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   52篇
  免费   8篇
  国内免费   4篇
安全科学   4篇
废物处理   4篇
环保管理   19篇
综合类   24篇
环境理论   1篇
污染及防治   4篇
社会与环境   8篇
  2023年   2篇
  2022年   2篇
  2021年   2篇
  2020年   5篇
  2019年   3篇
  2018年   5篇
  2017年   6篇
  2016年   12篇
  2015年   1篇
  2014年   4篇
  2013年   4篇
  2012年   4篇
  2011年   5篇
  2010年   1篇
  2009年   2篇
  2008年   2篇
  2005年   1篇
  2003年   1篇
  2000年   1篇
  1998年   1篇
排序方式: 共有64条查询结果,搜索用时 15 毫秒
11.
中国并网光伏发电系统的经济性与环境效益   总被引:2,自引:0,他引:2  
太阳能已成为世界各国公认的最为理想的替代能源,其应用规模不断扩大.但光伏发电系统高昂的成本,成为限制其发展的关键因素.本文应用净现值和单因素敏感性分析工具,建立了光伏发电成本的计算模型,以我国34个省会城市作为研究案例,对井网光伏发电系统进行了经济性和环境效益分析.结果显示:在目前政府初始投资补贴一半的情况下,并网光伏发电成本介于0.83-2.29元/kWh之间.即便在光照资源最丰富的地区,并网光伏发电仍无法与常规能源发电相竞争.在影响并网光伏系统发电成本的诸多影响因素中,政府初始投资补贴额度、水平面太阳能辐射量和投资密度的敏感性最强;CDM资金的注入对光伏发电成本的降低具有积极的作用.激励政策方面,出台合适的、稳定的上网电价对启动国内光伏市场最为有效.光伏发电系统的环境效益是指光伏发电的减排环境效益扣除系统发电环境成本的余额.经计算并网光伏发电具有显著的环境效益,其环境效益为0.0165元/kWh.本研究对于国家制定光伏发电的激励政策和成本分摊机制具有重要的参考价值.  相似文献   
12.
马航  李祥  黄勇  魏凡凯 《中国环境科学》2016,36(12):3672-3677
以光伏废水为研究对象,利用启动成功的协同反硝化反应器,在进水F-浓度为800mg/L,NO3--N为350mg/L的条件下,控制进水C/N为0.7左右,实现反硝化过程无需酸碱调控,TN去除率为90%以上,TN去除速率为2.0~2.5kg/(m3·d).除氟试验表明,通过投加CaO初步除氟能将F-浓度降低至800mg/L,同时将pH提升至7.68,满足协同反硝化的pH范围(7.5~8.5)要求;二次除氟能有效降低废水中残余的F-及协同反硝化生成的SO42-.针对多数含F-浓度超过800mg/L的光伏废水,可采用先初步除氟、协同反硝化脱氮,最终二次除氟、除硫酸盐的工艺路线.相比于完全异养反硝化脱氮处理光伏废水,采用协同反硝化可节约脱氮成本0.82元/t.  相似文献   
13.
采用有机溶剂邻二氯苯中温法溶出模拟光伏组件的封装材料乙烯-醋酸乙烯酯(EVA),探究了不同条件下EVA的溶出率及模拟组件的分离率,通过正交实验确定了有机溶剂中温法处理EVA的最佳条件。实验结果表明,在反应温度160 ℃、固液比(光伏组件个数与邻二氯苯体积之比,个/mL)4∶100、搅拌转速800 r/min、反应时间240 min的最佳条件下,EVA的溶出率为95.0%,模拟组件的分离率达100%。各影响因素的主次顺序为反应温度>反应时间>搅拌转速>固液比。反应前后邻二氯苯的主要官能团未发生变化。  相似文献   
14.
相变储能光伏太阳能热泵干燥系统的研究   总被引:1,自引:0,他引:1  
建立了相变储能光伏太阳能热泵干燥系统实验平台,介绍了系统的运行方式以及太阳能光伏集热蒸发器与直流压缩机的匹配计算,最后对实验数据进行了分析。结果表明,太阳能辐照量为800 W/m~2、光伏集热蒸发器面积为12 m~2的条件下,系统制热功率为10 k W,太阳能光伏集热蒸发器发电量为6.2 k W·h,大于直流压缩机的耗电量,满足供电要求;实验所得系统COP为3.25。相变储能可以解决太阳辐照波动导致的系统运行不稳定问题,具有显著的节能性和环保性。  相似文献   
15.
