Page 153 - 《精细化工》2022年第9期
P. 153
第 9 期 赵 鹬,等: 高比表面积高分散度铜基催化剂的制备及其性能 ·1871·
[2] LIU Q L (刘千里). Looking at the future development of China’s [13] MALLAT T, BAIKER A, PATSCHEIDER J. Liquid phase oxidation
pesticide industry from the perspective of foreign pesticide of 1-methoxy-2-propanol with air: Ⅱ . Structure and chemical
management and channel service systems[J]. Agricultural Materials properties of lead-promoted palladium catalysts[J]. Applied Catalysis
and Market Channel Edition (农资与市场渠道版) , 2017, (5): 59-62. A: General, 1991, 79(1): 59-75.
[3] ZHANG M J (张梦杰), WANG Y (王洋), YANG X Q (杨小琴), [14] MALLAT T, BAIKER A, BOTZ L. Cheminform abstract: Liquid-
et al. Research on the prevention and reduction measures of herbicide phase oxidation of 1-methoxy-2-propanol with air. part 3. Chemical
phytotoxicity[J]. Soil and Crops (土壤与作物) , 2020, 9(1): 166-177. deactivation and oxygen poisoning of platinum catalysts[J]. ChemInform,
[4] ZHANG Z Q (张宗庆), ZHANG Y (张寅), ZHANG R (张睿). 2010, 23(47): 110-114.
Research on the development trend of my country's pesticide industry [15] LANDAU M V, KOGAN S B, HERSKOWIT Z M. Dehydrogenation
from multiple innovation perspectives[J]. Journal of Southeast of methoxyisopropanol to methoxyacetone on supported bimetallic
University (东南大学学报) , 2010, 12(6): 53-56. Cu-Zn catalysts[J]. Studies in Surface Science & Catalysis, 1997,
[5] ZHAO Y N (赵颖楠), ZI X J (字雪靖), WANG W (王婉), et al. Field 108(97): 407-414.
weed control effects of different herbicides and their effects on the [16] LI M Y (李明阳), LI T (李涛), FANG D Y (房鼎业). Effects of
growth and development of millet[J]. Chinese Journal of Applied Fe-modified Cu/Zn/MgO catalysts on syngas to lower alcohols[J].
Ecology (应用生态学报) , 2020, 31(7): 2415-2421. Fine Chemicals (精细化工) , 2015, 32(6): 646-651.
[6] HU Y ( 胡钰 ), WANG L ( 王莉 ). Regional comparison and [17] WANG J Q (王军伟), CAO G Y (曹国英), HU X Q (胡信全). CuO-
enlightenment of China's sustainable agricultural development NiO/SiO 2 catalytic oxidation of 1-methoxy-2-propanol to synthesize
model[J]. Chinese Journal of Agricultural Resources and Regional methoxyacetone[J]. Chinese Journal of Catalysis (催化学报) , 2002,
Planning (中国农业资源与区划) , 2020, (1): 8-14. 23(4): 349-351.
[7] HUANG J K (黄季焜), XIE W (解伟), SHENG Y (盛誉), et al. [18] ZHAO Y, WANG J E, CHEN H, et al. Synthesis of high-surface-area
Global agricultural development trend and China's agricultural Co—O—Si complex oxide for skeletal isomerization of 1-hexene
development prospect in 2050[J]. Strategic Study of CAE (中国工程 and hydrodesulfurization of thiophene[J]. Chinese Journal of
科学) , 2022, 24(1): 29-37. Catalysis, 2014, 35(8): 1402-1409.
[8] ZHANG W Y (张文郁), ZHAO N (赵宁), WEI W (魏伟), et al. [19] ZHAO Y, WANG J E, SONG G X,et al. Preparation of NiAlO x and
Screening and catalysis of solid catalysts for highly selective NiSiO x complex oxides with high surface areas for the isomerization
synthesis of 1-methoxy-2-propanol[J]. Fine Chemicals (精细化工), reactions of 1-hexene[J].Catal Lett, 2016, 146(10): 1934-1942.
2005, 22(1): 26-28. [20] XIA S X, NIE R F, LU X Y, et al. Hydrogenolysis of glycerol over
[9] MAO H L (毛会玲), WANG C (王晨), YAN M(晏秘), et al. TEMPO Cu 0.4/Zn 5.6–xMg xAl 2O 8.6 catalysts: The role of basicity and hydrogen
functionalized conjugated microporous polymers as efficient alcohol spillover[J]. Journal of Catalysis, 2012, 296(7):1-11.
catalytic oxidants[J]. Fine Chemicals (精细化工) , 2020, 37(5): [21] GRIFT C, MULDER A, GEUS J W. Characterization of silica-
976-981. supported copper catalysts by means of temperature-programmed
[10] VENTURELLO C, RICCI M. Oxidative cleavage of 1,2-diols to reduction[J]. Applied Catalysis, 1990, 60(1): 181-192.
carboxylic acids by hydrogen peroxide[J].Journal of Organic [22] XUE M W, HU S H, CHEN H, et al. Preparation of highly loaded
Chemistry, 1986, 51(9):1599-1602. and dispersed Ni/SiO 2 catalysts[J]. Catalysis Communications, 2011,
[11] MARIELLA R P, LEECH J L. The synthesis of some isomeric dimethyl- 12(5): 332-336.
hydroxymethylpyridines. 3,4-Didesoxypyridoxin[J]. Journal of the [23] YE R P, LIN L, YANG J X, et al. A new low-cost and effective
American Chemical Society, 1949, 71(1): 331-338. method for enhancing the catalytic performance of Cu-SiO 2 catalysts
[12] MALLAT T, BAIKER A. Liquid-phase oxidation of 1-methoxy-2- for the synthesis of ethylene glycol via the vapor-phase hydrogenation
propanol with air. Ⅰ. Lead and bismuth promotion and deactivation of of dimethyl oxalate by coating the catalysts with dextrin[J]. Journal
palladium catalysts[J]. Applied Catalysis A: General, 1991, 79(1): 41-58. of Catalysis, 2017, 350(6): 122-132.
