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Environmental assessment of hydrogen production based on Pinus patula plantations in Colombia

机译:基于哥伦比亚松树人工林的制氢环境评估

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摘要

Pinus Patula is widely distributed in Colombia and has become a useful timber specie for reforestation programs. Forest biomass can be used to produce directly hydrogen through thermochemical technologies (e.g. gasification). The aim of this work is to assess the environmental impact of hydrogen production via gasification using P. patina as raw material. The life cycle assessment was carried out considering a cradle-to-gate perspective starting at the seedlings production and finishing at the hydrogen production. Inventory data of the forest system was obtained from a plantation located in Manizales, Colombia and additional data were provided with bibliographic resources. Mass and energy balances for hydrogen were obtained from the software Aspen Plus V8.0. The seedling production and P.patula cultivation were identified as hotspots of the hydrogen production. Agrochemicals application and seedbeds materials have the highest contribution to most of the environmental impacts in the seedlings production system. In the P. patula cultivation system, the fertilizer application and the collection/transportation of wood generate the highest emissions. The rotation periods of the cutting cycles strongly influence the agrochemicals dosage depending on the wood final purpose. The use of diesel in the collection/transportation of wood has an important share of the total environmental impact. (C) 2017 Elsevier Ltd. All rights reserved.
机译:Pinus Patula在哥伦比亚广泛分布,已成为重新造林计划的有用木材。森林生物质可用于通过热化学技术(例如气化)直接生产氢。这项工作的目的是评估使用古铜假单胞菌作为原料通过气化制氢对环境的影响。考虑从摇篮到大门的视角进行生命周期评估,从幼苗生产到氢气生产结束。森林系统的清单数据是从位于哥伦比亚马尼萨莱斯的一个种植园获得的,其他数据还配有书目资源。氢气的质量和能量平衡可从软件Aspen Plus V8.0获得。幼苗的生产和P.patula的种植被确定为产氢的热点。农用化学品的应用和苗床材料对种苗生产系统中的大多数环境影响具有最大的贡献。在P. patula种植系统中,施肥和木材的收集/运输产生最大的排放量。根据木材的最终用途,切割循环的旋转周期会强烈影响农用化学品的用量。在木材的收集/运输中使用柴油在整个环境影响中占有重要份额。 (C)2017 Elsevier Ltd.保留所有权利。

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