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41.
产业集聚作为一种空间地理特征,对于一国或地区的对外贸易与经济增长具有重要影响。以湖南省冶金及金属制品产业出口贸易与产业集聚的状况为例,实证分析产业集聚对出口贸易的影响,研究结果表明,从长期来看,湖南省冶金及金属制品产业出口贸易与产业集聚之间存在着长期稳定的关系,产业集聚有效促进了出口贸易的增长,且集聚规模每增长1%,出口规模增长0.41%。 相似文献
42.
Teacher–student discourse continues to be teacher-centred even though researchers and reform documents have recommended changes toward increased levels of student-centred discourse. In science education this situation is paralleled by effort to make scientific inquiry more student-centred. The purpose of this study was to investigate how discourse forms changed over time in a classroom where the regular teacher and his students were scaffolded in the transitioning to student-centred scientific inquiry. Video-recordings were collected at intervals over one academic year. Three prominent forms of discourse were identified: two teacher-authoritative forms and one more interactive, dialogic form. As the lessons increasingly turned into student-centred scientific inquiry, a shift to the dialogic discourse form was found. Co-teaching provided for (a) guidance towards an organisation of events in the classroom that included regular teacher–student dialogue (b) modelling of the more dialogic form of discourse. 相似文献
43.
44.
For this critical intercultural inquiry, I as an Asian/Japanese transnational cisgendered gay man write my autoethnography of queer (or non-heteronormative) Asian–Black (dis)connections. Specifically, I challenge, interrogate, and problematize my queer intercultural production of desire and attraction as I engage in my critical autoethnographic interrogation of dialogues with five Asian/Japanese transnational gay men who have previously engaged in queer Asian–Black relationality. In so doing, I intend to create a potential point of departure to decenter the discursive and material effects of White gay normativity in the knowledge production of Asian queer male desire and attraction. 相似文献
45.
46.
Rechargeable magnesium batteries have received extensive attention as the Mg anodes possess twice the volumetric capacity of their lithium counterparts and are dendrite-free. However, Mg anodes suffer from surface passivation film in most glyme-based conventional electrolytes, leading to irreversible plating/stripping behavior of Mg. Here we report a facile and safe method to obtain a modified Mg metal anode with a Sn-based artificial layer via ion-exchange and alloying reactions. In the artificial coating layer, Mg2Sn alloy composites offer a channel for fast ion transport and insulating MgCl2/SnCl2 bestows the necessary potential gradient to prevent deposition on the surface. Significant improved ion conductivity of the solid electrolyte interfaces and decreased overpotential of Mg symmetric cells in Mg(TFSI)2/DME electrolyte are obtained. The coated Mg anodes can sustain a stable plating/stripping process over 4000 cycles at a high current density of 6 mA cm−2. This finding provides an avenue to facilitate fast ion diffusion kinetics of Mg metal anodes in conventional electrolytes. 相似文献
47.
Most metal–organic frameworks (MOFs) hardly maintain their physical and chemical properties after exposure to alkaline aqueous solutions, thus precluding their use as potential electrode materials for electrochemical energy storage devices. Here, we present the design and synthesis of a highly alkaline-stable metal oxide@MOF composite, Co3O4 nanocube@Co-MOF (Co3O4@Co-MOF), via a controllable and facile one-pot hydrothermal method under highly alkaline conditions. The obtained composite possesses exceptional alkaline stability, retaining its original structure in 3.0 M KOH for at least 15 days. Benefitting from the exceptional alkaline stability, unique structure, and larger surface area, the Co3O4@Co-MOF composite shows a specific capacitance as high as 1020 F g−1 at 0.5 A g−1 and a high cycling stability with only 3.3% decay after 5000 cycles at 5 A g−1. The as-constructed solid-state flexible device exhibits a maximum energy density of 21.6 mWh cm−3. 相似文献
48.
Applying metal organic frameworks (MOFs) in electrochemical systems is a currently emerging field owing to the rich metal nodes and highly specific surface area of MOFs. However, the problems for MOFs that need to be solved urgently are poor electrical conductivity and low ion transport. Here we present a facile in situ growth method for the rational synthesis of MOFs@hollow mesoporous carbon spheres (HMCS) yolk–shell-structured hybrid material for the first time. The size of the encapsulated Zeolitic Imidazolate Framework-67 (ZIF-67) is well controlled to 100 nm due to the spatial confinement effect of HMCS, and the electrical conductivity of ZIF-67 is also increased significantly. The ZIF@HMCS-25% hybrid material obtained exhibits a highly efficient oxygen reduction reaction activity with 0.823 V (vs. reversible hydrogen electrode) half-wave potential and an even higher kinetic current density (JK = 13.8 mA cm−2) than commercial Pt/C. ZIF@HMCS-25% also displays excellent oxygen evolution reaction performance and the overpotential of ZIF@HMCS-25% at 10 mA cm−2 is 407 mV. In addition, ZIF@HMCS-25% is further employed as an air electrode for a rechargeable Zn–air battery, exhibiting a high power density (120.2 mW cm−2 at 171.4 mA cm−2) and long-term charge/discharge stability (80 h at 5 mA cm−2). This MOFs@HMCS yolk–shell design provides a versatile method for the application of MOFs as electrocatalysts directly. 相似文献
49.
铜是具有重要战略意义的关键金属。中国长期以来进口“六类废杂铜”和“七类废杂铜”两种废碎料来冶炼再生铜。本文基于海关贸易和有色金属工业统计数据,利用物质流分析和生命周期评价方法研究了铜废碎料贸易的资源、环境和经济效益以及环境与健康风险。结果显示:①2000—2015年,中国累计进口铜废碎料实物量6680万t,其中含金属铜约2000万t,占同期国内再生铜累计产量的56%;②相比利用铜矿石生产精炼铜,利用进口铜废碎料生产再生铜在非生物性资源消耗、温室效应和人体毒性等方面减少了一系列环境影响,同时累计节约铜矿山投资成本约580亿美元。然而,进口的“七类废杂铜”在带来资源效益的同时也造成严重的区域性环境与健康风险:一是进口低品位铜废碎料中夹杂大量有机物,在拆解和熔炼过程中容易产生二恶英等有毒有害物质;二是部分工业园区和小企业在工艺、技术、空间布局和生产管理等方面的落后引发了局部地区较为严重的环境和健康危害。因此,建议辩证和全面地认识铜废碎料进口带来的效益和风险,在坚决禁止进口“以回收铜为主的废电机、电线、电缆和五金电器”这些“七类废杂铜”的同时,继续利用进口“六类废杂铜”作为重要的铜资源,以降低中国对原生铜矿石的依赖以及造成的采矿和原矿冶炼阶段的环境影响。 相似文献
50.
托克马克装置中面向等离子体部件在不同的位置存在很大的温差,导致面向等离子体部件表面液态金属产生自由对流。以此为背景,实验研究液态金属受横向磁场影响下竖直壁面上的自由对流换热规律。实验采用K型热电偶测量环境与壁面两侧的温度,利用多普勒超声波测速仪测量壁面上的液态金属速度,分析不同磁场强度和加热热流密度条件对竖直平板外表面的流动与换热影响规律。研究表明:竖直平板的局部换热系数与特征长度成反比,即距加热平板起始段越远换热越弱,同时增强加热功率使表面换热系数增加。在强磁场条件下,壁面边界层的流动与换热均普遍被抑制;但是在弱磁场下,增加磁场会强化平板表面的自由对流与换热,根据实验结果发现该转折点出现在磁相互作用数为1~4的范围。 相似文献