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Mechanism of chain propagation for the synthesis of polyoxymethylene dimethyl ethers 被引量:36
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作者 Yupei Zhao Zheng Xu +2 位作者 Hui Chen Yuchuan Fu Jianyi Shen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2013年第6期833-836,共4页
Polyoxymethylene dimethyl ethers(PODE)were synthesized from the reaction of paraformaldehyde with dimethoxymethane(DMM)over different acid catalysts at different conditions.Products were found to follow the Schulz-Flo... Polyoxymethylene dimethyl ethers(PODE)were synthesized from the reaction of paraformaldehyde with dimethoxymethane(DMM)over different acid catalysts at different conditions.Products were found to follow the Schulz-Flory distribution law.The chain propagation proceeds through the insertion of an individual segment of CH2O one by one,while the simultaneous insertion of a few CH2O segments or their assembly is unlikely.Due to the restriction of this law,it is difficult to increase the selectivity to the desired products(e.g.,PODE3 4). 展开更多
关键词 polyoxymethylene dimethyl ethers (pode) diesel additive chain propagation product distribution Schulz-Flory law
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Chemical equilibrium controlled synthesis of polyoxymethylene dimethyl ethers over sulfated titania 被引量:18
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作者 Huaju Li Huanling Song +2 位作者 Feng Zhao Liwei Chen Chungu Xia 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2015年第2期239-244,共6页
The chemical equilibrium and reaction kinetic behavior in the synthesis of polyoxymethylene dimethyl ethers (DMMn) were investigated over sulfated titania in order to reveal the decisive factor controlling the react... The chemical equilibrium and reaction kinetic behavior in the synthesis of polyoxymethylene dimethyl ethers (DMMn) were investigated over sulfated titania in order to reveal the decisive factor controlling the reaction. The results showed that the molar ratio of adjacent DMMn products in equilibrium solution had the same value, which depended absolutely on the reaction temperature. Meanwhile, the reactions had the same DMMn products distributions under varied reaction conditions. The equilibrium constants of the related step-wise reactions for DMMn formation were equal, which were calculated based on the bulk compositions of the reaction solution. And thus, the selectivity to DMMn was mainly controlled by the chemical equilibrium, i.e., thermodynamic control. In brief, the present results provide some guidance for future synthesis of DMMn. 展开更多
关键词 polyoxymethylene dimethyl ethers sulfated titania chemical equilibrium reaction kinetic molar ratio
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A Synthesis, Process Optimization, and Mechanism Investigation for the Formation of Polyoxymethylene Dimethyl Ethers 被引量:4
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作者 Yang Liu Yan Wang Wangfeng Cai 《Transactions of Tianjin University》 EI CAS 2019年第1期1-8,共8页
