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蒽醌法制过氧化氢用氢化反应器的研究进展 被引量:3
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作者 刘国柱 王莅 +2 位作者 米镇涛 陈四海 凌太平 《现代化工》 EI CAS CSCD 北大核心 2003年第2期19-22,共4页
综述了近年来蒽醌法生产过氧化氢用悬浮氢化反应器和固定床氢化反应器的研究进展。着重介绍了管式和鼓泡床 悬浮氢化反应器的改进和泡沫固定床三相反应器用于蒽醌氢化过程可显著提高反应时空收率和选择性的优势。指出泡沫固定 床是蒽醌... 综述了近年来蒽醌法生产过氧化氢用悬浮氢化反应器和固定床氢化反应器的研究进展。着重介绍了管式和鼓泡床 悬浮氢化反应器的改进和泡沫固定床三相反应器用于蒽醌氢化过程可显著提高反应时空收率和选择性的优势。指出泡沫固定 床是蒽醌氢化反应器研究开发中的新思路,也是气-液-固三相反应器研究的新方向。 展开更多
关键词 蒽醌法 过氧 生产 悬浮氢化反应器 固定床氢化反应器 鼓泡床悬浮氢化反应器 泡沫固定床三相反应器
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食用油氢化反应器
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作者 刘军海 裘爱泳 《粮食与油脂》 2003年第12期6-10,共5页
该文根据食用油氢化特征,扼要介绍最典型间歇式淤浆反应器和连续式反应器,介绍中试和实验室用不同类型氢化反应器,如喷淋床氢化反应器;等温并流流动反应器;超声波氢化反应器;磁场氢化反应器;电化学催化氢化反应器;超临界催化氢化反应装... 该文根据食用油氢化特征,扼要介绍最典型间歇式淤浆反应器和连续式反应器,介绍中试和实验室用不同类型氢化反应器,如喷淋床氢化反应器;等温并流流动反应器;超声波氢化反应器;磁场氢化反应器;电化学催化氢化反应器;超临界催化氢化反应装置;膜氢化反应器等反应器的结构、特点和实验结果。 展开更多
关键词 氢化反应器 工业氢化反应器 实验室氢化反应器
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电化学氢化大豆油:基于碳载钯纳米花催化剂的制备与表征
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作者 贾慧 李丹 +6 位作者 刘奕莹 孙周亮 吴星会 郭小杭 张凯丽 崔晶琪 郑环宇 《大豆科技》 2025年第3期32-39,共8页
文章系统探讨加入卡拉胶对钯纳米颗粒形貌及其晶体结构的影响,并探究以PdNFs/C为催化剂,利用电化学氢化反应器制备低反式脂肪酸氢化大豆油的最佳工艺条件。结果表明,通过在抗坏血酸还原钯前驱体过程中引入卡拉胶,成功合成具有优异催化... 文章系统探讨加入卡拉胶对钯纳米颗粒形貌及其晶体结构的影响,并探究以PdNFs/C为催化剂,利用电化学氢化反应器制备低反式脂肪酸氢化大豆油的最佳工艺条件。结果表明,通过在抗坏血酸还原钯前驱体过程中引入卡拉胶,成功合成具有优异催化活性的碳载钯纳米花(PdNFs/C)催化剂。此外,在膜电极制备温度为130℃,压力为0.3 MPa,氢化温度为50℃的条件下氢化180 min,完成反式脂肪酸含量为1.15%(86.58 I2 g/100 g)的氢化大豆油制备。与传统碳载铂在相同条件下制备氢化油相较,反式脂肪酸含量降低0.22%。以上结果表明,PdNFs/C可作为一种性能优异的油脂氢化催化剂助力油脂工业发展。 展开更多
关键词 钯纳米花 氢化反应器 大豆油 工艺优 反式脂肪酸
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植物油氢化技术研究进展(Ⅱ) 被引量:11
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作者 刘军海 裘爱泳 《中国油脂》 CAS CSCD 北大核心 2003年第9期22-25,共4页
扼要介绍了超临界催化氢化、等离子体技术氢化、膜反应器氢化等氢化技术的原理、优点和目前存在的问题等。
关键词 植物油 技术 超临界催 等离子体技术 反应器
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Hydrogen generation from methanol reforming for fuel cell applications: A review 被引量:23
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作者 SUN Zhao SUN Zhi-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第4期1074-1103,共30页
Methanol is regarded as an important liquid fuel for hydrogen storage, transportation, and in-situ generation due to its convenient conveyance, high energy density, and low conversion temperature. In this work, an ove... Methanol is regarded as an important liquid fuel for hydrogen storage, transportation, and in-situ generation due to its convenient conveyance, high energy density, and low conversion temperature. In this work, an overview of state-of-the-art investigations on methanol reforming is critically summarized, including the detailed introduction of methanol conversion pathways from the perspective of fuel cell applications, various advanced materials design for catalytic methanol conversion, as well as the development of steam methanol reformers. For the section of utilization pathways, reactions such as steam reforming of methanol, partial oxidation of methanol, oxidative steam reforming of methanol, and sorption-enhanced steam methanol reforming were elaborated;For the catalyst section, the strategies to enhance the catalytic activity and other comprehensive performances were summarized;For the reactor section, the newly designed steam methanol reformers were thoroughly described. This review will benefit researchers from both fundamental research and fuel cell applications in the field of catalyzing methanol to hydrogen. 展开更多
关键词 methanol reforming hydrogen generation fuel cell CATALYST REFORMER
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Conversion and reaction kinetics of coke oven gas over a commercial Fe-Mo/Al_2O_3 catalyst 被引量:2
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作者 屈一新 徐贺明 +2 位作者 赵见峰 王志彦 王亚涛 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期293-302,共10页
Producing methanol from coke oven gas(COG) is one of the important applications of COG. Removal of sulfur from COG is a key step of this process. Conversion and reaction kinetics over a commercial Fe-Mo/Al2O3 catalyst... Producing methanol from coke oven gas(COG) is one of the important applications of COG. Removal of sulfur from COG is a key step of this process. Conversion and reaction kinetics over a commercial Fe-Mo/Al2O3 catalyst(T-202) were studied in a continuous flow fixed bed reactor under pressures of 1.6-2.8 MPa, space time of 1.32-3.55 s and temperatures of 240-360 °C. Though the COG contains about 0.6 mol/mol H2, hydrogenation of CO and CO2 is not significant on this catalyst. The conversions of unsaturated hydrocarbons depend on their molecular structures. Diolefins and alkynes can be completely hydrogenated even at relatively low temperature and pressure. Olefins, in contrast, can only be progressively hydrogenated with increasing temperature and pressure. The hydrodesulfurization(HDS) of CS2 on this catalyst is easy. Complete conversion of CS2 was observed in the whole range of the conditions used in this work. The original COS in the COG can also be easily converted to a low level. However, its complete HDS is difficult due to the relatively high concentration of CO in the COG and due to the limitation of thermodynamics. H2 S can react with unsaturated hydrocarbons to form ethyl mercaptan and thiophene, which are then progressively hydrodesulfurized with increasing temperature and pressure. Based on the experimental observations, reaction kinetic models for the conversion of ethylene and sulfur-containing compounds were proposed; the values of the parameters in the models were obtained by regression of the experimental data. 展开更多
关键词 coke oven gas CONVERSION Fe-Mo/Al2O3 catalyst sulfur-containing compound kinetics
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