[1] TAN C, ZHU Y Q, AHARI H, et al.Sonochemistry:An emerging approach to fabricate biopolymer cross-linked emulsions for the delivery of bioactive compounds[J].Advances in Colloid and Interface Science, 2023, 311:102825.
[2] CUI L J, GUO J X, MENG Z.A review on food-grade-polymer-based O/W emulsion gels:Stabilization mechanism and 3D printing application[J].Food Hydrocolloids, 2023, 139:108588.
[3] TAVASSOLI M, KHEZERLOU A, PUNIA BANGAR S, et al.Functionality developments of Pickering emulsion in food packaging:Principles, applications, and future perspectives[J].Trends in Food Science & Technology, 2023, 132:171-187.
[4] ZHENG J X, GUO Y L, ZHU L X, et al.Cavitation effect in two-dimensional ultrasonic rolling process[J].Ultrasonics, 2021, 115:106456.
[5] CUCHEVAL A, CHOW R C Y.A study on the emulsification of oil by power ultrasound[J].Ultrasonics Sonochemistry, 2008, 15(5):916-920.
[6] LI N, WANG T, YANG X R, et al.Effect of high-intensity ultrasonic treatment on the emulsion of hemp seed oil stabilized with hemp seed protein[J].Ultrasonics Sonochemistry, 2022, 86:106021.
[7] ZHOU L, ZHANG J, XING L J, et al.Applications and effects of ultrasound assisted emulsification in the production of food emulsions:A review[J].Trends in Food Science & Technology, 2021, 110:493-512.
[8] ZHAO Q L, XIE T T, HONG X, et al.Modification of functional properties of Perilla protein isolate by high-intensity ultrasonic treatment and the stability of o/w emulsion[J].Food Chemistry, 2022, 368:130848.
[9] CUI R B, ZHU F.Ultrasound modified polysaccharides:A review of structure, physicochemical properties, biological activities and food applications[J].Trends in Food Science & Technology, 2021, 107:491-508.
[10] MA X B, YAN T Y, HOU F R, et al.Formation of soy protein isolate (SPI)-Citrus pectin (CP) electrostatic complexes under a high-intensity ultrasonic field:Linking the enhanced emulsifying properties to physicochemical and structural properties[J].Ultrasonics Sonochemistry, 2019, 59:104748.
[11] ZHAO C B, YIN H H, YAN J N, et al.Structure and acid-induced gelation properties of soy protein isolate-maltodextrin glycation conjugates with ultrasonic pretreatment[J].Food Hydrocolloids, 2021, 112:106278.
[12] BARRETTO T L, SANCHES M A R, PATEIRO M, et al.Recent advances in the application of ultrasound to meat and meat products:Physicochemical and sensory aspects[J].Food Reviews International, 2023, 39(7):4529-4544.
[13] TAHA A, AHMED E, ISMAIEL A, et al.Ultrasonic emulsification:An overview on the preparation of different emulsifiers-stabilized emulsions[J].Trends in Food Science & Technology, 2020, 105:363-377.
[14] NISHINARI K, FANG Y, GUO S, et al.Soy proteins:A review on composition, aggregation and emulsification[J].Food hydrocolloids, 2014, 39:301-318.
[15] DE OLIVEIRA A P H, OMURA M H, DE ALMEIDA ALVES BARBOSA É, et al.Combined adjustment of pH and ultrasound treatments modify techno-functionalities of pea protein concentrates[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2020, 603:125156.
[16] CEN K Y, YU X, GAO C C, et al.Effects of different vegetable oils and ultrasonicated quinoa protein nanoparticles on the rheological properties of Pickering emulsion and freeze-thaw stability of emulsion gels[J].Journal of Cereal Science, 2021, 102:103350.
[17] MEKALA S, SILVA E K, SALDA?A M D A.Mechanism, kinetics, and physicochemical properties of ultrasound-produced emulsions stabilized by lentil protein:A non-dairy alternative in food systems[J].European Food Research and Technology, 2022, 248(1):185-196.
[18] JADHAV H B, CHOUDHARY P, GOGATE P, et al.Sonication as a potential tool in the formation of protein-based stable emulsion-Concise review[J].Ultrasonics Sonochemistry, 2024, 107:106900.
