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生物质热解气化气中焦油生成机理及其脱除研究 被引量:22
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作者 赖艳华 吕明新 董玉平 《农村能源》 北大核心 2001年第4期16-19,共4页
生物质气化气中焦油含量高成为制约生物质气化技术商业化发展的决定性因素之一。在对生物质热解气化过程中焦油的生成及其影响因素进行分析的基础上,采取优化炉内结构与炉外气体湿式净化相结合的方法来脱除气体中的焦油,研究开发出气... 生物质气化气中焦油含量高成为制约生物质气化技术商业化发展的决定性因素之一。在对生物质热解气化过程中焦油的生成及其影响因素进行分析的基础上,采取优化炉内结构与炉外气体湿式净化相结合的方法来脱除气体中的焦油,研究开发出气化剂由侧向送入的气化反应炉,以及相应的集喷淋、水浴、水膜、冲激于一体的湿式净化装置。该生物质气化机组所得到的可燃气具有燃气热值高、焦油含量低、操作简单、安全可靠的特点。气化效率可达到 78%,燃气低位热值为 5.4 MJ/m3(玉米秸 ),焦油含量 48 mg/m3, O2含量为 0.7%,主要技术指标均低于有关行业标准。 展开更多
关键词 生物质热解气化技术 焦油 净化 气化
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秸秆类低质生物质原料热解气化技术及其应用评价 被引量:4
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作者 孙立 许敏 +3 位作者 谷震昭 郭东彦 韩涛 董先华 《农村能源》 1995年第3期22-25,共4页
秸秆类低质生物质原料热解气化技术及其应用评价孙立,许敏,谷震昭,郭东彦,韩涛,董先华(山东省科学院能源研究所)迄今为止,各种生物质原料仍然是我国农民获取生活能源的主要资源,基本的能量转换方式仍然是直接燃烧。其对资源的... 秸秆类低质生物质原料热解气化技术及其应用评价孙立,许敏,谷震昭,郭东彦,韩涛,董先华(山东省科学院能源研究所)迄今为止,各种生物质原料仍然是我国农民获取生活能源的主要资源,基本的能量转换方式仍然是直接燃烧。其对资源的浪费和对环境、生态的不良影响早已引... 展开更多
关键词 秸秆 生物质热解气化 燃料 农村能源
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生物质热解气化技术 被引量:2
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作者 王华 罗东晓 《煤气与热力》 2019年第4期22-25,46,共5页
介绍生物质热解气化技术的分类,以上气式逆流固定床气化反应器及循环流化床气化反应器为例,介绍其主要特点和工作过程。分析生物质热解气化气的组成、粉尘和焦油的脱除方法。
关键词 生物燃气 生物质热解气化 热解气化气净化
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基于MCGS的生物质气化热解测控系统的研究与实现 被引量:1
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作者 张明昌 张宇翔 +1 位作者 郭敏 万晓光 《计算机时代》 2006年第3期35-37,共3页
采用USB8213数据采集卡和MCGS组态软件实现生物质气化热解系统的数据采集与处理。根据气化热解系统数据采集与处理的特点,测控系统开发了VB数据采集程序和利用组态软件MCGS的数据处理程序,实现了对生物质气化热解系统的实时监控。
关键词 MCGS组态软件 VB 821 3数据采集卡 生物质气化/热解
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生物质干馏热解气化系列产品标准的制定
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作者 南秀杰 《辽宁化工》 CAS 2015年第12期1459-1461,共3页
生物质在干馏热解过程中可产生可燃气、木焦油、木醋液、生物质炭系列产品。在正常生产情况下,对可燃气、焦油、木醋液、生物质炭相关指标进行了测试。依据大量国内外相关标准,制定出适合本企业生产的标准。执行此标准,生产可达到标准... 生物质在干馏热解过程中可产生可燃气、木焦油、木醋液、生物质炭系列产品。在正常生产情况下,对可燃气、焦油、木醋液、生物质炭相关指标进行了测试。依据大量国内外相关标准,制定出适合本企业生产的标准。执行此标准,生产可达到标准、规范化。该标准对同行业生产具有指导意义。 展开更多
关键词 生物质干馏热解气化 系列产品 标准依据 标准制定
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Analytical Model for Predicting the Heat Loss Effect on the Pyrolysis of Biomass Particles 被引量:1
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作者 Alireza Rahbari Fatemeh Ebrahiminasab Mehdi Bidabadi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第10期1114-1120,共7页
This paper presents the combined influence of heat-loss and radiation on the pyrolysis of biomass particles by considering the structure of one-dimensional, laminar and steady state flame propagation in uniformly prem... This paper presents the combined influence of heat-loss and radiation on the pyrolysis of biomass particles by considering the structure of one-dimensional, laminar and steady state flame propagation in uniformly premixed wood particles. The assumed flame structure consists of a broad preheat-vaporization zone where the rate of gas-phase chemical reaction is small, a thin reaction zone composed of three regions: gas, tar and char combustion where convection and the vaporization rate of the fuel particles are small, and a broad convection zone. The analysis is performed in the asymptotic limit, where the value of the characteristic Zeldovich number is large and the equivalence ratio is larger than unity(i.e.u≥1). The principal attention is made on the determination of a non-linear burning velocity correlation. Consequently, the impacts of radiation, heat loss and particle size as the determining factors on the flame temperature and burning velocity of biomass particles are declared in this research. 展开更多
关键词 analytical model heat loss RADIATION particle size PYROLYSIS tlame temperature burning velocity
