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排序方式: 共有210条查询结果,搜索用时 156 毫秒
1.
Barbara Marchetti Francesco Corvaro Giancarlo Giacchetta Fabio Polonara Roberta Cocci Grifoni Mariella Leporini 《International Journal of Sustainable Engineering》2018,11(3):173-185
On the basis of the method for managing the end of life of CdTe photovoltaic panels previously proposed by the authors, a new method for the recycling of all types of thin-film panels (CdTe, a-Si and CIS/CIGS) has been developed and optimised under a research project founded by Enel Foundation and CRUI Foundation. The DGP process has been developed through a feasibility study carried out from three points of view: technical, environmental and economic. The process is composed by two sub-processes matched to each other, one suitable for CdTe panels (named DGPa) and the other one for a-Si and CIS/CIGS panels (DGPb). The Double Green Panel process is based mainly on mechanical treatments with a minimum use of chemicals and it is characterised by a greater level of automation and a high flexibility in production capacity. The potential environmental impacts of various configurations of the DGP process have been extensively analysed with LCA tool in order to develop an environmentally friendly process. The economic feasibility has been assessed through the Discounted Cash Flow Analysis (DCFA) method. The revenues associated to the recovery of valuable and common materials and the recycling costs have been taken into account. 相似文献
2.
在阐述了宁夏地区光伏发电发展的优势及发展现状的基础上,分析了光伏发电开发利用对宁夏生态环境产生的积极和消极的影响,并为降低消极影响提出了相应的对策;为了定量直观的评估光伏发电积极影响和消极影响所产生的环境效益,分别建立了节能减排、防风固沙和土地增值、景观效应、植被恢复费用、噪声污染超标罚款、光污染费用等价值模型及光伏发电总的生态环境效益价值模型;最后以中电投宁夏能源铝中卫香山光伏电站为例进行计算验证,结果表明模型的合理性和准确性,同时光伏电站的节能减排效益显著。相对于传统的火力发电,表现了优越的环境效益。 相似文献
3.
以某年产25万吨大型碳化硅园区无组织排放面源为例,提出基于多个地面站气象数据的CALPUFF模型地面浓度反推方法,优化流场模拟,使得无组织面源源强核算结果更加准确,并以环境保护目标空气质量达标为原则,核算其大气污染物减排指标,得出具体结论:园区大气污染物SO2、NOX、CO、PM10年排放量分别为449.06t、86.98t、5158.58t、115.06t;无组织排放SO2、CO及PM10的减排比例分别为63.5%、19.2%、42.44%,对应减排量分别为285.16 t/a、990.45 t/a、48.83 t/a。 相似文献
4.
为了研究废砂浆中碳化硅粉和硅粉的分离情况,选用混合模型对柱型水力旋流器多相流流场进行数值模拟。模拟结果表明:柱型水力旋流器的分离效率与入口速度、进口浓度等因素有关,并分析出一定条件下当主、次相的入口速度均为1.1m/s时颗粒分离效果较好,分离效率较高,实验检测分离性能较好,为进一步实验研究提供一定的指导。 相似文献
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Some emerging technologies are expected to be pivotal for solving many of the environmental challenges faced today, especially those related to energy. However, many of these technologies may incur significant environmental impacts over their life cycle, while having environmental benefits during their use. This paper presents results of a Life Cycle Assessment (LCA) of a proposed type of nanophotovoltaic, quantum dot photovoltaic (QDPV) module. The LCA is confined to the stages of raw materials acquisition, manufacturing, and use. The impacts of QDPV are compared with other types of PV modules and energy sources - both renewable and nonrenewable. To provide a comprehensive comparative assessment, QDPV modules were compared with mature as well as emerging PV types for which data are available. Comparative assessment with other types of energy sources includes coal, oil, lignite, natural gas, diesel, nuclear, wind, and hydropower.QDPV modules may have the potential to overcome two current barriers of solar technology: low efficiencies and high manufacturing costs. If higher efficiencies are realized, QDPV modules could pave the way to large scale implementation of solar energy, helping nations move toward greater energy independence. On the other hand, candidate materials as quantum dots for solar cell applications are mostly compound semiconductors such as cadmium selenide, cadmium telluride, and lead sulfide which may be toxic and for which renewable options are limited. Toxic effects of these materials may be exacerbated by their nanoscale features.The LCA was carried out using the software SimaPro, and the Ecoinvent Life Cycle Inventory (LCI) database supplemented with available literature and patent information. Our results indicate that while QDPV modules have shorter Energy PayBack Time (EPBT), lower Global Warming Potential (GWP), SOx and NOx emissions than other types of PV modules, they have higher heavy metal emissions, underscoring the need for investigation of emerging technologies, especially nano-based ones, from a life cycle perspective. QDPV modules are better in all impact categories assessed than carbon-based energy sources but they have longer EPBT than wind and hydropower and higher GWP. 相似文献
7.
