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中国科学院青岛生物能源与过程研究所机构知识库
KMS Qingdao Institute of Biomass Energy and Bioprocess Technology ,CAS
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Total Views
1206
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internal: 4
External: 1202
Domestic: 856
Abroad: 350
Annual Views
124
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External: 124
Domestic: 107
Abroad: 17
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Visits
Visits
1.
Functional balance between enzymes in malonyl-CoA pathway for 3-hy..
[663]
2.
Capillary ion chromatography-mass spectrometry for simultaneous de..
[525]
3.
Biosynthetic pathway for acrylic acid from glycerol in recombinant..
[450]
4.
Bare magnetic nanoparticles as fluorescence quenchers for detectio..
[409]
5.
Metabolic engineering of Escherichia coli for the production of hy..
[380]
6.
Improving the production of acetyl-CoA-derived chemicals in Escher..
[377]
7.
Modifying the morphology via employing rigid phenyl side chains ac..
[325]
8.
Design of asymmetric benzodithiophene based wide band-gap conjugat..
[323]
9.
Metabolic engineering of Escherichia coli to improve recombinant p..
[322]
10.
Enhancement of the catalytic activity of Isopentenyl diphosphate i..
[312]
11.
Controlled Hydrodeoxygenation of Phenolic Components in Pyrolysis ..
[295]
12.
Removal of Cr(VI) from aqueous solution using amino-modified Fe3O4..
[282]
13.
Preparation of phase diagram of gold nanorods in mixture solvent o..
[279]
14.
Preparation and characterization of antibacterial paper coated wit..
[272]
15.
Simultaneous detection of anions and cations in mineral water by t..
[256]
16.
Production of D-lactate from glucose using Klebsiella pneumoniae m..
[254]
17.
A reversible light-responsive assembly system based on host-guest ..
[252]
18.
Removal of cadmium(II) from wastewater with gas-assisted magnetic ..
[247]
19.
Removal of chromium(VI) from wastewater using weakly and strongly ..
[246]
20.
Kinetics-Controlled Separation Intensification for Cesium and Rubi..
[244]
21.
Hydrolytic kinetics of piceid and its importance for the productio..
[243]
22.
Engineering Escherichia coli for high-yield geraniol production wi..
[240]
23.
Biotechnological production of 1,2,4-butanetriol: An efficient pro..
[238]
24.
Directed evolution of mevalonate kinase in Escherichia coli by ran..
[238]
25.
Color and alcohol removal for the simultaneous detection of amino ..
[236]
26.
Host-Guest Interaction Induced Rapid Self-Assembled Fe3O4@Au Nanop..
[235]
27.
Reversible regulation of thrombin adsorption and desorption based ..
[233]
28.
Properties of Nanocelluloses and Their Application as Rheology Mod..
[233]
29.
High-specificity synthesis of novel monomers by remodeled alcohol ..
[229]
30.
Aptamer and PNIPAAm co-conjugated nanoparticles regulate activity ..
[227]
31.
Engineering Escherichia coli for high-yield geraniol production wi..
[224]
32.
一种利用宏基因组测序辅助筛选烟草发酵过程中微生物的方法
[224]
33.
一种通过镁离子诱导大肠杆菌裂解的重组载体及应用
[223]
34.
Deletion of arcA increased the production of acetyl-CoA-derived ch..
[221]
35.
An in vitro synthetic biosystem based on acetate for production of..
[219]
36.
Improving the production of acetyl-CoA-derived chemicals in Escher..
[218]
37.
Improving phloroglucinol tolerance and production in Escherichia c..
[218]
38.
Reduced Graphene Oxide/Alumina, A Good Accelerant for Cellulose-Ba..
[217]
39.
Efficient conversion of acetate into phloroglucinol by recombinant..
[212]
40.
A novel constant interfacial area cell for determining the extract..
[210]
41.
Deletion of arcA increased the production of acetyl-CoA-derived ch..
[205]
42.
Sustainable utilization of lignocellulose: Preparation of furan de..
[200]
43.
Chemically modified magnetic chitosan microspheres for Cr(VI) remo..
[198]
44.
A redox responsive controlled release system using mesoporous sili..
[196]
45.
Chemically modified magnetic chitosan microspheres for Cr(VI) remo..
[194]
46.
一种大相比鼓泡油膜萃取从盐湖原卤水富集低浓度锂的方法
[170]
47.
联产异戊二烯和1, 3-丙二醇的基因工程菌及构建方法和应用
[170]
48.
一种从盐湖原卤水中提取低浓度锂的方法
[158]
49.
联产异戊二烯和1, 3?丙二醇的基因工程菌及构建方法和应用
[144]
Downloads
1.
Functional balance between enzymes in malonyl-CoA pathway for 3-hy..
[386]
2.
Capillary ion chromatography-mass spectrometry for simultaneous de..
[223]
3.
Biosynthetic pathway for acrylic acid from glycerol in recombinant..
[215]
4.
Bare magnetic nanoparticles as fluorescence quenchers for detectio..
[193]
5.
Improving the production of acetyl-CoA-derived chemicals in Escher..
[149]
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