Polyoxymethylene dimethyl ethers(DMM_n) are promising diesel additives. The synthesis of DMM_n from methylal(DMM) and paraformaldehyde over the NKC-9 acidic ion-exchange resin catalyst was investigated. Many unrecycla... Polyoxymethylene dimethyl ethers(DMM_n) are promising diesel additives. The synthesis of DMM_n from methylal(DMM) and paraformaldehyde over the NKC-9 acidic ion-exchange resin catalyst was investigated. Many unrecyclable by-products such as methyl formate, dimethyl ether and formic acid were produced in the reaction. To increase the selectivity of the desired products DMM_(3-6) and reduce the amount of unrecyclable by-products, the effects of reaction temperature, time, pressure and the molar ratio of the raw materials were evaluated through a series of single factor experiments. Experiments revealed that trace amount of water could suppress the formation of unrecyclable by-products, and the optimum initial water content(less than 2 wt%) was investigated. In addition, the synthetic process needs to go through the polyoxymethylene hemiformals intermediate stage, and then the DMM_n were obtained when polyoxymethylene hemiformals reacted with methanol. Ultimately, a possible mechanism is proposed to describe the formation of DMM_n from polyoxymethylene hemiformals in detail, in which it is revealed that the formation of carbocation intermediates is important in the reaction processes. 展开更多
关键词 polyoxymethylene dimethyl ethers PARAFORMALDEHYDE METHYLAL Diesel additive polyoxymethylene hemiformals
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Controllable synthesis of polyoxymethylene dimethyl ethers by ionic liquids encapsulated in mesoporous SBA-16 被引量:1
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作者 Chaofeng Zhang Tonglu Zhang +2 位作者 Jing Zhang Jiandong Zhang Ruifeng Li 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第4期175-182,共8页
The promising combustion and emission properties of polyoxymethylene dimethyl ethers(PODEn)are of significant interest.However,the synthesis of PODEn products with desired chain lengths is still a problem facing synth... The promising combustion and emission properties of polyoxymethylene dimethyl ethers(PODEn)are of significant interest.However,the synthesis of PODEn products with desired chain lengths is still a problem facing synthetic PODEn.Herein,a series of unique IL@SBA16Cx solid catalysts are prepared by encapsulation of ionic liquids(ILs)within the nanocage of SBA16 through a silylation method.The structure of the encapsulated catalyst was characterized by UVvis spectra,Fourier transform infrared(FTIR),N2 adsorptiondesorption isotherms,Powder Xray diffraction(XRD),Transmission electron microscopy(TEM)and Elemental analysis.The encapsulated catalysts show similar catalytic activity to the homogeneous counterparts and display higher selectivity to the targeted PODE35 products than their homogeneous counterparts in the synthesis of PODEn from methanol(MeOH)and trioxymethylene(TOM).The encapsulated catalysts exhibit a superior PODE35 selectivity and could be the promising catalysts for PODEn synthetic reaction. 展开更多
