Volume 47 Issue 5
May  2019
Turn off MathJax
Article Contents
ZHENG Hong-yan, WANG Yue-qing, CHANG Xi-liang, NIU Yu-lan, YANG Hong, SONG Yong-bo, YAO Ying, DING Guo-qiang, ZHU Yu-lei. Catalytic conversion of sweet sorghum stalk juice to furan compounds over Hβ zeolite[J]. Journal of Fuel Chemistry and Technology, 2019, 47(5): 605-610.
Citation: ZHENG Hong-yan, WANG Yue-qing, CHANG Xi-liang, NIU Yu-lan, YANG Hong, SONG Yong-bo, YAO Ying, DING Guo-qiang, ZHU Yu-lei. Catalytic conversion of sweet sorghum stalk juice to furan compounds over Hβ zeolite[J]. Journal of Fuel Chemistry and Technology, 2019, 47(5): 605-610.

Catalytic conversion of sweet sorghum stalk juice to furan compounds over Hβ zeolite

Funds:

The project was supported by the National Science Foundation of China 21875276

  • Received Date: 2019-01-17
  • Rev Recd Date: 2019-02-20
  • Available Online: 2021-01-23
  • Publish Date: 2019-05-10
  • The conversion of sweet sorghum stalk juice rich in sucrose, glucose and fructose to furan compounds (5-hydroxymethylfurfural or furfural) was investigated over Hβ zeolite in γ-butyrolactone solvent. The results indicated that the main product for the conversion of sweet sorghum stalk juice (SSSJ) was 5-hydroxymethylfurfural; however, high yield of furfural was obtained in the conversion of model sweet sorghum stalk juice (MSSSJ) containing the same amount of hexose under the same conditions. The 27Al MAS NMR results showed that ion-exchange took place between the Hβ zeolite and alkaline ions (mainly potassium) in the sweet sorghum stalk juice, resulting in the transformation of octahedrally coordinated aluminum into tetrahedrally coordinated framework aluminum. As an appropriate configuration environment of aluminum for Hβ was necessary for the formation of furfural from hexose, high yield of 5-hydroxymethylfurfural was achieved for the conversion of sweet sorghum stalk juice (SSSJ) due to the ion-exchange of Hβ with alkaline ions.
  • loading
  • [1]
    袁正求, 龙金星, 张兴华, 夏莹, 王铁军, 马隆龙.木质纤维素催化转化制备能源平台化合物[J].化学进展, 2016, 28(1):103-110. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=hxjz201601011

    YUAN Zheng-qiu, LONG Jin-xing, ZHANG Xing-hua, XIA Ying, WANG Tie-jun, MA Long-long. Catalytic conversion of lignocellulose into energy platform chemicals[J]. Prog Chem, 2016, 28(1):103-110. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=hxjz201601011
    [2]
    于杰, 王景芸, 王震, 周明东, 王海彦. Silicalite-1修饰的HY型分子筛及其对纤维素水解的催化性能[J].燃料化学学报, 2018, 46(12):1447-1453. doi: 10.3969/j.issn.0253-2409.2018.12.005

    YU Jie, WANG Jing-yun, WANG Zhen, ZHOU Ming-dong, WANG Hai-yan. Catalytic performance of silicalite-1 modified HY zeolite in the hydrolysis of cellulose[J]. J Fuel Chem Technol, 2018, 46(12):1447-1453. doi: 10.3969/j.issn.0253-2409.2018.12.005
    [3]
    WANG Y Q, DING G Q, YANG X H, ZHENG H Y, ZHU Y L, LI Y W. Selectively convert fructose to furfural or hydroxymethylfurfural on Beta zeolite:The manipulation of solvent effects[J]. Appl Catal B:Environ, 2018, 235:150-157. doi: 10.1016/j.apcatb.2018.04.043
    [4]
    LANGE J P, VAN DER HEIDE E, VAN BUIJTENEN J, PRICE R. Furfural-a promising platform for lignocellulosic biofuels[J]. ChemSusChem, 2012, 5(1):150-166. doi: 10.1002/cssc.201100648
    [5]
    谈金, 王晨光, 陈伦刚, 徐莹, 张琦, 马隆龙.纤维素类碳水化合物转化为糠醛的研究进展[J].新能源进展, 2018, 6(1):1-7. doi: 10.3969/j.issn.2095-560X.2018.01.001

