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Thermodynamic and Equilibrium Composition Analysis of Using Iron Oxide as an Oxygen Carrier in Nonflame Combustion Technology 被引量:8
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作者 Jiayu Xin Hua Wang Fang He Zhimin Zhang 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2005年第4期248-253,共6页
Nonflame combustion technology (NFCT) is a harmonious energy utilization technology. There are not environmental-unfriendly gases such as NOx, CO2 discharged in the whole combustion process. Combustion processes rea... Nonflame combustion technology (NFCT) is a harmonious energy utilization technology. There are not environmental-unfriendly gases such as NOx, CO2 discharged in the whole combustion process. Combustion processes realizes zero emission through this technology. Fe2O3 is involved as oxygen carrier, is examined thermodynamically, and the thermodynamic data of the redox reactions are calculated. Using the criteria of minimizing the Gibbs free energy, the equilibrium composition was investigated. The equilibrium analysis shows that producing complete oxidized resultants must have high molar ratio of Fe2O3/CH4. If quantity of Fe2O3 is not sufficient, more partial oxidized products such as CO, H2, even C will be produced. 展开更多
关键词 nonflame combustion technology thermal cyclic carrier molten salt equilibrium composition thermodynamic analysis
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Thermodynamic Analysis and Experimental Investigation into Nonflame Combustion Technology(NFCT) with Thermal Cyclic Carrier 被引量:3
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作者 HEFang WANGHua DAIYong-nian 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第5期612-616,共5页
The utilization of fossil fuels causes serious negative impacts on the environment and human life. To mitigate greenhouse gases and other pollutants, a novel combustion process-the nonflame combustion technology with ... The utilization of fossil fuels causes serious negative impacts on the environment and human life. To mitigate greenhouse gases and other pollutants, a novel combustion process-the nonflame combustion technology with a thermal cyclic carrier of molten salt is introduced. In this technology, a whole combustion is divided into two steps, i.e., the section of producing oxide and the section of combustion. In the first step, oxygen is separated from air, and pure N_2 is simultaneously formed which is easily recovered. In the other step, the fuels react with lattice oxygen in the oxides formed in the first step, and at the same time, thermal energy, CO_2 and H_2O vapor are produced. It is noted that the CO_2 is easily separated from water vapor and ultimately captured. Theoretically, there are no environmental-unfriendly gases such as CO_2, NO_x and SO_2 discharged in the whole combustion process. Some metal oxides scattered into molten salts play the roles of oxygen carriers in the combustion system, and they can constantly charge and discharge oxygen element from air to fuels during the combustion process. A nonflame combustion system with Li_2CO_3+K_2CO_3+Na_2SO_4 as the molten salt system, CH_4 as the fuel and CuO as the catalyst was experimentally investigated. The experimental results show that the combustion process proceeded as it was theoretically analyzed, and CO_2 with a high volume fraction of 77.0%_95.0% and N_2 with a high volume fraction of 91.9%_99.3% were obtained. The high concentration of CO_2 is favorable for capturing and storing subsequently. Therefore, the potential of reducing CO_2 emissions of this nonflame combustion technology is huge. 展开更多
关键词 Nonflame combustion technology Molten salt thermal cyclic carrier Greenhouse gas reduction
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熔融盐循环热载体无烟燃烧体系的选择 被引量:5
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作者 何方 王华 +1 位作者 戴永年 胡建杭 《工程热物理学报》 EI CAS CSCD 北大核心 2003年第3期515-518,共4页
介绍了一种全新的燃烧系统-熔融盐循环热载体无烟燃烧技术。本技术将燃料与助燃空气的燃烧分为氧化剂的生成和燃料与氧化剂接触反应两个过程。并且这两个阶段通常在两个反应室中进行,在氧化剂生成室,空气中的氧全部被氧载体吸收,剩余的... 介绍了一种全新的燃烧系统-熔融盐循环热载体无烟燃烧技术。本技术将燃料与助燃空气的燃烧分为氧化剂的生成和燃料与氧化剂接触反应两个过程。并且这两个阶段通常在两个反应室中进行,在氧化剂生成室,空气中的氧全部被氧载体吸收,剩余的高纯度氮气则被回收利用;在燃烧室,氧载体把自身的一部分或全部氧传递给燃料,完成燃烧过程。在燃烧室中,若燃料完全反应,那么只有高纯度的CO2生成,也可以直接回收用作化工原料。因为N2从燃烧系统中分离出去,且硫和重金属元素被熔融盐吸收而不被烧掉,所以燃烧过程没有NOx、 CO2、和SO2等污染物的排放。本文对几个典型的无烟燃烧系统进行了分析,并与传统燃烧过程进行了比较,对熔融盐循环热载体无烟燃烧体系的选择具有指导意义。 展开更多
关键词 无烟燃烧技术 熔融盐循环热载体 热力学分析 零排放
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