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Nature-inspired bio-Syngas Technologies for Olefins Synthesis

Nature-inspired bio-Syngas Technologies for Olefins Synthesis
用于烯烃合成的受自然启发的生物合成气技术
批准号:
EP/W019221/1
负责人:
Massimiliano Materazzi
金额:
$148.9万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

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中文摘要
翻译
与过度使用化石燃料有关的环境和经济问题,以及循环经济和碳减排技术带来的机遇,正在为化学工业的根本性重组铺平道路。炼油厂正在重新设计,将石化过程与基于生物的生产和更适合小规模运营的新热化学技术结合起来。在这方面,发明用于合成可再生中间体的新的(或重组的)工艺至关重要,因为这些分子是聚合物、燃料和化学工业的基本构件。为了在能源和制造部门实现向生物替代品的过渡,资源效率、工艺灵活性和集约化至关重要。为了实现这些目标,我们建议采用自然启发解决方案(NIS)方法,作为创新和信息变革性技术的系统平台。NIS方法将用于设计和优化模块化的生物合成气转化方法,以适合分散应用的规模生产包括生物烯烃在内的“绿色”化工产品。研究将集中在吸附增强型烯烃合成(SEOS)的新概念,以及关键系统部件(合成反应器-催化剂配置-生命周期分析)的集成设计和性能,以提供支持反应机理、工程性能和系统动力学的信息,从而促进未来生物制造工厂的部署。
英文摘要
Environmental and economic concerns related to the excessive use of fossil fuels, together with opportunities in circular economy and carbon negative technologies are paving the way for a fundamental reorganisation of the chemical industry. Oil refineries are being redesigned to couple petrochemical processes with bio-based productions and new thermo-chemical technologies more suited for small-scale operation. In this context, the invention of new (or restructured) processes for the synthesis of renewable intermediates, such as olefins generated from biomass is of crucial importance, since these molecules are fundamental building blocks for polymers, fuels and chemical industry. In order to unlock the transition to bio-substitutes in energy and manufacturing sectors, resource efficiency, process flexibility and intensification are of critical importance. To achieve these goals, we propose to employ a Nature-Inspired Solution (NIS) methodology, as a systematic platform for innovation and to inform transformative technology. The NIS methodology will be used to design and optimise modular bio-syngas conversion methods to manufacture "green" chemical products, including bio-olefins, at a scale suitable for decentralised applications. The research will focus on the novel concept of Sorption Enhanced Olefin Synthesis (SEOS), and the integrated design and performance of key system components (Synthesis Reactor - Catalysts Configuration - Life Cycle Analysis) to provide information on the underpinning reaction mechanisms, engineering performance and system dynamics that will facilitate deployment of future bio-based manufacturing plants.
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  • 批准号:
    EP/Y036921/1
  • 项目类别:
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  • 资助金额:
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  • 财政年份:
    2024
  • 负责人:
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  • 依托单位:
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  • 项目类别:
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  • 资助金额:
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  • 批准年份:
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