(上接第 1857 页) from Gastrodia elata Blume[J]. Journal of Pharmaceutical Research
(药学研究), 2021, 40(5): 304-309.
[10] ZHAO L C (赵立春), ZHANG Y Y (张亚玉), LI X P (李小沛), et al.
Optimization and comparison of three extraction processes of [18] WU L J (吴莉娟), PENG X M (彭效明), TANG C Y (汤晨洋), et al.
ginseng polysaccharide[J]. Jiangsu Agricultural Sciences (江苏农业 Progress in extraction of terpenoids from natural products by
科学), 2019, 47(21): 254-260. imidazole ionic liquids[J]. Acta Chinese Medicine and Pharmacology
[11] LI Y L (李娅丽), ZHANG Y F (张越非), LIU Z (刘哲), et al. (中医药学报), 2021, 49(5): 97-102.
Optimization of microwave assisted extraction of ginsenosides and [19] GE J H (葛俊宏), XU M R (许梦然), WANG J Q (王迦琦), et al.
polysaccharide by response surface methodology[J]. China Medical Optimization of extraction process of polysaccharide from ginseng
Herald (中国医药导报), 2015, 12(16): 42-47. and its antioxidant activity in vitro[J]. Journal of Beihua University
[12] SONG Y R, SUNG S K, JANG M, et al. Enzyme-assisted extraction, (Natural Science) (北华大学学报: 自然科学版), 2021, 22(1): 36-41.
chemical characteristics, and immunostimulatory activity of [20] QI Y L (祁玉丽), SUN Y S (孙印石), LI S S (李珊珊). Isolation,
polysaccharides from Korean ginseng (Panax ginseng Meyer)[J]. purification and DPPH free radicals scavenging activity of fructus
International Journal of Biological Macromolecules, 2018, 116: schisandrae chinensis polysaccharides[J]. Special Wild Economic
1089-1097. Animal and Plant Research (特产研究), 2019, 41(3): 8-11.
[13] ZHANG Y R (张艳荣), FAN H X (樊红秀), LIU H C (刘鸿铖), [21] LI S S (李珊珊), QI Y L (祁玉丽), HUA M (华梅), et al. Study on
et al. Optimization of extraction process of ginseng polysaccharides purification and antioxidant activity of polysaccharide from
and monosaccharide composition analysis[J]. Food Science(食品科 Schisandra chinensis (Turcz.) Baill[J]. The Food Industry (食品工
学), 2015, 36(20): 37-42. 业), 2018, 39(4): 233-237.
[14] SONG Y (宋岩), GUAN H N (关桦楠), LIU B (刘博), et al. Ionic [22] CHENG S (程爽), HE F (贺斐), FU L Y (付龙洋), et al. Preparation
liquid-based ultrasonic assisted extraction of pueraria flavones and its and antioxidant activity of selenium polysaccharides from Rabdosia
antioxidant activity[J]. Food Research and Development (食品研究 rubescens[J]. Fine Chemicals (精细化工), 2021, 38(10): 2064-2071.
与开发), 2020, 41(20): 97-100, 107. [23] TANG Y M (唐一梅), QIN B (秦蓓), ZHANG D Z (张德柱), et al.
[15] ZUO L (左琳), AO X Q (敖先权), GUO Y (郭妤). Application on Optimization of ionic liquid-assisted extraction of paeonol from
extraction of natural productsby imidazolium ionic liquid[J]. Science Moutan Cortex[J]. Chinese Traditional Patent Medicine (中成药),
and Technology of Food Industry (食品工业科技), 2019, 40(23): 2021, 43(9): 2292-2296.
324-330, 336. [24] CHEN H J (陈惠杰), DIAO L (刁磊), HUANG X D (黄小丹), et al.
[16] CHU Z S (初正帅), PENG X M (彭效明), CAI Q M (蔡青蔓), et al. Ultrasonic extraction of hypericin from Hypericum attenuatum
Application of ionic liquids and their two-aqueous phase systems in Choisy and its anti-infectious bronchitis virus[J]. Fine Chemicals (精
extraction and separation of polysaccharides from mulberry 细化工), 2019, 36(8): 1578-1590.
leaves[J]. Food Research and Development (食品研究与开发), [25] CHEN H (陈虎), HOU L J (侯丽娟), LU F Y (路付勇), et al.
2021, 42(8): 113-118. Optimization of ultrasonic solvent method of polysaccharide
[17] DUAN X X (段新新), WANG L (王莉), WU R A (吴仁安), et al. extraction technology from Stevia rebaudiana by response surface
Study on ionic liquids ultrasonic-assisted extraction of index components methodology[J]. The Food Industry (食品工业), 2022, 43(5): 6-9.