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℁ੳ৮ࡃ⮱ DDBAC ᄼγ̭͗䛼㏔喑Ȗ CMC ᄼ㏓ and properties of rosin-based decomposable surfactants[J]. Fine
Chemicals (㏳ࡃጒ), 2018, 35(6): 964-969.
10 mN/mȡTABC হ TAMI ⮱ 0 min ∎⇘倅Ꮣܳݘͧ [14] WANG N (⢸ẍ), ZHANG P P (ᑍᎠᎠ), CHEN Z H (䭵䗾Ⴜ). et al.
76.62 হ 82.77 mm喑⽠∎ᕔ㘪ͧ 0.85 হ 0.87喑䄡ᬻ Green synthesis and properties evaluation of coconut oil acyl
aromatic amino acid salts[J]. Fine Chemicals (㏳ࡃጒ), 2021,
ι㔲∎⇘ᕔ㘪হ⽠∎ᕔ㘪㞜ສ喠㔹 TAO ⮱∎⇘ᕔ㘪
38(11): 2305-2311.
̺Ҡȡ [15] SONG B L (Ⴘ㪫), YU X N (҆ᄼཉ), CHEN Y (䭵✂), et al.
Synthesis and properties of rosin-based gemini surfactants with
喍3喎Ꮑ⩕ᕔ㘪侹㐀㶕ᬻ喑ౕⴠ㱎-ⅡҀ㈨͚
amide group[J]. Chemistry and Industry of Forest Products (᳄ϔࡃ
TAO ⮱Πࡃᬣ䬡ͧ 581.0 s喑Πࡃᕔ㘪㞜ສ喠ѻ∎ಸ ႓̻ጒ͇), 2015, 35(6): 39-46.
⮱ TAO ڤᰶᰡᑧ⮱Πࡃ㘪߈喑䔆̭➦◦Ҭڣౕ [16] FENG G Z (ۜٶ◤), CUI Y D (ቁ㠞ᓤ), LU K (). et al.
Preparation and properties of dimeric fatty acid/polyethylene glycol
䭲Ꮑ⩕̷ڤᰶᒵ๔⒉߈ȡ㶕䲏≨ᕔݯ TAOȠTAMI polyester terminated with rosin acid[J]. Chemistry and Industry of
⮱ HLB թܳݘ᭜ 10.7 হ 11.5喑जВ⩕λ O/W ಸΠ Forest Products (᳄ϔࡃ႓̻ጒ͇), 2006, 26(2): 7-12.
[17] MAO P K (℈ദ). Industrial analysis of surfactant products[M].
ࡃݯ喑TABC ⮱ HLB թ᭜ 8.2喑जВ⩕λ⋓⎬ݯȡ Beijing: Chemical Industry Press (ࡃ႓ጒ͇ܧ❵), 2003: 430-433,
TAOȠTABC হ TAMI ⮱ោⅡ⽠Ⴧᕔܳݘͧ 4 ㏔Ƞ 447-450.
[18] LI Y X (ᱻ䔉ૉ). Calculation and application of hydrophile-lipophile
5 ㏔হ 5 ㏔ȡTAOȠTABC হ TAMI ⮱⏣㘪߈ܳݘ banlance for ionic surfactants by configuration fragment method[D].
᭜ 100Ƞ125 হ 125 mL/molȡ Xiangtan: Xiangtan University (⎅⒚๔႓), 2008.
[19] WU J, YAN F, JIA Q, et al. QSPR for predicting the hydrophile-
喍4喎ើ㣹侹㶕ᬻ喑ើ㣹≨ᕔϻᄼݝ๔䶧Ꮌͧ lipophile balance (HLB) of non-ionic surfactants[J]. Colloids and
TAO < TAMI < TABCȡើ㣹≨ᕔᰭ倅⮱ TABC ᄦ䛾 Surfaces A: Physicochemical and Engineering Aspects, 2020, 611:
125812.
叱㞟㦎㤱⤰㣹⮱ើ㣹⢴ͧ 99.99%喑䄡ᬻ TABC ౕើ [20] SHI Y J, YAN F Y, JIA Q Z, et al. Norm descriptors for predicting
㣹䲏⮱Ꮑ⩕թᓄ䔈̭ₒ⌞ڒⵁ⾣ȡ the hydrophile-lipophile balance (HLB) and critical micelle
concentration (CMC) of anionic surfactants[J]. Colloids and Surfaces
࣯㔰᪴⡛喟 A: Physicochemical and Engineering Aspects, 2019, 583: 123967.
[21] BAO Y (冺㞠), LIU P (݅Ⱙ), GUO J J (䘚ҠҠ). Physicochemical
[1] MARZEC K M, REVA I, FAUSTO R, et al. Conformational space and antibacterial properties of quaternary ammonium organic silicon
and photochemistry of Į-terpinene[J]. Journal of Physical Chemistry Gemini surfactants[J]. Fine Chemicals (㏳ࡃጒ), 2018, 35(8):
A, 2010, 114(17): 5526-5536. 1306-1312.
[2] YIN T Y Y (࢝㬑ٰ̭). Practical knowledge of spices[M]. Beijing: [22] LI M C (ᱻᬻ᭒), ZHOU S Q (কⰈڕ), XIN M H (䓈ᶲࡻ), et al.