[19] QAYUM A, CHEN W, MA L, et al.Characterization and comparison of α-lactalbumin pre-and post-emulsion[J].Journal of Food Engineering, 2020, 269:109743.
[20] QIN X L, YANG R, ZHONG J F, et al.Ultrasound-assisted preparation of a human milk fat analog emulsion:Understanding factors affecting formation and stability[J].Journal of Food Engineering, 2018, 238:103-111.
[21] ZHANG S L, TIAN L, YI J H, et al.Impact of high-intensity ultrasound on the chemical and physical stability of oil-in-water emulsions stabilized by almond protein isolate[J].LWT, 2021,149:111972.
[22] MOZAFARPOUR R, KOOCHEKI A, NICOLAI T.Modification of grass pea protein isolate (Lathyrus sativus L.) using high intensity ultrasound treatment:Structure and functional properties[J].Food Research International, 2022, 158:111520.
[23] CHEN L, ZHANG S B.Structural and functional properties of self-assembled peanut protein nanoparticles prepared by ultrasonic treatment:Effects of ultrasound intensity and protein concentration[J].Food Chemistry, 2023, 413:135626.
[24] LI K, LI Y, LIU C L, et al.Improving interfacial properties, structure and oxidative stability by ultrasound application to sodium caseinate prepared pre-emulsified soybean oil[J].LWT, 2020, 131:109755.
[25] SILVA M, ZISU B, CHANDRAPALA J.Stability of oil-water primary emulsions stabilised with varying levels of casein and whey proteins affected by high-intensity ultrasound[J].International Journal of Food Science & Technology, 2021, 56(2):897-908.
[26] QAMAR S, BHANDARI B, PRAKASH S.Effect of different homogenisation methods and UHT processing on the stability of pea protein emulsion[J].Food Research International, 2019, 116:1374-1385.
[27] YANG M, ZHANG Z L, HE Y, et al.Study on the structure characterization and moisturizing effect of Tremella polysaccharide fermented from GCMCC5.39[J].Food Science and Human Wellness, 2021, 10(4):471-479.
[28] TANG Q L, HUANG G L.Improving method, properties and application of polysaccharide as emulsifier[J].Food Chemistry, 2022, 376:131937.
[29] RAOUFI N, KADKHODAEE R, FANG Y P, et al.Ultrasonic degradation of Persian gum and gum tragacanth:Effect on chain conformation and molecular properties[J].Ultrasonics Sonochemistry, 2019, 52:311-317.
[30] LI Y J, XIANG D, WANG B, et al.Oil-in-water emulsions stabilized by ultrasonic degraded polysaccharide complex[J].Molecules, 2019, 24(6):1097.
[31] ZHANG L F, LI Y X, SUN X Y, et al.The droplet breakup model and characteristics of pH-shifted peanut protein isolate-high methoxyl pectin stabilised emulsions under ultrasound[J].Ultrasonics Sonochemistry, 2023, 94:106340.
[32] WANG C, QIU W Y, CHEN T T, et al.Effects of structural and conformational characteristics of Citrus pectin on its functional properties[J].Food Chemistry, 2021, 339:128064.
[33] LI X, SHA X M, YANG H S, et al.Ultrasonic treatment regulates the properties of gelatin emulsion to obtain high-quality gelatin film[J].Food Chemistry:X, 2023, 18:100673.
[34] ZHANG K M, MAO Z J, HUANG Y C, et al.Ultrasonic assisted water-in-oil emulsions encapsulating macro-molecular polysaccharide chitosan:Influence of molecular properties, emulsion viscosity and their stability[J].Ultrasonics Sonochemistry, 2020, 64:105018.
[35] WEI X L, LI J, EID M, et al.Fabrication and characterization of emulsions stabilized by tannic acid-wheat starch complexes[J].Food Hydrocolloids, 2020, 107:105728.
[36] HUANG M G, WANG J, TAN C, et al.Modulating the functional properties of protein-stabilized Pickering emulsion by inulin, xanthan gum and chitosan[J].Food Bioscience, 2023, 55:103063.
