[1] Nagtode V S, Cardoza C, Yasin H K A, et al. Green surfactants (biosurfactants) : A petroleum-free substitute for sustainability-comparison, applications, market, and future prospects [J]. ACSOmega, 2023, 8(13) : 11674-11699.
[2] Wang T F, Chang D J, Huang D, et al. Application of surfactants in papermaking industry and future development trend of green surfactants[J]. Applied Microbiology and Biotechnology, 2021, 105(20) : 7619-7634.
[3] Forgiarini A M, Marquez R, Salager J L. Formulation improvementsin theapplicationsofsurfactant-oil-watersystems using the HLD N approach with extended surfactant structure [J]. Molecules, 2021, 26(12) : 3771.
[4] 秦恩博 , 周磊 , 王珏 , 等. 季铵盐阳离子表面活性剂的合成与性 能研究[J]. 日用化学工业(中英文) , 2025, 55(1) : 49-54.
[5] Nayak SK, BeheraGR, MishraPC, etal. Biodieselvsdiesel: A race for the future[J]. Energy SourcesPartA: Recovery, Utilization, and Environmental Effects, 2017, 39(14) : 1453- 1460.
[6] SilitongaAS, Mahlia T M I, Ong H C, etal. A comparative study of biodiesel production methods for Reutealis trisperma biodiesel[J]. Energy Sources PartA: Recovery, Utilization, and EnvironmentalEffects, 2017, 39(20) : 2006-2014.
[7] YangZY, ShahK, Pilon-McCulloughC, etal. Characterization of renewable diesel, petroleum diesel and renewable diesel/biodiesel/ petroleum diesel blends [J]. Renewable Energy, 2024, 224: 120151.
[8] Jin Y M, Tian SL, GuoJ L, etal. Synthesis, characterization and exploratory application of anionic surfactant fatty acid methylester sulfonate from waste cooking oil[J]. Journal of Surfactantsand Detergents, 2016, 19(3) : 467-475.
[9] Russo V, Milicia A, Di Serio M, et al. Falling film reactor modelling for sulfonation reac tions[J]. Chemical Engineering Journal, 2019, 377: 120464.
[10] 陈虹霞 , 王成章 , 叶建中 , 等. 漆蜡脂肪酸甲酯磺酸盐的制备 及其性能研究[J]. 中国油脂 , 2014, 39(5) : 37-40.
[11] LiuX, YangL X, Chen R, etal. Continuous alkylation of1, 3,5-trihydroxy-2,4, 6-trinitrobenzene in microreactor: Process intensification and reaction kinetics[J]. Chemical Engineering Journal, 2024, 495: 153544.
[12] 张经纬 , 周弋惟 , 陈卓 , 等. 微反应器内的有机合成前沿进展 [J]. 化工学报 , 2022, 73(8) : 3472-3482.
[13] 李亚婷 , 王忠东 , 董艳鹏 , 等. 微通道中毛细流动及其工程应 用的研究进展[J]. 化工学报 , 2024, 75(1) : 159-170.
[14] 王宜飞 , 王清强 , 姬德生 , 等. 微通道壁面浸润性对气-液两相 流的影响规律研究[J]. 化工学报 , 2022, 73(4) : 1501-1514+ 1410.
[15] XieTM, ZengCF, Wang CQ, etal. Preparation ofmethyl ester sulfonates based on sulfonation in a falling film microreactor from hydrogenated palm oil methyl esters with gaseous SO3 [ J ]. Industrial & Engineering Chemistry Research, 2013, 52(10) : 3714-3722.
[16] 胡恒 , 徐娜 , 李梓良 , 等. T型微反应器中合成脂肪酸甲酯磺 酸盐动力学及工艺优化[J]. 化工进展 , 2024, 43(12) : 6634- 6644.
[17] Xu N, Yu J P, Zhang L Q, et al. Study on gas-liquid sulfonation reaction under annular flow pattern in micro- reactor : Mechanism, model and process optimization[J]. ChemicalEngineeringJo urnal, 2024, 498: 155611.
