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   10篇
  免费   1篇
  国内免费   3篇
废物处理   1篇
环保管理   3篇
综合类   4篇
基础理论   2篇
污染及防治   3篇
灾害及防治   1篇
  2024年   1篇
  2022年   2篇
  2021年   1篇
  2020年   2篇
  2018年   1篇
  2015年   1篇
  2013年   2篇
  2011年   1篇
  2010年   1篇
  2002年   2篇
排序方式: 共有14条查询结果,搜索用时 15 毫秒
1.
Judiciously engineering the electrocatalysts is attractive and challenging to exploit materials with high electrocatalytic performance for hydrogen evolution reaction. Herein, we successfully perform the interface engineering by alternately depositing Co–P and Ni–Fe–P films on nickel foam, via facile electroless plating and de-alloying process. This work shows that there is a significant effect of de-alloying process on alloy growth. The electronic structure of layered alloys is improved by interface engineering. The multilayer strategy significantly promotes the charge transfer. Importantly, the Co–P/Ni–Fe–P/NF electrode fabricated by interface engineering exhibits excellent electrocatalytic hydrogen evolution activity with an overpotential of 43.4 mV at 10 mA cm-2 and long-term durability for 72 h in alkaline medium (1 mol L-1 KOH). The innovative strategy of this work may aid further development of commercial electrocatalysts.  相似文献   
2.
Environmental Science and Pollution Research - Longchun 30, a new wheat variety, was used to investigate seedling growth, element absorption, and antioxidant response under 150 mM NaCl and tea...  相似文献   
3.
目的 从微观分子的角度对硝酸羟胺(HAN)基电控固体推进剂(Electrically Controlled Solid Propellants,ECSP)的性能参数进行模拟与计算。方法 利用分子表面静电势(ESP)对HAN分子2种可能的构型进行优化和稳定性分析。通过真空非周期性分子动力学模拟得到聚乙烯醇(PVA)分子稳定构型,并以HAN基ECSP的主要成分按一定比例构建凝胶模型。基于RESP(Restrained Electrostatic Potential)电荷生成更准确的凝胶模型拓扑文件,并进行凝胶模型的分子动力学模拟、模型稳定分析以及模型参数计算。结果 凝胶模型总能量相对平均值的周期性波动不超过7%。由于三维PVA链的包裹,H2O分子的扩散系数被大幅削弱。氢键分析和径向分布函数表明氢键键长主要分布在0.282 6 nm附近,PVA与H2O间的氢键较少,H2O与HAN、H2O与H2O之间的氢键较多。模型密度为1.405 g/cm3,与实验值吻合度高。在283、293、303 K下,HAN基ECSP凝胶模型的拉伸模量依次降低,剪切模量先增后减。在15 K/600 ps冷却速率下,HAN基ECSP凝胶模型的拉伸模量和剪切模量均增大。结论 ECSP制备结束后,冷却过程中的环境温度不宜过高,否则容易造成ECSP力学性能的快速下降,快速冷却可以提高ECSP的力学性能。  相似文献   
4.
UBAF与纤维球过滤结合工艺应用于污水回用的试验研究   总被引:6,自引:0,他引:6  
利用升流式曝气生物滤池 (UBAF)与纤维球过滤相结合的工艺对城市污水进行深度处理 ,使其达到回用的要求。结果表明 :对于经过二级处理后的可生物降解性较差的城市污水 ,应用UBAF和纤维球过滤相结合的处理工艺能够取得很好的效果 ,处理后的污水完全可以达到污水排放的一级标准和城市生活杂用水的标准  相似文献   
5.
针对目前许多废钻井液固化剂产品达不到降低污染物浓度的要求,而效果较好的产品价格昂贵,处理成本高,难以推广使用的问题,选取了9种固化剂进行固化实验,通过针入度测定仪、固化效果比对,参考相应市场价格,筛选出经济效益较高的固化剂,为同行业开展固化处理提供参考和借鉴。  相似文献   
6.
升流式曝气生物滤池深度处理城市污水的工艺特性   总被引:29,自引:1,他引:28  
用升流式曝气生物滤池(UBAF)处理城市污水.经二级生化处理后,城市污水可生化性很差,但UBAF对其中的COD、BOD5、SS、氨氮以及浊度分别有22.2%, 55%, 84.4%, 49%,75.6% 的去除效率.进水的有机负荷,水力负荷对BAF的运行效果均有一定的影响.  相似文献   
7.
