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81.
多糖绿色合成纳米氧化锌的研究   总被引:2,自引:0,他引:2  
利用一种高分子多糖——葡聚糖作为稳定剂和软模板,通过一条绿色途径合成了粒径为70nm左右的纳米氧化锌,发现其在380nm处有一个强烈的吸收峰。通过SEM,TEM等测试手段,研究了葡聚糖分子以及热处理对纳米氧化锌形貌和粒径的影响,并探讨了纳米氧化锌的形成机理。此种方法也可拓展到其它纳米氧化物的合成领域。  相似文献   
82.
A new methodology was created to measure the energy consumption and related green house gas (GHG) emissions of a computer operating system (OS) across different device platforms. The methodology involved the direct power measurement of devices under different activity states. In order to include all aspects of an OS, the methodology included measurements in various OS modes, whilst uniquely, also incorporating measurements when running an array of defined software activities, so as to include OS application management features. The methodology was demonstrated on a laptop and phone that could each run multiple OSs, results confirmed that OS can significantly impact the energy consumption of devices. In particular, the new versions of the Microsoft Windows OS were tested and highlighted significant differences between the OS versions on the same hardware. The developed methodology could enable a greater awareness of energy consumption, during both the software development and software marketing processes.  相似文献   
83.
针对传统充填材料高碳排放、高成本问题,以“绿色矿山”为理念,选用工业固废电石渣、脱硫石膏和矿渣为胶凝组分,以尾矿砂为骨料制备充填材料。利用X射线(XRD)、扫描电镜(SEM)和能谱分析(EDS)等手段研究充填料水化产物及微观形貌,并开展工作性能、力学性能和重金属固化性能试验。结果表明:所开发的充填材料凝结时间和流动度均满足矿山充填工程要求,充填体7、28 d抗压强度可达4.6、7.9 MPa,充填体浸出液中Pb、Zn浓度低于规定限值。电石渣内的氢氧化钙提供碱性环境,脱硫石膏提供硫酸根离子,两者对矿渣内的硅铝质原料复合激发,生成以钙矾石和C-A-S-H凝胶为主的水化产物。大量针棒状结构的钙矾石晶体及网状结构的C-A-S-H凝胶相互穿插,并且与尾砂颗粒紧密结合,随着龄期延长,结构更加致密,使充填体具有良好的力学性能。  相似文献   
84.
魏学志 《焊管》2019,42(4):1-6
2018年是贯彻落实党的十九大精神的开局之年,如何以新的发展理念推进我国钢管企业向高质量发展转变,是我国钢管从业者所关注的问题。阐述了2018年我国钢管行业的运行情况和取得的主要成绩,结合目前国内外的整体经济形势,对2019年我国钢管行业所面临的形势进行了分析,从深化供给侧结构性改革、绿色节能发展、推进企业兼并重组、开展降本增效和“一带一路”建设等方面提出了企业高质量发展建议,以期对我国钢管行业健康持续发展提供指导。  相似文献   
85.
Theoretical Models for Binder Burnout   总被引:8,自引:0,他引:8  
The kinetics of binder burnout, from a ceramic green body, are considered for the case of an "unzipping" binder which decomposes to produce a volatile monomer. The process is considered to fail if the concentration of monomer in the green body exceeds that in equilibrium with vapor at 1 atm (≅105 Pa), when an internal bubble would be expected to form. Steady-state diffusional calculations and computer simulations explore the size and temperature dependence of the process and are in agreement. The model suggests that it is not feasible to burn out a large flat piece greater than about 3 mm thick, without going to very long times of burnout. The kinetics are significantly improved if porosity develops in the piece during the early stages of decomposition, as opposed to the retreat of the binder into the piece on a uniform front.  相似文献   
86.
Aqueous colloidal suspensions of alumina were processed in the dispersed state and the flocculated state by controlling the double-layer interactions between the particles. Repulsive particle forces led to high packing densities but the green bodies were mechanically so weak that they were unable to retain their shape (the dispersed case). Attractive forces led to good green strength but the packing density was low and the particles were agglomerated (the flocculated case). The agglomerated structure of the flocced specimens could be fragmented by mechanical deformation of the green compact; the deformation was carried out under a superimposed hydrostatic pressure of less than 1 MPa. The flow stess of the flocculated structures depended on the deformation rate, and on the magnitude of the superimposed hydrostatic pressure. The flow stress was 2.5 kPa at a strain rate of 0.1 s−1. Deformation processing of the flocced structures increased the green (relative) density from 0.51 to 0.62. The sintering behavior of underformed and deformation-processed flocced structures was studied. Deformation-processed green bodies sintered more rapidly and yielded a final grain size that was smaller and more uniform than that obtained from the undeformed specimens. The ability to homogenize and densify the packing of flocculated structures by deformation processing suggests new opportunities in green-state processing, for example (i) uniform mixing of more than one kind of particle or particles and fibers, and (ii) net shape forming by injection molding or extrusion, without the use of organic binders.  相似文献   
87.
流延坯片的叠层是多层陶瓷技术中最为重要的工艺之一。叠层工艺直接影响到电子器件三维结构(如通道、腔室及隔膜等)的质量。对叠层工艺如热压法叠层及其改进型技术、粘合基叠层、溶剂基叠层等进行综述,并对各种叠层方法的特点、研究进展及应用进行叙述。  相似文献   
88.
为了消除传统绿色火焰剂燃烧产生的钡盐污染和减少燃烧产生的可吸人颗粒物,通过选用氧化铜作染焰剂和氧化剂,并利用两种有机物作为可燃物获得了一种环保型的绿色火焰剂,氧化铜、可燃物A和可燃物B质量比为5:1.8:2。在同样条件下,新的绿色火焰剂的色纯度比传统药剂高17%,透过率高50%,而产生的二氧化氮、一氧化碳和可吸入颗粒物(PM10)分别是传统药剂的14%,50%和2%。结果表明,新的绿色火焰剂有较好的环保性能。  相似文献   
89.
In 5G cloud computing, the most notable and considered design issues are the energy efficiency and delay. The majority of the recent studies were dedicated to optimizing the delay issue by leveraging the edge computing concept, while other studies directed its efforts towards realizing a green cloud by minimizing the energy consumption in the cloud. Active queue management‐based green cloud model (AGCM) as one of the recent green cloud models reduced the delay and energy consumption while maintaining a reliable throughput. Multiaccess edge computing (MEC) was established as a model for the edge computing concept and achieved remarkable enhancement to the delay issue. In this paper, we present a handoff scenario between the two cloud models, AGCM and MEC, to acquire the potential gain of such collaboration and investigate its impact on the cloud fundamental constraints; energy consumption, delay, and throughput. We examined our proposed model with simulation showing great enhancement for the delay, energy consumption, and throughput over either model when employed separately.  相似文献   
90.
Volatile flavour components (VFC), caffeine, crude fibre, ash and total water soluble solids (TSS) were analysed in orthodox and CTC black teas manufactured from normal and hard withered leaves. With the increase of wither, VFC, TSS and caffeine were found to increase but not crude fibre. The withering process in black tea manufacture appears to control the development of terpenoids, improving flavour quality in brewed tea.  相似文献   
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