关键词 SBA-16 polyoxymethylene dimethyl ethers Ionic liquids Heterogeneous catalyst Diesel fuel additives
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Formation kinetics of polyoxymethylene dimethyl ethers from methylal and trioxane with little water
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作者 Xiaofei Qin Sen Lei +6 位作者 Xubin Zhang Chen Cao Feng Xin Honglin Chen Xiaoming Zhang Yachen Yin Guilian Wu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第5期139-146,共8页
Polyoxymethylene dimethyl ethers(CH_(3)-O-(CH_(2)O)_(n)-CH_(3),PODE_(n),n>1)can be added to diesel to reduce air pollution caused by incomplete combustion.Driven by this need,a cost-effective and efficient syntheti... Polyoxymethylene dimethyl ethers(CH_(3)-O-(CH_(2)O)_(n)-CH_(3),PODE_(n),n>1)can be added to diesel to reduce air pollution caused by incomplete combustion.Driven by this need,a cost-effective and efficient synthetic route is presented and investigated by this work for the production of PODE_(n),which are formed from methylal and trioxane with low water content(<10%(mass))over HZSM-5 catalyst in a batch slurry autoclave at the temperature from 353.15 K to 393.15 K.The reaction rate laws including the PODE_(n) and byproducts of polyoxymethylene hemiformals(HF_(n)),polyoxymethylene glycols(MG),methanol(MeOH)and methyl formate(MF)are developed.The rate constants of propagation step(k_(6))and depolymerization step(k_(-6))are assumed independent on polymerization degree of PODE_(n).The rate of reaction is proportional to the content of the catalyst(Wcat)for the catalytic reaction within the scope of the study.All kinetic parameters were estimated by combining genetic algorithm and least square regression to fit experimental data well.This work is valuable for process optimization and reactor design. 展开更多
关键词 Fuel additive polyoxymethylene dimethyl ethers KINETICS HZSM-5
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Polyoxymethylene dimethyl ethers synthesis from methanol and formaldehyde solution over one-pot synthesized spherical mesoporous sulfated zirconia
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作者 Xiangjun Li Shujun Li +2 位作者 Xiaoping Wang Muhammad Asif Nawaz Dianhua Liu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2022年第6期161-172,共12页
The synthesis of polyoxymethylene dimethyl ethers as an ideal diesel fuel additive is the current hot topic of modern petrochemical industry for their expedient properties in mitigating air pollutants emission during ... The synthesis of polyoxymethylene dimethyl ethers as an ideal diesel fuel additive is the current hot topic of modern petrochemical industry for their expedient properties in mitigating air pollutants emission during combustion.In this work,a series of spherical sulfated zirconia catalysts were prepared by a one-pot hydrothermal method assisted with surfactant cetyltrimethylammonium bromide(CTAB).The prepared sulfated zirconia catalysts were used to catalyze PODEn synthesis from methanol and formaldehyde solution.Various characterization(XRD,BET,SEM,TGA,NH_(3)-TPD,FTIR,and