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INVESTIGATION OF MYCELIUM GROWTH NETWORK AS A THERMAL TRANSPIRATION MEMBRANE FOR THERMAL TRANSPIRATION BASED PUMPING AND POWER GENERATION

机译:菌丝体生长网络作为热蒸腾泵浦和发电的热蒸腾膜

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Micro combustion and power generation systems have increasingly been investigated as potential alternatives to electrochemical energy storage thanks to hydrocarbon fuel's high energy density, but electrical componentry for pumping significantly limits the overall system efficiency. These components must be eliminated to allow for widespread adoption of micro combustion and power generation systems, and so the development of an alternative pumping technique is required. By taking advantage of the thermal transpiration phenomenon, small-scale pumping can be obtained in the presence of a temperature gradient. Initial work has been done to investigate the efficacy of this system, but a major issue has arisen due to the lack of low-cost thermal transpiration membranes with desirable pore characteristics. Research has revealed that vessel hyphae present in the roots of mushrooms (mycelium) form a network which could meet the requirements of an effective thermal transpiration membrane. Proper growing conditions could also allow for an application specific mycelium structure providing a highly effective and low-cost thermal transpiration membrane for micro combustion systems.
机译:由于碳氢化合物燃料的高能量密度,微燃烧和发电系统越来越多地被调查为电化学能量存储的潜在替代品,但是泵送的电气部件显着限制了整体系统效率。必须消除这些组件以允许广泛采用微燃烧和发电系统,因此需要开发替代泵送技术。通过利用热蒸腾现象,可以在温度梯度存在下获得小规模泵送。已经完成了初始化以调查该系统的功效,但由于缺乏具有所需孔隙特性的低成本热蒸腾膜而产生了一个主要问题。研究揭示了蘑菇(菌丝体)根系中存在的血管菌丝,该网络形成了能够满足有效热蒸腾膜的要求。适当的生长条件也可以允许应用特异性菌丝体,为微燃烧系统提供高效和低成本的热蒸腾膜。

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