洱海沉积物有机质、铁、锰对磷的赋存特征和释放影响 总被引:7,自引:4,他引:3
利用SMT磷连续提取分级方法研究了洱海表层沉积物中磷的赋存特征,探讨有机质(OM),Fe和Mn对磷赋存形态及释放的影响,同时评估了洱海沉积物磷的释放风险.结果表明:洱海表层沉积物w(TP)为710.3~1 961.2 mg/kg,其中w(Ca-P)最高(占36.9%~59.2%),w(OP)次之(占24.6%~36.9%),w(Fe/Al-P)最低(占9.8%~20.7%);w(OM)为25.0~119.6 mg/g,与w(TP)和w(Ca-P)呈显著负相关;w(总锰)为0.8~3.8 mg/g,w(总铁)为34.3~127.2 mg/g,均与w(TP)及其各形态磷含量呈显著正相关.沉积物中w(Fe/Al-P)/w(Ca-P)比低于0.5,且w(总铁)/w(TP)远大于20,表明磷释放强度小,但w(TOC)/w(OP)<200,说明有机磷的潜在释放风险较大.w(TP)及其各形态磷含量均与无定形铁氧化物(Feo-Fep)含量呈显著正相关,而与结晶态铁氧化物(Fed-Feo)含量的相关性不显著,且全湖沉积物中的铁氧化物以Feo-Fep为主,表明洱海沉积物磷释放主要受Feo-Fep控制. 相似文献
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9.
S. M. El-Bashir I.S. Yahia F. Al-Harbi H. Elburaih F. Al-Faifi N. A. Aldosari 《International Journal of Green Energy》2017,14(3):270-278
MgO nanocrystals were synthesized and doped with different concentrations in poly(methylmethacrylate) (PMMA) to prepare hybrid organic-inorganic coatings based on polymer nanohybrid thin films. The nanoparticles were found to be spherical with 62 nm diameter as determined by X-ray diffraction (XRD) and atomic force microscope (AFM). The coatings were characterized by spectroscopic tools such as optical absorption, transmission and fluorescence spectroscopy. The prepared nanohybrid films were spin-coated on cost-effective luminescent PMMA substrates doped with highly efficient luminescent dyes luminescent solar concentrators (LSCs). The outdoor photostability tests demonstrated enhanced protection against UVA radiation for coated LSCs compared to bare LSC substrates. The current–voltage characteristics of commercially produced LSC prototypes showed that the poor UV response of monocrystalline silicon solar cell can be improved by for LSCs coated by PMMA/MgO nanohybrid films which act as luminescent down shifting layer (LDSL). 相似文献
10.
以泡花碱和氯化镁为原料合成出了一种新型硅镁胶(MgO·2SiO2)吸附材料,用傅里叶红外光谱仪对其进行了表征,并对模拟放射性废水中的Co2+进行吸附实验。结果表明,控制合成pH在10.50~11.00,可以得到目标硅镁胶(MgO·2SiO2),在460 cm-1处出现了较强的吸收峰,这是由Mg—O伸缩振动和Si—Mg—O弯曲振动引起。在500℃焙烧4h后,可以得到吸附性能良好的硅镁胶,随着溶液pH的升高,去除率增大,在pH为4~8时达到最大。25℃时,最大吸附量可达135.5 mg/g,吸附过程符合Langmuir等温吸附方程和准二级动力学方程。重复使用4次,对Co2+的吸附量仍然达到130 mg/g,说明硅镁胶是一种可重复利用的吸附剂。 相似文献