Py-IR)were employed to elaborate the structure–activity relationship of the studied catalytic system.The results demonstrated that S/Zr molar ratio in precursor solution played an effective role on catalyst morphology and acidic properties,where the weak Brønsted acid sites and strong Lewis acid sites were favorable to the conversion of methanol and formation of long-chain PODEn,respectively.The reaction parameters such as catalyst amount,molar ratio of FA/MeOH,reaction time,temperature and pressure were optimized.The speculated reaction pathway for PODEn synthesis was proposed based on the synergy of Brønsted and Lewis acid sites,which suggested that Brønsted and Lewis acid sites might be advantageous to the activation of polyoxymethylene hemiformals[CH_(3)(OCH_(2))_(n)OH]and methylene glycol(HOCH_(2)OH),respectively. 展开更多
关键词 polyoxymethylene dimethyl ethers Spherical sulfated zirconia METHANOL FORMALDEHYDE Reaction pathway Synergistic effect
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Investigation on combustion and emission characteristics of diesel polyoxymethylene dimethyl ethers blend fuels with exhaust gas recirculation and double injection strategy
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作者 Xin Su Rui Su +4 位作者 Nan Gao Hao Chen Zhenhua Ji Hongming Xu Biao Wang 《Journal of Traffic and Transportation Engineering(English Edition)》 EI CSCD 2024年第4期614-630,共17页
As a kind of renewable and high oxygen content fuel,polyoxymethylene dimethyl ether(PODE)can be added in diesel to realize energy saving and emissions reduction.To evaluate the combustion and emission characteristics ... As a kind of renewable and high oxygen content fuel,polyoxymethylene dimethyl ether(PODE)can be added in diesel to realize energy saving and emissions reduction.To evaluate the combustion and emission characteristics of a diesel engine fueled with diesel and diesel/PODE mixtures,exhaust gas recirculation(EGR)and main-pilot injection strategies with various injection timings were applied.PODE was blended with diesel by volume to form mixtures which were marked as D100(pure diesel),D90P10(90%diesel+10%PODE),and D80P20(80%diesel+20%PODE).The results showed that the ignition delay(ID)and combustion duration(CD)of D80P20 were the shortest because of the highest cetane number(CN)and high oxygen content of PODE,indicating more concentrated heat release.At low and medium loads,D80P20 achieved the highest peak heat release ratio(PHRR)and peak combustion temperature(PCT)among the three fuels,and it was 14.3%and 3.6%higher than those of D100.PODE blending with diesel can significantly reduce particulate matter(PM)and D80P20 has the lowest PM emissions at all loads.Compared with D100,both PM and nitrogen oxide(NO_(x))emissions of PODE blends decreased simultaneously with 20%EGR at all loads.With the increase of pilot-main interval,the ID and CD of all test fuels increased,while the NO_(x)and PM emissions decreased.The conclusions of the present research provide a state of the application in light-duty engines fueled with diesel/PODE blends in future work. 展开更多