    TAN Jin, WANG Chen-guang, CHEN Lun-gang, XU Ying, ZHANG Qi, MA Long-long. Progress on conversion of cellulosic carbohydrates into furfural[J]. Adv New Renew Energy, 2018, 6(1):1-7. doi: 10.3969/j.issn.2095-560X.2018.01.001
    [6]
    DUTTA S, DE S, SAHA B, ALAM MD I. Advances in conversion of hemicellulosic biomass to furfural and upgrading to biofuels[J]. Catal Sci Technol, 2012, 2(10):2025-2036. doi: 10.1039/c2cy20235b
    [7]
    YANG Y, HU C W, ABU-OMAR M M. Synthesis of furfural from xylose, xylan, and biomass using AlCl3·6H2O in biphasic media via xylose isomerization to xylulose[J]. ChemSusChem, 2012, 5(2):405-410. doi: 10.1002/cssc.201100688
    [8]
    WANG C M, XU H M, DANIELA R, GHAFOURIANA A, HERREROSC J M, SHUAI S J, MA X. Combustion characteristics and emissions of 2-methylfuran compared to 2, 5-dimethylfuran, gasoline and ethanol in a DISI engine[J]. Fuel, 2013, 103:200-211. doi: 10.1016/j.fuel.2012.05.043
    [9]
    GÜRBÜZ E I, GALLO J R, ALONSO D M, WETTSTEIN S G, LIM W Y, DUMESIC J A. Conversion of hemicellulose into furfural using solid acid catalysts in γ-valerolactone[J]. Angew Chem Int Ed, 2013, 52(4):1270-1274. doi: 10.1002/anie.201207334
    [10]
    CUI J, TAN J, DENG T, CUI X, ZHU Y, LI Y. Conversion of carbohydrates to furfural via selective cleavage of the carbon-carbon bond:The cooperative effects of zeolite and solvent[J]. Green Chem, 2016, 18(6):1619-1624. doi: 10.1039/C5GC01948F
    [11]
    刘荣厚, 李金霞, 沈飞, 孙清.甜高粱茎秆汁液固定化酵母酒精发酵的研究[J].农业工程学报, 2005, 21(9):137-140. doi: 10.3321/j.issn:1002-6819.2005.09.030

    LIU Rong-hou, LI Jin-xia, SHEN Fei, SUN Qing. Ethanol fermentation of sweet sorghum stalk juice by immobilized yeast[J]. Trans CSAE, 2005, 21(9):137-140. doi: 10.3321/j.issn:1002-6819.2005.09.030
    [12]
    梅晓岩, 刘荣厚, 沈飞.甜高梁茎秆汁液成分分析及浓缩贮藏的试验研究[J].农业工程学报, 2008, 24(1):218-223. doi: 10.3321/j.issn:1002-6819.2008.01.043

    MEI Xiao-yan, LIU Rong-hou, SHEN Fei. Experimental research on storage of condensed stalk juice and composition analysis of juice of sweet sorghum Stalk[J]. Trans CSAE, 2008, 24(1):218-223. doi: 10.3321/j.issn:1002-6819.2008.01.043
    [13]
    陈朝儒, 王智, 马强, 张丽娜, 奚亚军, 顿宝庆, 李桂英, 路明, 杜风光.甜高粱茎汁及茎渣同步糖化发酵工艺优化[J].农业工程学报, 2016, 32(3):253-258. http://d.old.wanfangdata.com.cn/Periodical/nygcxb201603038

    CHEN Chao-ru, WANG Zhi, MA Qiang, ZHANG Li-na, XI Ya-jun, DUN Bao-qing, LI Gui-ying, LU Ming, DU Feng-guang. Optimization of ethanol production from bagasse and juice of sweet sorghum stem by simultaneous saccharification and fermentation[J]. Trans CSAE, 2016, 32(3):253-258. http://d.old.wanfangdata.com.cn/Periodical/nygcxb201603038
    [14]
    DEESUTH O, LAOPAIBOON P, LAOPAIBOON L. High ethanol production under optimal aeration conditions and yeast composition in a very high gravity fermentation from sweet sorghum juice by Saccharomyces cerevisiae[J]. Ind Crop Prod, 2016, 92:263-270. doi: 10.1016/j.indcrop.2016.07.042
    [15]
    THANI A, LAOPAIBOON P, LAOPAIBOON L. Improvement of a continuous ethanol fermentation from sweet sorghumstem juice using a cell recycling system[J]. J Biotechnol, 2017, 251:21-29. doi: 10.1016/j.jbiotec.2017.03.030
    [16]
    栗同林, 刘希尧, 朴玉玲, 蔡春飞, 王祥生.萘与不同烷基化试剂在沸石上的烷基化反应[J].催化学报, 1998, 19(2):181-183. doi: 10.3321/j.issn:0253-9837.1998.02.019

    LI Tong-lin, LIU Xin-yao, PIAO Yu-ling, CAI Cun-fei, WANG Xiang-sheng. Alkylation of naphthalene with various alkylating agents over some zelolites[J]. Chin J Catal, 1998, 19(2):181-183. doi: 10.3321/j.issn:0253-9837.1998.02.019
    [17]
    YANG Y, DU Z, MA J, LU F, ZHANG J, XU J. Biphasic catalytic conversion of fructose by continuous hydrogenation of HMF over a hydrophobic ruthenium catalyst[J]. ChemSusChem, 2014, 7(5):1352-1356. doi: 10.1002/cssc.201301270
    [18]
    BOURGEAT-LAMI E, MASSIANI P, DI RENZO F, ESPIAU P, FAJULA F. Study of the state of aluminium in zeolite-β[J]. Appl Catal, 1991, 72(1):139-152. doi: 10.1016/0166-9834(91)85034-S
    [19]
    MENG Q, QIU C, ZHENG H, LI X, ZHU Y, LI Y. Efficient decarbonylation of 5-hydroxymethylfurfural over an Pd/Al2O3 catalyst:Preparation via electrostatic attraction between Pd(Ⅱ) complex and anionic Al2O3[J]. Mol Catal, 2017, 433:111-121. doi: 10.1016/j.mcat.2017.02.035
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (144) PDF downloads(15) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return