[1] 高铭坤, 温广宇, 钱芳. 微生物对白酒酒糟的转化利用研究进展[J]. 食品与机械, 2018, 34(2): 191-194.
GAO M K, WEN G Y, QIAN F. Advances in microbial conversion and utilization of distiller grains[J]. Food & Machinery,2018, 34(2): 191-194.
[2] 左上春, 杨海泉, 邹伟. 白酒酒糟资源化利用研究进展[J]. 食品工业, 2016, 37(1):246-249.
ZUO S C, YANG H Q, ZOU W. Recent progress on the utilization of distiller’s grains: A review[J]. The Food Industry, 2016, 37(1):246-249.
[3] 董楠石, 谢丽, 刘辉, 等. 黄酒加工废弃物资源化利用途径[J]. 环境工程, 2014, 32(12):136-142.
DONG N S, XIE L, LIU H, et al. Utilization ways of stillage generated from yellow rice wine production[J]. Environmental Engineering, 2014, 32(12):136-142.
[4] 毛青钟. 黄酒酿造理论创新综述[J]. 酿酒, 2018, 45(6):33-35.
MAO Q Z. A summary of the theoretical innovation of Chinese rice wine brewing[J]. Liquor Making, 2018, 45(6):33-35.
[5] 郑国峰. 香糟卤生产工艺及其关键控制点的研究[D]. 无锡: 江南大学, 2007.
ZHENG G F. Study on production technology and key control points of fragrant and bad brine[D]. Wuxi: Jiangnan University, 2007.
[6] 王若帆, 侯茂, 谢梦忆, 等. 酒糟粗提物对肝癌细胞HepG2增殖的抑制作用[J]. 食品工业科技, 2021, 42(21):392-399.
WANG R F, HOU M, XIE M Y, et al. Inhibition on the growth of HepG2 cells by crude extraction from distillers′ grains[J]. Science and Technology of Food Industry, 2021, 42(21):392-399.
[7] 吴继红, 黄明泉, 郑福平, 等. 健康白酒的研究进展[J]. 食品科学技术学报, 2019, 37(2):17-23.
WU J H, HUANG M Q, ZHENG F P, et al. Research progress of healthy Baijiu[J]. Journal of Food Science and Technology, 2019, 37(2):17-23.
[8] SHA S, CHEN S, QIAN M, et al. Characterization of the typical potent odorants in Chinese roasted sesame-like flavor type liquor by headspace solid phase microextraction-aroma extract dilution analysis, with special emphasis on sulfur-containing odorants[J]. Journal of Agricultural and Food Chemistry, 2017, 65(1):123-131.
[9] YAO F, YI B, SHEN C H, et al. Chemical analysis of the Chinese liquor Luzhoulaojiao by comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry[J]. Scientific Reports, 2015, 5:9553.
[10] 张世仙, 金茜, 曾启华, 等. 茅台酱香型酒糟香气成分分析[J]. 中国酿造, 2012, 31(1):188-189.
ZHANG S X, JIN Q, ZENG Q H, et al. Analysis of aromatic compounds in sauce-flavor Moutai lees by GC-MS[J]. China Brewing, 2012, 31(1):188-189.
[11] 康明官. 白酒工业手册[M]. 北京: 中国轻工业出版社, 1991.
KANG M G. Handbook of Liquor Industry[M]. Beijing: China Light Industry Press, 1991.
[12] 秦朗. 黄酒酒糟中的香气成分分析[J]. 中国食品添加剂, 2009,20(S1):225-228.
QIN L. Analysis of aromatic compounds in rice wine distiller′s grain by GC-MS[J]. China Food Additives, 2009,20(S1):225-228.
[13] 叶翔, 冷云伟, 陈翔, 等. 酒糟浸出液的气相色谱测定分析[J]. 酿酒科技, 2011(6):100-102.
YE X, LENG Y W, CHEN X, et al. GC analysis of leaching liquid of distiller′s grains[J]. Liquor-Making Science & Technology, 2011(6):100-102.