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Distributed Bio-Hydrogen Refueling Stations 被引量:1
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作者 Peter J. Schubert 《Journal of Earth Science and Engineering》 2016年第4期183-190,共8页
Hydrogen fuel cell cars are now available for lease and for sale. Renewable hydrogen fuel can be produced from water via electrolysis, or from biomass via gasification. Electrolysis is power-hungry with high demand fr... Hydrogen fuel cell cars are now available for lease and for sale. Renewable hydrogen fuel can be produced from water via electrolysis, or from biomass via gasification. Electrolysis is power-hungry with high demand from solar or wind power. Gasification, however, can be energy self-sufficient using a recently-patented thermochemical conversion technology known as I-HPG (indirectly-heated pyrolytic gasification). I-HPG produces a tar-free syngas from non-food woody biomass. This means the balance of plant can be small, so the overall system is economical at modest sizes. This makes it possible to produce renewable hydrogen from local agricultural residues; sufficient to create distributed refueling stations wherever there is feedstock. This work describes the specifics of a novel bio-hydrogen refueling station whereby the syngas produced has much of the hydrogen extracted with the remainder powering a generator to provide the electric power to the I-HPG system. Thus the system runs continuously. When paired with another new technology, moderate-pressure storage of hydrogen in porous silicon, there is the potential to also power the refueling operation. Such systems can be operated independently. It is even possible to design an energy self-sufficient farm where all electric power, heat, and hydrogen fuel is produced from the non-food residues of agricultural operations. No water is required, and the carbon footprint is negative, or at least neutral. 展开更多
关键词 BIOMASS HYDROGEN distributed generation fuel cell vehicle
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Application of Waste Biomass Pyrolysis Oil in a Direct Injection Diesel Engine: For a Small Scale Non-Grid Electrification
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作者 Sunbong Lee Lihao Chen +1 位作者 Koji Yoshida Kunio Yoshikawa 《Journal of Energy and Power Engineering》 2015年第11期929-943,共15页
The population which could not access to electricity was around 1.2 billion in 2010 and is distributed in many low developing countries. With the increase in the population and the economic growth in those countries, ... The population which could not access to electricity was around 1.2 billion in 2010 and is distributed in many low developing countries. With the increase in the population and the economic growth in those countries, waste generation is growing rapid especially for the organic and the plastic, and the uncontrolled waste disposal is becoming more serious issues to manage it. The interest on waste to energy is growing by the above drivers. This research was carried out for aiming to the real world adaption at the minimum cost of the pyrolysis oil from waste biomass in a diesel engine, mainly for electricity generation. The proposal of the appropriate adaptable blend ratio was the major scope rather than the optimization of the engine parameters. For the sake of it, the pyrolysis oil of the waste biomass was produced from a gasification pilot plant in Japan and blended with biodiesel at minimum effort. A small single cylinder diesel engine (direct injection) was used for the experiment with regard to full load power-output, exhaust emissions and fuel consumption. 展开更多
关键词 Waste biomass PYROLYSIS BLEND direct injection diesel engine exhaust emissions.
