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	<title>Noticias &#8211; BioEcoUVa</title>
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	<title>Noticias &#8211; BioEcoUVa</title>
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		<title>New publication on polymer foams by BioEcoUVa researcher Beatriz Martín Gómez</title>
		<link>https://bioeconomia.uva.es/new-publication-on-polymer-foams-by-bioecouva-researcher-beatriz-martin-gomez/</link>
		
		<dc:creator><![CDATA[Matías Penovi Rodríguez]]></dc:creator>
		<pubDate>Thu, 24 Sep 2026 13:29:59 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
		<guid isPermaLink="false">https://bioeconomia.uva.es/?p=610</guid>

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<p dir="auto" data-start="750" data-end="1009"><strong data-start="750" data-end="1009">Beatriz Martín Gómez, predoctoral researcher at the PressTech Research Group of the Institute of Bioeconomy (BioEcoUVa), has published her first scientific article, contributing new research to the field of polymer foams and advanced materials processing.</strong></p>
<p dir="auto" data-start="1011" data-end="1256">The publication explores the development and processing of polymeric foams, an area of research with growing relevance for the design of lightweight materials with tailored properties and potential applications in different technological fields.</p>
<p dir="auto" data-start="1258" data-end="1515">This new work forms part of Beatriz Martín Gómez&#8217;s research activity within the PressTech group, where research is focused on processes carried out under pressure and the development of innovative approaches for the processing and valorisation of materials.</p>
<p dir="auto" data-start="1517" data-end="1727">The publication also represents an important milestone in Beatriz&#8217;s research career and highlights the scientific activity being developed by young researchers within BioEcoUVa and the University of Valladolid.</p>
<p dir="auto" data-start="1729" data-end="1798"><img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f517.png" alt="🔗" class="wp-smiley" style="height: 1em; max-height: 1em;" /> <strong data-start="1732" data-end="1758">Read the full article:</strong><br data-start="1758" data-end="1761" /><span class="contents" data-content-reference-start="1742" data-content-reference-end="1839"><span class="" data-state="closed"><a class="decorated-link cursor-pointer" target="_blank" rel="noopener">ScienceDirect – article</a></span></span></p>
<p dir="auto" data-start="1800" data-end="1929"><strong data-start="1800" data-end="1824">Beatriz Martín Gómez</strong><br data-start="1824" data-end="1827" />Predoctoral Researcher · PressTech Research Group<br data-start="1876" data-end="1879" />Institute of Bioeconomy · University of Valladolid</p>
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		<p>Danilo Cantero — Chem Circularity</p>
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		<title>Danilo Cantero — Chem Circularity</title>
		<link>https://bioeconomia.uva.es/danilo-cantero-chem-circularity/</link>
		
		<dc:creator><![CDATA[Matías Penovi Rodríguez]]></dc:creator>
		<pubDate>Mon, 24 Aug 2026 15:42:18 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
		<guid isPermaLink="false">https://bioeconomia.uva.es/?p=555</guid>

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<h3 class="PDq2pG_selectionAnchorContainer" data-section-id="ungut9" data-start="3976" data-end="4059"><span role="text"><strong data-start="3980" data-end="4059">Precision hydrothermal processing for more resilient circular supply chains</strong></span></h3>
<p data-start="4061" data-end="4282"><strong data-start="4061" data-end="4282">BioEcoUVa researcher Danilo Cantero explores the potential of precision hydrothermal processing to transform local biomass, residues and industrial side streams into reliable sources of fuels, chemicals and materials.</strong></p>
<p data-start="4284" data-end="4662">In his latest contribution to <em data-start="4314" data-end="4332">Chem Circularity</em>, titled <em data-start="4341" data-end="4415">“Precision hydrothermal processing for resilient circular supply chains”</em>, Danilo Cantero examines the role that hydrothermal technologies could play in the development of more resilient and locally connected circular supply chains. The article was published online on 29 July 2026.</p>
