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1.
采用减压蒸馏生物油为原料,与无水乙醇2:3(质量比)混合,在固定床中ZSM-5/MCM-41分子筛上共催化裂化,考查了反应温度和质量空速(WHSV)对裂化产物的影响。对ZSM-5/MCM-41进行了NH3-TPD、BET、N2吸附-脱附等表征,对裂化气体产物通过气相色谱仪分析,减压蒸馏生物油和精制生物油采用气相色谱-质谱联用仪进行定量分析。结果表明,反应温度500 ℃、WHSV 3.75 h-1为反应优化工况。此反应条件下,精制生物油酸类物质从减压蒸馏生物油中的25.6%降至反应后的0.1%,效果显著,且精制生物油产率为46.8%,气体产物中CO2和CO的浓度共9.5%。  相似文献   

2.
The bio-oil derived from pyrolysis of straw can be selectively converted into high-purity hydrogen by coupling three steps:(i)steam refonning(SR)of di tierent bio-oils,(ii)water-gas shift(WGS),and(iii)the removal of CO2.the catalytic SR reaction over the NiLaTiAl catalyst,coupled with a low-temperature WGS reaction with the CuZnAl catalyst,promoted the conversion of various oxygen-contaming organic compounds in the bio-oil into hydrogen and carbon dioxide.Under the optimized condition,light bio-oil achieved the highest conversion(99.8%,molar fraction),with a high hydrogen yield of 16.4%(mass traction)and a H2 purity of 99.94%(volume fraction).The carbon deposition on the NiLaTiAl catalyst was the main factor caused catalyst deactivation.Production of hydrogen from different bio-oil model compounds was also investigated in detail.  相似文献   

3.
不同蒸馏压力下的生物油分子蒸馏分离特性研究   总被引:1,自引:0,他引:1  
采用分子蒸馏分离技术对热敏性生物油在不同蒸馏压力下的分离特性进行了研究。经过分子蒸馏分离后,生物油被分离为蒸出馏分油与残留馏分油,蒸出馏分油的得率随着压力的下降而显著增大,在700 Pa时达到了56.50%(质量分数)。在馏分油的物理性质方面,蒸出馏分油富集了生物油内的大部分水分,残留馏分油内水分得到了较好的脱除,其中,700 Pa下残留馏分油的水分含量降至4.20%(质量分数)。结合生物油及馏分油的GC-MS分析结果,对乙酸、苯酚、糠醛以及左旋葡聚糖等生物油内典型化合物在不同蒸馏压力下的分布特性进行了研究,获得了相应化合物在分子蒸馏过程中的富集规律。结合分离因子评估模型对生物油内14种代表化合物的富集特性进行了量化评价。  相似文献   

4.
通过改变蒸馏温度对生物油进行常压蒸馏并将馏分分为油水两相,研究了馏分的组分分布变化。结果表明,在120-300℃随着蒸馏温度的升高,生物油馏出率不断增加;蒸馏温度低于240℃的油相馏分中萘、甲苯等芳烃类化合物和乙酸等羧酸类化合物明显富集,以120℃油相馏分为例,芳烃类和羧酸类化合物的相对含量是生物油原油的13.86倍和3.15倍;当蒸馏温度高于240℃时苯酚、愈创木酚等酚类化合物大量馏出,使得油相馏分的产率明显增加;同时,所获水相馏分中的水分含量皆高于60%,水分的富集效果明显;在馏分中检测到了2-乙基乙酸丁酯和环戊酮等原油中未检测到的组分并且馏分中水分总量高于生物油原油,这些都表明生物油在蒸馏过程中发生了酯化、缩聚等化学反应。通过对油相馏分的组分分布进行分析,发现改变蒸馏温度可以有效富集生物油中的高价值化合物,如苯酚、愈创木酚、4-甲基愈创木酚、4-乙基愈创木酚和4-丙基愈创木酚的相对含量在300℃的油相馏分中分别比生物油提高了109%、160%、84%、53%和444%。  相似文献   

5.
酸性离子交换树脂催化酯化改质生物油的研究   总被引:4,自引:1,他引:3  
以磺酸型离子交换树脂为催化剂, 在模型反应的基础上, 探讨了该催化剂在稻壳裂解油及其轻质馏分的催化酯化改质过程中的活性和效果, 并通过气-质联用仪对酯化前后的生物油进行了成分分析. 结果表明, 酯化过程中采用的催化剂可以方便地分离和循环使用; 生物油中的有机酸顺利地转化为相应的酯类(主要为乙酸乙酯). 通过催化酯化改质后, 两种生物油的理化特性均得到了有效改善, 热值分别由16.80和12.76 MJ/kg提高到20.08和18.33 MJ/kg, 相应提高了19.5%和43.6%; 黏度分别由11.83和1.42 mm2/s, 下降到3.77和1.12 mm2/s; 水分分别为23.7%和28.4%, 流动性明显增强, 理化特性得到了明显提高. 为生物油的精制加工提供了一种有效方法.  相似文献   