[18] ZhangKZ, WangK, WangXT. Catalyticdehydrationofsorbitol to isosorbide over sulfonated phenolic resins with surface hydrophobicmodification[J]. New JournalofChemistry, 2024, 48 (19) : 8860-8867.
[19] DerisN H, Rashid U, SoltaniS, et al. Study the effect of various sulfonation methods on catalytic activity of carbohydrate-derived catalysts for ester production [ J ]. Catalysts , 2020, 10(6) : 638.
[20] Bode-OlajideFB, YusuffAS, Adesina O A, etal. Influence of process conditions on the sulfonation of methyl ester synthesized from used cooking oil: Optimization by Taguchi approac h[J]. JournalofSurfactants and Detergents, 2023, 26 (5) : 633-643.
[21] YusuffAS, Bode-OlajideFB. Comparingtheperformancesof different sulfonating agents in sulfonation of methyl esters synthesized from used cooking oil[J]. Tenside Surfactants Detergents, 2023, 60(4) : 277-285.
[22] Lu D P, Zou H, Guan R, et al. Sulfonation of polyethersulfoneby chlorosulfonic acid[J]. Polymer Bulletin, 2005, 54(1) : 21-28.
[23] RawatN, Alam P, Bhonsle A K, et al. Valorization ofused cooking oil into bio-based surfactant: Modeling and optimization using response surface methodology[J]. Biomass Conversion and Biorefinery, 2024.
[24] Roberts D W. Optimisation of the linear alkyl benzene sulfonation process for surfactant manufacture[J]. Organic ProcessResearch & Development, 2003, 7(2) : 172-184.
[25] 张兴珠 , 张玲 , 云志. 降膜式磺化工艺合成脂肪酸甲酯磺酸盐 [J]. 南京工业大学学报(自然科学版) , 2014, 36(1) : 33-38.
[26] ZhaoY, TruhlarD G. TheM06suiteofdensityfunctionalsfor main group thermochemistry, thermochemical kinetics, noncovalent interactions, excited states, and transition elements : two new functionals and systematic testing of four M06-classfunctionalsand 12otherfunctionals[J]. Theoretical ChemistryAccounts, 2008, 120(1) : 215-241.
[27] MarenichAV, CramerCJ, TruhlarD G. Universalsolvation model based on solute electron density and on a continuum modelofthesolventdefinedbythebulkdielectricconstantand atomicsurfacetensions[J]. TheJournalofPhysicalChemistry B, 2009, 113(18) : 6378-6396.
[28] Boys S F, BernardiF. Molecular physics: An international journal at the interface between chemistry and physics[J]. MolecularPhysics , 1970, 19(4) : 553-566.
[29] Grimme S. Supramolecular binding thermodynamics by dispersion-correcteddensity functionaltheory[J]. Chemistry,2012, 18(32) : 9955-9964.
[30] AbooaliD, SoleimaniR. Structure-based modeling of critical micelle concentration (CMC) of anionic surfactants in brine usingintelligent methods[J]. Scientific Reports, 2023, 13: 13361.
[31] HongIK, Kim SI, LeeSB. Effects ofHLB value on oil-in- water emulsions: Droplet size, rheological behavior, zeta- potential, and creaming index[J]. Journal of Industrial and EngineeringChemistry, 2018, 67: 123-131.
[32] GoreAJ, BhagwatSS, MhaskarS, et al. Determination of required HLBvalueandemulsifiersforthepreparationofwater in coconut oil emulsions for application in food process industries [J]. Journal of Dispersion Science and Technology, 2023, 44(8) : 1363-1370.
[33] SoyRC, KipkemboiPK, RopK. Synthesis, characterization, and evaluation of solution properties of sesame fatty methyl ester sulfonate surfactant[J]. ACS Omega, 2020, 5(44) : 28643-28655.
[34] Shi H C. Sulfonation mechanism of benzene with SO3 in sulfuricacidoroleum oraproticsolvent: Obeyingthetransition statetheoryviaatrimolecularelectrophilicsubstitutionclarified bydensityfunctionaltheorycalculation[J]. Computationaland TheoreticalChemistry, 2017, 1112: 111-122.