Simulation of helio-photovoltaic system is continuously undergoing revolution through diverse parameter modifications which closely mimic the experimental data. In retrospect, the current work has presented a nonlinear modification of equivalent circuit parameters and simulated the same for different semiconductors (crystalline and thin films); furthermore, established a mathematical relation between the coefficients of solar irradiance and module temperature (SIMT); moreover, investigated the influence of SIMT on the model parameters. The simulation upshot reveals that increment in solar irradiance (SI) intensifies the output current whereas an increase in module temperature (MT) diminishes the output voltage; the SIMT coefficients developed validated well with the manufacturers data; the influence of SI was evident on the photon current, diode current, and shunt resistance whereas the effect of MT was pronounced on the diode current, ideality factor, and shunt resistance. Thus, the provision made by this work is essential for advanced design and simulation of helio-photovoltaic systems.  相似文献   
16.
根据秦皇岛地理位置特点和城市定位,秦皇岛市开发利用太阳能主要从光伏发电、太阳能生态建筑、太阳能与风能协同进行海水淡化、太阳能与地热复合式空调系统和旅游场所综合利用太阳能等几方面进行发展。  相似文献   
17.
Increased environmental awareness and interest in long-term sustainability of material resources has motivated considerable advancements in composite materials made from natural fibers and resins, or biocomposites. In spite of these developments the lower stiffness and strength of biocomposites has limited their applications to non-load-bearing components. This paper presents an overview of a study aimed at showing that the shortcomings of biocomposites can be overcome through hybrid material designs and efficient structural configurations to make them suitable for load bearing structural components. Hybrid blends of natural and synthetic fibers can significantly improve the characteristics of biocomposites with minimal cost and environmental impact, and hierarchical cellular designs can maximize material efficiency in structural components. Periodic and hierarchical cellular plate designs made from natural fibers and unsaturated polyester resin were evaluated experimentally and analytically. Stiffness, strength, and dimensional stability of all-biocomposite and hybrid natural–synthetic material systems were evaluated through material tests while structural performance of cellular plate designs was assessed through flexural tests on laboratory-scale samples. The experimental results were correlated with analytical models for short-fiber composites and cellular structures. The results showed that biocomposites have adequate short-term performance and that they can efficiently compete with housing panels made from conventional structural materials.  相似文献   
18.
In this paper, the assessment and modelling of alternative renewable energy systems for Masirah Island is considered. The hybrid system that is simulated comprises various combinations of wind turbines and/or photovoltaic (PV) supplemented with diesel generators and short-term battery storage. It was found from the analysis that the PV–wind–diesel hybrid system, with battery unit, has the lowest cost values as compared to solar-only or wind–diesel hybrid systems. Furthermore, the study illustrates that for a given hybrid system the presence of battery storage will reduce diesel consumption. The decrease in carbon emission, the percentage of fuel savings, the cost of energy production and the effect of wind and PV penetration are also addressed in this paper. The PV–wind–diesel hybrid option is techno-economically viable for the electrification of the Masirah Island.  相似文献   
19.
ABSTRACT

This work deals with the optimization of an hybrid energy system used to supply an isolated site. The proposed system combines a wind turbine, a photovoltaic panel, a diesel generator and a battery bank to electrify atypical home. An energy cost-effectiveness approach is adopted in accordance with meteorological data, time profile of energy consumption, and the cost of different alternative systems. A variety of performances is obtained through simulations within the Homer Pro environment. The selection of an optimal combination is based on the maximum integration of renewable energy in the suggested system with a minimum of gas emission. According to the obtained results, the overall cost of the selected installation is about 72,900 €, with 0.415€ the unit cost of a kWh electric energy provided with a contribution of renewable energy of around 86%. Simulations show a technical and financial benefits of the different configurations obtained to supply the target site. To control the proposed hybrid energy system, a supervision algorithm is developed and implemented on TMS320F28027 DSP platform. The proposed energy system aims to take advantages of renewable energy sources and shift to conventional sources only when necessary in order to ensure source autonomy and service continuity.  相似文献   
20.
To increase the efficiency of photovoltaic (PV) systems, maximum power point (MPP) tracking of the solar arrays is needed. Under partially shaded conditions (PSCs), the solar arrays power–current (P–I) characteristic has multiple MPP. This paper presents various methods and approaches of tracking the MPP from a PV generator operating under PSC. Some comparisons, advantages, drawbacks and critical analysis of each method are discussed. It was found that, indirect methods use empirical data or mathematical expressions of numerical approximations to estimate the MPP from the PV generator’s voltage, current and irradiance. Direct methods offer the advantage of obtaining the actual maximum power from the PV generator’s voltage and current. Artificial intelligence methods do not need exact mathematical models. They can perform under parameter variation, load and supply voltage disturbances. Finally, novel methods require less number of iterations to converge, independent to the initial conditions. All these algorithms can be included in some of the DC/DC converters and MPP trackers for stand-alone or grid-connected systems.  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