<p data-start="4664" data-end="4906">Circular chemistry is increasingly concerned not only with reducing emissions or recovering specific waste streams, but also with developing supply chains that can remain reliable in the face of changes in energy, carbon and resource markets.</p>
<p data-start="4908" data-end="5385">Within this context, hydrothermal processing offers a particularly interesting technological route because it can process wet, heterogeneous and oxygen-rich feedstocks using hot compressed water. By adjusting reaction severity — mainly through the combination of temperature and residence time — different transformation pathways can be achieved, from hydrolysis and liquefaction to carbonisation and more selective hydrothermal reactions.</p>
<p data-start="5387" data-end="5664">The article highlights an important shift in perspective: hydrothermal technologies should not be considered solely as tools for converting waste into products. Instead, they can form part of a broader strategy for connecting <strong data-start="5613" data-end="5663">regional resources with regional product needs</strong>.</p>
<p data-start="5666" data-end="5988">This means considering not only whether a particular feedstock can technically be converted, but also whether the resulting products respond to specific regional challenges, such as waste management, fuel security, material supply, nutrient recovery, industrial decarbonisation or the resilience of chemical supply chains.</p>
<p data-start="5990" data-end="6312">For Danilo Cantero, this requires moving from a feedstock-centred approach towards a more <strong data-start="6080" data-end="6105">system-centred vision</strong> of circular processing. The availability and characteristics of local resources need to be considered together with product demand, energy availability, process integration and the wider industrial context.</p>
<p data-start="6314" data-end="6523">This approach could open opportunities for regions with significant biomass, forestry residues or industrial side streams to develop tailored conversion routes and generate products adapted to their own needs.</p>
<p data-start="6525" data-end="6867">The perspective is therefore not about replacing petroleum-based systems everywhere, but about identifying those situations in which local hydrothermal processing can provide a stronger technological and strategic option by bringing together available resources, energy, infrastructure and market demand.</p>
<p data-start="6869" data-end="7172">With extensive experience in hydrothermal technologies, Danilo Cantero&#8217;s contribution reflects the research carried out within <strong data-start="6996" data-end="7022">PressTech at BioEcoUVa</strong>, where the development and intensification of sustainable processes for biomass and resource valorisation form part of the group&#8217;s research activity.</p>
<p data-start="7174" data-end="7391"><img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f4d6.png" alt="📖" class="wp-smiley" style="height: 1em; max-height: 1em;" /> <strong data-start="7177" data-end="7203">Read the full article:</strong><br data-start="7203" data-end="7206" /><a href="https://www.sciencedirect.com/science/article/pii/S3051294826001040?utm_" target="_blank" rel="noopener"><em data-start="7206" data-end="7278">Precision hydrothermal processing for resilient circular supply chains</em></a><br data-start="7278" data-end="7281" /><em data-start="7281" data-end="7299">Chem Circularity</em>, 2026, 100108</p>
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		<title>BioEcoUVa takes part in SuperGreen 2026 in Sapporo, Japan</title>
		<link>https://bioeconomia.uva.es/bioecouva-takes-part-in-supergreen-2026-in-sapporo-japan/</link>
		
		<dc:creator><![CDATA[Matías Penovi Rodríguez]]></dc:creator>
		<pubDate>Sun, 02 Aug 2026 16:04:12 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
		<guid isPermaLink="false">https://bioeconomia.uva.es/?p=561</guid>

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<p class="PDq2pG_selectionAnchorContainer" data-start="7497" data-end="7697"><strong data-start="7497" data-end="7697">Researchers from BioEcoUVa&#8217;s PressTech Research Group participated in the 14th International Conference on Supercritical Fluids — SuperGreen 2026 — held in Sapporo, Japan, from 3 to 6 August 2026.</strong></p>