China Light Industry Press (͚ప䒨ጒ͇ܧ❵), 1987: 9-12. Synthesis and antimicrobial activity of N-long chitosan quaternary
[3] THOMSETT M R, MOORE J C, BUCHARD A, et al. New ammonium salt[J]. Functional Materials (ߌ㘪ᱽ᫆). 2012, 17(43):
renewably-sourced polyesters from limonene-derived monomers[J]. 2338-2342.
Green Chemistry, 2019, 21(1): 149-156. [23] LIN Q Y (᳄ξ), DU G W(ٶ᪴). Experimental study on
[4] NIE Y M, CHAI K G, SHI Z W, et al. Investigation on the synthesis antimicrobial effect of nano antibacterial disk[J]. Chinese Journal of
of Į-terpinene and maleic anhydride adduct catalyzed by Health Laboratory Technology (͚ప࢘⩌ᷭ侹ᱯᔄ), 2005, 15(2):
heteropolyacid[C]// Natural Resources and Sustainable Development. 211-212.
Part 1. Trans Tech Publications, 2011: 1040-1042. [24] LIU S G, DING Y Q, LI P F, et al. Adsorption of the anionic dye
[5] LI J (ᱻ֒), LU Z G (䭳ࢍప), LIU N (݅Ⴎ), et al. Study on congo red from aqueous solution onto natural zeolites modified with
cycloaddition between terpinene and maleic anhydride[J]. Chemistry N, N-dimethyl dehydroabietylamine oxide[J]. Chemical Engineering
and Industry of Forest Products (᳄ϔࡃ႓̻ጒ͇), 2006, 26(3): 93-96. Journal, 2014, 248: 135-144.
[6] LIU K (݅), WANG T X (⢸ᴅ㫗), JIANG L H (㦸ͪ㏏). et al. [25] JANG M Q (㦸ᬻ䅓), DAI C C (ᝡ㤰䓝). A quantitative relationship
Research progress on application of turpentine[J]. Science & between molecular structure and chemical reactivity—I. Inductive
Technology in Chemical Industry (ࡃጒឭ), 2013, 21(5): 64-68. effect in non-conjugated systems[J]. Acta Chimica Sinica (ࡃ႓႓
[7] KOLICHESKI M B, COCCO L C, MITCHELL D A, et al. Synthesis ្), 1962, 28(5): 275-332.
of myrcene by pyrolysis of ȕ-pinene: Analysis of decomposition [26] XIAO J X (㗃䔈), ZHAO Z G (䊢ᡜప). Principle of surfactant
reactions[J]. Journal of Analytical & Applied Pyrolysis, 2007, 80(1): application[M]. 2th. Beijing: Chemical Industry Press (ࡃ႓ጒ͇ܧ
92-100. ❵), 2015: 309-315.
[8] HOU Y (Ӝᗓ). Application and development of surfactant[J]. Science [27] CHEN R Q (䭵㢐౨). Surfactant chemistry and application[M].
and Technology (ឭᆂ᱈). 2016, 26(5): 128-130. Beijing: China Textile & Apparel Press (㏧㏴ጒ͇ܧ❵), 1990:
[9] SAR P, GHOSH A, SCARSO A. et al. Surfactant for better tomorrow: 216-220, 210-212, 224-236.
Applied aspect of surfactant aggregates from laboratory to [28] AI L L (㞫⿸⣟), LIU M (݅ᬻ), NIE Z G (㕯ᔄప), et al.
industry[J]. Research on Chemical Intermediates, 2019, 45(12): Preparation and properties of N, N-diethyl octadecyl amine oxide[J].
6021-6041. Chemical Research and Application (ࡃ႓ⵁ⾣̻Ꮑ⩕), 2020,
[10] ZHANG M (ᑍ᩼). Studies on synthesis and properties of chitosamine 32(10): 1789-1794.
surfactants[D]. Qingdao: Qingdao University of Science & [29] CHEN Y J (䭵䉨䭣), GUO Q H (䘚Ꮃࡻ). Effect of alcohol on the
Technology (䱿ᇈឭ๔႓), 2012. surface properties of lauryl benzalkonium chloride[J]. China Surfactant
[11] WU K(ॡ⣯), LU Z W(厬ₐͧ), GE X(㦈), et al. Pyrrolidone Detergent & Cosmetics (ᬒ⩕ࡃ႓ጒ͇), 1997, 2(2): 54-55.
citrate used for thickening of amino acid surfactants[J]. Fine [30] CAO Y P (ᰦ⢶), YANG W G(Ვьٶ), JIANG Y J(༉χ∮), et al.
Chemicals(㏳ࡃጒ), 2021, 38(8): 1582-1589, 1620. Synthesis and properties of zwitterionic Gemini surfactants[J].Fine
[12] LIN H X, YANG M S, LI J, et al. A novel bola-type rosin-based Chemicals(㏳ࡃጒ), 2021, 38(2): 335-340.
functional surfactant and its synergistic effect with natural surfactant [31] ZHAO G X (䊢ప⣧). Principle of surfactant action[M]. Beijing:
saponin[J]. Journal of Surfactants and Detergents, 2017, 20(5): China Light Industry Press (͚ప䒨ጒ͇ܧ❵), 2003: 199-203,
1205-1212. 535-537.
[13] LI J (ᱻཌ), YANG M S (Ვᬻ⩌), TIAN C (⩝䊲), et al. Synthesis 喍̸䒙す 877 䶢喎