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王 应 宽
2010-02-06
Beijing, China
博主按:本人2009年5-12月在美国明尼苏达大学访学期间,有幸参与了合作导师阮榕生教授主持的关于海藻生物质能方面的研究课题。此文根据试验研究结果写成,发表在EI核心收录源刊《农业工程学报》。因为本人是第二作者,为公平公正,在评审过程中隐去全部作者,实行盲审。在通过评审后又几经修改终于发表。海藻生物质能是美国乃至世界新能源领域的研究热点,阮教授在海藻生物油研究方面进行了大量探索,主持多个关于海藻方面的课题,累计项目经费超过500万美元,整体研究水平处于国际领先地位,曾被《纽约时报》等多家媒体采访报道。希望此文的内容能为国内做海藻生物质能研究的同行提供些有益的参考。
微波裂解海藻快速制取生物燃油的试验
万益琴1,2,王应宽2,3,林向阳2,4,刘玉环1,2,陈 灵2,李叶丛2,阮榕生1,2※
(1.南昌大学生物质转化教育部工程研究中心,生命科学与食品工程学院,南昌 330047; 2.Center for Biorefining and Department of Bioproducts and Biosystems Engineering, University of Minnesota, St. Paul, MN 55108, USA;
3.农业部规划设计研究院,北京 100125; 4.福州大学生物科学与工程学院,福州 350108)
摘 要:为了探索低成本的海藻生物油快速制取工艺技术,研究组已成功开发出一套海藻的选育、培养、收获、干制技术。利用自行优选、培养、收获并干制的海藻粉,基于课题组在生物质的微波裂解技术已取得的突破,采用自行研制的玉米秸秆微波裂解的相关设备,对微波裂解海藻制取生物燃油的技术进行试验研究,获得大量在自然条件下可分层的海藻生物油。采用气相色谱-质谱(GC-MS)分析了所得到的生物油产品中两相油组分,得到了生物油产品中的物质组成及其相对含量,可为海藻生物油的精制及其副产品的开发利用提供了参考。研究表明,微波裂解海藻是一种低成本、快速、高效制取海藻生物燃油的方法,为海藻生物油的规模化生产提供参考。
关键词:海藻,微波,裂解,生物燃油,生物柴油,生物质能
doi:10.3969/j.issn.1002-6819.2010.01.052
中图分类号:TP751.1 文献标识码:A 文章编号:1002-6819(2010)-01-0295-06
万益琴,王应宽,林向阳,等. 微波裂解海藻快速制取生物燃油的试验[J]. 农业工程学报,2010,26(1):295-300.
Wan Yiqin, Wang Yingkuan, Lin Xiangyang, et al. Experimental investigation on microwave assisted pyrolysis of algae for rapid bio-oil production[J]. Transactions of the CSAE, 2010, 26(1): 295-300. (in Chinese with English abstract)
Experimental investigation on microwave assisted pyrolysis of algae for rapid bio-oil production
Wan Yiqin1,2, Wang Yingkuan2,3, Lin Xiangyang2,4, Liu Yuhuan1,2, Paul Chen2, Li Yecong2, Roger Ruan1,2※
(1. School of Life Science and Food Engineering, Engineering Research Center for Biomass Conversion, Ministry of Education, Nanchang University, Nanchang 330047, China; 2. Center for Biorefining and Department of Bioproducts and Biosystems Engineering, University of Minnesota, St. Paul, MN 55108, USA; 3.
4.
Abstract: In order to explore technologies for rapid and cost-efficient bio-oil production from algae, the authors’ research group has developed a whole set of new process for algae variety selection, culture, harvest and dehydration. Based on the previous technical breakthrough by the research group in microwave assisted pyrolysis (MAP) of biomass, the optimized algae harvested from self-cultivated tank was dehydrated and used to conduct experiments on MAP of algae to produce bio-oil using self-developed equipment for microwave assisted pyrolysis of corn stover. Some algae-based bio-oil with water-oil two-phase stratification under natural conditions was obtained. The two-phase bio-oil products were then analyzed to acquire their compositions using Gas Chromatography-Mass Spectrometry (GC-MS); the compositions and their percentages were acquired, which can provide theoretical basis for refining algae-based bio-oil products for various usages and developing value-added by-products. The research results show that MAP of algae is a rapid, cost-competitive and efficient method for producing bio-oil, which provides reference for mass production of bio-oil from algae.
Key words: algae, microwave, pyrolysis, bio-oil, biodiesel, biomass energy
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