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一种间歇式脱溶釜温度控制系统应用
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作者 高雷 吕伟军 《自动化应用》 2021年第8期149-151,共3页
间歇式脱溶反应釜的温度控制为升温、拐点控制、保温和终止四个过程,本文采用优化控制技术及拐点预测模型(GD)技术作为脱溶釜的热水阀的开度控制算法和模型设计理念,解决了脱溶反应釜温度的非线性、强耦合、纯滞后性及不确定性的控制需... 间歇式脱溶反应釜的温度控制为升温、拐点控制、保温和终止四个过程,本文采用优化控制技术及拐点预测模型(GD)技术作为脱溶釜的热水阀的开度控制算法和模型设计理念,解决了脱溶反应釜温度的非线性、强耦合、纯滞后性及不确定性的控制需求,提高了脱溶釜反应温度控制精度,缩短了升温时间,提高产能,使生产过程达到最优化。 展开更多
关键词 优化控制 拐点预测 纯滞后 脱溶反应
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NiRh nanoparticles supported on nitrogen-doped porous carbon as highly efficient catalysts for dehydrogenation of hydrazine in alkaline solution 被引量:12
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作者 Bingquan Xia Kang Chen +1 位作者 Wei Luo Gongzhen Cheng 《Nano Research》 SCIE EI CAS CSCD 2015年第11期3472-3479,共8页
Well-dispersed bimetallic NiRh nanoparticles (NPs) with different compositions supported on nitrogen-doped porous carbon (NPC) derived from metal-organic frameworks (ZIF-8) were synthesized through a co-reductio... Well-dispersed bimetallic NiRh nanoparticles (NPs) with different compositions supported on nitrogen-doped porous carbon (NPC) derived from metal-organic frameworks (ZIF-8) were synthesized through a co-reduction method. The NPC-900 supported NiRh catalyst exhibits the highest catalytic activity and 100% hydrogen selectivity toward hydrogen generation from hydrazine. These properties might be attributed to the high surface area and high graphitization of the NPC. This strategy may open up a new avenue for designing high-performance catalysts by utilizing NPC as a support to anchor active metal NPs for additional applications. 展开更多
关键词 hydrogen storage metal--organic frameworks nitrogen-doped porous carbon HYDRAZINE
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