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   1133篇
  免费   69篇
  国内免费   119篇
林业   84篇
农学   112篇
基础科学   104篇
  256篇
综合类   515篇
农作物   28篇
水产渔业   119篇
畜牧兽医   62篇
园艺   21篇
植物保护   20篇
  2024年   11篇
  2023年   31篇
  2022年   36篇
  2021年   36篇
  2020年   44篇
  2019年   59篇
  2018年   32篇
  2017年   61篇
  2016年   67篇
  2015年   66篇
  2014年   70篇
  2013年   99篇
  2012年   93篇
  2011年   101篇
  2010年   70篇
  2009年   78篇
  2008年   70篇
  2007年   51篇
  2006年   54篇
  2005年   49篇
  2004年   36篇
  2003年   24篇
  2002年   13篇
  2001年   13篇
  2000年   9篇
  1999年   8篇
  1998年   8篇
  1997年   6篇
  1996年   3篇
  1995年   2篇
  1994年   2篇
  1993年   6篇
  1992年   2篇
  1991年   2篇
  1990年   1篇
  1989年   3篇
  1988年   3篇
  1987年   1篇
  1984年   1篇
排序方式: 共有1321条查询结果,搜索用时 31 毫秒
1.
姜玉梅  张俊义  苏奇  段建安 《油气储运》2001,20(11):27-29,32
加热炉一般以原油或渣油为燃料,在其运行过程中,大量烟尘沉落在炉体内,烟尘的不断堆积,导致加热炉热效率下降,而吹扫炉膛又使大量烟尘进入环境,造成环境污染,为达到污染物的国家排放标准,就必须对排放的烟尘进行回收治理,根据燃油烟尘易漂浮并沾粘的特点,对几种除尘技术进行了比较,重点推荐了效果较好的滤袋式除尘器技术,提出了现场应用的要求。  相似文献   
2.
以城市污水ANOXIC—OXIC工艺出水为处理对象,在中试规模上研究了新建组合填料潜流湿地的脱氮除磷效能。结果表明,当COD面积负荷率、TN面积负荷率、TP面积负荷率、HRT(水力停留时间)分别为8.7~22.1g/(m^2·d)、7.29~24.28g/(m^·-d)、0.94—1.84g/(m^2·d)、0.48—0.59d时,①湿地启动阶段,COD去除率为30.3%、面积负荷去除率为6.63g/(m^2·d)、反应动力学常数为0.23m/d;SS去除率为45.5%;氨态氮、亚硝态氮和硝态氮的去除率分别为9.3%、40.0%和25.0%;TN去除率为14.9%、面积负荷去除率3.63g/(m^2·-d)、反应动力学常数为0.10m/d;TP去除率为92.4%、面积负荷去除率为0.93g/(m^2·-d),反应动力学常数为O.94m/d。②稳态运行阶段,COD去除率为33.9%,面积负荷去除率为2.98g/(/m^2·d),反应动力学常数为0.24m/d;SS去除率为50.0%;氨氮、亚硝氮和硝氮的去除率分别为50.2%、41.9%和24.7%;TN去除率为29.9%,面积负荷去除率为2.19g/(m^2·d),反应动力学常数为0.18m/d。TP去除率为90.5%、面积负荷去除率为0.89g,/(m^2·d)、反应动力学常数为0.86m/d。③随TN面积负荷增加,TN面积负荷去除率和TN动力学常数均随之线性增加;随TP面积负荷增加,TP面积负荷去除率随之线性增加,而反应动力学常数呈幂函数增加。  相似文献   
3.
干渣吸附处理含磷污水的研究   总被引:1,自引:0,他引:1  
采用批量平衡法,研究了水体磷浓度、干渣粒径和温度对干渣吸附除磷效果的影响,探讨了干渣对水体中磷素的选择性吸附特征及其饱和吸附磷素后的解吸释磷现象。结果表明,溶液浓度越高,干渣吸附除磷速率越慢,效率越低。磷浓度为6和12mg·L^-1时,作用20h后,除磷效率可达90%。干渣粒径越小,除磷速率越快,效果也越好,磷浓度为12mg·L^-1,吸附平衡后,30、60和100目干渣的除磷效率分别为80%、93%和96%。温度对干渣除磷效果的影响较大,磷浓度为12mg·L^-1,25和35℃时,除磷效率可达95%,但在5℃时,除磷效率仅为75%。干渣能够选择性地吸附去除水体中的磷素,适宜作为除磷吸附剂,处理多种含磷污水。  相似文献   
4.