[37] FENG X, DAI H J, YU Y, et al.Adjusting the interfacial property and emulsifying property of cellulose nanofibrils by ultrasonic treatment combined with gelatin addition[J].Food Hydrocolloids, 2022, 133:107905.
[38] MEIRELLES A A D, COSTA A L R, CUNHA R L.The stabilizing effect of cellulose crystals in O/W emulsions obtained by ultrasound process[J].Food Research International, 2020, 128:108746.
[39] LIANG Q F, ZHOU C W, REHMAN A, et al.Improvement of physicochemical properties, microstructure and stability of Lotus root starch/xanthan gum stabilized emulsion by multi-frequency power ultrasound[J].Ultrasonics Sonochemistry, 2023, 101:106687.
[40] FENG X, WANG W Y, CHU Y F, et al.Effect of cinnamon essential oil nanoemulsion emulsified by OSA modified starch on the structure and properties of pullulan based films[J].LWT, 2020, 134:110123.
[41] LIU Y X, LIANG Q F, LIU Y, et al.Sodium caseinate/pectin complex-stabilized emulsion:Multi-frequency ultrasound regulation, characterization and its application in quercetin delivery[J].Food Hydrocolloids, 2024,156:110316.
[42] TAVASOLI S, MAGHSOUDLOU Y, SHAHIRI TABARESTANI H, et al.Changes in emulsifying properties of caseinate-soy soluble polysaccharides conjugates by ultrasonication[J].Ultrasonics Sonochemistry, 2023, 101:106703.
[43] QAYUM A, RASHID A, LIANG Q F, et al.Multi-scale ultrasound induced composite coacervates of whey protein and pullulan polysaccharide on emulsion forming and stabilizing mechanisms[J].Colloids and Surfaces B:Biointerfaces, 2024, 234:113709.
[44] AKSOY Z, ERSUS S.The comparative studies on the physicochemical properties of mung bean protein isolate–polysaccharide conjugates prepared by ultrasonic or controlled heating treatment[J].Biocatalysis and Agricultural Biotechnology, 2023, 50:102690.
[45] LI K, WANG J Y, ZHAO P F, et al.Effect of ultrasound-assisted Maillard reaction on glycosylation of goat whey protein:Structure and functional properties[J].Food Chemistry, 2024, 441:138292.
[46] WANG T, WANG N, LI N, et al.Effect of high-intensity ultrasound on the physicochemical properties, microstructure, and stability of soy protein isolate-pectin emulsion[J].Ultrasonics Sonochemistry, 2022, 82:105871.
[47] MA K Y, ZHANG L F, SUN X Y, et al.Correlationship between self-assembly behavior and emulsion stabilization of pea protein-high methoxyl pectin complexes treated with ultrasound at pH 2.0[J].Ultrasonics Sonochemistry, 2023, 100:106596.
[48] GAO T X, ZHAO X, LI R, et al.Synergistic effects of polysaccharide addition-ultrasound treatment on the emulsified properties of low-salt myofibrillar protein[J].Food Hydrocolloids, 2022, 123:107143.
[49] XU L P, YAN W Q, ZHANG M, et al.Application of ultrasound in stabilizing of Antarctic krill oil by modified chickpea protein isolate and ginseng saponin[J].LWT, 2021, 149:111803.
[50] LU X, CHEN J H, ZHENG M J, et al.Effect of high-intensity ultrasound irradiation on the stability and structural features of coconut-grain milk composite systems utilizing maize kernels and starch with different amylose contents[J].Ultrasonics Sonochemistry, 2019, 55:135-148.
[51] ALBANO K M, CAVALLIERI Â L F, NICOLETTI V R.Electrostatic interaction between soy proteins and pectin in O/W emulsions stabilization by ultrasound application[J].Food Biophysics, 2020, 15(3):297-312.
[52] CABEZAS D M, PASCUAL G N, WAGNER J R, et al.Nanoparticles assembled from mixtures of whey protein isolate and soluble soybean polysaccharides.Structure, interfacial behavior and application on emulsions subjected to freeze-thawing[J].Food Hydrocolloids, 2019, 95:445-453.
