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可燃固体废弃物热解气化技术及工程化模拟研究进展
Alternative TitleAdvance in Pyrolysis and Gasification of Combustible Solid Waste and Engineering Simulation Study
范洪刚1,2,3,4; 袁浩然1,2,3,4; 林镇荣1,3,4; 顾菁1,3,4; 呼和涛力1,3,4; 何明阳2; 孙富安2
2017-06
Source Publication新能源进展
ISSN2095-560X
Volume5Issue:3Pages:204-211
Abstract简要介绍了目前国内城市生活垃圾的产生现状及其主要的处理方法。概述了典型可燃固体废弃物的热解气化实验进展和基于AspenPlus平台模拟的研究现状以及热解气化技术的应用情况。分析总结了热解温度和加热速率对热解产物分布及其产量的影响,以及空气燃料比和气化温度对气化过程的影响。基于AspenPlus平台的热解气化模型能够很好地模拟实际热解气化过程,具有较好的可靠性和实用性。指出可燃固废热解气化实验今后的研究重点及AspenPlus平台模拟研究的着重考虑因素。
Other AbstractThe status of combustible municipal solid waste and the main methods of waste disposal in China were brieflyintroduced.The experimental research progress and the simulation study based on Aspen Plus in typical combustible solidwaste pyrolysis and gasification were summarized,and its application status was overviewed.The effects of pyrolysistemperature and heating process on the distribution of pyrolysis products and yields,as well as the effects of air-fuel ratioand gasification temperature on the gasification process were comprehensively analyzed.The actual pyrolysis andgasification processes can be simulated well by the model based on Aspen Plus,the result was reliable and applicable.Theresearch direction of combustible solid waste pyrolysis and gasification was discussed,and the important considerations fordeveloping Aspen Plus model were also figure out.
Keyword可燃固体废弃物 热解 气化 AspenPlus 模拟 combustible solid waste pyrolysis gasification Aspen Plus simulation
DOI10.3969/j.issn.2095-560X.2017.03.007
Language中文
Citation statistics
Document Type期刊论文
Identifierhttp://ir.giec.ac.cn/handle/344007/16615
Collection中国科学院广州能源研究所
Corresponding Author顾菁
Affiliation1.中国科学院广州能源研究所,广州510640;
2.常州大学,江苏常州213164;
3.中国科学院可再生能源重点实验室,广州510640;
4.广东省新能源和可再生能源研究开发与应用重点实验室,广州510640
First Author AffilicationGuangZhou Institute of Energy Conversion,Chinese Academy of Sciences
Recommended Citation
GB/T 7714
范洪刚,袁浩然,林镇荣,等. 可燃固体废弃物热解气化技术及工程化模拟研究进展[J]. 新能源进展,2017,5(3):204-211.
APA 范洪刚.,袁浩然.,林镇荣.,顾菁.,呼和涛力.,...&孙富安.(2017).可燃固体废弃物热解气化技术及工程化模拟研究进展.新能源进展,5(3),204-211.
MLA 范洪刚,et al."可燃固体废弃物热解气化技术及工程化模拟研究进展".新能源进展 5.3(2017):204-211.
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