以酵母菌为载体,废弃烟叶提取物为还原剂,制备酵母菌载纳米铁(TB–Fe/SCNPs),并探究其去除水中2, 4, 6–三氯酚(2, 4, 6–TCP)的性能。结果表明:负载在酵母菌上的纳米铁为粒径(77.6±16.1) nm的球形颗粒;TB–Fe/SC NPs去除2, 4, 6–TCP主要包括吸附和氧化降解2种途径,符合拟二级反应动力学模型;溶解氧和羟自由基在TB–Fe/SC NPs氧化降解2, 4, 6–TCP中起重要作用;TB–Fe/SC NPs对2, 4, 6–TCP的去除率随温度的升高而增大,随2, 4,6–TCP初始浓度的增大而减少,而反应体系的pH值对TB–Fe/SCNPs去除2,4,6–TCP的影响较小;TB–Fe/SCNPs用量为1.0~3.0g/L时,2,4,6–TCP的去除率随TB–Fe/SCNPs用量的增大而增大;Fe3+、Mg2+、Ca2+和SO42–能促进TB–Fe/SCNPs去除2,4,6–TCP的反应,HPO42–、HCO3–和腐殖酸则对反应有抑制作用,而K+、NO3–和Cl–对2, 4, 6–TCP的去除影响不明显;TB–Fe/SC NPs能在室温下稳定...  相似文献   
5.
To examine the effects of plastic film removal on grain yield and soil organic matter (SOM), a spring maize (Zea may L.) field experiment was conducted for 5 yr at Changwu Agricultural and Ecological Experimental Station of Northwest China. Compared with traditional plastic film mulching during entire growing stages (FM), plastic film removal at the silking stage (RM) resulted in a 6.3% higher average maize yield. Under the RM treatment, soil organic carbon and total nitrogen significantly increased after the 5‐yr cultivation in the 0‐ to 20‐cm layer. Significant increases in extractable organic C (EOC), KMnO4‐oxidizable C (KMnO4‐C) and C management index (CMI) in the 0‐ to 20‐cm layer, and light fraction organic C and EOC in the 20‐ to 40‐cm layer were observed in response to plastic film removal after the 1‐yr treatment; the responses were more significant after 5 yr. Under the RM treatment, significant increases in microbial biomass C, light fraction organic N, extractable organic N, KMnO4‐C and CMI were also observed after five years in the 20‐ to 40‐cm layer. Moreover, KMnO4‐C and EOC were much more sensitive than other labile SOM fractions to the application of RM, even after only 1 yr of cultivation. Therefore, compared with mulching for the whole growing season, plastic film removal at the maize silking stage is an effective option for increasing yields and enhancing SOM concentration and soil sustainability in the regions with semiarid monsoon climates that have sufficient rainfall during maize reproductive stages.  相似文献   
6.
This study tests the basic hypothesis that the removal of charr, Salvelinus alpinus (L.), would cause an increase in both the growth and density of a sympatric trout population, Salmo trutta L. The charr population was characterised by slow‐growing individuals, with a high proportion of mature fish, that is typical for so‐called overpopulated populations. A total of 31,000 charr was removed from the lake in the period 1990–1992, and the density of younger trout (1+, 2+), but not older trout (3+, 4+), increased. The growth of older trout (3+, 4+) increased, but the evidence for similar growth increases of younger trout (1+, 2+) was limited. From 1989 to 1990, the proportion of trout increased from 30 to only 40% of the total catch, but from 1991 to 1994, it was significantly higher (60–80%) than that of charr. Total trout biomass increased to a maximum in 1992 and then decreased so that the biomass of 1994 was nearly similar to that of 1989, that is before the start of the charr removal. Back‐calculated lengths of trout from otoliths showed that 2+ and 3+ trout caught in the pelagic were growing consistently faster over previous years than those caught in the littoral, while this was not the case for the 4+ fish. Therefore, the hypothesis was partially supported; the growth rate of trout increased (age groups 1+ to 4+), while the density of juvenile trout (1+, 2+), but not the older trout (3+, 4+), increased after the removal of charr.  相似文献   
7.
剩余污泥臭氧化减量处置方法研究进展   总被引:1,自引:0,他引:1  
谭笑 《安徽农业科学》2015,(11):255-256
综合臭氧污泥减量化近年来的发展和研究,对其技术原理和工艺应用进行分析,提出了其现存问题,并讨论了未来的技术发展万向.  相似文献   
8.
