindaugas Rimeika. "Efficiency of Removal of Iron, Manganese, Ammonium and Organic Matter from Groundwater." In Environmental Engineering. VGTU Technika, 2017. http://dx.doi.org/10.3846/enviro.2017.067.

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The acceptable concentrations in groundwater are usually in excess of iron, ammonium and manganese. These compounds are inefficiently removed by means of ordinary technologies of ammonium ions, iron and manganese compounds removal from groundwater (water aeration and filtration through granular filter fillings) where groundwater contains high concentrations of organic compounds. Increased concentrations of organic compounds in groundwater occur in well fields where exploited aquifers have contact with surface water wells and are supplemented with water from open water bodies. Such well field i
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Goto, Koji, Tetsuo Yamazaki, Naoki Nakatani, and Rei Arai. "Preliminary Economic Feasibility Analysis of Cobalt-Rich Manganese Crust Mining for Rare Metal Recovery." In ASME 2010 29th International Conference on Ocean, Offshore and Arctic Engineering. ASMEDC, 2010. http://dx.doi.org/10.1115/omae2010-20243.

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The importance of cobalt-rich manganese crusts on the Pacific seamounts for possible future rare metal sources has currently been recognized. The thin layer-type deposit characteristics affect not only the excavation efficiency but also the economy of mining venture. Considering the thin layer-type distribution and the utilization of some rare metals in cobalt-rich manganese crusts, a preliminary economic feasibility of the mining venture is evaluated. Under some preliminary technical assumptions, the possibility of cobalt-rich manganese crusts for future rare metal sources for Japan is examin
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Lai, Kun-rong, Wei-bo Zhou, and Meng-yao Li. "Notice of Retraction: Study on Manganese adsorption by modified Manganese sand in groundwater." In 2011 International Conference on Electric Technology and Civil Engineering (ICETCE). IEEE, 2011. http://dx.doi.org/10.1109/icetce.2011.5775408.

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Reports on the topic "Manganeso"

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Aschner, Michael, and Vanesssa A. Fitsanakis. Manganese Research Health Project (MHRP). Defense Technical Information Center, 2009. http://dx.doi.org/10.21236/ada497635.

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Beck, Erin. Aluminum Manganese Molten Salt Plating. Defense Technical Information Center, 2006. http://dx.doi.org/10.21236/ada608404.

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Aschner, Michael. Manganese Research Health Project (MHRP). Defense Technical Information Center, 2006. http://dx.doi.org/10.21236/ada446400.

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Aschner, Michael. Manganese Health Research Program (MHRP). Defense Technical Information Center, 2008. http://dx.doi.org/10.21236/ada482927.

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Summerfield, Daisy. Australian Resource Reviews: Manganese Ore 2020. Geoscience Australia, 2021. http://dx.doi.org/10.11636/9781922446541.

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Doner, H., and M. Zavarin. Nickel and manganese interaction with calcite. Office of Scientific and Technical Information (OSTI), 1999. http://dx.doi.org/10.2172/12549.

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Perkins, A. The Products of Manganese (II) Oxidation. Office of Scientific and Technical Information (OSTI), 2004. http://dx.doi.org/10.2172/833106.

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Grush, M. M. X-ray spectroscopy of manganese clusters. Office of Scientific and Technical Information (OSTI), 1996. http://dx.doi.org/10.2172/286265.

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Licht, Mark A., and Kent R. Berns. Glyphosate, Manganese, and Zinc Soybean Trial. Iowa State University, Digital Repository, 2012. http://dx.doi.org/10.31274/farmprogressreports-180814-1890.

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Licht, Mark A., Zachary A. Koopman, and Kent R. Berns. Glyphosate, Manganese, and Zinc Soybean Trial. Iowa State University, Digital Repository, 2013. http://dx.doi.org/10.31274/farmprogressreports-180814-2407.

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