首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   1339篇
  免费   104篇
  国内免费   65篇
  2023年   17篇
  2022年   14篇
  2021年   17篇
  2020年   34篇
  2019年   33篇
  2018年   31篇
  2017年   43篇
  2016年   43篇
  2015年   35篇
  2014年   66篇
  2013年   114篇
  2012年   68篇
  2011年   83篇
  2010年   50篇
  2009年   71篇
  2008年   53篇
  2007年   55篇
  2006年   51篇
  2005年   44篇
  2004年   53篇
  2003年   41篇
  2002年   54篇
  2001年   34篇
  2000年   27篇
  1999年   25篇
  1998年   22篇
  1997年   31篇
  1996年   21篇
  1995年   23篇
  1994年   21篇
  1993年   25篇
  1992年   29篇
  1991年   13篇
  1990年   10篇
  1989年   9篇
  1988年   5篇
  1987年   4篇
  1986年   7篇
  1985年   11篇
  1984年   19篇
  1983年   12篇
  1982年   12篇
  1981年   14篇
  1980年   9篇
  1979年   10篇
  1978年   11篇
  1977年   10篇
  1976年   6篇
  1975年   7篇
  1971年   3篇
排序方式: 共有1508条查询结果,搜索用时 31 毫秒
991.
树木年轮中不同组分稳定碳同位素含量对气候的响应   总被引:6,自引:1,他引:5  
马利民  刘禹  赵建夫  安芷生 《生态学报》2003,23(12):2607-2613
通过研究贺兰山油松树轮中全木、综纤维素、α纤维素中占δ^13C值的变化,来探讨树木生长过程中引起其中同位素差别的原因,以及它们对环境变化的响应。研究发现不同组分的占δ^13C值在过去30a中变化并不一致,其中,树轮中α-纤维素中占δ^13C序列含有最强周围环境变化的信息。δ^13C序列和周围大气平均气温和降雨量关系密切,其中和6~8月份的平均气温相关系数为0.427(α=0.05);和2~7月份总降水量的相关系数为(r=-0.514,a=0.01)。分析发现树轮α-纤维素序列和树轮宽度序列呈显著负相关(r=-0.545,α=0.01)。对比树轮各种组分的占δ^13C值和气候之间的相关性及和树木的生长量的关系可以发现,树轮α-纤维素中碳在经历了光合作用的固碳过程中的同位素分馏后,其占δ^13C值就保持了相对稳定,是研究过去环境变化的良好载体。  相似文献   
992.
由褐腐真菌的典型菌株——密粘褶菌Gloeophyllum trabeum的胞外培养液中分离纯化得到一能还原Fe3+,产生羟基自由基HO˙的多肽组分(称作Gt因子)。 采用HO˙特异性的抑制剂硫脲,对Gt因子产生的HO˙在纤维素降解中的作用进行了对照研究,结果表明Gt因子及其产生的HO˙在纤维素降解中起着重要的作用,为褐腐菌HO˙氧化降解纤维素机制假说的确立提供了一些依据。  相似文献   
993.
Bacterial cellulose obtained through fermentation by the Acetobacter xylinum is of superior functional quality in comparison to plant cellulose. Various alkali treatment methods were used to process bio-chemically complex pellicle into a clean cellulose membrane/sheet. The effect of potassium hydroxide, sodium carbonate and potassium carbonate was found to be milder on the final cellulose product in contrast to the widely used sodium hydroxide treatment. These novel treatment methods also caused improvement in the tensile strength of the membranes in comparison to sodium hydroxide. The overall quality of the 0.1 M sodium carbonate- and potassium carbonate-treated cellulose was superior, as the membranes displayed maximum tensile strength and elongation next to the native membrane. The low tensile strength of sodium hydroxide-treated membrane is attributed to its higher swelling characteristics in alkali. Further, the low swelling property of sodium carbonate- and potassium carbonate-treated membranes resulted in their high oxygen transmission rates (low oxygen barrier). Hunter lab colour parameters were determined to assess the effect of different alkali treatments on the colour characteristics of the membranes. Further, based on the high mechanical strength and comparatively low oxygen transmission rates, the processed cellulose membranes may find application as a bio- packaging material for controlled atmosphere packaging, where hydrophilic membranes with high oxygen barrier and water vapour permeation are desirable.  相似文献   
994.