The effects of the severity and timing of leaf removal(LR) on the amino acids of Sauvignon Blanc grapes and wines were studied during the 2017 growing season. High-performance liquid chromatography(HPLC) was used to analyze the amino acids profiles of grape berries and wines. The basal leaves were removed at three time points(40, 56 and 72 days after flowering, named LR40, LR56 and LR72, respectively) at two severity levels(one at which the first, third, and fifth basal leaves of each shoot were removed(50% level); and another at which the first six basal leaves were removed(100% level)). The results showed that leaf removal had little impact on total soluble solids(°Brix), titratable acidity, pH or berry weight. The LR72-50% treated grapes had higher berry weight, titratable acidity and °Brix than those of the other treatments. The highest concentrations of total amino acids and of total amino acids except proline were detected in LR72-50% treated grapes(2 952.58 and 2 764.36 mg L~(-1), respectively); the lowest were detected in LR72-100% treated grapes(2 172.82 and 2 038.71 mg L~(-1), respectively). LR72-50% treatment significantly promoted the synthesis of aspartic acid, serine, arginine, alanine, aminobutyric acid and proline at both severity levels for grapes, the concentrations of all of these amino acids were increased relative to the control concentrations. The LR72-50%, LR40-100% and LR72-100% treated wines had higher total amino acids concentrations and higher concentrations of some individual amino acids, such as arginine, alanine and serine, than did the control wines. Of all the amino acids studied, glycine, tyrosine, cysteine, methionine and lysine were not significantly influenced by the timing or severity basal defoliation in grapes and wines. The present study reveals the effects of the timing and severity of leaf removal on the amino acids profiles of grapes and wines.  相似文献   
9.
Three of the most commonly used veterinary antibiotics—enrofloxacin (ENR), sulfamethoxazole (SMX), and oxytetracycline (OTC)—were chosen as representative antibiotics for UV/H2O2 treatments. The objective was to determine the optimization of UV/H2O2 to remove antibiotics from aquaculture discharge water using response surface methodology. The degradation of the antibiotics was investigated under varying UV/H2O2 conditions in environments with different levels of pH, water matrices, humic acid, and constituent ions. The degradation results demonstrated that increasing the H2O2 dosage facilitated ENR degradation at a neutral pH while facilitating degradation of SMX and OTC at a slightly acidic pH. The optimum removal conditions for ENR, which was used in all influential effect experiments and the contact tank experiments, was obtained at 10 mM H2O2, a pretreated COD of 87.51 mg L−1, and an initial pH of 6.15. Among the tested anions, only the presence of Cl- showed slight positive effects on ENR degradation, due to the generation of secondary active radicals. During the reaction, the hydroxyl radical (OH) was present at a higher pH while singlet oxygen (1O2) was slightly present at a lower pH. The experimental results from H2O2 sequential addition indicated that freshly added H2O2 could quench the recently generated OH and therefore a high H2O2 concentration with frequent adding was not necessary. Our contact system reduced the ENR concentration in both the effluent reservoir and in the UV irradiation zone. The overall results supported the use of the UV/H2O2 system to treat remnant antibiotics in the discharge water.  相似文献   
10.
The estimation of crop nitrogen status in fresh vegetation leaf using field spectroscopy is challenging due to the weak responses on leaf/canopy reflectance and the overlapping with the absorption features of other compounds. Although the spectral indices were proposed in the literature to predict leaf nitrogen content (LNC), the performance of selected spectral indices to estimate the LNC is often inconsistent. Moreover, the models for nitrogen content estimation changed with the growth stage. The goal of this study was to evaluate the performance of published indices, ratio of data difference index (RDDI) and ratio of data index (RDI) developed by band iterative-optimization algorithm in LNC estimation. The correlation analysis, linear regression and cross validation were used to analyze the relationship between spectral data and LNC and construct the best performed estimation model. The study was conducted by the data of five growing seasons of litchi from the orchards in Guangdong Province of China. Results showed that the relationship between chlorophyll (Chl) related spectral indices and LNC varied with the growth stage. Even in flower bud morphological differentiation stage and autumn shoot maturation stage, there were not significant correlations between the proposed spectral indices and LNC. Besides it is difficult to estimate the LNC by the general model across the growth stages due to the integrated effects of cultivar, biochemical, canopy structure, etc. The band iterative-optimization algorithm can improve the sensitivity of spectral data to LNC to some extent. The optimal RDDI performed better than other indices for the synthetic dataset and the dataset in each growth stage. And the sensitive bands selected in the optimal indices at each growth stage are not consistent, which are not only related to the Chl absorption but also other biochemical components, such as starch, lignin, cellulose, protein, etc. In general, the LNC can be estimated by the optimized CR-based RDDI indices in autumn shoot maturation stage, flower spike stage, fruit maturation stage, and flowering stage with the R2 > 0.50 and RMSE < 0.14. Although there were the significant relationship between RDIs and RDDIs in flower bud morphological differentiation stage, the highest R2s of the model developed by RDDIs and RDIs were less than 0.50 in cross validation. This study indicated that the applicability of canopy reflectance to estimate litchi LNC was closely related to the growth stage of litchi. Growth stage-specific models will be preferred for estimating litchi LNC estimation.  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