<p data-start="7699" data-end="8010">SuperGreen 2026 brought together researchers, engineers and professionals working in the field of supercritical fluids and their applications across areas including sustainable processes, energy, environmental technologies, materials processing, recycling and food science.</p>
<p data-start="8012" data-end="8168">BioEcoUVa was represented by researchers from the <strong data-start="8062" data-end="8090">PressTech Research Group</strong>, with contributions from <strong data-start="8116" data-end="8134">Danilo Cantero</strong> and <strong data-start="8139" data-end="8167">María José Cocero Alonso</strong>.</p>
<p data-start="8170" data-end="8431">Danilo Cantero presented the work <em data-start="8204" data-end="8389">“Process intensification of lignocellulosic biomass liquefaction: transitioning from batch to continuous supercritical water systems with high energy integration and char suppression”</em>, developed together with Irene Magdaleno.</p>
<p data-start="8433" data-end="8601">The research addresses the transition from conventional batch processing towards continuous supercritical water systems for the liquefaction of lignocellulosic biomass.</p>
<p data-start="8603" data-end="8916">One of the key challenges in this transition is achieving efficient conversion while reducing processing times and controlling the formation of unwanted char. The work presented at SuperGreen explores process intensification strategies aimed at improving both the performance and energy integration of the system.</p>
<p data-start="8918" data-end="9292">The research compares batch and continuous approaches and examines how operating conditions can influence product distribution, energy requirements and char formation. The continuous system enables significantly shorter residence times while maintaining relevant bio-oil yields, while heat integration contributes to reducing the external energy requirements of the process.</p>
<p data-start="9294" data-end="9516">This research forms part of the broader work developed by PressTech on the valorisation of lignocellulosic biomass and the development of more efficient technologies for converting renewable resources into useful products.</p>
<p data-start="9518" data-end="9703">The BioEcoUVa presence at SuperGreen 2026 also included <strong data-start="9574" data-end="9602">María José Cocero Alonso</strong>, Director of the Institute of Bioeconomy, who delivered a <strong data-start="9661" data-end="9680">plenary lecture</strong> during the conference.</p>
<p data-start="9705" data-end="10032">Participation in international scientific meetings such as SuperGreen provides an opportunity for BioEcoUVa researchers to present their latest results, exchange knowledge with the international research community and establish new scientific connections around technologies related to sustainable processes and the bioeconomy.</p>
<p data-start="10034" data-end="10236">SuperGreen 2026 was organised by the <strong data-start="10071" data-end="10112">Asian Society of Supercritical Fluids</strong> and took place at the Grand Mercure Sapporo Odori Park in Sapporo, Hokkaido, Japan.</p>
<p data-start="10238" data-end="10405"><img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f4cd.png" alt="📍" class="wp-smiley" style="height: 1em; max-height: 1em;" /> <strong data-start="10241" data-end="10259">Sapporo, Japan</strong><br data-start="10259" data-end="10262" /><img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f4c5.png" alt="📅" class="wp-smiley" style="height: 1em; max-height: 1em;" /> <strong data-start="10265" data-end="10284">3–6 August 2026</strong><br data-start="10284" data-end="10287" /><img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f30f.png" alt="🌏" class="wp-smiley" style="height: 1em; max-height: 1em;" /> <a href="https://supergreen-assf.com/2026/about.html?utm_" target="_blank" rel="noopener"><strong data-start="10290" data-end="10365">14th International Conference on Supercritical Fluids — SuperGreen 2026</strong></a></p>
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		<p>SuperGreen 2026 in Sapporo</p>
