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首页> 外文期刊>Energy >Solar collectors versus lamps--a comparison of the energy demand of industrial photochemical processes as exemplified by the Production of ∈-caprolactam
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Solar collectors versus lamps--a comparison of the energy demand of industrial photochemical processes as exemplified by the Production of ∈-caprolactam

机译:太阳能集热器与灯具-工业光化学过程的能量需求比较,以ε-己内酰胺的生产为例

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摘要

The energy demand of photochemical synthesis of ∈-caprolactam was compared for two plant concepts. The conventional lamp-driven concept followed the process as realized on an industrial scale by Toray Ltd, Japan and a solar concept was designed at identical yearly output. The aim of the comparison was to determine the savings of fossil fuels that could be achieved if photochemistry could make use of solar radiation instead of artificial light. The use of solar radiation for the photochemical production of ∈-caprolac- tam has a 4-fold lower demand for electric current and an 8-fold lower demand for cooling energy as compared to an equivalent conventionally operated route. Furthermore, due to avoided conversion of fossil fuel to electric current, a solar process would allow specific emissions of l.5--2.5 tons of CO_2 per ton ∈- caprolactam to be avoided, depending on the primary energy carrier used.
机译:比较了两种植物概念的光化学合成ε-己内酰胺的能量需求。传统的灯驱动概念遵循了日本Toray Ltd.在工业规模上实现的过程,并且太阳能概念的设计采用了相同的年产量。比较的目的是确定如果光化学可以利用太阳辐射代替人造光可以实现的化石燃料节省。与等效的常规操作路线相比,将太阳辐射用于ε-己内酰胺的光化学生产的电流需求降低了4倍,冷却能量需求降低了8倍。此外,由于避免了将化石燃料转化为电流,因此,根据所使用的主要能源载体,太阳能工艺可以避免每吨ε-己内酰胺产生1.5--2.5吨CO_2的特定排放。

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