期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
硼纤维的研究概述 被引量:2
1
作者 K.Singha K.Anupam +5 位作者 P.Debnath S.Maity a.chakraborty A.Ray M.Singha 路瑶(译) 《国际纺织导报》 2013年第9期24-24,26-28,30,31,共6页
采用化学气相沉积法(CVD)制备硼纤维.硼可沉积于钨丝、玻璃或石墨长丝上.采用此种方法得到的硼纤维的公称直径为0.1~0.2 mm.硼纤维密度低、拉伸强度高、弹性模量较高,且纤维非常硬,其硬度是玻璃纤维的5倍.高硬度使硼纤维难以进行织... 采用化学气相沉积法(CVD)制备硼纤维.硼可沉积于钨丝、玻璃或石墨长丝上.采用此种方法得到的硼纤维的公称直径为0.1~0.2 mm.硼纤维密度低、拉伸强度高、弹性模量较高,且纤维非常硬,其硬度是玻璃纤维的5倍.高硬度使硼纤维难以进行织造或编织,但其可制成树脂浸渍带,用于手糊成型和纤维卷绕加工.硼纤维的高成本限制了它在实验型飞机和航空航天领域的应用. 展开更多
关键词 硼纤维 化学气相沉积法 特性
在线阅读 下载PDF
加尔各答市政固体垃圾中杀虫剂的转化:堆肥的效果
2
作者 R.Pal P.Bhattacharyya +2 位作者 K.Chakrabarti a.chakraborty 王胜 《AMBIO-人类环境杂志》 2005年第B12期641-642,共2页
引言 人类活动所产生的固体垃圾已经成为引起大范围污染并对人类健康造成许多威胁的主要问题之一[1].加尔各答市每天约产生3500Mg市政固体垃圾(MSW)[2].MSW堆肥正被越来越多地认为是全世界垃圾处理的一种可行且经济的方法,它比其它垃圾... 引言 人类活动所产生的固体垃圾已经成为引起大范围污染并对人类健康造成许多威胁的主要问题之一[1].加尔各答市每天约产生3500Mg市政固体垃圾(MSW)[2].MSW堆肥正被越来越多地认为是全世界垃圾处理的一种可行且经济的方法,它比其它垃圾处理方式所造成的环境污染更小.但是,人们仍对堆肥中所含有的有机污染物所产生的潜在健康危险存在顾虑[3].有毒有机化合物对环境的潜在影响是这些化合物浓度水平的作用,其中有许多不仅对人类和动物有毒,而且对植物也有毒. 展开更多
关键词 固体垃圾 堆肥 市政 杀虫剂 垃圾处理方式 有机污染物 有机化合物 转化 人类健康 人类活动
在线阅读 下载PDF
Rapid intensification of the Super Cyclone Amphan:Environmental drivers and its future projections
3
作者 R.S.Akhila J.Kuttippurath +2 位作者 a.chakraborty N.Sunanda R.Peter 《Tropical Cyclone Research and Review》 2025年第1期27-39,共13页
Tropical cyclones are intense weather systems that originate over warm tropical oceans and they alter the dynamical,chemical,and biological state of the oceans.Here,the reasons for the rapid intensification of Super c... Tropical cyclones are intense weather systems that originate over warm tropical oceans and they alter the dynamical,chemical,and biological state of the oceans.Here,the reasons for the rapid intensification of Super cyclone Amphan that occurred in May 2020 in the Bay of Bengal(BoB)are thoroughly investigated.One of the main causes for the intensification of Amphan into a super cyclone is the rise in sea surface temperature(SST).Additionally,the warm-core eddies present in the track of cyclones also contributed to its rapid intensification.The Tropical Cyclone Heat Potential(TCHP)and Upper Ocean Heat Content(OHC)were consistent and remained high throughout the cyclone period to maintain its high intensity.Although there were greater cyclone-induced cold wakes during the period,the background SST conditions were still higher and were favourable for the cyclone to intensify further.The vertical wind shear in both shallow and deep layers was minimal,which further helped the formation of a stable and strong cyclonic vortex,and thus contributed to its rapid intensification.The behaviour of cyclone Amphan in future scenarios is analysed using a coupled atmosphere-ocean model.Compared to the current scenario,the severity of cyclones is expected to increase in the future(RCP 8.5).Early landfall is observed in the case of RCP 4.5.As a result of elevated UOHC,Amphan attains more strength in the RCP 8.5 than it does in the present scenario.The translational speed increases in the future,which makes the cyclone move faster.Due to the passage of Amphan,there is a reduction in UOHC,which is higher in the case of a future warm climate.This suggests that additional energy from the ocean is transferred to the atmosphere,causing the cyclone to intensify further.According to the results from the coupled atmosphere-ocean model,the future warm atmospheric and oceanic conditions will be more favourable for the genesis and development of stronger cyclones. 展开更多
关键词 Super cyclone Ocean warming INTENSIFICATION Amphan Climate change RCP
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部