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[1]孙吉龙,郭军武*,刘振西.燃油添加剂在控制废气排放中的研究进展[J].武汉工程大学学报,2019,(06):532-540.[doi:10. 3969/j. issn. 1674-2869. 2019. 06. 005]
 SUN Jilong,GUO Junwu*,LIU Zhenxi.Research Progress in Fuel Additives in Controlling Exhaust Emissions[J].Journal of Wuhan Institute of Technology,2019,(06):532-540.[doi:10. 3969/j. issn. 1674-2869. 2019. 06. 005]
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燃油添加剂在控制废气排放中的研究进展(/HTML)
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《武汉工程大学学报》[ISSN:1674-2869/CN:42-1779/TQ]

卷:
期数:
2019年06期
页码:
532-540
栏目:
化学与化学工程
出版日期:
2021-01-24

文章信息/Info

Title:
Research Progress in Fuel Additives in Controlling Exhaust Emissions
文章编号:
20190605
作者:
孙吉龙郭军武*刘振西
上海海事大学商船学院,上海 201306
Author(s):
SUN Jilong GUO Junwu* LIU Zhenxi
Merchant Marine College, Shanghai Maritime University, Shanghai 201306, China
关键词:
燃油添加剂限排政策废气 控制排放
Keywords:
fuel additive emission restriction policy exhaust gas control emissions
分类号:
TK428.9
DOI:
10. 3969/j. issn. 1674-2869. 2019. 06. 005
文献标志码:
A
摘要:
在颁布限排政策的背景条件下,综述了燃油添加剂在控制废气排放中的研究现状、作用机理、控制效果以及存在的不足之处,并且对相关的研究提出了建议,同时对燃油添加剂的发展进行了展望。燃油添加剂能够改善燃油的燃烧特性,降低氮氧化物(NOx)、一氧化碳(CO)、碳氢化合物(HC)和颗粒物(PM)的排放量,减少大气污染。燃油添加剂成为解决污染排放问题的最佳途径之一。随着技术的发展,多功能复合型燃油添加剂、有机稀土类燃油添加剂和复配型纳米燃油添加剂将会在控制废气排放中发挥关键性作用。
Abstract:
With promulgating emission restriction policies, this paper reviews the research status of fuel additives used in controlling exhaust emissions including mechanism, effects and existing shortcomings. Meanwhile, this paper also puts forward suggestions for related research, and looks into future prospects for development of fuel additives. The application of fuel additives can improve the combustion characteristics of fuels, reduce the emissions of nitrogen oxides, carbon monoxide, hydrocarbon and particulate matter, and decrease air pollution. The addition of fuel additives is one of the best ways to solve the pollution emission problems. With the development of technology, multipurpose compound fuel additive, organic rare-earth fuel additive and complex formulation nano fuel additive will play important roles in controlling exhaust emissions.

参考文献/References:

