Spectroscopy and Spectral Analysis, Volume. 42, Issue 9, 2666(2022)
Research Progress in Quantitative Determination of Phenolic Hydroxyl Groups in Lignin
[1] Li X, Pu Y, Xiao C W et al[D]. Renew. Sust. Energ. Rev., 127, 109857(2020).
[2] Dhar P, Teja V, Vinu R[D]. J. Environ. Chem. Eng., 8, 104286(2020).
[3] Feizi Z H, Kazzaz A E[D]. Fatehi P. Green Chem, 21, 5714(2019).
[4] Liu X L, Ren S X, Zhao G F et al[D]. Ind. Crops Prod., 125, 468(2018).
[6] Butler J P, Czepiel T P[D]. Anal. Chem., 28, 1468(1956).
[8] Kaiser K, Yan G[D]. Anal. Chim. Acta, 1023, 74(2018).
[9] Argyropoulos D S, Gaspar A R, Li H Y et al[D]. Bioorg. Med. Chem., 14, 4017(2006).
[10] Bardet M, Gellerstedt G, Robert D[D]. Nord. Pulp. Pap. Res. J., 1, 18(1986).
[11] Li S, Lundquist K[D]. Lundquist K. Nord. Pulp. Pap. Res. J., 9, 191(1994).
[12] Cui P, Fang H X, Qian C[D]. Chromatographia, 84, 109(2021).
[13] Månsson B P[D]. Holzforschung, 37, 143(1983).
[14] Guo X P, Lai Y Z[D]. Wood Sci. Technol., 25, 467(1991).
[17] Pobiner H[D]. Anal. Chim. Acta, 155, 57(1983).
[19] Esakkimuthu E S, Marlin N, Serrano L et al[D]. Energy and Fuels, 32, 5969(2018).
[20] Goldschmid O[D]. Anal. Chem, 26, 1421(1954).
[21] Ahola J, Goldmann W M, Mankinen O et al[D]. Period. Polytech-Chem. Eng., 61, 93(2016).
[22] Wang J, Wang X P, Zhang H et al[D]. Wood Sci. Technol., 54, 837(2020).
[23] Bononi F C, Chen Z K, Rocca D et al[D]. J. Phys. Chem. A, 124, 9288(2020).
[25] Haz A, Jablonsky M, Kocis J et al[D]. Cell Chem. Technol., 49, 267(2015).
[27] Fang G, Liu L, Zhang S et al[D]. Polymers, 9, 279(2017).
[28] Arnezeder D, Kamm B, Süss R et al[D]. Can. J. Chem. Eng., 100, S38(2022).
[29] Brown R C, Rover M R[D]. J. Anal. Appl. Pyrolysis, 104, 366(2013).
[31] Lidén G, Sandahl M, Sun M Z et al[D]. J. Sep. Sci., 39, 3123(2016).
[32] Fitznar H P, Kattner G, Lobbes J M[D]. Anal. Chem, 71, 3008(1999).
[34] Drakenberg T, Tamminen T, Tiainen E et al[D]. Holzforschung, 53, 529(1999).
[38] Ben H, Crestini C, Meng X et al[D]. Nat. Protoc., 14, 2627(2019).
[39] Belesov A V, Faleva A V, Kozhevnikov A Y et al[D]. Int. J. Biol. Macromol., 166, 913(2021).
[40] Hu H Q, Lu Y, Lu Y C et al[D]. J. Spectrosc., 2017, 8951658(2017).
[41] Balakshin M Y, Capanema E A, Kadla J F[D]. J. Agric. Food Chem., 52, 1850(2004).
[43] Brochier-Salon M C, Esakkimuthu E S, Marlin N et al[D]. Molecules, 25, 3211(2020).
[44] Esakkimuthu E S[D]. [MS Dissertation]. France: Université Grenoble Alpes(2020).
[45] Li X F, Ma X K, Zhang J Y et al[D]. Molecules, 25, 115(2020).
[46] Nerland D E, Pierce W M[D]. J. Anal. Toxicol., 12, 344(1988).
[47] Farajzadeh M A, Khorram P, Nouri N[D]. Trac-Trend. Anal. Chem., 55, 14(2014).
[49] Guo X P, Lai Y Z, Situ W[D]. J. Wood. Chem. Technol., 10, 365(1990).
Get Citation
Copy Citation Text
Peng-hui LI, Zheng-wei JIANG, Jia-quan LI, Jian-peng REN, Wen-juan WU. Research Progress in Quantitative Determination of Phenolic Hydroxyl Groups in Lignin[J]. Spectroscopy and Spectral Analysis, 2022, 42(9): 2666
Category: Orginal Article
Received: Jun. 26, 2021
Accepted: Aug. 9, 2021
Published Online: Nov. 17, 2022
The Author Email: Peng-hui LI (2580981649@qq.com)