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		<title>Molecular insights into the microwave modification of starch functionality</title>
		<link>https://bioeconomia.uva.es/molecular-insights-into-the-microwave-modification-of-starch-functionality/</link>
		
		<dc:creator><![CDATA[Matías Penovi Rodríguez]]></dc:creator>
		<pubDate>Fri, 05 Jun 2026 14:31:15 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
		<guid isPermaLink="false">https://bioeconomia.uva.es/?p=535</guid>

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<p class="PDq2pG_selectionAnchorContainer" data-start="606" data-end="858"><strong data-start="606" data-end="858">BioEcoUVa researchers from the PROCEREALtech group have contributed to a new study published in <em data-start="704" data-end="724">Food Hydrocolloids</em>, investigating how controlled microwave treatment modifies the molecular structure and functional properties of different starches.</strong></p>
<p data-start="860" data-end="1153">Starch functionality plays an important role in determining the behaviour of food materials during processing and in the final properties of food products. Its behaviour is closely related to its molecular and supramolecular structure, particularly the organisation of amylose and amylopectin.</p>
<p data-start="1155" data-end="1592">In the study <em data-start="1168" data-end="1291">“Molecular basis of changes in pasting and rheological properties of starches physically modified by microwave radiation”</em>, researchers analysed the effects of controlled microwave treatment on a range of pure starches, including normal and waxy maize, normal and waxy rice, wheat, potato and tapioca starches. The treatment was carried out at 100 °C, with 25% moisture for 30 minutes.</p>
<p data-start="1594" data-end="1802">The research combined molecular and rheological characterisation techniques to investigate how changes at the molecular level are reflected in the pasting behaviour and viscoelastic properties of starch gels.</p>
<p data-start="1804" data-end="2043">The results show that microwave treatment does not produce a uniform response across different starch sources. Instead, the structural and rheological changes depend strongly on the botanical origin and molecular composition of the starch.</p>
<p data-start="2045" data-end="2498">Waxy starches showed increases in very short amylopectin chains and molecular degradation, while their rheological response remained relatively limited. Potato starch, in contrast, exhibited the most pronounced changes in rheological properties despite showing comparatively limited molecular degradation, suggesting that supramolecular reorganisation plays an important role in its response to microwave treatment.</p>
<p data-start="2500" data-end="2771">Wheat and tapioca starches displayed moderate structural changes accompanied by improved gel stability. The study also found that rice starches showed similar pasting and rheological responses, with the fine structure of amylopectin playing a particularly important role.</p>
<p data-start="2773" data-end="3092">The researchers identified correlations between specific molecular fractions and the strength and firmness of starch gels. In particular, short and medium amylose chains were associated with stronger and firmer gels, while short amylopectin chains were associated with weaker gels.</p>
<p data-start="3094" data-end="3323">These findings provide a better understanding of the mechanisms underlying microwave-induced modification of starch and contribute to the development of approaches for tailoring starch functionality through controlled processing.</p>
<p data-start="3325" data-end="3646">The study was carried out by <strong data-start="3354" data-end="3441">Raúl Ricardo Mauro, Zhihang Li, Andreas Blennow, Ainhoa Vicente and Felicidad Ronda</strong>, with researchers affiliated with the <strong data-start="3480" data-end="3542">PROCEREALtech Group at BioEcoUVa, University of Valladolid</strong>, as well as the University of Copenhagen and Jiangnan University.</p>