[14] 王轩, 周健, 明红梅, 等. 机械化与手工酿造方式下酒糟品质与香气成分初步分析[J]. 食品与发酵工业, 2020, 46(19):210-216.
WANG X, ZHOU J, MING H M, et al. The quality and aroma components of distiller′s grain in mechanized and manual brewing methods[J]. Food and Fermentation Industries, 2020, 46(19):210-216.
[15] 王鑫, 刘微微, 曹学丽. 酶法提取白酒糟中酚酸物质工艺[J]. 食品科学, 2011, 32(24):114-119.
WANG X, LIU W W, CAO X L. Enzymatic extraction of phenolic components from distiller′s grains[J]. Food Science, 2011, 32(24):114-119.
[16] 张佳丽, 罗毅皓, 孙万成, 等. 青稞酒糟脂溶性成分超临界CO2提取工艺优化及其组成分析[J]. 现代食品科技, 2023, 39(4):231-238.
ZHANG J L, LUO Y H, SUN W C, et al. Optimization of the supercritical CO2 extraction process and composition analysis of the fat-soluble components of highland barley brewer′s spent grains[J]. Modern Food Science and Technology, 2023, 39(4):231-238.
[17] 张云鹏, 刘军, 陈娟. 白酒糟植酸提取条件的优化[J]. 中国酿造, 2010, 29(3):125-127.
ZHANG Y P, LIU J, CHEN J. Optimization of the phytic acid extraction conditions from distiller′s grins[J]. China Brewing, 2010, 29(3):125-127.
[18] 江思瑶, 宋昊, 陈晨, 等. 白酒酒糟中有机酸的分离提取及香气成分分析[J]. 食品工业科技, 2019, 40(17):206-211.
JIANG S Y, SONG H, CHEN C, et al. Analysis of organic acids and flavoring compositions extracted from distiller′s grains[J]. Science and Technology of Food Industry, 2019, 40(17):206-211.
[19] 赵东, 李阳华, 向双全. 气相色谱-质谱法测定酒糟、白酒中的芳香族香味成分[J]. 酿酒科技, 2006(10):92-94.
ZHAO D, LI Y H, XIANG S Q. Determination of aromatic compounds in distiller′s grains and in liquor by GC-MS[J]. Liquor-Making Science & Technology, 2006(10):92-94.
[20] YANG H J, LEE J H, WON M, et al. Antioxidant activities of distiller dried grains with solubles as protein films containing tea extracts and their application in the packaging of pork meat[J]. Food Chemistry, 2016, 196:174-179.
[21] 陈佳兴, 邱树毅, 王雪郦. 醇碱法提取酱香型白酒酒糟中蛋白质的工艺研究[J]. 食品工业, 2018, 39(2):37-40.
CHEN J X, QIU S Y, WANG X L. Study on the extraction of protein from wine lees of Maotai-flavor liquor by alcohol-alkali method[J]. The Food Industry, 2018, 39(2):37-40.
[22] LEE J H, LEE J H, YANG H J, et al. Preparation and characterization of brewer′s spent grain protein-chitosan composite films[J]. Journal of Food Science and Technology, 2015, 52(11):7549-7555.
[23] 宗绪岩, 边名鸿, 李丽, 等. 啤酒糟蛋白曲奇饼干的研究[J]. 四川理工学院学报(自然科学版), 2012, 25(4):14-16.
ZONG X Y, BIAN M H, LI L, et al. Study of protein cookies with brewer’s grains[J]. Journal of Sichuan University of Science & Engineering (Natural Science Edition), 2012, 25(4):14-16.
[24] 张丙云, 裴芳霞, 任海伟, 等. 超声波预处理对双酶法提取酒糟中蛋白质的影响[J]. 酿酒科技, 2016(5):99-103.
ZHANG B Y, PEI F X, REN H W, et al. Effects of ultrasonic pretreatment on protein extraction from distillers grains by dual-enzymatic method[J]. Liquor-Making Science & Technology, 2016(5):99-103.
