Open Access
Issue |
E3S Web Conf.
Volume 352, 2022
7th International Conference on Energy Science and Applied Technology (ESAT 2022)
|
|
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Article Number | 01089 | |
Number of page(s) | 6 | |
Section | Fossil Energy & Geological Engineering | |
DOI | https://doi.org/10.1051/e3sconf/202235201089 | |
Published online | 27 June 2022 |
- Xiao Liu and Weiqi Wei and Shubin Wu. Thermo conversion of monosaccharides of biomass to oligosaccharides via mild conditions[J]. Process Biochemistry, 2019, 86(C): 98–107. [CrossRef] [Google Scholar]
- Bose S.K., Howlader, P., Wang W.X., Yin, H. Oligosaccharide is a promising natural preservative for improving postharvest preservation of fruit: A review[J]. Food Chemistry, 2021, 341(1): 128–178. [Google Scholar]
- Yue, P.P., Hu, Y.J., Tian, R., Bian, J., Peng, F. Hydrothermal pretreatment for the production of oligosaccharides: A review[J]. Bioresource technology, 2021, 343: 126075–126075. [Google Scholar]
- Deng Z.Y., Li J., Pei Y.Q., Wan J.W., Li B., Liang H.S. Oligosaccharides act as the high efficiency stabilizer for ß-galactosidase under heat treatment[J]. International Journal of Biological Macromolecules, 2019, 137: 69–76. [CrossRef] [PubMed] [Google Scholar]
- Karan W.P., Pasunee L.H., Sun K.Y., et al. A GH13 - glucosidase from weissella cibaria uncommonly acts on short-chain maltooligosaccharides[J]. Acta Crystallogr D Struct Biol, 2021, 77(8): 1064–1076. [CrossRef] [PubMed] [Google Scholar]
- Mhd O.N.A., Frank J., Kruger J., Dal B.F., et al. Effects of high intakes of fructose and galactose, with or without added fructooligosaccharides, on metabolic factors, inflammation, and gut integrity in a rat model[J]. Molecular Nutrition & Food Research, 2021, 65(6). [Google Scholar]
- Xu P., Xu M.B. Damage mechanism of oil-based drilling fluid flow in seepage channels for fractured tight sandstone gas reservoirs[J]. Geofluids, 2019, 2019: 1–15. [CrossRef] [Google Scholar]
- Ni W.J., Wang W.L., Wang Q.C., Du W.C., Chen G. Modification and application of waste shaddock peel as a green additive for water-based drilling fluid[J]. Journal of Biobased Materials and Bioenergy, 2021, 15(3): 380–384. [CrossRef] [Google Scholar]
- Du W.C., Wang X.Y., Kang L.X., Su Y., Huang X.B., Chen G., Zhang J. Application of carboxymethylated carob bean gum as eco-friendly water-based drilling fluids addiyive[J]. Revue Roumaine De Chimie, 2020, 65(4): 387–393. [CrossRef] [Google Scholar]
- Gu X.F., Hu W.M., Zhang F., Du W.C., Zhang Q., Zhang J., Zhang Y.M., Chen G. Phospholipids Polysaccharide and its application as inhibitive drilling fluid additive[J]. IOP Conference Series: Materials Science and Engineering, 2018, 322(3). [Google Scholar]
- Liu X.X., Gao L., Wang Q.C., Du W.C., Gu X.F., Chen G., Zhang J. Evaluation and application of PEG as lubricant in water-based drilling fluid for horizontal well in Sulige Gas Field[J]. Polymer International. 2021, 70, 83–89. [CrossRef] [Google Scholar]
- Jing Y.T., Zhang J., Du W.C., Hu W.M., Xie J., Qu C.T., Chen G. Preparation and evaluation of ammoniumsuccinic salts as shale swelling inhibitor and its application in water-based drilling fluid[J]. Russian Journal of Physical Chemistry B. 2021, 15, 102–108. [Google Scholar]
- Wang S., Shu Z.H., Chen L.Y., Yan P., Li B., Yuan C.P., Jian L.M. Low temperature green nano-composite vegetable-gum drilling fluid[J]. Applied Nanoscience, 2019, 9(7): 1579–1591. [CrossRef] [Google Scholar]
- Montesdeoca V.A., Janssen A.E.M., Boom R.M., Van P.A. Fine ultrafiltration of concentrated oligosaccharide solutions - Hydration and pore size distribution effects[J]. Journal of Membrane Science, 2019, 580: 161–176. [CrossRef] [Google Scholar]
- Du W.C., Wang X.Y., Liu M., Bi T.F., Song S.X., Zhang J., Chen G. Synthesis and performance of AM/SSS/THDAB as clay hydration dispersion inhibitor[J]. Polimeros, 2019, 29(4), e2019053. [CrossRef] [Google Scholar]
- Zhang R.J., Gao L., Duan W.G., Hu W.M., Du W.C., Gu X.F., Zhang J., Chen G. The Application of ferric chloride-lignin sulfonate as shale inhibitor in waterbased drilling fluid[J]. Molecules, 2019, 24(23): 4331–4339. [CrossRef] [Google Scholar]
- Du W.C., Wang X.Y., Bi T.F., Liu M., Zhang J., Chen G. Synthesis and inhibitive mechanism of a novel clay hydration inhibitor for water-based drilling fluids[J]. Materials Science-Medziagotyra, 2021, 27(2): 128–142. [Google Scholar]
- Sun X., Liu J., Li C., An Z.J. Synthesis and properties evaluation of organic clay for biodiesel-based drilling fluid[J]. Fresenius Environmental Bulletin, 2021, 30(11): 12268–12276. [Google Scholar]
- Hata Y., Yoneda S., Tanaka S., Sawada T., Serizawa T. Structured liquids with interfacial robust assemblies of a nonionic crystalline surfactant[J]. Journal of Colloid and Interface Science, 2021, 590: 487–494. [CrossRef] [PubMed] [Google Scholar]
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