<p data-start="3648" data-end="3929"><img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f4d6.png" alt="📖" class="wp-smiley" style="height: 1em; max-height: 1em;" /> <strong data-start="3651" data-end="3677">Read the full article:</strong><br data-start="3677" data-end="3680" /><a href="https://www.sciencedirect.com/science/article/pii/S0268005X26001633?dgcid=rss_sd_all&amp;utm" target="_blank" rel="noopener"><em data-start="3680" data-end="3801">Molecular basis of changes in pasting and rheological properties of starches physically modified by microwave radiation</em></a><br data-start="3801" data-end="3804" /><em data-start="3804" data-end="3824">Food Hydrocolloids</em>, Volume 176, 2026, 112581</p>
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		<p>Food Hydrocolloids — PROCEREALtech</p>
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		<title>El BioEcoUVa gana el Premio de Investigación e Innovación Tecnológica en el ámbito energético de la Fundación Naturgy</title>
		<link>https://bioeconomia.uva.es/premio-fundacion-naturgy/</link>
		
		<dc:creator><![CDATA[BioEcoUVa]]></dc:creator>
		<pubDate>Mon, 03 Jul 2023 11:02:58 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
		<guid isPermaLink="false">https://bioeconomia.uva.es/?p=347</guid>

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<h4><strong>El proyecto ganador de la primera edición de este galardón, que cuenta con la valoración de una comisión científica coordinada por el CSIC, propone una tecnología innovadora en el ámbito de los procesos de captura y reducción de CO₂.</strong></h4>
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<p>Un proyecto del Instituto de Bioeconomía de la Universidad de Valladolid (BioEcoUVa) sobre captura y reducción de CO<sub>2</sub> ha sido el ganador de la I Edición del Premio a la Investigación y la Innovación Tecnológica en el ámbito energético otorgado por Fundación Naturgy, con el apoyo y colaboración del Consejo Superior de Investigaciones Científicas (CSIC). La propuesta galardonada, liderada por el investigador principal Ángel Martín Martínez, propone una tecnología innovadora en el ámbito de los procesos de captura y reducción de CO₂.</p>
<p>El proyecto <strong>‘CO2UP: Escalado del proceso de reducción hidrotermal de CO₂ empleando biomasa como reductor sobre valorización de CO₂’</strong> recibirá una dotación de 100.000 euros, que permitirá al equipo investigador diseñar, construir y operar una planta piloto que incremente el nivel de desarrollo de la tecnología a TRL=5. Los investigadores podrán implementar así una tecnología innovadora en el ámbito de los procesos de captura y reducción de CO₂, reemplazando la regeneración de un ad/absorbente por un proceso de reducción de CO₂ hidrotermal, empleando compuestos derivados de la biomasa como agentes reductores.</p>
<p>La entrega del galardón tuvo lugar hoy en Madrid, en un acto en el que el presidente de Fundación Naturgy, Rafael Villaseca, afirmó que, con esta nueva iniciativa, “Fundación Naturgy demuestra nuevamente su compromiso con el desarrollo de acciones encaminadas a acelerar la transición energética, ya que permitirá impulsar, con plenas garantías, la investigación y el desarrollo científico en el ámbito de la energía en España”.</p>
<p>Por su parte, la presidenta del CSIC, Eloísa del Pino, sostuvo que “el premio es también testimonio del compromiso compartido de Fundación Naturgy y del CSIC de apoyar a la investigación avanzada enfocada en un nuevo modelo económico centrado en la producción renovable, la descarbonización y las bajas emisiones de gases de efecto invernadero”.</p>
<p>El jurado ha destacado la originalidad de la propuesta del Instituto de Bioeconomía de la Universidad de Valladolid, cuyos resultados obtenidos a escala de laboratorio indican que se ha alcanzado un desarrollo suficiente para abordar de manera exitosa la prueba de concepto, que consistirá en el desarrollo a escala de una planta piloto durante los dos años de duración del proyecto. El jurado también ha puesto de relieve las capacidades y probada experiencia del grupo en los procesos de reducción de CO₂, que garantizan la correcta ejecución del proyecto.</p>
<p><strong>Una veintena de candidaturas</strong></p>
<p>En su primera edición, la convocatoria de este premio ha recibido 18 propuestas elegibles, desarrolladas por 11 universidades, 5 institutos de investigación y 2 fundaciones sin ánimo de lucro, con sede en 9 comunidades autónomas. Las propuestas han sido valoradas por una comisión científica, coordinada por el CSIC y un jurado de expertos.</p>