[25] 姜福佳, 王玉萍, 周畅, 等. 酒糟中蛋白质的提取工艺[J]. 吉林大学学报(理学版), 2010, 48(1):152-156.
JIANG F J, WANG Y P, ZHOU C, et al. Extraction conditions of grains protein[J]. Journal of Jilin University (Science Edition), 2010, 48(1):152-156.
[26] 刘晨星, 陈诚, 姚凯勇. 发酵黄酒糟中蛋白营养组分及电泳分析[J]. 中国奶牛, 2022(2):1-5.
LIU C X, CHEN C, YAO K Y. Analysis of drotein nutritive ingredient and electrophoresis in fermented yellow-wine-lees[J]. China Dairy Cattle, 2022(2):1-5.
[27] CONNOLLY A, PIGGOTT C O, FITZGERALD R J. Characterisation of protein-rich isolates and antioxidative phenolic extracts from pale and black brewers′ spent grain[J]. International Journal of Food Science & Technology, 2013, 48(8):1670-1681.
[28] 李华, 施佳慧. 黄酒糟的氨基酸组成及脂类成分分析[J]. 安徽农业科学, 2009, 37(34):17142-17143.
LI H, SHI J H. Analysis on amino acid composition and lipid of yellow wine lees[J]. Journal of Anhui Agricultural Sciences, 2009, 37(34):17142-17143.
[29] 林晓婕, 何志刚, 梁璋成, 等. 红曲黄酒糟蛋白酶解物制备工艺优化及营养评价[J]. 中国粮油学报, 2019, 34(1):43-49.
LIN X J, HE Z G, LIANG Z C, et al. Optimization of preparation technology of Hongqu glutinous rice wine grains protein hydrolysate and nutrition value[J]. Journal of the Chinese Cereals and Oils Association, 2019, 34(1):43-49.
[30] 樊世萌, 刘浩, 欧阳敬禹, 等. 青稞酒糟中蛋白质的提取工艺[J]. 湖北农业科学, 2022, 61(18):169-172.
FAN S M, LIU H, OUYANG J Y, et al. Extraction technology of protein from highland barley distiller′s grains[J]. Hubei Agricultural Sciences, 2022, 61(18):169-172.
[31] 曲亮璠, 肖海燕, 薛薇, 等. 醇-碱法提取啤酒糟中蛋白质的研究[J]. 食品工程, 2020(1):24-27; 33.
QU L F, XIAO H Y, XUE W, et al. Study on extraction of protein from brewers′ spent grains by alcohol-alkali method[J]. Food Engineering, 2020(1):24-27; 33.
[32] 侯梦媛, 范文来, 徐岩. 白酒酒糟中醇溶蛋白的提取及性质比较[J]. 食品与发酵工业, 2020, 46(19):99-103.
HOU M Y, FAN W L, XU Y. Extraction and characterization comparison of prolamin from wet and dried distiller′s grains of Baijiu[J]. Food and Fermentation Industries, 2020, 46(19):99-103.
[33] 左楠楠, 王晓伟, 金海如. 酶法提取黄酒糟蛋白工艺研究[J]. 山西农业科学, 2012, 40(12):1305-1307;1318.
ZUO N N, WANG X W, JIN H R. Study on enzymic extraction technology of the rice wine grains stillage protein[J]. Journal of Shanxi Agricultural Sciences, 2012, 40(12):1305-1307;1318.
[34] 楼芳菲, 姜健美, 傅明亮, 等. 黄酒糟蛋白的酶法提取工艺研究[J]. 中国食品学报, 2009, 9(1):112-117.
LOU F F, JIANG J M, FU M L, et al. A study on the enzymic extraction technology of the rice wine grains protein[J]. Journal of Chinese Institute of Food Science and Technology, 2009, 9(1):112-117.
[35] PRIPP A H, ISAKSSON T, STEPANIAK L, et al. Quantitative structure activity relationship modelling of peptides and proteins as a tool in food science[J]. Trends in Food Science & Technology, 2005, 16(11):484-494.
[36] 杨婷婷, 孙万成, 罗毅皓, 等.青稞酒糟多肽的制备及其活性研究[J]. 食品与发酵工业, 2022, 48(20): 217-224.
