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随着全球环境问题与能源问题的不断加剧,人们迫切需要开发一些高效、环保、稳定的光催化剂。卤氧化铋(BiOX,X=Cl、Br、I)因其独特的层状结构,优异的光学、电学性能,在光催化领域受到了越来越多的关注。虽然BiOX光催化剂在光催化反应中展现出了优异性能,但其光催化效率仍有待提高。简要叙述了BiOX的结构与性能以及当前主流的制备方法,主要概述了最近几年卤氧化铋光催化剂改性的研究进展。改性方法主要有微结构调控、晶面与缺陷调控、掺杂、构造异质结等,这些方法主要是通过提高卤氧化铋或卤氧化铋复合物的光吸收能力、光生载流子的分离和运输效率、以及活性位点的暴露量来实现改性。介绍了其在环境、能源和生物等领域的应用,同时对BiOX的发展提出了问题和展望。 相似文献
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Development of analytical methods for polycyclic aromatic hydrocarbons (PAHs) in airborne particulates: A review 总被引:4,自引:1,他引:4
LIU Li-bin LIU Yan LIN Jin-ming TANG Ning HAYAKAWA Kazuichi MAEDA Tsuneaki 《环境科学学报(英文版)》2007,19(1):1-11
In the present work, the different sample collection, pretreatment and analytical methods for polycyclic aromatic hydrocarbons (PAHs) in airborne particulates is systematacially reviewed, and the applications of these pretreatment and analytical methods for PAHs are compared in detail. Some comments on the future expectation are also presented. 相似文献
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化学修饰电极在环境监测中的应用 总被引:2,自引:0,他引:2
简要综述化学修饰电极在环境监测中的实际应用,包括土壤监测、大气监测、水质监测和生物监测. 相似文献
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目的 探究船体加筋板结构在受到重复碰撞载荷作用下塑性变形的累计趋势,分析加筋板主要参数对损伤演化过程的影响,揭示高速、重复冲击下船体加筋结构的变化机理。方法 以一纵三肋加筋板为研究对象,建立基于能量法的刚塑性加筋板动态变形计算方法,以及基于Johnson-Cook本构关系的数值模拟方法,开展不同板架厚度、冲击能量以及冲击尺寸等参数对加筋板变形演化影响的研究。结果 对比分析了理论模型和数值方法,获得了不同参数下的加筋板的结构损伤演化规律。结论 理论解和数值解较为吻合。冲击能量增加后,加筋板的塑性变形量、塑性变形累积速度也随之增加。载荷集中程度越大,对于碰撞边界的破坏效应越大。 相似文献
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高架复合道路噪声声场分布研究 总被引:5,自引:2,他引:5
高架复合道路有效地缓解了交通拥挤的问题,但随之也带来了严重的噪声污染,以几何声学和衍射声学为理论基础,利用声级叠加原理,建立了高架复合道路噪声对临街建筑立面影响的预测模式。预测值与实测值基本相符,可直接应用于城市噪声预测。为城市发展规划尤其是城市高架复合道路的发展提供了科学依据。 相似文献
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本文对化学品登记所要求的部分健康效应数据——皮肤致敏、重复经口染毒、致变做了解释.涉及到的测试参数包括:皮肤致敏、重复(14/28天)经口啮动物毒性、基因突变、染色体畸变和DMA效应. 相似文献
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ABSTRACT: The Yellowstone River historically has produced an ample supply of high quality water which is widely used for irrigation, municipal and industrial purposes, recreation, and fish and wildlife. Recently, energy companies have attempted to obtain water rights in the Yellowstone basin for energy conversion facilities in coal-rich southeastern Montana. Existing users fear that energy diversions will impair their rights, preclude expansion of present beneficial users, degrade water quality, and adversely effect fish and aquatic life. In response to these concerns, the Montana Legislature enacted several laws to regulate water appropriations in the Yellowstone River basin, including means by which state and federal agencies could apply for reservations of water for future beneficial uses. Thereafter, both the Montana Fish and Game Commission and the State Water Quality Bureau formally requested relatively large instream flows to protect fish and wildlife and to maintain water quality. This paper describes Montana's experience through December of 1977 with the administration of water in the Yellowstone basin under these laws; emphasis is placed on the major requests for instream flows. The final resolution of the reservation applications, and the related ramifications, will be discussed in a future paper. 相似文献
20.
The environmental performance of hemp based natural fiber mat thermoplastic (NMT) has been evaluated in this study by quantifying carbon storage potential and CO2 emissions and comparing the results with commercially available glass fiber composites. Non-woven mats of hemp fiber and polypropylene matrix were used to make NMT samples by film-stacking method without using any binder aid. The results showed that hemp based NMT have compatible or even better strength properties as compared to conventional flax based thermoplastics. A value of 63 MPa for flexural strength is achieved at 64% fiber content by weight. Similarly, impact energy values (84–154 J/m) are also promising. The carbon sequestration and storage by hemp crop through photosynthesis is estimated by quantifying dry biomass of fibers based on one metric ton of NMT. A value of 325 kg carbon per metric ton of hemp based composite is estimated which can be stored by the product during its useful life. An extra 22% carbon storage can be achieved by increasing the compression ratio by 13% while maintaining same flexural strength. Further, net carbon sequestration by industrial hemp crop is estimated as 0.67 ton/h/year, which is compatible to all USA urban trees and very close to naturally, regenerated forests. A comparative life cycle analysis focused on non-renewable energy consumption of natural and glass fiber composites shows that a net saving of 50 000 MJ (3 ton CO2 emissions) per ton of thermoplastic can be achieved by replacing 30% glass fiber reinforcement with 65% hemp fiber. It is further estimated that 3.07 million ton CO2 emissions (4.3% of total USA industrial emissions) and 1.19 million m3 crude oil (1.0% of total Canadian oil consumption) can be saved by substituting 50% fiber glass plastics with natural fiber composites in North American auto applications. However, to compete with glass fiber effectively, further research is needed to improve natural fiber processing, interfacial bonding and control moisture sensitivity in longer run. 相似文献