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   1163篇
  免费   132篇
  国内免费   521篇
安全科学   84篇
废物处理   148篇
环保管理   69篇
综合类   863篇
基础理论   289篇
污染及防治   224篇
评价与监测   118篇
社会与环境   16篇
灾害及防治   5篇
  2024年   11篇
  2023年   20篇
  2022年   39篇
  2021年   46篇
  2020年   48篇
  2019年   52篇
  2018年   39篇
  2017年   52篇
  2016年   62篇
  2015年   93篇
  2014年   103篇
  2013年   154篇
  2012年   105篇
  2011年   92篇
  2010年   74篇
  2009年   78篇
  2008年   64篇
  2007年   97篇
  2006年   102篇
  2005年   75篇
  2004年   53篇
  2003年   58篇
  2002年   41篇
  2001年   51篇
  2000年   37篇
  1999年   24篇
  1998年   25篇
  1997年   28篇
  1996年   19篇
  1995年   16篇
  1994年   12篇
  1993年   10篇
  1992年   8篇
  1991年   7篇
  1990年   4篇
  1989年   1篇
  1988年   3篇
  1986年   3篇
  1985年   2篇
  1981年   1篇
  1979年   2篇
  1977年   1篇
  1974年   1篇
  1972年   1篇
  1971年   2篇
排序方式: 共有1816条查询结果,搜索用时 984 毫秒
181.
蛭石吸附及解吸锌离子特性研究   总被引:2,自引:0,他引:2  
用蛭石对锌离子的吸附解吸进行了实验研究,初步探讨了其对锌离子吸附解吸的机理。研究结果表明:蛭石对Zn^2+具有较强的吸附能力,吸附在8h左右接近平衡。随着锌离子浓度的增加,蛭石的吸附量也在逐渐增加,当锌离子浓度达到400mg/L时,吸附量趋于平稳。在完成吸附实验的基础上,分别采用过滤和取上清液的方法解吸,实验证明静置平衡后,取出上清液50ml,再加入50ml解吸剂的方法解吸效果较好;解吸时间在0h到12h,蛭石的解吸量呈现递增的趋势,且达到1.070mg/g;在12h到48h内,解吸量基本没有增加,其中在24h时达到最大解吸量1.074mg/g。不同的解吸剂对蛭石解吸锌离子影响效果不同:蒸馏水不能使锌离子解吸;K^+的影响作用相对于Na^+更明显,随着两种阳离子浓度的增加,蛭石的解吸量逐渐增加。  相似文献   
182.
试验分别研究了反渗透膜Duraslick RO2540和RE2540-TE对APT冶炼离子交换废水的处理效果。研究结果表明,在最佳压力条件下,Duraslick RO2540膜对Cl-的截留率为91.4%,产水率为16.9%;RE2540-TE膜对Cl-的截留率为93.4%,产水率为17.2%。在压力为1.7MPa,温度为25℃时,浓缩实验结果表明,产水中Cl-浓度和膜的截留率随着时间变化而逐渐增加,但膜通量逐渐减小,且RE2540-TE膜通量下降幅度较大。清洗后,RE2540-TE膜通量损失达到6%,而Duraslick RO2540膜通量恢复幅度为98%。  相似文献   
183.
二妃山垃圾填埋场地下水环境质量浅析   总被引:3,自引:0,他引:3  
以武汉市二妃山垃圾填埋场的渗滤液和周边地下水环境质量为研究对象,2007年12月采取垃圾填埋场的渗滤液和周边居民自用水井的地下水进行检测分析和模糊评价。测试目标为pH、总硬度和阴阳离子等。经检测后发现垃圾渗滤液中大部分金属离子含量比较高,部分水井中Fe、Hg、Mn、Pb、NO3离子超过地下水质量标准GB/T14848—1993三级标准,可见垃圾填埋场对周边地下水产生了一定的影响。  相似文献   
184.
比较了9种壳寡/聚糖系列衍生物作为吸附剂对同一浓度铅离子的吸附,结果为交联香草醛壳聚糖(CTSV-G)〉香草醛壳聚糖(CTSV)〉羧甲基壳聚糖(CM-CTS)〉巯基化壳寡糖(O-CTS-SH)〉壳寡糖(O-CTS)〉香草醛壳寡糖(O-CTSV)〉壳聚糖(CTS)〉壳寡糖硫酸酯(O-CTSS)〉羧甲基壳寡糖(CM-O-CTS);比较了同一吸附剂对不同浓度的铅离子的吸附率,其吸附率随着溶液浓度的升高而降低。研究了各吸附剂在铅、镉、铬金属离子竞争中对铅吸附的影响,结果表明各吸附剂对镉和铅离子的吸附效果最好,可达80%,对铬离子吸附较少,在40%左右。  相似文献   
185.
Enhanced Cd uptake and Zn depletion in rice grains and high potential for food Cd exposure by the high-yielding hybrid cultivars of China had been addressed. A field experiment was conducted in 2006 to determine the di erence in grain Cd and Zn between cultivars. Total 110 cultivars including super rice and common hybrid rice cultivars were grown on a single paddy soil (Entic Haplaquept) with a neutral reaction and low total Cd content. Grain Cd and Zn concentrations were determined with graphite atomic adsorption spectrophotometer (GFAAS) and flame atomic adsorption spectrophotometer (AAS) respectively.Wide variation of Cd content in grain was found in a range of 0.004–0.057 mg/kg, while the Zn content in a range of 10.25–30.06 mg/kg among the cultivars. Higher Cd but lower Zn concentration in grains of super rice cultivars was observed compared to the common hybrid ones. A highly significant positive linear correlation of grain Cd/Zn with grain Cd was found for super rice and common hybrid cultivars, meanwhile much higher slope for these hybrid cultivars than the reported non-hybrid cultivars was also observed. Using the limit value of the Chinese chemical guidelines for foods (MOHC and SSC, 2005), calculated potential risk of food Cd exposure with “Zn hungry” through diet intake was prominent with all the studied 110 hybrid rice cultivars, possessing high potential health problems for rice production in South China using the super rice cultivars. Breeding of genotypes of rice cultivars with low grain Cd and low Cd/Zn ratio is needed for rice production in acidic red soils where Cd bioavailability is prevalently high.  相似文献   
186.