<p>Las otras cinco candidaturas finalistas fueron presentadas por grupos de investigación de la Fundació Universitat Oberta de Catalunya (FUOC), el Instituto Mediterráneo de Estudios Avanzados (IMEDEA-UIB-CSIC), el Instituto Catalán de Nanociencia y Nanotecnología (ICN2-CSIC), el Instituto de Catálisis y Petroleoquímica (IPC-CSIC) y la Universidad de Salamanca (USAL).</p>
<p>De todos ellos, el jurado ha reconocido el grado de innovación y la calidad de las propuestas presentadas, que abordaban temáticas de interés como la eficiencia energética y sus cálculos, la valorización del CO₂, las energías renovables y la electrocatálisis.</p>
<p>El jurado del premio, presidido por Eloisa del Pino, estaba formado por María Benjumea, fundadora de Spain Startup y del International Women Forum España; Mariano Marzo, profesor emérito de la Universidad de Barcelona y director de la Cátedra de Transición Energética de la UB; Diego Pavía, fundador y CEO de KIC InnoEnergy; Jorge Barredo, director general de Renovables, Nuevos Negocios e Innovación de Naturgy; María Eugenia Coronado, directora general de Fundación Naturgy.</p>
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<p>Link a la noticia: <a href="https://www.fundacionnaturgy.org/fundacion-naturgy-otorga-el-premio-a-la-investigacion-y-la-innovacion-tecnologica-en-el-ambito-energetico-a-un-proyecto-de-captura-y-reduccion-de-co2-del-instituto-de-bioeconomia-de-la-universidad-de/" target="_blank" rel="noopener">https://www.fundacionnaturgy.org/fundacion-naturgy-otorga-el-premio-a-la-investigacion-y-la-innovacion-tecnologica-en-el-ambito-energetico-a-un-proyecto-de-captura-y-reduccion-de-co2-del-instituto-de-bioeconomia-de-la-universidad-de/</a></p>
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		<p>El investigador del Instituto de Bioeconomía de la UVa, Angel Martín (tercero por la izda) recogiendo el premio junto a representantes entidades organizadoras (foto: Fundación Naturgy).</p>
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		<p>Los investigadores del grupo PressTech (BioEcoUVa), Ángel Martín y Lola Bermejo recogiendo el premio junto a Rafael Villaseca, presidente de la Fundación Naturgy (foto: Fundación Naturgy).</p>
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		<p>Los investigadores del grupo PressTech (BioEcoUVa), Ángel Martín y Lola Bermejo posando con el premio (foto: Fundación Naturgy).</p>
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		<title>2nd GREENERING International Conference</title>
		<link>https://bioeconomia.uva.es/2nd-greenering-international-conference-2/</link>
		
		<dc:creator><![CDATA[BioEcoUVa]]></dc:creator>
		<pubDate>Tue, 21 Mar 2023 08:42:42 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
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		<h3>The <strong>COST Action 18224 GREENERING</strong> is announcing the <span style="color: #6bd296;"><strong>2<sup>nd</sup> GREENERING INTERNATIONAL CONFERENCE</strong></span> which will be held in <strong>Valladolid</strong> (Spain) from <strong>March 21<sup>st</sup></strong> to<strong> March 23<sup>rd</sup></strong>, <strong>2023</strong>.</h3>
<h4>The conference has the objective to gather academics, researchers, and companies in an international forum to promote the application of green chemistry and sustainable technologies into industries with the environment, innovation, economy, and policy aspects in focus.</h4>
<h3><strong>We invite YOU to join the conference and share your <span style="color: #6bd296;">GREEN</span> ideas with us!</strong></h3>
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		<h2><strong>TOPICS</strong></h2>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>1.</strong></span> <strong>Alternative solvents:</strong> (SCFs, Ils, DES, W)</h3>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>2.</strong></span> <strong>Biorefinery:</strong> bioproducts and bioenergy</h3>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>3.</strong></span> <strong>CO2 capture and utilization</strong></h3>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>4.</strong></span> <strong>Green reaction and catalysis</strong></h3>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>5.</strong></span> <strong>Polymers and advanced materials</strong></h3>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>6.</strong></span> <strong>Applications I:</strong> care and health products, food and agriculture technology</h3>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>7.</strong></span> <strong>Applications II:</strong> bioelectronic and construction</h3>
