[1] 赵旭,张欣珂,陈新军,等.葡萄酒中的酚类物质Ⅱ:辅色效应与生物活性研究进展[J].食品科学,2019,40(17):284-294. [2] 刘谖. 红酒人生[J].经济视角,2011(5):50-53. [3] 陈鑫龙,张媛媛,徐令斌,等.用多酚类指标表征干红葡萄酒味感质量的模型构建[J].农业工程学报,2024,40(8):281-289. [4] 游蕴竹,张亚蕾,杨薇熹,等.我国五个产区‘赤霞珠’和‘美乐’干红葡萄酒的香气特征差异解析[J].中国酿造,2024,43(4):29-38. [5] ROCHA-PARRA D F, LANARI M C, ZAMORA M C, et al. Influence of storage conditions on phenolic compounds stability, antioxidant capacity and colour of freeze-dried encapsulated red wine[J]. LWT-Food science and technology, 2016, 70: 162-170. [6] MARQUEZ A, SERRATOSA M P, LOPEZ-TOLEDANO A, et al.Colour and phenolic compounds in sweet red wines from Merlot and Tempranillo grapes chamber-dried under controlled conditions[J]. Food chemistry, 2012, 130(1): 111-120. [7] 常甜甜. 干红葡萄酒中酚类物质和抗氧化性的研究[D].山东烟台:烟台大学,2020. [8] HE F, MU L, YAN G L, et al.Biosynthesis of anthocyanins and their regulation in colored grapes[J]. Molecules, 2010, 15(12): 9057-9091. [9] 范文来,徐岩,李记明,等.应用HS-SPME技术分析葡萄果皮与果肉挥发性香气物质[J].食品与发酵工业,2011,37(12):113-118. [10] 丁建才. 河北昌黎产区干红葡萄酒品质及真菌群落多样性的比较研究[D].江苏扬州:扬州大学,2021. [11] 李雨陶,何怀华,曹圆,等.贺兰山东麓不同红葡萄品种与葡萄酒花色苷组分分析[J].中国酿造,2024,43(5):47-52. [12] 王巧莉. 贺兰山东麓5个红色酿酒葡萄品种的果实与葡萄酒品质比较研究[D].银川:宁夏大学,2021. [13] 周鹤,张佳佳,时蒙蒙,等.冷浸渍时间和发酵温度对西拉桃红葡萄酒品质的影响[J].中国酿造,2022,41(6):178-183. [14] 赵旗峰,谭伟,董志刚,等.‘品丽珠’、‘西拉’和‘黑比诺’3个酿酒葡萄品种不同营养系果实品质比较分析[J].中国农学通报,2018,34(28):56-60. [15] CRUCIANI S, TRENTA M, RASSU G, et al.Identifying a role of red and white wine extracts in counteracting skin aging: Effects of antioxidants on fibroblast behavior[J]. Antioxidants,2021,10(2):227. [16] 闻雯. 干红葡萄酒代谢产物的核磁共振分析及抗氧化性研究[D].江苏扬州:扬州大学,2012. [17] DI MAJO D,GIAMMANCO M,LA GUARDIA M,et al.Flavanones in Citrus fruit:Structure-antioxidant activity relationships[J]. Food research international, 2005, 38(10): 1161-1166. [18] 王晶,万智博,许超丽,等.新疆产区酿酒葡萄果实中有机酸的比较分析[J].现代食品科技,2020,36(2):249-254,69. [19] DESHAIES S, CAZALS G, ENJALBAL C, et al.Red wine oxidation: Accelerated ageing tests, possible reaction mechanisms and application to syrah red wines[J]. Antioxidants, 2020, 9(8): 663. [20] MILOŠEVIĆ T, MILOŠEVIĆ N, MLADENOVIĆ J. Soluble solids, acidity, phenolic content and antioxidant capacity of fruits and berries cultivated in Serbia[J]. Fruits,2016,71(4):239-248. [21] CÔTÉ J, CAILLET S, DOYON G, et al. Effects of juice processing on cranberry antioxidant properties[J]. Food research international, 2011, 44(9): 2907-2914. [22] WANG S, MANTILLA S M O, STOKES J R, et al. pH dominates the temporal perception of astringency sub-qualities and saliva friction response-a study under iso-pH and iso-titratable acidity conditions in model wine[J]. Food hydrocolloids, 2024, 146: 109274. [23] 胡博然,闻雯,阴淑贞,等.电子顺磁共振波谱仪分析干红葡萄酒DPPH清除能力及其与总酚含量的关系[J].中国农业科学,2012,45(1):135-141. [24] MAHMOOD T, ANWAR F, BHATTI I A, et al.Effect of maturity on proximate composition, phenolics and antioxidant attributes of cherry fruit[J]. Pakistan journal of botany,2013,45(3):909-914. [25] SERRANO M, GUILLÉN F, MARTÍNEZ-ROMERO D, et al. Chemical constituents and antioxidant activity of sweet cherry at different ripening stages[J]. Journal of agricultural and food chemistry, 2005, 53(7): 2741-2745. [26] SANNA D, DELOGU G, MULAS M, et al.Determination of free radical scavenging activity of plant extracts through DPPH assay: An EPR and UV-Vis study[J]. Food analytical methods, 2012, 5(4): 759-766. [27] NEMETH T, DE WILD T, GUBLER L, et al.Impact of substitution on reactions and stability of one-electron oxidised phenyl sulfonates in aqueous solution[J]. Physical chemistry chemical physics, 2022, 24(2): 895-901. |