[1] NEWELL R G,QIAN Y F,RAIMI D.Global energy outlook 2015[C]// Washington, DC and Baltimore:Wilson Center Press and Johns Hopkins University Press,2015. [2] 廖梓珺,陈国需,杨长江,等. 无灰型柴油添加剂的灰模式关联决策[J]. 后勤工程学院学报,2011,27(6):31-36. [3] ESMAIL K,MEISAM T,AYHAN D,et al.Impacts of additives on performance and emission characteristics of diesel engines during steady state operation[J]. Progress in Energy and Combustion Science,2017,59:32-78. [4] DALE S, DUDLEY B . BP energy outlook 2019[R]. (2019-02-14)[2019-06-18]. https://www.bp.com/en/global/corporate/news-and-insights/press-releases/bp- energy-outlook-2019.html. [5] 李梦斐. 机车柴油机排放法规的演变及降排技术的应用[J]. 内燃机与配件,2019(14):55-56. [6] 蒋依宁,王孝宏,孟铭,等. 欧VI排放法规与加州LEV III的对比分析[C]// 北京:中国汽车工程学会年会,2015:4. [7] 于津涛,王建海,田冬莲. 欧美常温排放法规对比及试验分析[J]. 汽车技术,2011(4):43-46. [8] 国家环境保护总局. 车用压燃式发动机污染物排放限值及测量方法:GB17691-2001[S]. 北京:中国环境科学出版社,2001. [9] 国家环境保护总局. 车用压燃式、气体燃料点燃式发动机与汽车污染物排放限值及测量方法(中国第III,IV,V阶段):GB17691-2005[S]. 北京:中国环境科学出版社,2005. [10] 国家环境保护总局. 重型柴油车污染物排放限值及测量方法(中国第六阶段):GB17691-2018[S]. 北京:中国环境科学出版社,2018. [11] 刘伏萍. 浅析重型发动机排放测试标准[J]. 重型汽车,2008(3):38-39. [12] 赵国斌,盖永田,耿帅,等. WHSC/WHTC与ESC/ETC测试循环的试验比较与研究[J]. 汽车工程学报,2015,5(1):29-34. [13] 汪宗御,张继锋,纪玉龙. 船舶尾气污染物排放控制研究进展[J]. 化工进展,2017,36(6):2289-2297. [14] EYRING V , K?HLER H W,VAN AARDENNE J,et al. Emissions from international shipping:1.The last 50 years[J]. Journal of Geophysical Research,2005,110:D17305. [15] NEEF D. The development of a global maritime emissions inventory using electronic monitoring and reporting techniques[C]//18th Annual International Emission Inventory Conference.Comprehensive Inventories-Leveraging Technology and Resources,2009:14-17. [16] IM O.Resolution MEPC.203(62)-Amendments to ARPOL annex VI on regulations for the prevention of air pollution from ships by inclusion of new regulations on energy efficiency for ships[Z]. 2011-07-15. [17] 方平,陈雄波,唐子君,等. 船舶柴油机大气污染物排放特性及控制技术研究现状[J]. 化工进展,2017,36(3):1067-1076. [18] HONG KONG ENVIRONMENTAL PROTECTION DEPARTMENT (HKEPD). 2012 Hong Kong emission inventory report[R]. Hong Kong SAR Government,[s.l.:s.n.], 2014. [19] 伏晴艳,沈寅,张健. 上海港船舶大气污染物排放清单研究[J]. 安全与环境学报,2012,12(5):57-64. [20] 张礼俊,郑君瑜,尹沙沙,等. 珠江三角洲非道路移动源排放清单开发[J]. 环境科学,2010,31(4):886-891. [21] 刘 静,王静,宋传真,等. 青岛市港口船舶大气污染排放清单的建立及应用[J]. 中国环境监测,2011,27(3):50-53. [22] 国家环境保护总局. 船舶发动机排气污染物排放限值及测量方法(中国第一、二阶段) :GB15097-2016[S]. 北京:中国环境科学出版社,2016. [23] 陈然,熊云,杨浩,等. 柴油机燃油节能助燃添加剂研究进展[J]. 当代化工,2016,45(1):81-84. [24] 夏迪,陈国需,廖梓珺,等. 无灰型柴油添加剂的研究现状及发展趋势[J]. 节能技术,2015,33(2):155-158,164. [25] 刘军萍,续彦芳. 柴油添加剂的发展现状及趋势[J]. 柴油机,2012,34(4):53-56. [26] 梁晨,纪常伟,戴晓旭,等. DTBP对柴油机燃烧及排放影响的试验研究[J]. 车用发动机,2009(4):83-87,92. [27] PATEL N K, SINGH R N. Optimization of NOx emission from soya biodiesel fuelled diesel engine using cetane improver (DTBP)[J]. Jordan Journal of Mechanical & Industrial Engineering,2014,22(4):213-217. [28] 王忠,瞿 磊,李铭迪,等. 二叔丁基过氧化物对生物柴油燃烧过程及排放的影响[J]. 农业工程学报,2012,28(23):60-66. [29] ZHU L , CHEUNG C S, ZHANG W G, et al.Emissions characteristics of a diesel engine operating on biodiesel and biodiesel blended with ethanol and methanol [J]. Science of the Total Environment,2010,408(4):914-921. [30] 张永辉,闵永军,李迅,等. 改性热裂解生物燃料油的动力性能和NOx排放性能试验研究[J]. 科学技术与工程,2017,17(10):146-150. [31] NUBIA M, RIBEIRO,PINTO A C,et al.The role of additives for diesel and diesel blended (ethanol or biodiesel) fuels:a review[J]. Energy & Fuels,2007,21(4):2433-2445. [32] MA Y,ZHU M,ZHANG D. The effect of a homogeneous combustion catalyst on exhaust emissions from a single cylinder diesel engine[J]. Applied Energy,2013,102(2):556-562. [33] 王 亮,张新塘,朱新绪,等. 纳米CeO2、Fe燃油添加剂对柴油机性能影响的研究[J]. 柴油机,2017,39(5):17-22. [34] LENIN M A,SWAMINATHAN M R,KUMARESAN G.Performance and emission characteristics of a DI diesel engine with a nanofuel additive[J]. Fuel,2013,109(7):362-365. [35] 纪常伟,何洪,马慧,等. 