<h3 style="padding-left: 40px;"><span style="color: #6bd296;"><strong>8.</strong></span> <strong>Scale-up and industrial applications</strong></h3>
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		<h2><a href="https://uvadoc.uva.es/handle/10324/59029" target="_blank" rel="noopener"><strong>BOOK OF ABSTRACTS</strong></a></h2>
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		<h2><strong>PLENARY SPEAKERS</strong></h2>
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		<p><strong>Dr. Ana Rita Duarte (UNl-FCT, Portugal)</strong></p>
<p>Dr. Ana Rita C. Duarte is Associate Professor with habillitation at the Chemistry Department from Nova School of Science and Technology. Her main research interests are the use of green technologies for the development of biomaterials. In particular, the use of water, and supercritical fluids together with the exploration of natural deep eutectic solvents for pharmaceutical and cosmetic applications. She is highly committed with the translation of research into sustainable industry. In 2016 she co-founded the start-up HydrUStent as result of her work as Research Assistant at the 3B’s research group at Universidade do Minho, where she worked for 10 years. In 2016 she was awarded an ERC consolidator grant entitled: DES.solve – When Solids Become Liquids: Natural Deep Eutectic solvents for Chemical Process Engineering, to proceed the developments on green technologies. After this 5 year project, in 2022 she was awarded an ERC Proof of Concept grant to pursue one of the technologies developed withing DES Solve. In between, 2018, she co-founded Des Solutio, a spin-off company from FCT-NOVA to develop safer and greener alternatives to the chemicals that are usually used in the production of beauty, pharmaceutical, personal care and other products, based in the new knowledge acquired in her research career. She is the Action Chair of COST Action Greenering which involves more than 250 participants from 34 different countries.</p>
<p><em>Personal Website: <a href="https://docentes.fct.unl.pt/ard08968/biocv" target="_blank" rel="noopener">https://docentes.fct.unl.pt/ard08968/biocv</a></em></p>
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		<p><strong>Dr</strong><strong>. W. de Vos (U. Twente, The Netherlands)</strong></p>
<p>Prof. Dr. Ir. Wiebe M. de Vos initiated and chairs the research group “Membrane Surface Science” (MSuS) at the University of Twente. Within his group Prof. de Vos successfully combines his background in the fundamentals of colloid and surface science with the much more applied field of membranes. His work in encompasses the coating of membranes for various functional enhancements, including anti-fouling, enhanced separations, easy-to-clean membranes and virus in-activation, but also entails the production of membranes using sustainable approaches such as aqueous phase separation. The unique membranes developed in this way, often also lead to new membrane processes, allowing effective and sustainable approaches to produce clean water from challenging sources.</p>
<p><em>Personal Website:</em> <a href="http://www.utwente.nl/msus" target="_blank" rel="noopener"><span lang="EN-ZA">www.utwente.nl/msus</span></a></p>
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		<p><strong><span style="font-family: Trebuchet MS, Helvetica, sans-serif;">Dr. Motonobu Goto (U. Nagoya, Japan)</span></strong></p>
<p>Dr. Eng. Motonobu Goto is Emeritus Professor at Nagoya University. During his long and fruitful career (more than 450 published papers in international academic journals) in Chemical Engineering and Materials Processing Engineering, he has received numerous awards, the latest The SCEJ Award of The Society of Chemical Engineering of Japan in 2020. His research interests include supercritical fluid technology such as extraction, reaction, and material processing and plasma technology. Hi is vice-president of International Society for Advancement of Supercritical Fluids. Since beginning of 2022, he is director of Super Critical Technology Centre, Co, Ltd. A company oriented to the industrial implementation of cleaner processes in a recycle oriented processes.</p>
