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CO2 residual concentration of potassium-promoted hydrotalcite for deep CO/CO2 purification in H2-rich gas 被引量:1
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作者 Xuancan Zhu Yixiang Shi Ningsheng Cai 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第5期956-964,共9页
Elevated-temperature pressure swing adsorption is a promising technique for producing high purity hydrogen and controlling greenhouse gas emissions. Thermodynamic analysis indicated that the CO in H-rich gas could be ... Elevated-temperature pressure swing adsorption is a promising technique for producing high purity hydrogen and controlling greenhouse gas emissions. Thermodynamic analysis indicated that the CO in H-rich gas could be controlled to trace levels of below 10 ppm by in situ reduction of the COconcentration to less than 100 ppm via the aforementioned process. The COadsorption capacity of potassiumpromoted hydrotalcite at elevated temperatures under different adsorption(mole fraction, working pressure) and desorption(flow rate, desorption time, steam effects) conditions was systematically investigated using a fixed bed reactor. It was found that the COresidual concentration before the breakthrough of COmainly depended on the total amount of purge gas and the COmole fraction in the inlet syngas.The residual COconcentration and uptake achieved for the inlet gas comprising CO(9.7 mL/min) and He(277.6 mL/min) at a working pressure of 3 MPa after 1 h of Ar purging at 300 mL/min were 12.3 ppm and0.341 mmol/g, respectively. Steam purge could greatly improve the cyclic adsorption working capacity, but had no obvious benefit for the recovery of the residual COconcentration compared to purging with an inert gas. The residual COconcentration obtained with the adsorbent could be reduced to 3.2 ppm after 12 h of temperature swing at 450 °C. A new concept based on an adsorption/desorption process, comprising adsorption, steam rinse, depressurization, steam purge, pressurization, and high-temperature steam purge, was proposed for reducing the steam consumption during CO/COpurification. 展开更多
关键词 Potassium-promoted hydrotalcite warm gas clean-up Elevated-temperature pressure swing adsorption CO deep purification High purity hydrogen production
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合成气微量CO深度净化新方法实验研究 被引量:1
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作者 朱炫灿 史翊翔 蔡宁生 《工程热物理学报》 EI CAS CSCD 北大核心 2017年第2期421-427,共7页
传统的CO净化技术会造成变换气H_2的损失,为此本文提出通过在CO_2吸附塔出口段加入水气变换催化剂用于合成气CO的深度净化。首先证明了复合系统净化CO的热力学可行性,之后探索不同运行工况对CO净化性能的影响,最后进行了十循环连续测试... 传统的CO净化技术会造成变换气H_2的损失,为此本文提出通过在CO_2吸附塔出口段加入水气变换催化剂用于合成气CO的深度净化。首先证明了复合系统净化CO的热力学可行性,之后探索不同运行工况对CO净化性能的影响,最后进行了十循环连续测试。结果表明在真实合成气工况下(400℃,2 MPa,5.17%CO,20.8%CO_2,51.8%H_2,20.7%H_2O,1.60%Ar)复合系统具有较好的CO净化性能,其吸附剂利用率τ_(10),τ_(50),τ_(200)依次为0.090~0.337.0.417~0.723,0.699~0.810。 展开更多
关键词 CO深度净化 热气体处理技术 CO2吸附剂 水气变换 氢燃料电池
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气体污染物之中高温净化技术
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作者 邱耀平 陈一顺 黄亮维 《武汉大学学报(工学版)》 CAS CSCD 北大核心 2012年第6期809-816,共8页
核能研究所从2005年起,开始执行净碳技术领域研究,而气体污染物之中高温净化技术为其中的重点之一.中高温净化程序系将典型低温气体处理程序由室温提升至中高温层级,藉由气体处理温度的增高,可降低因温度变化所导致的可用能量减损,进而... 核能研究所从2005年起,开始执行净碳技术领域研究,而气体污染物之中高温净化技术为其中的重点之一.中高温净化程序系将典型低温气体处理程序由室温提升至中高温层级,藉由气体处理温度的增高,可降低因温度变化所导致的可用能量减损,进而提升系统整体效能.主要涵盖两大领域技术,首先为流动式颗粒床过滤器气体净化技术,其原生技术为一可应用于中高温的粉尘过滤装置,本研究将其延伸发展为一种复合型过滤系统.其次,中高温脱硫为具有前瞻性的气体减排技术之一,本研究以含浸法制备脱硫剂,并于固定床反应器中进行化性测试;目前得到的最佳吸附容量为7.4g-S/100g sorbent.藉由上述技术之发展,希望提供温室气体排放减量的可行技术. 展开更多
关键词 净碳技术 中高温气体污染物净化程序 流动式颗粒床过滤器 合成气 中高温脱硫
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