6.
生物质快速热解制备液体燃料   总被引:2,自引:0,他引:2  
本文回顾了生物质快速热解液化技术的国内外研究现状,重点叙述了初级生物油的化学组成和燃料性质,指出生物油是一种复杂的含氧有机混合物,具有水分含量高、氧含量高、热值低、酸含量高、安定性差和化石燃油不互溶等独特的性质;针对这些性质,介绍了几种常用的生物油精制提炼方法,包括催化裂解、催化加氢、高温热解气过滤、添加助剂、催化酯化、柴油乳化以及制备富氢合成气与费托合成,并分析了各种精制技术发展的关键问题.  相似文献   

7.
本文回顾了生物质快速热解液化技术的国内外研究现状,重点叙述了初级生物油的化学组成和燃料性质,指出生物油是一种复杂的含氧有机混合物,具有水分含量高、氧含量高、热值低、酸含量高、安定性差和化石燃油不互溶等独特的性质;针对这些性质,介绍了几种常用的生物油精制提炼方法,包括催化裂解、催化加氢、高温热解气过滤、添加助剂、催化酯化、柴油乳化以及制备富氢合成气与费托合成,并分析了各种精制技术发展的关键问题。  相似文献   

8.
固体酸改质生物油的研究   总被引:12,自引:0,他引:12  
利用乙酸和乙醇生成乙酸乙酯的酯化反应为模型反应,筛选得到催化活性最好的固体酸催化剂40%SiO2/TiO2SO42-。 在一定的反应条件下,添加固体酸催化剂和溶剂,生物油的品质得到提高,热值提高了50.7%,运动黏度降低到原来的10%,密度降低了22.6%。生物油改质前后的GC MS分析表明,固体酸可以将生物油中含有的有机羧酸转化为酯类,如甲酸酯、乙酸酯等,使生物油中的羧酸组分发生了催化酯化反应,改善了生物油的品质,生物油物理化学性能得到明显的提高。3A分子筛对生物油的脱水作用不显著,对酸性、密度、黏度等方面影响较小。  相似文献   

9.
Low-carbon light olefins are the basic feedstocks for the petrochemical industry. Catalytic cracking of crude bio-oil and its model compounds (including methanol, ethanol, acetic acid, acetone, and phenol) to light olefins were performed by using the La/HZSM-5 catalyst. The highest olefins yield from crude bio-oil reached 0.19 kg/(kg crude bio-oil). The reaction conditions including temperature, weight hourly space velocity, and addition of La into the HZSM-5 zeolite can be used to control both olefins yield and selectivity. Moderate adjusting the acidity with a suitable ratio between the strong acid and weak acid sites through adding La to the zeolite effectively enhanced the olefins selectivity and improved the catalyst stability. The production of light olefins from crude bio-oil is closely associated with the chemical composition and hydrogen to carbon effective ratios of feedstock. The comparison between the catalytic cracking and pyrolysis of bio-oil was studied. The mechanism of the bio-oil conversion to light olefins was also discussed.  相似文献   

10.
以稻壳快速热解产物生物油为对象,在对其进行热重红外检测的基础上,结合生物油及其轻质、重质组分的热解气化实验,研究了生物油热解气化过程及气体产出特性。结果表明,生物油的热解气化分为两个阶段,一是轻质组分的快速挥发热解;二是重质组分的裂解气化与缩合缩聚,活化能分别为35~38 kJ/mol和15~22 kJ/mol。温度升高,热解气化效率增加,以H2和CO为主的合成气产量增多,但气体产物热值降低。气体中H2主要来自轻质组分的热解气化,而重质组分则裂解产生较多的CO、CH4等物质。  相似文献   

11.
Carbohydrates are the major constituents of biomass. With the growing interest in utilizing bio-oil obtained from fast pyrolysis of biomass for fuels and chemicals, understanding the carbohydrate pyrolysis behavior has gained particular importance. The chemical composition of the bio-oil is an important consideration for its upstream and/or downstream processing. Though the classification of pyrolysis products into overall tar, char and gaseous fraction has evolved as a standard; detailed knowledge of the chemical constituents that determine the quality of bio-oil has received little attention. Furthermore, the speciation arising from primary and secondary reactions has been rarely distinguished. In this study the product distribution arising from the primary reactions during 500 °C fast pyrolysis of several mono-, di- and polysaccharides is studied with the help of micro-pyrolyzer. The study suggests that levoglucosan and the low molecular weight compounds are formed through competitive pyrolysis reactions rather than sequential pyrolysis reactions. It is also shown that the orientation or the position of glycosidic linkages does not significantly influence the product distribution except with 1,6-linked polysaccharide, which showed considerably less formation of levoglucosan than other polysaccharides.  相似文献   