ITO/CdS/ZnO interface composite films were successfully prepared by subsequent electrodeposition of CdS and ZnO onto indium tin oxide (ITO) glass substrates. The obtained ITO/CdS/ZnO composite films were characterized with X-ray diffraction (XRD), scanning electron microscopy (SEM), and UV-Vis spectroscopy. The photocatalytic activity of ITO/CdS/ZnO composite films were investigated using methyl orange (MO) as a model organic compound under UV light irradiation. The influence of operating parameters on MO degradation including initial concentration of MO, pH value of solution, and inorganic anion species over the composite films were examined. A blue shift of absorption threshold was observed for the ITO/CdS/ZnO film in comparison with ITO/ZnO film. ITO/CdS/ZnO composite films prepared under specific conditions showed a higher photocatalytic activity than that of ITO/ZnO films. It was also found that the photocatalytic degradation of MO on the composite filing followed pseudo-first order kinetics.  相似文献   
187.
通过实验发现,由于在消解过程中使用玻璃管移取氢氟酸,导致了玻璃中的锌进入了样品中,给样品的分析带来了干扰,从而导致了分析的失败.  相似文献   
188.
一株Zn抗性菌株的筛选鉴定及吸附条件优化   总被引:1,自引:0,他引:1  
采用浓度梯度法从铅锌尾矿区与污水灌溉区土壤中筛选了一株Zn抗性放线菌,并通过形态与培养特征、生理生化特性、细胞壁组分与16SrRNA基因序列分析对该菌株进行了鉴定.同时,综合运用单因素试验与正交试验法对该菌株吸附Zn2+的条件进行了优化.结果表明,菌株CCNWHX72-14经鉴定为高加索链霉菌(Streptomyces ciscaucasicus),其对Zn2+的抗性达到845mg·L-1.锌胁迫生长曲线表明,该菌株在130mg·L-1Zn2+胁迫时生长良好,且最适培养时间为7d.各个单因素条件对该菌株吸附Zn2+的影响顺序为:接种量初始Zn2+浓度初始pH转速温度.该菌株吸附Zn2+的最佳条件为:初始Zn2+浓度为150mg·L-1,初始pH=5,接种量为1%,转速为60r·min-1,温度为28℃.菌株CCNWHX72-14在最佳条件下对Zn2+的吸附较具有良好的重复性与稳定性,最高吸附量可达51.05mg·g-1,该研究为进一步探讨链霉菌的Zn2+吸附机制及其在生物修复中的应用奠定了基础.  相似文献   
189.
Lead and Zn uptake and chemical changes in rhizosphere soils of four emergent-rooted wetland plants; Aneilema bracteatum, Cyperus alternifolius, Ludwigia hyssopifolia and Veronica serpyllifolia were investigated by two experiments: (1) rhizobag filled with “clean” or metal-contaminated soil for analysis of Pb and Zn in plants and rhizosphere soils; and (2) applied deoxygenated solution for analyzing their rates of radial oxygen loss (ROL). The results showed that the wetland plants with di erent ROL rates had significant e ects on the mobility and chemical forms of Pb and Zn in rhizosphere under flooded conditions. These e ects were varied with di erent metal elements and metal concentrations in the soils. Lead mobility in rhizosphere of the four plants both in the “clean” and contaminated soils was decreased, while Zn mobility was increased in the rhizosphere of the “clean” soil, but decreased in the contaminated soil. Among the four plants, V. serpyllifolia, with the highest ROL, formed the highest degree of Fe plaque on the root surface, immobilized more Zn in Fe plaque, and has the highest e ects on the changes of Zn form (EXC-Zn) in rhizosphere under both “clean” and contaminated soil conditions. These results suggested that ROL of wetland plants could play an important role in Fe plaque formation and mobility and chemical changes of metals in rhizosphere soil under flood conditions.  相似文献   
190.
A controlled hydroponic experiment was undertaken to investigate Cd uptake in relation to the activity of Cd species in solution other than the free ion (Cd2+) by maintaining a constant Cd2+ activity under variable SO42 and Cl concentrations exposed to maize (Zea mays var. Cameron) plants. The objectives of these experiments were: (1) to distinguish and quantify the different uptake rates of free and inorganic-complexed Cd from nutrient solution, and (2) to model the uptake of Cd by maize with a Biotic Ligand Model (BLM) in a system which facilitates the close examination of root characteristics. Results of the current experiments suggest that, in addition to the free ion, CdSO40 complexes are important factors in determining Cd uptake in nutrient solution by maize plants. Higher nominal SO42 concentrations in solution generally resulted in a greater Cd accumulation by maize plants than predicted by the Cd2+ activity. A better integration of the complete dataset for the 3 harvest times (6, 9 and 11 days after treatment) was achieved by including consideration of both the duration of Cd exposure and especially the root surface area to express Cd uptake. Similarly, the fit of the BLM was also improved when taking into account exposure time and expressing uptake in terms of root morphological parameters.  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