The main aim of this study is to assess the preparation, sintering behavior, and expansion performance of ceramsite filter media (CFM) from dewatered sewage sludge, coal fly ash, and river sediment without using any natural resources. The results showed that the investigated physical properties of lab made CFM met with the China’s industrial standard of CJ/T 299-2008 and the concentration of heavy metals in the lixivium was lower than the threshold of GB 5085.3-2007. During the sintering process, the relationships between ignition loss rate, expansion rate, and sintering temperature could be well described simultaneously by the 3-order polynomial fitting curve, with high correlation coefficient values (R 2 > 0.999). The fitting curves of the ignition loss rate and expansion rate had one peak and one valley, respectively, and their cut-off point that is the sintering temperatures were the same (700 °C). The whole sintering process could be divided into two stages. The ignition loss rate was gradually increased in both the stages. At the same time, the expansion rate was decreased in the first stage and then increased in the second stage. The significance of this work is to pursue the concept of sustainable development.  相似文献   
8.
Variations of levels, possible source and air mass transmission were investigated for 16 USEPA priority-controlled PAHs in PM2.5 during 2018 Chinese Spring Festival (CSF) in Xiangyang City, central China which is the North-South pollutant airmass transport channel of China. Totally 37 samples were collected. Mass concentrations of Σ16PAHs for the Pre–CSF day (Pre–CSFD), during the CSF day (CSFD) and after the CSF day (Af–CSFD) are 33.78 ± 17.68 ng/m3, 22.98 ± 6.49 ng/m3, and 8.99 ± 4.44 ng/m3, respectively. High resolution samples showed that Σ16PAHs are higher in the morning (06:00–11:00) or afternoon (11:30–16:30), than those in the evening (17:00–22:00) and at night (22:30–05:30), whereas the result is reversed during the CSFD. Fireworks burning can obviously increase the mass concentration of PAHs. Air mass trajectory indicated that Xiangyang is a sink area of pollutants for northwest and southeast, and the sources of the northeast and southwest. The air mass only can be transmitted out through northeast and southwest. It is effective for improvement of air quality in Wuhan and Hunan to control fireworks emission in Henan and local areas. Fireworks burning was an important source for PAHs during CSFD, biomass, coal combustion, and traffic emission were the main sources of PAHs for Pre–CSFD and Af–CSFD periods. The health risk on the CSFD was higher than the acceptable levels, especially during the intensive fireworks burning, the risk value far exceed 1.0 × 10?4, controlling burning fireworks is required.  相似文献   
9.
通过自行设计的厌氧发酵装置,研究不同氮源对常温(20℃)和中温(35℃)条件下麦秆厌氧发酵的影响。结果表明,在常温和中温条件下进行麦秆沼气厌氧发酵时,适量添加外部氮源可加快产气速率,增加产气量,缩短产气停滞时间,其中添加牛粪效果最好,分别在182 d和84 d时发酵完全,总累积产气3 486.80 mL和4 210.70 mL,干物质累积产气量为217.93 mL/g和263.17 mL/g,且在实验期间未出现产气停滞。添加尿素处理次之,分别在累积产气215.70 mL和238.00 mL时进入61 d和20 d的产气停滞期,在196 d和143 d时发酵完全,在实验结束时,累积产气2 784.20 mL和3 454.00 mL,干物质累积产气量为174.01 mL/g和215.88 mL/g。可见,在以秸秆为原料的沼气发酵过程中,可通过添加适量的外部氮源和提高发酵温度来提高沼气产量,而且在条件允许的情况下,应尽量添加畜禽粪便等有机氮源。  相似文献   
10.
在现有研究成果的基础上,基于断裂力学理论提出了适用于桥梁结构钢的低温疲劳寿命估算方法。利用室温环境下的疲劳性能参数和低温环境的基本力学性能参数对低温环境下的疲劳极限、疲劳裂纹扩展门槛值等进行预测,建立疲劳裂纹扩展速率模型,应用等效初始裂纹法估算低温环境下桥梁钢的疲劳寿命,并通过塑性区裂纹尺寸修正进行低周疲劳寿命预测。通过算例表明,该方法能够较为准确的预测Q345qD钢试件的拉伸疲劳寿命,从而避免了成本高昂的低温疲劳试验,为钢结构桥梁的低温疲劳分析提供简便而实用的依据。  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