[35] Smith F D, Stirton A J. The alpha-sulfonation of alkyl palmitates and stearates[J]. Journal of the American Oil Chemists’Society, 1967, 44(7) : 405-406.
[36] Weinland DH, vanderMaasK, WangY, etal. Overcoming the low reactivity of biobased, secondary diols in polyester synthesis[J]. NatureCommunications, 2022, 13: 7370.
[37] Ma X K, Liu B, Dong K, et al. Synthesis of petroleum sulfonate via gas-phase sulfonation in rotating packed bed: Process optimization and interfacial tension-composition relationship[J]. ChemicalEngineering and Processing-Process Intensification, 2021, 169: 108600.
[38] YusuffAS, PorwalJ, Bhonsle A K, etal. Valorization ofused cookingoilasasourceofanionicsurfa ctantfatty acidmethylester sulfonate: Process optimization and characterization studies[J]. BiomassConversionandBiorefinery, 2023, 13(10) : 8903-8914.
[39] 徐一鸣 , 袁华 , 刘素丽 , 等. 微通道反应器中工业混合直链烷 基苯磺酸盐的连续合成工艺研究[J]. 化工学报 , 2022, 73(3) : 1184-1193.
[40] WenZH, JiaoFJ, YangM, etal. Processdevelopmentandscale- upofthecontinuousflownitrationoftrifluoromethoxybenzene[J]. OrganicProcessResearch & Development, 2017, 21(11) : 1843-1850.
[41] AlGhatta A, Aravenas R C, Wu Y J, et al. New biobased sulfonated anionic surfactants based on the esterification of furoic acid and fatty alcohols: A green solution for the replacement of oil derivative surfactants with superior proprieties[J]. ACS Sustainable Chemistry & Engineering, 2022, 10(27) : 8846-8855.
[42] Gaikwad A, Patil P. Kinetics and dynamics of conversion of bambusabamboo into 5-hydroxymethylfurfuralin ionic solvent in batchreactor[J]. BioEnergyResearch, 2024, 17(1) : 346-358.
[43] Yan K, Lu X B, Zhang R, et al. Molecular diffusion in nanoreactors’pore channel system: Measurement techniques, structuralregulation, andcatalyticeffects[J]. Small, 2023, 19 (50) : 2304008.
[44] WaterkampDA, EngelbertM, Thöming J. On the effect of enhanced mass transfer on side reactions in capillary microreactors during high-temperature synthesis of an ionic liquid [J]. Chemical Engineering & Technology, 2009, 32 (11) :1717-1723.
[45] ChenY, YuJY, Yang Y Q, etal. A continuous process for cyclic carbonate synthesis from CO2 catalyzed by the ionic liquid in a microreactor system: Reaction kinetics, mass transfer, and process optimization[J]. Chemical Engineering Journal, 2023, 455: 140670.
[46] Xu W H, Su Y H, Song Y, et al. Process analysis on preparation of cyclobutanetetracarboxylic dianhydride in a photomicroreactorwithin gas-liquidTaylorflow[J]. Industrial & EngineeringChemistryResearch, 2018, 57(7) : 2476-2485.
[47] FengJJ, Yan ZH, SongJ M, etal. Study on the structure- activity relationshipbetween the molecularstructureofsulfate gemini surfactant and surface activity, thermodynamic properties and foam properties[J]. Chemical Engineering Science, 2021, 245: 116857.
[48] SiwayananP, Ban Z H, Zhang X C, et al. α-sulfo fatty methyl estersulfonate: A review on chemistry, processing technologies, performance, andapplicationsinlaundrydetergents[J]. Journalof SurfactantsandDetergents, 2021, 24(3) : 385-399.
[49] AbdMauradZ, Abdullah L C, AnuarM S, et al. The flow behaviorof powder stearin-based methyl ester sulfonates and theeffectofglidant [J]. Particuology, 2023, 80: 148-156.
[50] AbdMauradZ, AbdullahLC, AnuarM S, etal. Preparation, characterization, morphological and particle properties of crystallized palm-based methyl ester sulphonates ( MES) powder [J]. Molecules, 2020, 25(11) : 2629.