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blackberry, wild blueberry, strawberry, and chokeberry: Antioxidant Technologies, 2010, 11(2): 322-327.
activity and inhibitory effect on oleic acid-induced hepatic steatosis [21] Liu Wei (刘玮), Yang Chunv (羊初女), Zhou Chunjiao (周春姣),
in vitro[J]. Journal of the Science of Food & Agriculture, 2016, et al. Optimization of microwave-assisted extraction of anthocyanin
96(7): 2494-2503. from purple sweet potato with phosphoric acid aqueous solution by
[11] Li Rui (李蕊), Wang Ping (王萍), Wang Zhenyu (王振宇), et al. response surface methodology[J]. Chemistry & Bioengineering (化学
Extraction and identification of anthocyanins from wild red raspberry 与生物工程), 2018, 35(4): 35-41.
fruit[J]. Food and Fermentation Industries (食品与发酵工业), 2010, [22] Hemwimol S, Pavasant P, Shotipruk A. Ultrasound-assisted
(10): 203-207. extraction of anthraquinones from roots of morinda citrifolia[J].
[12] Su X, Xu J, Rhodes D, et al. Identification and quantification of Ultrasonics Sonochemistry, 2006, 13(6): 543-548.
anthocyanins in transgenic purple tomato[J]. Food Chemistry, 2016, [23] Li Mingzhi (李明智), Xie Yuting (谢雨婷), Jiang Haiwei (蒋海伟),
202: 184-188. et al. Response surface methodology for optimization of ultrasonic
[13] Yu Zeyuan (于泽源), Zhao Jianhui (赵剑辉), Li Xingguo (李兴国), wave-assisted extraction and the stability of anthocyanins from
et al. Isolation and purification of anthocyanin from blueberry by purple potato[J]. Food Science and Technology (食品科技), 2015,
sequential medium pressure column chromatography on (7): 206-211.
macroporous resin and Sephadex LH-20[J]. Food Science (食品科 [24] Nicoué E E, Savard S, Belkacemi K. Anthocyanins in wild
学), 2018, 39(1): 118-123. blueberries of quebec: Extraction and identification[J]. Journal of
[14] Pongmalai P, Devahastin S, Chiewchan N, et al. Enhancement of Agricultural & Food Chemistry, 2007, 55(14): 5626-5635.
microwave-assisted extraction of bioactive compounds from cabbage [25] Pertuzatti P B, Barcia M T, Rebello L P G, et al. Antimicrobial
outer leaves via the application of ultrasonic pretreatment[J]. activity and differentiation of anthocyanin profiles of rabbit eye and
n
Separation & Purification Technology, 2015, 144(156): 37-45. highbush blueberries using HPLC-DAD-ESI-MS and multivariate
[15] Guo Xiaoxuan (郭孝萱), Liu Jia (柳嘉), Lu Xuejiao (陆雪娇), et al. analysis[J]. Journal of Functional Foods, 2016, 26: 506-516.
Comparing of ethanol extracts from three fungi fermented [26] Liu L, Cao S, Xie B, et al. Degradation of cyanidin-3-rutinoside in
purple-fleshed potatoes on total phenolic content, flavonoids, the presence of (-)-epicatechin and litchi pericarp polyphenol
anthocyanins, antioxidant activities and cytotoxicity on HepG2 oxidase[J]. Journal of Agricultural & Food Chemistry, 2007, 55(22):
cells[J]. Journal of Chinese Institute of Food Science and Technology 9074-9078.
(中国食品学报), 2017, 17(3): 289-295. [27] Li D, Meng X, Li B. Profiling of anthocyanins from blueberries
[16] Mao Anyun (毛岸云), Chen Maojian (陈茂剑), Qin Qinghong (覃庆 produced in China using HPLC-DAD-MS and exploratory analysis
洪), et al. Effect of capsaicin in inhibiting migration and invasion of by principal component analysis[J]. Journal of Food Composition &
breast cancer MCF-7 cells by down-regulating SIRT1[J]. Chinese Analysis, 2016, 47(6): 1-7.
Journal of Experimental Traditional Medical Formulae (中国实验方 [28] Chorfa N, Savard S, Belkacemi K. An efficient method for high-purity
剂学杂志), 2019, 25(7): 94-99. anthocyanin isomers isolation from wild blueberries and their radical
[17] Jing P, Ruan S Y, Dong Y, et al. Optimization of purification scavenging activity[J]. Food Chemistry, 2016, 197: 1226-1234.
conditions of radish ( Raphanus sativus L.) anthocyanin-rich extracts [29] An Xiaoqi (安小琦), Wang Yuehua (王月华), Meng Xianjun (孟宪
using chitosan[J]. LWT-Food Science and Technology, 2011, 44(10): 军). Identification and comparative analysis of antioxidant ability of
2097-2103. anthocyanins in lonicera caerulea berry extracts[J]. Food Science (食
[18] Jimenez N, Bohuon P, Dornier M, et al. Effect of water activity on 品科学), 2016, 37(19): 82-87.
anthocyanin degradation and browning kinetics at high temperatures [30] Prasad N R, Karthikeyan S, Reddy B V. Inhibitory effect of caffeic
(100-140 ℃)[J]. Food Research International, 2012, 47(1): 106-115. acid on cancer cell proliferation by oxidative mechanism in human
[19] Bendahou A, Dufresne A, Kaddami H, et al. Isolation and structural HT-1080 fibrosarcoma cell line[J]. Molecular & Cellular Biochemistry,
characterization of hemicelluloses from palm of Phoenix dactylifera 2011, 349(1/2): 11-19.
L.[J]. Carbohydrate Polymers, 2007, 68(3): 601-608. [31] Munoz-Espada A C, Watkins B A. Cyanidin attenuates PGE 2
[20] Amarni F, Kadi H. Kinetics study of microwave-assisted solvent production and cyclooxygenase-2 expression in LNCaP human
extraction of oil from olive cake using hexane: Comparison with the prostate cancer cells[J]. Journal of Nutritional Biochemistry, 2006,
conventional extraction[J]. Innovative Food Science & Emerging 17(9): 589-596.
2019(第八届)中国化工产学研高峰论坛将于 10 月在山东举办
每年一届的中国化工产学研高峰论坛是业内颇具影响力的品牌大会,目前已成功举办七届,每届峰会
汇聚几百位业内著名专家学者、企业高层、研发机构负责人和政府相关领导与会交流,“政产学研金服用”
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寻求发展机遇和方向,助力化工行业高质量发展。
本届论坛将围绕“聚焦绿色技术创新、促进科技成果转化、助力高端化工发展”主题进行深入探讨。
论坛将通过发布十大绿色化工技术、专题报告、项目路演促进成果转让签约,发布石油和化工百强企业、
分行业十强企业榜单,举办化工年度精英人物颁奖盛典,以展览展示、信息交流等形式,构建化工新技术、
项目、人才、信息等多层次、全方位的产学研合作交流平台。几十家主流传媒对论坛进行全方位报道。
本届论坛由山东省科技厅、青岛科技大学、淄博市人民政府主办,山东省技术市场管理服务中心、山
东省化工研究院、淄博市科学技术局、山东省化工信息中心、青科大鲁中安全环保工程与材料研究院承办,
鲁中技术市场服务中心协办,于 2019 年 10 月 15-17 日在山东齐盛国际宾馆(淄博市张店区北京路 69 号)
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