[53] SONG X Y, ZHENG F, MA F L, et al.The physical and oxidative stabilities of Pickering emulsion stabilized by starch particle and small molecular surfactant[J].Food Chemistry, 2020, 303:125391.
[54] SILVA M, ANH BUI T H, DHARMADANA D, et al.Ultrasound-assisted formation of double emulsions stabilized by casein-whey protein mixtures[J].Food Hydrocolloids, 2020, 109:106143.
[55] LI X, QI B K, ZHANG S, et al.Effects of homogeneous and ultrasonic treatment on casein/phosphatidylcholine complex-emulsions:Stability and bioactivity insights[J].Ultrasonics Sonochemistry, 2023, 97:106457.
[56] 李滢溪. 超声构建花生分离蛋白-果胶乳液体系及其稳定机制研究[D].郑州:河南工业大学,2023.
LI Y X.Study on ultrasound construction of peanut protein isolate-pectin emulsion system and itsstabilization mechanism[D].Zhengzhou:Henan University of Technology,2023.
[57] CALLIGARIS S, PLAZZOTTA S, VALOPPI F, et al.Combined high-power ultrasound and high-pressure homogenization nanoemulsification:The effect of energy density, oil content and emulsifier type and content[J].Food Research International, 2018, 107:700-707.
[58] PASQUEL REÀTEGUI J L, BARRALES F M, REZENDE C A, et al.Production of copaiba oleoresin particles from emulsions stabilized with modified starches[J].Industrial Crops and Products, 2017, 108:128-139.
[59] NYUYDZE C, MARTÍNEZ-MONTEAGUDO S I.Role of soy lecithin on emulsion stability of dairy beverages treated by ultrasound[J].International Journal of Dairy Technology, 2021, 74(1):84-94.
[60] SIVA S P, KOW K W, CHAN C H, et al.Prediction of droplet sizes for oil-in-water emulsion systems assisted by ultrasound cavitation:Transient scaling law based on dynamic breakup potential[J].Ultrasonics Sonochemistry, 2019, 55:348-358.
[61] JULIAN MCCLEMENTS D, RAO J J.Food-grade nanoemulsions:Formulation, fabrication, properties, performance, biological fate, and potential toxicity[J].Critical Reviews in Food Science and Nutrition, 2011, 51(4):285-330.
[62] SHI L S, YANG X Y, GONG T, et al.Ultrasonic treatment improves physical and oxidative stabilities of walnut protein isolate-based emulsion by changing protein structure[J].LWT, 2023, 173:114269.
[63] WANG N, WANG D H, XING K W, et al.Ultrasonic treatment of rice bran protein-tannic acid stabilized oil-in-water emulsions:Focus on microstructure, rheological properties and emulsion stability[J].Ultrasonics Sonochemistry, 2023, 99:106577.
[64] TANG S Q, DU Q H, LI Y, et al.Effect of pH on the structure and emulsification properties of ultrasonicated water-soluble protein from Moringa oleifera seed[J].International Journal of Food Science & Technology, 2024, 59(1):627-638.
[65] 王中江, 常宗明, 张翠, 等.超声波及高压均质制备大豆蛋白-磷脂酰胆碱纳米乳液的特性比较[J].中国食品学报, 2019, 19(8):157-165.
WANG Z J, CHANG Z M, ZHANG C, et al.Comparison of the characteristic of soybean protein-phosphatidylcholine nanoemulsion by ultrasound and high pressure homogenization[J].Journal of Chinese Institute of Food Science and Technology, 2019, 19(8):157-165.
[66] TAO Y, CAI J M, WANG P, et al.Exploring the relationship between the interfacial properties and emulsion properties of ultrasound-assisted cross-linked myofibrillar protein[J].Food Hydrocolloids, 2024, 146:109287.
[67] FU Q Q, SHI H B, ZHOU L, et al.Effects of ultrasound power on the properties of non‐salt chicken myofibrillar protein emulsions[J].International Journal of Food Science & Technology, 2022, 57(4):2523-2534.
[68] WANG K, LIU H, SUN J X.Improved gelling and emulsifying properties of chicken wooden breast myofibrillar protein by high-intensity ultrasound combination with pH-shifting[J].Poultry Science, 2023, 102(11):103063.