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铝汞合金体系常温水解制氢技术
  • 期刊名称:电源技术
  • 时间:0
  • 页码:683-686
  • 分类:TM911[电气工程—电力电子与电力传动]
  • 作者机构:[1]中国科学院大连化学物理研究所,辽宁大连116023, [2]中国计量学院,浙江杭州310018
  • 相关基金:基金项目:国家自然科学基金(50671098,U0734005,20833009,20873148)、国家“863”项目(2007AA052115,2007AA052102)和国家“973”项目(2010CB631303).
  • 相关项目:化学贮氢功能材料的热力学和动力学问题
中文摘要:

利用机械混合法制备了铝汞合金体系。该类合金具有很强的化学活性,在常温下与水反应迅速生成氢气,氢气产量接近理论值。如Al-5%Hg合金水解产生1175mL/g氢气,氢气产率为99%。考察了添加剂(Zn、NaCl)及球磨时间对铝一汞合金化学活性的影响。结果表明:锌部分取代汞,使铝汞合金的活性降低,且随AI—Hg—Zn合金中锌含量的增加,合金水解产氢气量降低,由1059mL/g(Al-9%Hg-1%Zn)降到427mL/g(Al-5%Hg-5%Zn);但盐的加入,迅速加快了合金水解速率,从238mU(min·g)(Al-10%Hg)增加到457mU(min·g)(Al-5%Hg-5%NaCl)]。以Al-9%Hg-1%NaCI合金为研究对象,球磨时间由1h延长到2h,其Al-9%Hg-1%NaCI合金的水解速率有所提高,但进一步延长球磨时间,反而降低了铝合金的活性,表明球磨时间对铝汞合金的,陛能有一定的影响。

英文摘要:

The milled AI-Hg alloys had high reactivity and quickly reacted with water to produce hydrogen. For example, the Al-5%Hg (mass fraction) alloy finally produced 1 175 mL/g hydrogen with the yield of 99% in pure water at room temperature. Furthermore,effects of the additives (Zn and NaCI) and milling time on the AI-Hg alloys reactivity have been researched. The results showed that the additive Zn reduced the Al-Hg alloy reactivity and the hydrogen yields decreased from 1 059 mL/g (Al-9%Hg-1%Zn) to 427 mL/g(Al-5%Hg-5%Zn) with the additive Zn contents increasing. But the NaCI favored to increasing the hydrogen generation rate from 238 mL/(min .g) (Al-10% Hg alloy) to 457 mL/ (min-g)(Al-5%Hg-5%NaCl alloy). The hydrogen yield and the hydrogen generation rate of Al-9%Hg-1% NaCI alloy were improved with the milling time increasing from 1 to 2 h, but the properties became worse with longer milling time.

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