12.
为进一步提高精制生物油的制取效率和燃料品质,采用Zn和P对HZSM-5分子筛进行复合改性,使用XRD、SEM EDS、ICP-AES、BET等方法表征改性HZSM-5分子筛,考察了Zn、P改性对精制生物油理化特性和液相产物的化学组成以及对HZSM-5抗结焦性能的影响。结果表明,Zn、P在HZSM-5表面负载均匀,Zn、P改性未影响HZSM-5的晶体骨架结构,改性HZSM-5的比表面积随着Zn负载量的上升而减少;Zn负载量为3%时,催化热解得到的精制生物油含氧量为10.67%,热值为36.76 MJ/kg,pH值为5.85,精制生物油品质得到显著提升;液相产物中酸类、醛类和酮类等不期望物质相对含量显著下降,芳香族化合物相对含量显著增加,芳香族化合物相对含量为91.93%,其中,芳香烃为74.63%;HZSM-5因负载P使得其相对结焦量明显降低,显著增强了HZSM-5的稳定性;Zn改性促进了氢原子转移和碳正离子的形成,有利于提高HZSM-5分子筛的芳构化性能。  相似文献   

13.
Effects of reaction temperature, reaction time and water amount on the hydrothermal liquefaction of cypress, were studied in this paper. The reaction system was divided into gas lump, water-soluble oil lump, heavy oil lump, volatile organic compounds lump, and solid residue lump. Results showed that temperature was the critical parameter for 5-lump distribution in the cypress hydrothermal conversion process. The higher temperature and longer reaction time were not usually suitable for the production of bio-oil (water-soluble oil and heavy oil). The increase in the yields of gas and volatile organic compounds was also observed as temperature was increased. However, the yield of the volatile organic compounds increased first, and then decreased with the reaction time and the water amount. High amount of water led to high conversion and bio-oil yield. The FT-IR analysis of the solid residues showed that the major peaks of cypress diminished after 280 °C. The GC–MS analysis showed that the volatile organic compounds, water-soluble oil and heavy oil comprised a mixture of organic compounds of 5–7, 5–10 and 7–26 carbons, respectively, which mainly included furfural, phenol, acids, furans and their derivatives. The WSO had similar elemental compositions but the HO had a higher content of carbon and a lower concentration of oxygen as compared to cypress.  相似文献   

14.
以乙醇和乙酸的酯化作为反应模型,考察固体酸催化剂阳离子交换树脂、SO42-/ZrO2和分子筛在微波加热条件下的酯化活性。结果表明,三类固体酸催化剂的活性顺序为Amberlite树脂﹥SO42-/ZrO2﹥HZSM-5,催化剂活性与酸度一致;酯化反应中水的含量对催化剂的活性有不同程度的影响,水含量较高时催化剂SO42-/ZrO2酯化活性明显变差,而阳离子交换树脂仍具有较高的酯化活性。采用阳离子交换树脂对生物油进行微波催化酯化提质后,原生物油中含有的大量不同种类的羧酸被有效地转化成各种酯类,酯类化合物由原油中的4种增加到13种。与传统加热条件下生物油催化提质比较,生物油微波提质具有明显优势,提质后生物油组分得到优化。  相似文献   

15.
生物质快速热解油水相溶液超声乳化特性   总被引:4,自引:0,他引:4  
使用生物油水相溶液与0# 柴油乳化,筛选了四种常用乳化剂和一种助乳化剂进行复配乳化实验,考察了复配乳化剂型号、乳化剂用量、超声作用时间对乳化效果的影响。结果表明,六种乳化液超过30d不破乳,与0# 柴油相比,密度和热值相差不大,含水量3%以下,黏度增大约40%,pH值降低一半。因素分析法表明,水相溶液与柴油质量比和不同的水相溶液对乳化效果影响较大。探讨了乳化机理,认为生物油水相溶液中水、醛、酸、酮等极性组分化合物稳定地被乳化剂包裹在W/O型乳化液液滴中,生物油水相溶液中少量的乙酸乙酯、芳香类化合物等则增溶于非离子乳化剂胶束中。热力学分析表明,超声乳化作用比静置作用具有更大的熵增,乳化液更趋于稳定平衡状态。  相似文献   