关键词 polyoxymethylene dimethyl ethers Diesel engine NOx Particulate number Pilot plus main injections
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PODE/甲醇煤基含氧混合燃料对柴油机燃烧特性的影响研究
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作者 王天婷 王琦 嵇乾 《内燃机与配件》 2024年第22期6-9,共4页
基于一台四缸增压中冷柴油机,探究不同比例PODE/甲醇混合燃料的缸内压力变化趋势。通过CONVERGE软件耦合PODE/甲醇双燃料化学反应机理,针对不同比例的PODE/甲醇混合燃料,分析其缸内混合气情况、氧气质量变化、温度场变化和主要自由基变... 基于一台四缸增压中冷柴油机,探究不同比例PODE/甲醇混合燃料的缸内压力变化趋势。通过CONVERGE软件耦合PODE/甲醇双燃料化学反应机理,针对不同比例的PODE/甲醇混合燃料,分析其缸内混合气情况、氧气质量变化、温度场变化和主要自由基变化。结果表明,燃用甲醇和PODE混合燃料的蒸发氧化性能提高,甲醇比例提高,燃烧持续期缩短,缸内富氧区域增多。三种主要自由基HO_(2)、H_(2)O_(2)和OH生成趋势与缸内温度变化趋势类似,HO_(2)和H_(2)O_(2)缸内自由基浓度增加,OH自由基高温反应速率加快,氧化活性自由基作用加强,燃烧后期OH累积质量随甲醇比例增加而减少。 展开更多
关键词 pode 甲醇 燃烧特性 化学反应机理
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Optical investigation on polyoxymethylene dimethyl ethers spray flame at different oxygen levels in a constant volume vessel 被引量:2
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作者 ZHENG ZunQing LIU Wei +4 位作者 LIU HaiFeng FENG Lei CUI YanQing ZHANG Shuo YAO MingFa 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2021年第8期1611-1623,共13页
In this paper,high-speed imaging and spectrometry diagnostics were used to study the spray flame structures and emission spectra of polyoxymethylene dimethyl ethers(PODE)in an optical constant volume vessel.The effect... In this paper,high-speed imaging and spectrometry diagnostics were used to study the spray flame structures and emission spectra of polyoxymethylene dimethyl ethers(PODE)in an optical constant volume vessel.The effects of oxygen volume fraction(15%to 80%)on some typical combustion characteristics such as spatially integrated natural intensity,flame propagation speed,lift-off length and the distribution of flame emission spectra were investigated.The results show that the PODE spray flame mainly exhibits blue chemiluminescence,which is different from the diesel yellow diffusion flame dominated by soot radiation.As the oxygen concentration increases,the flame natural luminosity and propagation speed increases,the position of lift-off region and flame tip move towards the injector nozzle,and the flame width becomes narrower.According to the spectral results,the blue chemiluminescence generated by carbon monoxide oxidation dominates the PODE flame luminescence,suggesting that no soot is formed.The increase in oxygen concentration leads to enlarged intensity and gradient of PODE flame radiation.In summary,the combination of PODE and oxygen-enriched combustion shows no soot formation and promotes the oxidation of carbon monoxide and unburned hydrocarbon.This study can provide more insights into PODE spray combustion,and offer guidelines for achieving efficient and clean combustion. 展开更多
关键词 polyoxymethylene dimethyl ethers oxygen enrichment spray flame constant volume vessel optical diagnostics smokeless combustion
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An experimental and modeling study on polyoxymethylene dimethyl ether 3(PODE_(3))oxidation in a jet stirred reactor 被引量:2