YANG T T, SUN W C, LUO Y H, et al. Preparation and activity of highland barley fermentation spent polypeptide[J]. Food and Fermentation Industries, 2022, 48(20): 217-224.
[37] 廖勤俭, 安明哲, 李杨华, 等. 酒糟黄水中二肽和环二肽的研究[J]. 酿酒科技, 2018(10):17-23.
LIAO Q J, AN M Z, LI Y H, et al. Study of dipeptide and cyclodipeptide in yellow water of distillers grains[J]. Liquor-Making Science & Technology, 2018(10):17-23.
[38] 魏冬, 范文来, 徐岩. 应用UPLC-Q-TOF-MS鉴定白酒酒糟中的水溶性多肽[J]. 食品与发酵工业, 2019, 45(5):203-207.
WEI D, FAN W L, XU Y. Identification of water-soluble peptides in distilled spent grains by UPLC-Q-TOF-MS[J]. Food and Fermentation Industries, 2019, 45(5):203-207.
[39] 王少伟, 张金秋, 戚繁, 等. 功能性低聚糖的应用研究进展[J]. 现代食品, 2020 (18): 59-61.
WANG S W, ZHANG J Q, QI F, et al. Advance and Application of Functional Oligosaccharide[J]. Modern Food, 2020 (18): 59-61.
[40] 台一鸿, 石良. 功能性低聚糖的生理功能及应用研究进展[J]. 食品安全导刊, 2019 (12): 175-177;183.
TAI Y H, SHI L. Research progress on physiological function and application of functional oligosaccharides [J].China Food Safety Magazine, 2019 (12): 175-177;183.
[41] 姜福佳, 翟思羽, 孙香盟, 等. 啤酒糟多糖提取工艺及其抗肿瘤活性[J]. 食品工业科技, 2017, 38(10):303-306; 317.
JIANG F J, ZHAI S Y, SUN X M, et al. Extraction and antitumor activity of polysaccharide from beer vinasse[J]. Science and Technology of Food Industry, 2017, 38(10):303-306;317.
[42] 杨志成, 刘铁兵, 陈劼, 等. 黄酒糟中低聚木糖的提取及活性炭脱色工艺[J]. 中国科技信息, 2015(16):126-129.
YANG Z C, LIU T B, CHEN J, et al. Extraction of xylooligosaccharide from yellow distiller′s grains and decoloration process of activated carbon[J]. China Science and Technology Information, 2015(16):126-129.
[43] FONSECA D A, LUPITSKYY R, TIMMONS D, et al. Towards integrated biorefinery from dried distillers grains: Selective extraction of pentoses using dilute acid hydrolysis[J]. Biomass and Bioenergy, 2014, 71:178-186.
[44] NGHIEM N P, MONTANTI J, KIM T H. Pretreatment of dried distiller grains with solubles by soaking in aqueous ammonia and subsequent enzymatic/dilute acid hydrolysis to produce fermentable sugars[J]. Applied Biochemistry and Biotechnology, 2016, 179(2):237-250.
[45] GU H Q, ZHU Y Y, LI J, et al. Ultrasound-assisted fractionation of dried distillers′ grains with solubles (DDGS) at mild temperature for co-production of xylan and protein feed[J]. Journal of Chemical Technology & Biotechnology, 2019, 94(3):829-836.
[46] 王金华, 李冬生, 陈雄. 啤酒糟中水溶性戊聚糖的提取及纯化[J]. 食品工业, 2003, 24(4):10-12.
WANG J H, LI D S, CHEN X. Extraction and purification of water-soluble pentosan from brewer′s spent grains[J]. The Food Industry, 2003, 24(4):10-12.
[47] 邵莹, 吴启南, 周婧, 等. 淡竹叶黄酮对大鼠心肌缺血/再灌注损伤的保护作用[J]. 中国药理学通报, 2013, 29(2):241-247.
