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Decarbonization of industrial processes: technologies, applications and perspectives of low-temperature solar heat (80-150°C)

机译:工业过程的脱碳:低温太阳能热(80-150°C)的技术、应用和前景

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Low-temperature (80-150°C) solar collectors guarantee a very high efficiency (up to 60%) in the conversion of solar radiation into useful thermal energy. Moreover, solar thermal technologies are already reliable solutions,relativelycheap and widely available in the market. For that reason, solarcollectors operating at low temperatures are among the most important sustainable technologies that can reduce the fossil fuel consumptionofindustrial processes and their corresponding carbon footprint. Unfortunately, Solar Heat for Industrial Processes (SHIP) is still mostly unused for several reasons, e.g., not easy identification of the appropriate applications (e.g., cleaning processes, drying, desalination) or lack of knowledge of the potential environmental and economic benefit of the use of SHIP technologies. For that reason, this work includes i) an overview of solar technologies for low/medium -temperature SHIP (80-150°C) ii) results obtained on the innovative design of the mirrors used in evacuated receiver tube by means of a variation in the shape of its internal reflector iii) estimation of CO_2 saving using a solar field based on evacuated tube collector (ETC). The work also includes a comparison of the standard ETC solar plant with an ETC solar plant embedded with reflectors with innovative shape.
机译:低温(80-150°C)太阳能集热器保证了将太阳辐射转化为有用热能的极高效率(高达60%)。此外,太阳能热技术已经是可靠的解决方案,在市场上相对集中且广泛可用。因此,在低温下运行的太阳能收集器是最重要的可持续技术之一,可以减少工业过程中的化石燃料消耗及其相应的碳足迹。不幸的是,工业过程中的太阳能热(SHIP)仍然大部分未使用,原因有几个,例如,不容易确定合适的应用(例如清洁过程、干燥、脱盐),或者缺乏使用SHIP技术的潜在环境和经济效益的知识。因此,这项工作包括i)低温/中温船舶(80-150°C)的太阳能技术概述ii)通过内部反射器形状的变化,在真空接收管中使用的反射镜的创新设计上获得的结果iii)使用基于真空管集热器(ETC)的太阳能场估算CO_2节约量。这项工作还包括将标准ETC太阳能发电厂与嵌入具有创新形状的反射器的ETC太阳能发电厂进行比较。

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