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作者 Zeyan Qiu Anhao Zhong +1 位作者 Zhen Huang Dong Han 《Fundamental Research》 CAS 2022年第5期738-747,共10页
Polyoxymethylene dimethyl ether(PODE n,n≥1)is a class of oxygenated fuels containing unique carbon-oxygen chain structure and a promising alternative fuel for diesel engines.In this study,low-temperature oxidation ch... Polyoxymethylene dimethyl ether(PODE n,n≥1)is a class of oxygenated fuels containing unique carbon-oxygen chain structure and a promising alternative fuel for diesel engines.In this study,low-temperature oxidation characteristics of PODE_(3) were studied experimentally and numerically.Experiments were performed in a jet-stirred reactor(JSR)at equivalence ratios of 0.5,1.0 and 2.0,in the temperature range of 500 to 950 K,and at atmospheric pressure.Mole fractions of PODE_(3),O_(2),H_(2),CO,CO_(2),CH_(3) OH and C_(1)-C_(2) hydrocarbons were measured by gas chromatograph(GC).Experimental measurements were compared with the simulation results based on two literature low-temperature oxidation models,denoted as the He model and the Cai model,respectively.Good agreement was obtained between the measured and simulated fuel consumption profiles,while a deviation was observed between the experimental and simulation results on the mole fractions of O_(2) and intermediate products at medium temperatures.Reaction pathway analyses based on the two models were performed,revealing that the second O_(2)-addition reaction pathway is more significant in the prediction by the Cai model than that by the He model.Sensitivity analyses pointed out that the most important reactions affecting fuel consumption are the H-abstraction reactions of PODE_(3),and the decomposition of H_(2) O_(2) and the consumption of CH_(2)O become more sensitive at medium temperatures. 展开更多
关键词 Jet-stirred reactor OXIDATION polyoxymethylene dimethyl ether 3 Chemical kinetics Low temperature
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PODE掺混和喷油参数对柴油机燃烧排放特性影响 被引量:14
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作者 陈晖 黄豪中 +2 位作者 黄荣 刘庆生 滕文文 《内燃机学报》 EI CAS CSCD 北大核心 2019年第1期9-16,共8页
在一台增压4缸直喷柴油机上开展了不同聚甲基二甲醚(PODE)掺混比例和喷油参数对柴油机燃烧和排放特性影响的试验.测试燃料包括纯柴油(PD0)、两种柴油/PODE混合燃料分别为PD20(PODE体积分数为20%)和PD30(PODE体积分数为30%).结果表明:随... 在一台增压4缸直喷柴油机上开展了不同聚甲基二甲醚(PODE)掺混比例和喷油参数对柴油机燃烧和排放特性影响的试验.测试燃料包括纯柴油(PD0)、两种柴油/PODE混合燃料分别为PD20(PODE体积分数为20%)和PD30(PODE体积分数为30%).结果表明:随着喷油时刻的推迟,3种燃料缸内压力峰值降低,放热率峰值增加,燃油消耗率增加,热效率下降,CO和HC排放增加,NOx排放减小,颗粒物质量浓度降低,数量浓度先降低后升高;随喷油压力的增加,3种燃料缸内压力和放热率峰值增加,CO和HC排放减小,NOx排放增加,颗粒物数浓度和质量浓度下降.喷油时刻推迟和喷油压力增加都会使PD0的烟度排放明显减少,但对PD20和PD30的烟度排放影响比较小.随着PODE比例增加,热效率提高,但燃油消耗率上升,CO、HC和烟度排放下降,NOx排放小幅增加,颗粒物数浓度和质量浓度显著降低. 展开更多
关键词 柴油机 柴油/聚甲基二甲醚 燃烧特性 排放
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乙醇预混与PODE直喷复合燃烧的气体排放特性 被引量:2
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作者 刘军恒 沈辉 +3 位作者 孙平 王明 孟建 肖雪 《内燃机学报》 EI CAS CSCD 北大核心 2018年第3期208-213,共6页