SHAO Y, WU Q N, ZHOU J, et al. Protective effects of total flavones from Lophatherum gracile on myocardial ischemia-reperfusion injury in rats[J]. Chinese Pharmacological Bulletin, 2013, 29(2):241-247.
[48] HUANG Y S, HO S C. Polymethoxy flavones are responsible for the anti-inflammatory activity of citrus fruit peel[J]. Food Chemistry, 2010, 119(3):868-873.
[49] KUROWSKA E M, MANTHEY J A. Hypolipidemic effects and absorption of citrus polymethoxylated flavones in hamsters with diet-induced hypercholesterolemia[J]. Journal of Agricultural and Food Chemistry, 2004, 52(10):2879-2886.
[50] 李云龙, 李红梅, 胡俊君, 等. 响应面法优化苦荞酒糟黄酮提取工艺的研究[J]. 中国酿造, 2013, 32(7):38-42.
LI Y L, LI H M, HU J J, et al. Extraction of total flavonoids from tartary buckwheat stillage by response surface methodology[J]. China Brewing, 2013, 32(7):38-42.
[51] 蒋新龙, 王浩, 蒋益花. 高粱酒糟高纯度黄酮的制备及其抗氧化活性[J]. 中国粮油学报, 2020, 35(10):155-160.
JIANG X L, WANG H, JIANG Y H. Preparation and antioxidant activity of high purity flavonoids from Sorghum distillers′ grains[J]. Journal of the Chinese Cereals and Oils Association, 2020, 35(10):155-160.
[52] 龙谋, 汤艳燕, 黄丹丹, 等. 超声辅助乙醇提取苦荞红曲保健酒糟总黄酮工艺优化[J]. 中国酿造, 2016, 35(12):153-157.
LONG M, TANG Y Y, HUANG D D, et al. Optimization of extraction technology of total flavonoids from tartary buckwheat red starter health wine vinasse by ultrasonic-assisted ethanol extraction[J]. China Brewing, 2016, 35(12):153-157.
[53] KIM M S, LEE Y S, KIM J S, et al. Evaluation of in-vitro antithrombosis activity of lees of Korean traditional wine[J]. Journal of Life Science, 2014, 24(8):865-872.
[54] 许世浩, 刘宏炳, 何晨露, 等. 酒糟总氨基酸、总多酚、多糖含量测定及抗氧化活性研究[J]. 化学试剂, 2022, 44(1):32-38.
XU S H, LIU H B, HE C L, et al. Determination of total amino acids, total polyphenols, polysaccharide content and antioxidant activity of distiller′s grains[J]. Chemical Reagents, 2022, 44(1):32-38.
[55] 王兴东, 牟明月, 任雅奇, 等. 茅台酱香型酒糟中总黄酮及总多酚含量的测定[J]. 中国酿造, 2015, 34(10):86-90.
WANG X D, MOU M Y, REN Y Q, et al. Determination of total flavones and polyphenols contents in Moutai-flavor vinasse[J]. China Brewing, 2015, 34(10):86-90.
[56] 冉宇舟, 何喜红, 毛严根, 等. 黄酒酒糟的抗氧化活性分析[J]. 酿酒科技, 2014(4):38-41.
RAN Y Z, HE X H, MAO Y G, et al. Analysis of the antioxidant activities of yellow rice wine lees[J]. Liquor-Making Science & Technology, 2014(4):38-41.
[57] 张伟建, 袁杰斌, 李茂, 等. 超声波辅助乙醇提取苦荞酒酒糟及底锅水总黄酮工艺优化[J]. 酿酒科技, 2022(1):23-27;35.
ZHANG W J, YUAN J B, LI M, et al. Optimization of ultrasonic-assisted ethanol extraction technology of total flavonoids from spent grains and steamer bottom water of Tartary buckwheat liquor[J]. Liquor-Making Science & Technology, 2022(1):23-27; 35.
[58] 曹新志, 游见明, 熊俐, 等. 郎酒酒糟中总酚的提取与检测方法的优化[J]. 中国酿造, 2011, 30(7):137-140.