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		<title>IX Jornadas de Investigadoras de Castilla y León</title>
		<link>https://bioeconomia.uva.es/jornadas-investigadoras-castilla-y-leon/</link>
		
		<dc:creator><![CDATA[BioEcoUVa]]></dc:creator>
		<pubDate>Thu, 16 Feb 2023 10:05:03 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
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		<h3><strong>Por noveno año consecutivo, el evento se celebró en Salamanca los días 9 y 10 de febrero, con 163 ponentes y más de 400 inscripciones.</strong></h3>
<p>Las Jornadas de Investigadoras de Castilla y León, financiadas por el Instituto de la Mujer y organizadas conjuntamente por las cuatro Universidades públicas de Castilla y León (Valladolid, Salamanca, Burgos y León) se han convertido en un referente a nivel nacional de este tipo de eventos científicos. <strong>Mª Luz Rodríguez Méndez y Cristina García Cabezón, miembros del Instituto de Bioeconomía de la Universidad de Valladolid, fueron las presidentas del comité.</strong></p>
<p>El objetivo de las Jornadas es <strong>incrementar la visibilidad de la mujer en el ámbito científico</strong>, y en esta edición, coincidiendo con el <strong>Día Internacional de la Mujer y la Niña en la Ciencia</strong>, sirvió de foro de encuentro e intercambio de experiencias entre investigadoras y profesionales que desarrollan su actividad en las diferentes áreas STEM.</p>
<p>Además, consolidando la línea iniciada el pasado año, el evento incorporó nuevos socios internacionales del ámbito iberoamericano: la Universidad Vasco de Quiroga de México y dos centros públicos portugueses, el Instituto Politécnico de Coimbra y la Universidade do Minho. Otra novedad de este año fue la apertura a la participación de estudiantes de los bachilleratos de excelencia de ciencias de Castilla y León, creando así referentes femeninos para la infancia que puedan contribuir a la elección de estas áreas como carreras profesionales.</p>
<p>Esta edición se celebró presencialmente en Salamanca y también se pudo seguir online, mediante retransmisión a través del Canal de YouTube del evento.</p>
<p>Hubo un total de 163 ponentes, representados por 54 comunicaciones orales, 118 carteles (incluidos 29 de estudiantes del BIE) y 20 comunicaciones flash.</p>
<p><strong>Varias investigadoras del BioEcoUva participaron en las jornadas.</strong></p>
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		<title>Taller EIT Food</title>
		<link>https://bioeconomia.uva.es/taller-eit-food/</link>
		
		<dc:creator><![CDATA[BioEcoUVa]]></dc:creator>
		<pubDate>Wed, 05 Oct 2022 10:28:31 +0000</pubDate>
				<category><![CDATA[Noticias]]></category>
		<guid isPermaLink="false">https://bioeconomia.uva.es/?p=269</guid>

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		<p>El pasado 5 de octubre se celebró en Valladolid el taller «Desarrollando un caso de negocio a partir de tu proyecto de investigación». Este taller fue organizado por <a href="https://www.eitfood.eu/" target="_blank" rel="noopener"><span class="s1">EIT Food</span></a> y Junta de Castilla y León en colaboración con tres estructuras de excelencia de Castilla y Léon &#8211; <strong>BioEcoUVa, IuFOR e IPS</strong> &#8211; que están desarrollando investigaciones tecnológicas en el campo de la circularidad.</p>
<p class="p1">La Consejera de Educación, Rocío Lucas Navas, pronunció el discurso de apertura del taller.</p>
<p class="p1">El objetivo del taller fue apoyar a investigadores destacados dándoles la oportunidad de crear redes de investigación independientes y ayudándoles a entrar en contacto con expertos que les ayuden a desarrollar propuestas comercializables basadas en las tecnologías que están aplicando.</p>
<p class="p1">El núcleo temático del taller fueron los conceptos de emisiones cero, circularidad y bioeconomía.</p>
<p class="p1">Al mismo tiempo, investigadores y estudiantes de doctorado recibieron información de primera mano de empresas del sector, como Bayer o PepsiCo, sobre posibles orientaciones de su trabajo para mejorar la colaboración y la aplicación en el mercado.</p>
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