Badal C. Saha   《Process Biochemistry》2004,39(12):1871-1876
A newly isolated strain of the fungus, Mucor circinelloides (NRRL 26519), when grown on lactose, cellobiose, or Sigmacell 50 produces complete cellulase (endoglucanase, cellobiohydrolase, and β-glucosidase) system. The extracellular endoglucanase (EG) was purified to homogeneity from the culture supernatant by ethanol precipitation (75%, v/v), CM Bio-Gel A column chromatography, and Bio-Gel A-0.5 m gel filtration. The purified EG (specific activity 43.33 U/mg protein) was a monomeric protein with a molecular weight of 27 000. The optimum temperature and pH for the action of the enzyme were at 55 °C and 4.0–6.0, respectively. The purified enzyme was fully stable at pH 4.0–7.0 and temperature up to 60 °C. It hydrolysed carboxymethyl cellulose and insoluble cellulose substrates (Avicel, Solka-floc, and Sigmacell 50) to soluble cellodextrins. No glucose, cellobiose, and short chain cellooligosaccarides were formed from these substrates. The purified EG could not degrade oat spelt xylan and larch wood xylan. It bound to Avicell, Solka-floc, and Sigmacell 50 at pH 5.0 and the bound enzyme was released by changing the pH to 8.0. The enzyme activity was enhanced by 27±5 and 44±14% by the addition of 5 mM MgCl2 and 0.5 mM CoCl2, respectively, to the reaction mixture. Comparative properties of this enzyme with other fungal EGs are presented.  相似文献   
995.
Alkaline pretreatment of spruce at low temperature in both presence and absence of urea was studied. It was found that the enzymatic hydrolysis rate and efficiency can be significantly improved by the pretreatment. At low temperature, the pretreatment chemicals, either NaOH alone or NaOH-urea mixture solution, can slightly remove lignin, hemicelluloses, and cellulose in the lignocellulosic materials, disrupt the connections between hemicelluloses, cellulose, and lignin, and alter the structure of treated biomass to make cellulose more accessible to hydrolysis enzymes. Moreover, the wood fiber bundles could be broken down to small and loose lignocellulosic particles by the chemical treatment. Therefore, the enzymatic hydrolysis efficiency of untreated mechanical fibers can also be remarkably enhanced by NaOH or NaOH/urea solution treatment. The results indicated that, for spruce, up to 70% glucose yield could be obtained for the cold temperature pretreatment (-15 degrees C) using 7% NaOH/12% urea solution, but only 20% and 24% glucose yields were obtained at temperatures of 23 degrees C and 60 degrees C, respectively, when other conditions remained the same. The best condition for the chemical pretreatment regarding this study was 3% NaOH/12% urea, and -15 degrees C. Over 60% glucose conversion was achieved upon this condition.  相似文献   
996.
龙胆种子萌发与水溶性内源抑制物质   总被引:13,自引:0,他引:13  
龙胆种子中含有一定活性的内源抑制物质,其对白菜幼根生长的抑制活性高于对白菜种子萌发的抑制活性,对龙胆种子自身萌发也有明显抑制作用;室温浸种可部分去除龙胆种子内源抑制物质;以150 μg·mL-1赤霉素变温浸种处理种子,可提高种子发芽率.据此建立了龙胆种子催芽技术和羧甲基纤维素悬浮液播种技术.  相似文献   
997.
The changes induced by thermal modification in the chemical structure of spruce [Picea abies (L.) Karst.], birch (Betula pendula), aspen (Populus tremula) and oak (Quercus robur) were studied by 13C CPMAS NMR spectroscopy. Spruce, birch and aspen were thermally modified at 195 °C and oak at 160 °C, under steam, according to an industrial-scale heat treatment process. In both hard- and softwood samples, 13C CPMAS NMR measurements revealed a degradation of less ordered carbohydrates (i.e. hemicelluloses and amorphous cellulose) in the thermally modified wood, which resulted in an increase in the cellulose crystallinity. Furthermore, thermal modification induced changes in the lignin structure by a cleavage of the β-O-4 linkages. In the softwood lignin, a decrease also occurred in the methoxyl group content leading to a more condensed lignin structure.  相似文献   
998.
