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Refueling and On-board Storage System Options for Hydrogen-Powered Underground Mining Equipment

机译:加油和载储存系统的氢气电力地下采矿设备选项

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Researchers at the Spokane Research Laboratory of the National Institute for Occupational Safety and Health studied alternatives to the use of diesel equipment in underground mines, as a means of reducing health hazards. Two of the alternatives being considered are battery-powered equipment and hydrogen-powered equipment. While battery-powered equipment is clean, recharging or replacing a battery takes longer and can be less convenient than refueling diesel equipment. In addition, the amount of electricity available from a battery is far less than the electricity available from a diesel hybrid configuration of comparable weight. Hydrogen-powered equipment faces similar challenges to those being faced by battery-powered equipment. However, if enough hydrogen can be put on-board the equipment quickly and conveniently via safe refueling options, then hydrogen-powered equipment can be competitive. Refueling options and specifications are determined by the on-board hydrogen storage system chosen for a given application. Three main underground refueling options are identified. Parameters to consider when designing and choosing an on-board hydrogen storage system are discussed. Safety and cost issues for hydrogen refueling options are included. However, the safety and costs for hydrogen refueling cannot be fully analyzed without demonstration projects. The relative safety and costs of diesel and batteries as compared to hydrogen are beyond the scope of this paper.
机译:国家职业安全和健康研究所斯波坎研究实验室研究了在地下矿井中使用柴油设备的替代方案,作为减少健康危害的手段。被认为的两个替代方案是电池供电的设备和氢气动力设备。虽然电池供电的设备很干净,充电或更换电池需要更长,但比加油柴油设备更便于方便。此外,从电池可获得的电力量远小于可比重量的柴油混合配置的电力。氢气动力设备面向电池供电设备面临的那些面临类似的挑战。但是,如果足够的氢气可以通过安全的加油选项快速方便地将设备放在板上,然后氢气供电的设备可以具有竞争力。加油选项和规格由为给定应用选择的板载储氢系统确定。确定了三个主要的地下加油选择。讨论了在设计和选择车载储氢系统时考虑的参数。包括氢气加油选项的安全性和成本问题。但是,在没有示范项目的情况下,不能完全分析氢气加油的安全性和成本。与氢相比,柴油和电池的相对安全性和成本超出了本文的范围。

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