CAO X Z, YOU J M, XIONG L, et al. Optimization of extraction and detection methods of total phenol from Langjiu Liquor vinasse[J]. China Brewing, 2011, 30(7):137-140.
[59] 朱俊玲, 柳青山. 清香型酒糟多酚提取工艺的研究[J]. 食品工程, 2018(3):33-38.
ZHU J L, LIU Q S. Research on the polyphenol extraction process of Fen-flavor vinasse[J]. Food Engineering, 2018(3):33-38.
[60] 曹新志, 刘芳, 熊俐, 等. 小曲酒丢糟中抗氧化剂总酚的提取[J]. 酿酒科技, 2013(7):87-90.
CAO X Z, LIU F, XIONG L, et al. Extraction of antioxidant total phenol from distiller′s grains of xiaoqu liquor[J]. Liquor-Making Science & Technology, 2013(7):87-90.
[61] 王金华, 张声华. 啤酒糟中可溶性膳食纤维的提取及化学组成[J]. 食品科学, 2002, 23(12): 64-67.
WANG J H, ZHANG S H. Study on isolation and chemical compositions of soluble dietary fiber in beer-s spent grains1[J]. Food Science, 2002, 23(12): 64-67.
[62] 闻芝梅. 现代营养学[M]. 北京: 人民卫生出版社, 1998.
WEN Z M. Modern Nutrition[M]. Beijing: People′s Medical Publishing House, 1998.
[63] 王肇颖, 肖敏. 白酒酒糟的综合利用及其发展前景[J]. 酿酒科技, 2004(1):65-67; 64.
WANG Z Y, XIAO M. Comprehensive utilization of distiller′s grains and its development foreground[J]. Liquor-Making Science & Technology, 2004(1):65-67; 64.
[64] 张世仙, 张素英, 曾启华. 碱法提取茅台酒糟中水溶性膳食纤维的工艺研究[J]. 中国酿造,2011, 30(10): 126-128.
ZHANG S X, ZHANG S Y, ZENG Q H. Study on extraction technology of water-soluble dietary fiber from Maotai vinasse by alkaline method[J]. Chinese brewing,2011, 30(10): 126-128.
[65] 许祯毅, 李力, 姜咸彪, 等. 响应面法优化碱法提取啤酒糟中可溶性膳食纤维的工艺研究[J]. 食品研究与开发, 2021, 42(17):75-80.
XU Z Y, LI L, JIANG X B, et al. Study on the optimal alkaline extraction of soluble dietary fiber from beer grains by response surface method[J]. Food Research and Development, 2021, 42(17):75-80.
[66] 王晓力, 王春梅, 王永刚, 等. 酒糟营养成分检测及其酶水解研究[J]. 中国草食动物科学, 2014, 34(1):28-31.
WANG X L, WANG C M, WANG Y G, et al. Study on the composition and enzymatic saccharification of the distiller′s grains[J]. China Herbivore Science, 2014, 34(1):28-31.
[67] 陈冬梅, 陈耀, 韦毅, 等. 无糠壳高粱白酒糟的营养成分分析[J]. 饲料研究, 2020, 43(7):110-113.
CHEN D M, CHEN Y, WEI Y, et al. Nutrient composition analysis of sorhum distiller′s grain without chaff[J]. Feed Research, 2020, 43(7):110-113.
[68] 胡光源, 陈宗校, 杨理章, 等. 茅台酒糟中生育酚类、甾醇类和三萜类物质的检测及溯源[J]. 食品科学, 2022, 43(8):297-302.
HU G Y, CHEN Z X, YANG L Z, et al. Identification and traceability analysis of tocopherols, sterols and triterpenoids in Moutai distiller′s grains[J]. Food Science, 2022, 43(8):297-302.
[69 ] 张德勇, 许晓路, 谢广发. 黄酒糟中功能性成分的开发利用研究进展[J]. 食品与发酵工业, 2023, 49(6):332-338.
ZHANG D Y, XU X L, XIE G F. Utilization of functional components in Huangjiu lees: A review[J]. Food and Fermentation Industries, 2023, 49(6):332-338.