The aim of the study is to examine thermal behavior of water within reticulated structure of bacterial cellulose (BC) films by sub-ambient differential scanning calorimetry (DSC). BC films with different carbon source, either manitol (BC (a)) or glycerol (BC (b)), were produced by Acetobacter xylinum using Hestrin and Shramm culture medium under static condition at 30 ± 0.2°C for 3 days. BC samples were characterized by electron scanning microscopy and X-ray diffraction spectroscopy. The pore analysis was done by B.H.J. nitrogen adsorption. The pre-treated with 100% relative humidity, at 30.0 ± 0.2°C for 7 days samples were subjected to a between 25 and −150°C-cooling–heating cycle of DSC at 5.00°C/min rate. The pre-treated samples were also hydrated by adding 1 μl of water and thermally run with identical conditions. It is observed that cellulose fibrils of BC (a) were thinner and reticulated to form slightly smaller porosity than those of BC (b). They exhibited slightly but non-significantly different crystalline features. The freezable bound water behaved as a water confinement within pores rather than a solvent of polymer which is possible to use thermoporosimetry based on Gibb–Thomson equation to approach pore structure of BC. In comparison with nitrogen adsorption, it was found that thermoporosimetry underestimated the BC porosity, i.e., the mean diameters of 23.0 nm vs. 27.8 nm and 27.9 nm vs. 33.9 nm for BC (a) and BC (b), respectively, by thermoporosimetry vs. B.H.J. nitrogen adsorption. It may be due to large non-freezable water fraction interacting with cellulose, and the validity of pore range based on thermodynamic assumptions of Gibb–Thomson theory.  相似文献   
999.
A kind of antimicrobial fibers, a composite of Chitosan-Dialdehyde Cellulose (C-DAC) fibers, was prepared by using commercially elemental chlorine-free (ECF) bleached kraft softwood cellulose fibers oxidized by periodate and then further grafted by chitosan with different molecular weights. The characteristics of the C-DAC fibers and physical properties as well as antimicrobial activities of the handsheet made of C-DAC fibers were measured. The results show that the dry and rewet tensile indices, antimicrobial activity against Staphylococcus aureus and Escherichia coli, can be improved significantly as the molecular weight of grafted chitosan on the dialdehyde cellulose fibers decreases.  相似文献   
1000.
The Zinnia elegans cell culture system is a robust and physiologically relevant in vitro system for the study of xylem formation. Freshly isolated mesophyll cells of Zinnia can be hormonally induced to semisynchronously transdifferentiate into tracheary elements (TEs). Although the system has proven to be valuable, its utility is diminished by the lack of an efficient transformation protocol. We herein present a novel method to introduce DNA/RNA efficiently into Zinnia cells by electroporation-based transient transformation. Using reporter gene plasmids, we optimized the system for efficiency of transformation and ability for the transformed cells to transdifferentiate into TEs. Optimal conditions included a partial digestion of the cell walls by pectolyase, a low voltage and high capacitance electrical pulse and an optimal medium to maintain cell viability during transformation. Beyond the simple expression of a reporter protein in Zinnia cells, we extended our protocol to subcellular protein targeting, simultaneous co-expression of several reporter proteins and promoter-activity monitoring during TE differentiation. Most importantly, we tested the system for double-stranded RNA (dsRNA)-induced RNA silencing. By introducing in vitro -synthesized dsRNAs, we were able to phenocopy the Arabidopsis cellulose synthase (CesA) mutants that had defects in secondary cell-wall synthesis. Suppressing the expression of Zinnia CesA homologues resulted in an increase of abnormal TEs with aberrant secondary walls. Our electroporation-based transient transformation protocol provides the suite of tools long required for functional analysis and developmental studies at single cell levels.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号