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首页> 外文期刊>Journal of Environmental Management >Improvement of bio-crude oil properties via co-pyrolysis of pine sawdust and waste polystyrene foam
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Improvement of bio-crude oil properties via co-pyrolysis of pine sawdust and waste polystyrene foam

机译:通过松木屑和废聚苯乙烯泡沫共热解改善生物原油的性能

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Conversion technology of solid biomass to liquid fuel, named bio-crude oil, has been researched widely for the production of renewable energy to replace fossil fuel oil. As the result of many admirable researches, fast pyrolysis technology for bio-crude oil production is close to commercialization. However, bio-crude oil has unsatisfactory properties compared to general petroleum oil, for instance, low heating value, high water content, and high viscosity. In this study, pine sawdust (SD) biomass was co-pyrolyzed with waste polystyrene foam (WPSF), which was expected to improve the bio-crude oil quality due to high heating value and non-oxygen composition of polystyrene. The co-pyrolysis experiment was conducted in a bubbling fluidized bed reactor under the following conditions: temperature of 500 degrees C which was chosen based on the results from thermo-gravimetric analysis of SD and WPSF, nitrogen flow rate of 20-25 L/min., and feeding rate of 200 g/hr. Various mixing ratios of SD/WPSF by weight percentage were tested as follows: 100/0, 95/5, 90/10, 85/15, 80/20, 75/ 25, 70/30, 60/40, 50/50, 25/75, 0/100. Experimental results showed that in case of only SD feeding the biocrude oil yield and higher heating value (HHV) were 48.83 wt% and 17.81 MJ/kg respectively. By contrast, oil yield and HHV in case of 25% SD with 75% WPSF mixture were 63.31 wt% and 39.65 MJ/kg respectively. Additional analysis showed that water content, and acetic acid concentration of bio-crude oil from co-pyrolysis of SD/WPSF mixture were decreased almost proportionally with the increasing WPSF ratio. Furthermore, measured values of water content, and acetic acid concentration were lower than the calculated values by linear interpolation, which means that the synergistic effect between SD and WPSF was achieved during the co-pyrolysis. In conclusion, co-pyrolysis of SD and WPSF was found as a promising solution to improve bio-crude oil quality. With this technology, the industrial growth of bio-crude oil area is expected as well as waste plastic.
机译:固体生物质向液体燃料的转化技术,即生物原油,已被广泛研究用于生产可再生能源来代替化石燃料油。由于许多令人钦佩的研究的结果,用于生物原油生产的快速热解技术已接近商业化。然而,与普通石油相比,生物原油具有不令人满意的性能,例如,低热值,高含水量和高粘度。在这项研究中,松木屑(SD)生物质与废聚苯乙烯泡沫(WPSF)共热解,由于聚苯乙烯的高热值和无氧成分,有望改善生物原油的质量。共沸实验在以下条件下在鼓泡流化床反应器中进行:温度为500摄氏度,这是根据对SD和WPSF的热重分析结果选择的,氮气流速为20-25 L / min ,并且进料速度为200克/小时。 SD / WPSF的各种混合比例按重量百分比进行了如下测试:100 / 0、95 / 5、90 / 10、85 / 15、80 / 20、75 / 25、70 / 30、60 / 40、50 / 50 ,25 / 75、0 / 100。实验结果表明,仅SD供料,生物原油的收率和较高的热值(HHV)分别为48.83 wt%和17.81 MJ / kg。相比之下,在25%SD和75%WPSF混合物的情况下,油的产量和HHV分别为63.31 wt%和39.65 MJ / kg。进一步的分析表明,随着SDSF / WPSF混合物的共热解,水分和生物粗制油中的乙酸浓度几乎随WPSF比的增加成比例地降低。此外,水含量和乙酸浓度的测量值低于通过线性插值计算的值,这意味着在共热解过程中实现了SD和WPSF之间的协同作用。总之,发现SD和WPSF的共热解是改善生物原油质量的有前途的解决方案。借助这项技术,预计生物原油领域以及废塑料的工业增长。

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