精品素人自拍偷拍|91精品国产av国产|杨思敏伦理片|91制片厂杨柳信息|亚洲激情综合|蜜桃影像传媒ios下载|亚洲精品视频在线看|打屁股色网站|爱豆文化传媒影片|国产欧美精品一区二区色,明星换脸 av,国产日韩成人av,亚洲成a人影院

 
 
 
文章檢索
首頁» 過刊瀏覽» 2021» Vol.6» Issue(2) 292-301???? DOI : 10.3969/j.issn.2096-1693.2020.04.023
最新目錄| | 過刊瀏覽| 高級檢索
吉化油泥熱解燃燒特性及動力學研究
王斌,馬躍,,岳長濤,,李術元,,唐勛,,常少英
1 中國石油大學(北京)理學院,,北京 102249 2 北京國電龍源環(huán)保工程有限公司,,北京 100039
Thermal and kinetic study into pyrolysis and combustion of Jihua oil sludge
WANG Bin1 , MA Yue1 , YUE Changtao1 , LI Shuyuan1 , TANG Xun2 , CHANG Shaoying
1 College of Science, China University of Petroleum-Beijing, Beijing 102249, China 2 Beijing GuodianLongyuan Environmental Protection Engineering Co., Ltd., Beijing 100039, China

全文: ? HTML (1 KB)?
文章導讀??
摘要? 本文對吉化集團煉廠油泥進行基本性質分析,、熱重實驗,、熱解和燃燒特性分析及動力學研究,。結果表明, 吉化油泥含油率為 14.74%,,含水率為 72.82%,。通過設置 5、10,、15,、20、30 ℃/min共 5 組升溫速率,,得到熱 解和燃燒特性及動力學參數,。油泥熱解過程由揮發(fā)階段及熱解階段組成,主要分為有機物的揮發(fā)以及少量易反 應雜原子的熱解,、少量有機物揮發(fā)以及重組分熱解兩個過程,。燃燒過程由揮發(fā)燃燒階段與固定碳燃燒階段構成, 第一階段為小分子有機物揮發(fā)燃燒,,第二階段為大分子有機物揮發(fā)熱解進而燃燒,,以及氧氣擴散至坩堝內部發(fā) 生固定碳燃燒。燃燒受升溫速率影響較小,,活化能不會因有機物消耗而明顯增長,。而且在燃燒過程中,揮發(fā)燃 燒比熱解揮發(fā)難發(fā)生,,固定碳燃燒比熱解容易發(fā)生,。本文將油泥熱解過程中存在相互影響的揮發(fā)和熱解階段拆 解,利用Coats-Redfern、DAEM兩種模型計算動力學參數,,并與正常處理方法結果對比,,優(yōu)化動力學計算過程。 DAEM模型揮發(fā)階段活化能為 61.82~81.05 kJ/mol,,熱解階段活化能初始值為 121.60 kJ/mol,,隨著轉化率增大升 高至 237.07 kJ/mol。采用DAEM模型對油泥燃燒過程進行計算,,燃燒活化能為 73.95~110.93 kJ/mol,,并與CoatsRedfern模型及熱解過程相對比。Coats-Redfern模型假設反應單一,,所得為某一區(qū)間的活化能均值,,局限性較 大;DAEM活化能模型的假設更加貼合油泥復雜的組成,,方法更優(yōu),。熱解計算中分峰方法將熱解階段與揮發(fā)段 分離,所得動力學數據更接近真實數據,。研究表明DAEM模型準確性更好,,可靠性更高。最后通過熱重實驗,, 研究吉化油泥熱解及燃燒特性,,并計算動力學參數,本文研究成果可以為油泥熱解處理技術提供基出實驗數據 支撐,。
服務
把本文推薦給朋友
加入我的書架
加入引用管理器
關鍵詞 : 含油污泥,;熱解特性,;熱解動力學;燃燒特性,;燃燒動力學
Abstract
The basic properties, thermogravimetry, pyrolysis characteristics and combustion characteristics of Jihua oil sludge were    
determined in this manuscript. The results show that the oil content of Jihua sludge is 14.74   %   and the water content is 72.82   %   . The    
characteristics and kinetic parameters of pyrolysis and combustion were obtained by using thermogravimetric analysis with heating  
rates of 5, 10, 15, 20 and 30 ℃ /min. The pyrolysis process includes volatilization and pyrolysis stages. One is the volatilization of    
organic matter at 150~380℃, and a small proportion of reactive heteroatoms is pyrolyzed. The other is the pyrolysis process of a small    
amount of volatile heavy components at 380~550℃. The combustion process includes the volatilization combustion stage and the fixed    
carbon combustion stage. The combustion of Jihua sludge in the first stage is the volatile combustion of small molecular organics. The    
second stage is the volatile combustion of large molecular organics and pyrolysis combustion, and the diffusion of oxygen into the cru  
cible to produce fixed carbon combustion. The effect of heating rate on combustion is small, and the activation energy will not increase    
significantly due to the consumption of organic matter. In addition, the volatilization combustion stage occurs with more difficulty than    
pyrolysis volatilization, and the fixed carbon combustion stage occurs more easily than pyrolysis.  
Two models, Coats-Redfern and the Distributed Activation Energy Model (DAEM), are used to calculate the kinetic pa  
rameters and the results are compared with those of normal treatment methods to optimize the calculation process. In the DAEM    
model, the activation energy of the volatilization stage is 61.82 to 81.05 kJ/mol, while the activation energy in the pyrolysis    
stage increased from 121.60 kJ/mol to 237.11 kJ/mol with the increase of conversion. When the DAEM model is applied to    
the calculation of the combustion process of oil sludge, the combustion activation energy ranges from 73.95 to 110.93 kJ/mol,    
which is then compared with Coats-Redfern model and pyrolysis process. Coats-Redfern model assumes that the reaction is    
single, and the activation energy obtained is the mean value of a certain range, which has great limitations. The DAEM model is    
more suitable for the complex composition of oil sludge, and the method is better. In the pyrolysis calculation, the peak splitting    
method separates the pyrolysis stage from the volatilization stage, and the kinetics obtained are closer to the real data. According    
to the research, the DAEM model is more accurate and reliable. The research results of this paper can provide experimental data    
foundation support for the sludge pyrolysis treatment technology.  


Key words: sludge; pyrolysis characteristics; pyrolysis kinetics; combustion characteristics; combustion kinetics
收稿日期: 2021-06-30 ????
PACS: ? ?
基金資助:大型燃煤鍋爐處置污泥廢棄物關鍵技術研究項目(KH-2018-06) 和大型燃煤鍋爐資源化處置多種污泥固廢關鍵技術研究及工程示范
(GJNY2030XDXM-19-10.2) 聯合資助
通訊作者: [email protected]
引用本文: ??
王斌, 馬躍, 岳長濤, 李術元, 唐勛, 常少英. 吉化油泥熱解燃燒特性及動力學研究. 石油科學通報, 2021, 02: 292-301 WANG Bin, MA Yue, YUE Changtao, LI Shuyuan, TANG Xun, CHANG Shaoying. Thermal and kinetic study into pyrolysis and combustion of Jihua oil sludge. Petroleum Science Bulletin, 2021, 02: 292-301.
鏈接本文: ?
版權所有 2016 《石油科學通報》雜志社