燃油添加剂对柴油机排放影响的试验研究[J]. 北京工业大学学报,2004,30(4):471-473. [36] KESKIN A,GURUM,ALTIPARMAK D.Influence of tall oil biodiesel with Mg and Mo based fuel additives on diesel engine performance and emission[J]. Bioresource Technology,2008,99(14):6434-6438. [37] KESKIN A,G[U] R[U]  M,ALTIPARMAK D.Influence of metallic based fuel additives on performance and exhaust emissions of diesel engine[J]. Energy Conversion and Management,2011,52(1):60-65. [38] SOUKHT S H,TAGHAVIFAR H,JAFARMADAR S.Experimental and numerical consideration of the effect of CeO2 nanoparticles on diesel engine performance and exhaust emission with the aid of artificial neural network[J]. Applied Thermal Engineering,2017,113:663-672. [39] 吴涛阳,陈超,姚春德,等. 纳米TiO2添加剂对DMDF发动机大负荷燃烧及PM排放影响的试验研究[J]. 环境科学学报,2017,37(7):2506-2513. [40] MEHTA R N,CHAKRABORTY M,PARIKH P A.Nanofuels:combustion, engine performance and emissions[J]. Fuel,2014,120:91-97 [41] 张东恒,狄泽超,连玉双,等. 纳米CeO2柴油添加剂制备及改善内燃机节油与排放性能研究[J]. 石油炼制与化工,2011,42(6):66-72. [42] GUMUS S,OZCAN H,OZBEY M,et al.Aluminum oxide and copper oxide nanodiesel fuel properties and usage in a compression ignition engine[J]. Fuel,2016,163:80-87. [43] ZHANG Z C,LU Y J,WANG Y D,et al.Comparative study of using multi-wall carbon nanotube and two different sizes of cerium oxide nanopowders as fuel additives under various diesel engine conditions[J]. Fuel,2019,256:115904. [44] 李仙粉,史伟伟,李保山,等. 异辛酸稀土型柴油清净剂的合成和应用研究[J]. 中国稀土学报,2010,28(1):38-42. [45] 李仙粉,任福民,许兆义,等. 环烷酸铈消烟助燃剂改善内燃机有害排放的研究[J]. 中国稀土学报,2003,21(3):72-75. [46] NAG P, SONG K H, LITZINGER T A, et al.A chemical kinetic modelling study of the mechanism of soot reduction by oxygenated additives in diesel engines[J]. International Journal of Engine Research,2001,2(3):163-175. [47] KANNAN G R,KARVEMBU R,ANAND R.Effect of metal based additive on performance emission and combustion characteristics of diesel engine fuelled with biodiesel[J]. Applied Energy,2011,88(11):3694-3703. [48] WANG X, CHEUNG C S,DI Y,et al.Diesel engine gaseous and particle emissions fueled with diesel- oxygenate blends[J]. Fuel,2012,94:317-323. [49] LABECKAS G, SLAVINSKAS S, MARIUS M.The effect of ethanol-diesel-biodiesel blends on combustion,performance and emissions of a direct injection diesel engine[J]. Energy Conversion and Management,2014,79:698-720. [50] YOON S H, CHA J P, LEE C S.An investigation of the effects of spray angle and injection strategy on dimethyl ether (DME) combustion and exhaust emission characteristics in a common-rail diesel engine[J]. Fuel Processing Technology,2010,91(11):1364-1372. [51] 胡慧慧,王忠,吴婧,等. 正丁醇-柴油对柴油机燃烧及排放影响的试验研究[J]. 车用发动机,2015(3):76-80,86. [52] SAYIN C, OZSEZEN A N,CANAKCI M.The influence of operating parameters on the performance and emissions of a DI diesel engine using methanol-blended-diesel fuel[J]. Fuel,2010,89(7):1407-1414. [53] SAYIN C .Engine performance and exhaust gas emissions of methanol and ethanol-diesel blends[J]. Fuel,2010,89(11):3410-3415. [54] ?AHIN Z,TUTI M,DURGUN O.Experimental investigation of the effects of water adding to the intake air on the engine performance and exhaust emissions in a DI automotive diesel engine[J]. Fuel,2014,115:884-895. [55] LI F A, HOLMBERG K. Water-in-diesel emulsions and related systems[J]. Advances in Colloid and Interface Science,2006,123:231-239. [56] ZHENG Q P, LI S. Experimental study on effect of the fuel additive on engine emissions[C]//Proceedings of Conference on Environmental Pollution and Public Health,2010:137-140.

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备注/Memo

备注/Memo:
收稿日期:2019-06-18 作者简介:孙吉龙,硕士研究生。E-mail:[email protected] *通讯作者:郭军武,硕士,副教授,硕士研究生导师。E-mail:[email protected] 引文格式:孙吉龙,郭军武,刘振西. 燃油添加剂在控制废气排放中的研究进展[J]. 武汉工程大学学报,2019,41(6):532-540.
更新日期/Last Update: 2020-01-20