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Pyrolysis Model of Single Biomass Pellet in Downdraft Gasifier
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作者 薛爱军 潘继红 +1 位作者 田茂诚 伊晓璐 《Transactions of Tianjin University》 EI CAS 2016年第2期174-181,共8页
By coupling the heat transfer equation with semi-global chemical reaction kinetic equations, a onedimensional, unsteady mathematical model is developed to describe the pyrolysis of single biomass pellet in the pyrolys... By coupling the heat transfer equation with semi-global chemical reaction kinetic equations, a onedimensional, unsteady mathematical model is developed to describe the pyrolysis of single biomass pellet in the pyrolysis zone of downdraft gasifier. The simulation results in inert atmosphere and pyrolysis zone agree well with the published experimental results. The pyrolysis of biomass pellets in pyrolysis zone is investigated, and the results show that the estimated convective heat transfer coefficient and emissivity coefficient are suitable. The mean pyrolysis time is 15.22%, shorter than that in inert atmosphere, and the pellet pyrolysis process in pyrolysis zone belongs to fast pyrolysis. Among the pyrolysis products, tar yield is the most, gas the second, and char the least. During pyrolysis, the temperature change near the center is contrary to that near the surface. Pyrolysis gradually moves inwards layer by layer. With the increase of pyrolysis temperature and pellet diameter, the total pyrolysis time, tar yield, char yield and gas yield change in different ways. The height of pyrolysis zone is calculated to be 1.51—3.51 times of the characteristic pellet diameter. 展开更多
关键词 downdraft gasifier pyrolysis model single biomass pellet
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Torrefied Pellets as Fuel for Two-Stage Technology of Biomass Conversion into Synthesis Gas
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作者 Victor Zaichenko Valentin Kosov Julia Kuzmina Vladimir Lavrenov 《Journal of Energy and Power Engineering》 2014年第1期79-84,共6页
One of the most important properties of the torrefied pellets, along with high calorific value, is their hydrophobicity. Inability to absorb moisture and self-destruct under its influence determine possibility of usin... One of the most important properties of the torrefied pellets, along with high calorific value, is their hydrophobicity. Inability to absorb moisture and self-destruct under its influence determine possibility of using of pellets in the pyrolysis reactor. For the technology of two-stage thermal processing of biomass, developed at the Joint Institute for High Temperatures, the amount of synthesis gas which can be obtained from one kilogram of torrefied pellets is also important. A construction of the pilot torrefaction reactor powered by flue gas is shown. The results of experimental investigations of hydrophobicity of torrefied pellets produced by the reactor and quantity of synthesis gas which can be obtained by two-stage thermal processing of the pellets are presented. It is shown that torrefaction allows simplifying the process of conversion of pellets into synthesis gas without significant reduction in the volume of the gas. 展开更多
关键词 Biomass conversion TORREFACTION PYROLYSIS syngas.
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用植物制取可燃气最佳方法探讨
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作者 吴向前 陈椿榕 李文虎 《能源研究与利用》 1999年第4期25-26,共2页
本文介绍了生物质热解气化机组采用外热式密封薄层低温热解的方法,使产生的可燃气率及热值明显提高的体会和社会、经济效益的分析。
关键词 可燃气 生物质热解气化 外热式 低温热解 薄层
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