发文地区与机构
近年国家 / 地区发文量统计
| 国家 / 地区 | 发文量 |
|---|---|
| CHINA MAINLAND | 377 |
| USA | 182 |
| GERMANY (FED REP GER) | 62 |
| England | 43 |
| Sweden | 42 |
| France | 40 |
| South Korea | 39 |
| Brazil | 33 |
| Netherlands | 32 |
| Denmark | 30 |
近年机构发文量统计
| 机构 | 发文量 |
|---|---|
| UNITED STATES DEPARTMENT OF ENERGY (DOE... | 82 |
| CHINESE ACADEMY OF SCIENCES | 71 |
| CHINESE ACADEMY OF AGRICULTURAL SCIENCE... | 27 |
| NANJING TECH UNIVERSITY | 27 |
| UNIVERSITY OF CALIFORNIA SYSTEM | 27 |
| INRAE | 24 |
| CENTRE NATIONAL DE LA RECHERCHE SCIENTI... | 21 |
| TECHNICAL UNIVERSITY OF DENMARK | 20 |
| TIANJIN UNIVERSITY | 18 |
| UNIVERSITY SYSTEM OF GEORGIA | 18 |
文章引用情况
1
Microalgae for the production of lipid and carotenoids: a review with focus on stress regulation and adaptation2
Metabolic engineering of Clostridium thermocellum for n-butanol production from cellulose3
Astaxanthin overproduction in yeast by strain engineering and new gene target uncovering4
A novel fungal GH30 xylanase with xylobiohydrolase auxiliary activity5
Metabolic engineering of Corynebacterium glutamicum for efficient production of succinate from lignocellulosic hydrolysate6
Overproduction of native endo--4-glucanases leads to largely enhanced biomass saccharification and bioethanol production by specific modification of cellulose features in transgenic rice7
A metagenomic analysis of the camel rumen's microbiome identifies the major microbes responsible for lignocellulose degradation and fermentation8
Real-time imaging reveals that lytic polysaccharide monooxygenase promotes cellulase activity by increasing cellulose accessibility9
Heterotrophic cultivation of Auxenochlorella protothecoides using forest biomass as a feedstock for sustainable biodiesel production10
Molecular characterization of a novel chitinase CmChi1 from Chitinolyticbacter meiyuanensis SYBC-H1 and its use in N-acetyl-D-glucosamine production