为了控制压燃式发动机的气体排放,在一台增压中冷共轨发动机上对聚甲氧基二甲醚(PODE)引燃乙醇均质充量的复合燃烧性能及其气体排放特性进行了研究.结果表明:随着进气道预混乙醇比例增加,复合燃烧滞燃期被延长,其预混燃烧量与放热率峰... 为了控制压燃式发动机的气体排放,在一台增压中冷共轨发动机上对聚甲氧基二甲醚(PODE)引燃乙醇均质充量的复合燃烧性能及其气体排放特性进行了研究.结果表明:随着进气道预混乙醇比例增加,复合燃烧滞燃期被延长,其预混燃烧量与放热率峰值增大,扩散燃烧量降低;复合燃烧的NO_x排放随着预混乙醇比例增加而降低,但m(NO_2)/m(NO_x)值显著增大,经过氧化催化转换器(DOC)后,纯PODE燃烧的m(NO_2)/m(NO_x)值增大而复合燃烧的m(NO_2)/m(NO_x)值减小;复合燃烧的HC、CO、甲醛和乙醛排放量均明显高于纯PODE燃烧,且随着预混乙醇比例增加而增大,但可以被DOC高效氧化.复合燃烧的HC、CO和NO_x排放量经过DOC后均明显低于纯PODE燃烧的排放,而甲醛、乙醛和NO_2排放量与纯PODE燃烧时处于同一水平. 展开更多
关键词 发动机 乙醇 聚甲氧基二甲醚 氧化催化转换器 气体排放
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PODE掺混比对高压共轨柴油机颗粒物物理特性的影响 被引量:17
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作者 刘军恒 孙平 +3 位作者 刘源 嵇乾 姚肖华 杨晨 《西安交通大学学报》 EI CAS CSCD 北大核心 2017年第12期104-111,共8页
针对增压中冷高压共轨柴油机燃用不同聚甲氧基二甲醚(PODE)掺混比(10%、20%和30%,体积分数)的PODE/柴油混合燃料的颗粒物排放进行了实验研究。分析了PODE掺混比对柴油机NO_x和烟度排放以及颗粒粒径分布的影响规律,并采用热重分析法与热... 针对增压中冷高压共轨柴油机燃用不同聚甲氧基二甲醚(PODE)掺混比(10%、20%和30%,体积分数)的PODE/柴油混合燃料的颗粒物排放进行了实验研究。分析了PODE掺混比对柴油机NO_x和烟度排放以及颗粒粒径分布的影响规律,并采用热重分析法与热解动力学方法研究了颗粒物氧化特性与热解反应活化能。实验结果表明:在柴油中掺混PODE能够降低烟度排放,且下降幅度随着PODE掺混比增加更明显,但在中高负荷时NO_x排放略有增加;随着PODE掺混比增加,颗粒总数量浓度下降,粒径分布曲线向小粒径方向移动,核态颗粒所占比例增加,积聚态颗粒所占比例降低,颗粒的数量浓度峰值、表面积浓度峰值和体积浓度峰值均减小;在柴油中掺混PODE燃烧颗粒中可溶性有机物(SOF)组分含量增加,碳烟颗粒质量损失率峰值增加,质量损失率峰值所对应温度降低,颗粒热解反应活化能有所减小,颗粒更易被氧化。 展开更多
关键词 共轨柴油机 聚甲氧基二甲醚 颗粒物 粒径 热重分析
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掺混PODE对DOC+CDPF氧化及再生特性的影响 被引量:3
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作者 陈贵升 和志高 +2 位作者 沈颖刚 卢申科 许杨松 《内燃机学报》 EI CAS CSCD 北大核心 2020年第1期64-72,共9页
在高压共轨柴油机上研究了使用掺混20%聚甲氧基二甲醚的柴油(D80P20)对搭载柴油氧化型催化器(DOC)和催化型颗粒捕集器(CDPF)的后处理装置(DOC+CDPF)的影响,包括小负荷时的低温氧化特性和大负荷时的颗粒物加载和再生特性.研究表明:小负... 在高压共轨柴油机上研究了使用掺混20%聚甲氧基二甲醚的柴油(D80P20)对搭载柴油氧化型催化器(DOC)和催化型颗粒捕集器(CDPF)的后处理装置(DOC+CDPF)的影响,包括小负荷时的低温氧化特性和大负荷时的颗粒物加载和再生特性.研究表明:小负荷工况下在1400~2000 r/min内,DOC和DOC+CDPF对柴油排放的CO转化效率平均分别高达70%和90%,而对D80P20排放的CO转化效率则仅近19%和36%,燃用柴油时DOC和CDPF后端的排气升温现象较为明显,低温氧化特性优于D80P20;在大负荷低速工况下,燃用D80P20时,DOC前/后两端排气氧质量分数以及NO2排放均明显高于柴油,但CO原始排放和不透光烟度显著低于柴油.因而DOC+CDPF对D80P20的CO、PM氧化放热量较低,DOC后端温升明显低于柴油.此外,大负荷下DOC+CDPF对D80P20排放的CO净化效率和PM氧化再生效率高达近100%,DOC+CDPF前/后端压差峰值仅是柴油的1/3,其可显著降低CDPF的堵塞风险,减少主动再生频率. 展开更多
关键词 柴油机 聚甲氧基二甲醚 CO转化效率
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聚甲氧基二甲醚火(PODE_n)引燃时刻对HCII燃烧与排放的影响 被引量:2
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作者 刘浩业 王志 王建昕 《汽车安全与节能学报》 CAS CSCD 2016年第1期94-99,共6页
为提高均质混合气引燃(HCII)的效率并降低由于引燃柴油预混不充分产生的碳烟排放,在一台HCII原理性单缸机上,分别使用体积分数为0%、50%和100%的聚甲氧基二甲醚(PODE_n)/柴油混合燃料作为引燃燃料研究了在不同引燃燃料喷油时刻下HCII燃... 为提高均质混合气引燃(HCII)的效率并降低由于引燃柴油预混不充分产生的碳烟排放,在一台HCII原理性单缸机上,分别使用体积分数为0%、50%和100%的聚甲氧基二甲醚(PODE_n)/柴油混合燃料作为引燃燃料研究了在不同引燃燃料喷油时刻下HCII燃烧的燃烧、排放特性和热效率。结果表明:在1 200 r/min,0.3 MPa指示平均有效压力(IMEP)工况下,向引燃燃料中添加PODE_n能够明显降低碳氢化合物(HC)、一氧化碳(CO)排放以及循环变动(COV),提高指示热效率,100%的PODE_n作为引燃燃料时HCII燃烧模式的指示热效率达到甚至超过柴油直喷模式;在1 600 r/min,0.6 MPa IMEP工况下,向引燃燃料中添加PODE_n能够明显降低排气光吸收系数,提高指示热效率。 展开更多
关键词 柴油机 燃烧 排放 均质混合气引燃(HCII) 聚甲氧基二甲醚(pode_n) 引燃时刻
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PODE/乙醇双燃料共轨发动机的燃烧特性 被引量:1
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作者 刘军恒 孙平 +2 位作者 杨晨 姚肖华 梁新华 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2018年第2期334-340,共7页
