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Advanced On-Site Hydrogen Generation Provides Enhanced Capabilities

机译:先进的现场氢气产生提供增强的能力

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Advanced electrolysis hydrogen technology has demonstrated utility in providing hydrogen for brazing, annealing, MIM, P/M, flame spray and other thermal treatment techniques, in both continuous and batch modes. Advantages include low flammable inventory, elimination of pressure hazards, eliminating of the need to move cylinders and elimination of deliveries. By combining on-site hydrogen generation with a small amount of in-process hydrogen surge storage, on-site hydrogen generation can be used to meet the needs of batch process such as batch furnaces. By carefully choosing generation pressure and surge storage vessel volume, the process can provide maximum flexibility while minimizing the amount of hydrogen actually stored. As compared with dissociated ammonia, advanced electrolysis hydrogen generation provides drier gas, and the ability to vary furnace atmosphere from no hydrogen to 100% hydrogen, enhancing processing flexibility. Additionally, advanced electrolysis can be turned off when not in use saving power as compared with ammonia retorts.
机译:先进的电解氢技术已经证明了连续和批量模式提供钎焊,退火,MIM,P / M,火焰喷涂和其他热处理技术的效用。优点包括低易燃库存,消除压力危险,消除了移动气缸的需要和消除输送。通过将现场氢产生与少量的过程中的氢气电涌储存,可以使用现场氢产生来满足批量炉的批量处理的需求。通过仔细选择发电压力和浪涌储存容器体积,该过程可以提供最大的灵活性,同时最小化实际存储的氢气量。与解离氨相比,先进的电解氢气产生提供干燥的气体,并且可以从不氢气到100%氢气的炉气氛,增强加工灵活性。此外,与氨气蒸馏物相比,不使用节省电力时,可以关闭先进的电解。

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