16.
用酸碱分离和萃取色谱分离相结合的方法将龙口页岩油分离为酸性组分、碱性组分和五个中性组分(饱和烃、芳香烃、含氮化合物、含氧化合物1、含氧化合物2)。采用GC-MS和负离子ESI FT-ICR MS鉴定了龙口页岩油中酸性组分、中性组分4和中性组分5中含氧化合物的组成。GC-MS分析结果表明,龙口页岩油酸性组分含氧化合物主要包括苯酚类、茚满酚类、萘酚类、联苯酚类、芴酚类、菲酚类,以及C5~16烷酸;龙口页岩油中性组分4和中性组分5中含氧化合物主要包括C9~32脂肪酮和酯类化合物。FT-ICR MS分析结果表明,龙口页岩油中含氧化合物主要有O1、O2、O3、N1O1、N1O2类化合物,其中,O1和O2类化合物种类较多。龙口页岩油重均相对分子质量集中在150~600 Da,说明龙口页岩油是由小分子化合物组成的。其表现出来的某些大分子化合物的性质,是由小分子化合物通过范德华力或氢键聚合在一起而形成的。龙口页岩油中O1、O2、O3类化合物中DBE主要分布在1和4,说明龙口页岩油中O1、O2、O3类化合物不饱和度和缩合度较低,因此,龙口页岩油是生物降解程度较低的油。  相似文献   

17.
从低温煤焦油中蒸馏提取出大于350℃的常渣,以正戊烷、正戊烷+5%乙醇、正戊烷+5%异丙醇三种溶剂沉淀沥青质。通过1H-NMR、13C-NMR、傅里叶变换离子回旋共振质谱仪(FT-ICR MS)、元素分析和相对分子量测定等手段对重组分沥青质的结构参数、杂原子化合物的分布等方面进行了分析,构建含杂原子的平均分子结构模型。结果表明,乙醇和异丙醇的加入可以显著降低C5-沥青质的收率,所得沥青质的芳香性增强,平均分子量增大,为更高缩合度的具有较短侧链的结构;极性溶剂的加入没有改变沥青质中杂原子化合物的类型,但是O1和O2中一部分低缩合度的化合物转移到可溶质中,O3-O6化合物的相对丰度增大,表明混合溶剂有利于萃取低缩合度的化合物。  相似文献   

18.
The sugars present in bio-oil produced by fast pyrolysis can potentially be fermented by microbial organisms to produce cellulosic ethanol. This study shows the potential for microbial digestion of the aqueous fraction of bio-oil in an enrichment medium to consume glucose and produce ethanol. In addition to glucose, inhibitors such as furans and phenols are present in the bio-oil. A pure glucose enrichment medium of 20?g/l was used as a standard to compare with glucose and aqueous fraction mixtures for digestion. Thirty percent by volume of aqueous fraction in media was the maximum additive amount that could be consumed and converted to ethanol. Inhibitors were removed by extraction, activated carbon, air stripping, and microbial methods. After economic analysis, the cost of ethanol using an inexpensive fermentation medium in a large scale plant is approximately $14 per gallon.  相似文献   

19.
利用共沉淀法,制备一系列在凹凸棒土上负载不同含量的NiO-Fe2O3催化剂。以乙酸、乙醇和苯酚的水溶性溶液为生物油模型物,在自制的三段式固定床反应器中,考察了NiO-Fe2O3的负载量、反应温度、水碳比(S/C)对生物油模型物重整制氢的影响。结果表明,所获得的氢气产率最高的工艺条件为,在650℃条件下,以水碳比8~10的生物油模型为实验原料,使用自制的50%NiO-50%Fe2O3/PG型催化剂,可使气体产物中H2的相对含量达到最大66.15%。  相似文献   

20.
Pyrolysis processes are an alternative to minimize the environmental problem associated to agrifood industrial wastes. The main product resulting from these processes is a high-value liquid product, called bio-oil. Recently, the use of comprehensive two-dimensional liquid chromatography (LC × LC) has been demonstrated as a useful tool to improve the characterization of the water-soluble phases of bio-oils, considering their complexity and high water content. However, the precise composition of bio-oils from different agrifood byproducts is still unknown. In the present study, the qualitative and quantitative screening of eight aqueous phases from different biomasses, not yet reported in the literature, using LC × LC is presented. The two-dimensional approach was based on the use of two reverse phase separations. An amide column in the first dimension together with a C18 column in the second dimension were employed. Thanks to the use of diode array and mass spectrometry detection, 28 compounds were identified and quantified in the aqueous phase samples with good figures of merit. Samples showed a distinct quali-quantitative composition and a great predominance of compounds belonging to aldehydes, ketones and phenols, most of them with high polarity.  相似文献   

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