为了实现高效清洁燃烧,在一台增压中冷电控共轨发动机上,采用进气预混乙醇燃料由缸内直喷聚甲氧基二甲醚(PODE)引燃,实现PODE/乙醇双燃料燃烧,研究了预混乙醇比例对双燃料发动机燃烧过程以及燃油经济性的影响。结果表明,在平均有效压力p... 为了实现高效清洁燃烧,在一台增压中冷电控共轨发动机上,采用进气预混乙醇燃料由缸内直喷聚甲氧基二甲醚(PODE)引燃,实现PODE/乙醇双燃料燃烧,研究了预混乙醇比例对双燃料发动机燃烧过程以及燃油经济性的影响。结果表明,在平均有效压力p_(me)=0.38 MPa时,随着乙醇比例增加,双燃料燃烧相位推迟,最大燃烧压力降低,预混放热量及放热率增加;在p_(me)=1.00 MPa时,预混乙醇发生自燃,最大缸内燃烧压力急剧增加,燃烧持续期延长,CA50靠近上止点,振动强度也增大,但有效热效率显著提高,最大可以达到40.6%。在p_(me)=0.38 MPa时,双燃料能够同时降低NOx和碳烟排放量,改变了它们之间的trade-off关系。合理控制预混乙醇比例可以改善双燃料发动机的燃油经济性,并降低污染物的排放量。 展开更多
关键词 共轨发动机 聚甲氧基二甲醚(pode) 乙醇 热效率 燃烧过程
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掺混PODE对增压中冷柴油机燃烧和排放性能的影响 被引量:11
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作者 朱益佳 林达 +1 位作者 魏小栋 张武高 《上海交通大学学报》 EI CAS CSCD 北大核心 2017年第1期33-39,共7页
在一台电控共轨增压中冷柴油发动机台架上,燃用纯柴油以及柴油中分别掺混10%、20%、30%(体积比)聚甲氧基二甲醚(PODE)的混合燃料,研究了PODE对柴油发动机燃烧排放特性以及燃油经济性的影响.结果表明PODE的掺混显著影响发动机的燃烧特性... 在一台电控共轨增压中冷柴油发动机台架上,燃用纯柴油以及柴油中分别掺混10%、20%、30%(体积比)聚甲氧基二甲醚(PODE)的混合燃料,研究了PODE对柴油发动机燃烧排放特性以及燃油经济性的影响.结果表明PODE的掺混显著影响发动机的燃烧特性:除低速大负荷工况外,PODE的掺入明显降低了预喷放热率,改善了主喷燃料的雾化性能,加大了主喷前缸内的活化成分比例,提升了主喷期间压力升高率和燃烧放热率,提高了缸内燃烧温度,缩短了燃烧持续期.在研究范围内,PODE掺混比越大,缸内燃烧最高温度越高,主喷燃料燃烧速度越快,燃烧持续期越短.排放研究结果表明,随着PODE的掺入,发动机的NO_x排放明显上升,HC排放略有下降,CO排放变化不大.PODE的掺入能明显改善发动机的燃油经济性. 展开更多
关键词 柴油机 聚甲氧基二甲醚 缸内燃烧 排放 燃油效率
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PODE_n-天然气双燃料的燃烧和排放特性研究 被引量:6
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作者 宋和平 刘长鹏 +3 位作者 张望 王志 何鑫 王建昕 《内燃机学报》 EI CAS CSCD 北大核心 2017年第2期104-111,共8页
天然气双燃料模式与火花点火模式相比,可以获得更高的热效率,但存在小负荷工况下总碳氢化合物(THC)、CO排放较高,大负荷工况下燃烧粗暴、天然气替代率不足等问题.聚甲氧基二甲醚(PODE_n)是一种高十六烷值、高含氧质量分数的煤基燃料,笔... 天然气双燃料模式与火花点火模式相比,可以获得更高的热效率,但存在小负荷工况下总碳氢化合物(THC)、CO排放较高,大负荷工况下燃烧粗暴、天然气替代率不足等问题.聚甲氧基二甲醚(PODE_n)是一种高十六烷值、高含氧质量分数的煤基燃料,笔者尝试用其替代柴油引燃天然气,以改善柴油引燃天然气燃烧不完全的问题.结果表明:PODE_n引燃天然气可以使THC、CO排放明显降低,获得较高的热效率,同时可以获得较低的颗粒物(PM)和NO_x排放,证明PODE_n是一种更加适用于天然气双燃料燃烧模式的引燃燃料. 展开更多
关键词 天然气 聚甲氧基二甲醚(poden) 双燃料 燃烧 排放
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柴油掺混PODE对重型柴油机低温燃烧及排放影响的试验研究 被引量:5
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作者 王其平 郑尊清 +2 位作者 王浒 毛斌 刘佳林 《内燃机工程》 EI CAS CSCD 北大核心 2018年第3期23-29,共7页
在一台多缸重型柴油机上研究了聚甲氧基二甲醚(PODE)替代部分柴油并结合废气再循环(EGR)策略对燃烧和排放的影响。试验结果表明聚甲氧基二甲醚具有较高的十六烷值和含氧量,可以有效地减少缸内的不均匀程度,降低污染物排放。聚甲氧基二... 在一台多缸重型柴油机上研究了聚甲氧基二甲醚(PODE)替代部分柴油并结合废气再循环(EGR)策略对燃烧和排放的影响。试验结果表明聚甲氧基二甲醚具有较高的十六烷值和含氧量,可以有效地减少缸内的不均匀程度,降低污染物排放。聚甲氧基二甲醚可以提高扩散燃烧速率,缩短燃烧持续期,有利于热效率的提高。优化燃油喷射策略可以有效提高发动机的热效率和污染物排放。 展开更多
关键词 聚甲氧基二甲醚 废气再循环 燃烧相位 燃油喷射压力
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PODE_n对汽油压燃燃烧过程与排放的影响 被引量:5
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作者 刘佳林 王浒 +3 位作者 郑尊清 邹泽宇 王其平 尧命发 《内燃机学报》 EI CAS CSCD 北大核心 2018年第2期97-106,共10页
针对汽油压燃(GCI)在不同负荷存在的问题,将具有高含氧量、高十六烷值的燃料聚甲氧基二甲醚(PODE_n)与汽油掺混,其中PODE_n体积分数为20%,以优化汽油的燃料特性,掺混燃料简称为G80P20.在转速为1660,r/min、平均有效压力(BMEP)分别为1.43... 针对汽油压燃(GCI)在不同负荷存在的问题,将具有高含氧量、高十六烷值的燃料聚甲氧基二甲醚(PODE_n)与汽油掺混,其中PODE_n体积分数为20%,以优化汽油的燃料特性,掺混燃料简称为G80P20.在转速为1660,r/min、平均有效压力(BMEP)分别为1.43、0.95和0.48,MPa的3个负荷下,研究了PODE_n对GCI燃烧与排放特性的影响.结果表明:在大负荷工况下,掺混体积分数为20%,的PODE_n能同时显著改善GCI的碳烟(soot)排放和压力升高率,随着喷油压力的增加,两者的改善程度增加;在喷油压力为120,MPa下,两者降低幅度分别达到68%,和51%,,其NOx和soot排放可在无后处理情况下达到国Ⅴ排放水平;在中等负荷工况下,汽油的燃烧可控性随喷油压力的增加而显著降低,而G80P20的燃烧可控性基本不受喷油压力的影响,且达到与柴油基本相当的水平;在小负荷工况下,G80P20能显著改善GCI的燃烧效率,降低HC和CO排放,循环波动率(COV)从5%,降至2%,,提高了燃烧稳定性. 展开更多
关键词 聚甲氧基二甲醚 汽油压燃 含氧燃料 燃烧 排放
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