1000 resultados para ReJeX-iT7 TP-40


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长白山自然保护区始建于1960年,位于北坡的红松针阔叶混交林森林生态系统是我国东北地区典型温带地带性森林植被之一,面临着全球气候变化和人类干扰的双重影响。 本研究以间隔43年的野外调查数据为基础,对1963年和2006年的长白山自然保护区北坡海拔800~1700m的森林植物群落进行对比分析,得到该区域的森林结构、植物多样性与碳储量的变化特点,讨论森林动态变化与人类活动、气候变化的关系,评价长白山自然保护区的保护效果: 对长白山北坡森林沿海拔梯度的森林结构和植物多样性的分析表明:群落的整体空间格局保存完好,植物种类变化不大,乔木层的建群种的种类基本不变,植物多样性与海拔高度呈负相关关系;林下层植物多样性受小环境影响,与海拔高度无明显相关。 以红松(Pinus koraiensis)针阔混交林、红松针叶混交林和云冷杉暗针叶林三种类型为单元分别研究各森林类型的多样性变化:α多样测度选择物种丰富度、Shannon-Wiener和Pielou均匀度指数,较好体现了样地内发生的多样性变化,灌木层和草本层多样性明显下降,一些稀有种和药用物种消失,红松等原优势物种有衰退趋势,阔叶树比例增大;β多样性测度选取Cody指数,体现出海拔梯度上的植被空间格局细节变化,演替层特别是阔叶树的物种更替变化有向高海拔移动的趋势。 对森林生态系统各层次碳储量进行估算:乔木层和灌木层采用维量法,对灌木层自建生长回归方程;草本层、枯枝落叶层采取收获法;植物细根采取根钻法;土壤采取土壤深度加权法。碳密度估算结果都与前人研究结果相似。各类型植被碳库总碳密度都达到170 t/hm2,远远高于国内平均森林植被碳库密度值44.9 t/hm2。 乔木层43年来的碳储量变化都无显著性差异,但仍表现出:阔叶树种碳储量上升,特别在高海拔类型这种变化更加明显;针叶树种碳储量在暗针叶林内大幅下降;树干的碳库分配比例都有所减少,表明植被碳库正存在向不稳定性方向发展的趋势。针阔混交林和暗针叶林的土壤碳储量,与植被碳库出现相反的变化趋势,整体碳库保持在一个相对平衡的状态。 推测造成这种变化的原因是:禁止砍伐等保护措施的实施,基本保存了乔木层垂直分布格局,而气候变暖使阔叶树种比例大幅增加,采集松籽等人类生产及旅游活动对林下层植被影响破坏较大。提议加强保护区内管理力度和规划,以减缓长白山北坡森林群落的不稳定变化趋势。

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The University of Bristol is studying the feasibility of deploying 40 Gbit/s optical time division multiplexed (OTDM) transmission networks to support new telecommunication services such the Internet and video-on-demand systems. Among the functional blocks being considered in the project are the optical pulse sources, signal multiplexers and demultiplexers, clock recovery subsystems, signal detection and dispersion accommodation methods.

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The performance of 40 Gbit/s optical time-division multiplexed (OTDM) communication systems can be severely limited when the extinction ratio of the optical pulses is low. This is a consequence of the coherent interference noise between individual OTDM channels. When taken alone, the multiple quantum well-distributed feedback laser+dispersion compensating fiber source exhibits a relatively poor extinction ratio which impairs its potential for use in a 40 Gbit/s OTDM system. However, with the addition of an electroabsorption modulator to suppress the pulse pedestals to better than 30 dB extinction, coherent interference noise is reduced, the bit-error-rate performance is greatly improved, and the source shows good potential for 40 Gbit/s OTDM communication.

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Ultrafast self-switching of spectral-amplitude-encoded 40 Gb/s DPSK signals is demonstrated for the first time. Switching between 21 ports with 15nm maximum bin separation is achieved using a single correlator based on HNLF and an AWG. © 2009 IEEE.

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Toxicological effects of Asulox-40 and Emisan-6 to eggs and early life history stages of Sarotherodon mossambicus were reported. 80% of egg hatching occurred in the controls, 1 p.p.m and 5 p.p.m concentrations of Asulox-40. 10 p.p.m. and 50 p.p.m. concentrations of the same toxicants had 70% and 60% hatchings while in Emisan-6 in the same concentrations the hatching were 70% and! 40%. In 100 p.p.m. concentration of both toxicants 20% incomplete hatching occurred. In Emisan-6 Lc 50 and Lc 100 values were recorded at 32 hand 96h respectively in 10 p.p.m. concentrations. In Asulox-40 the same values were recorded in 24h and 40h respectively at 50 p.p.m. concentration. The fish activity during the experimental period showed initial hyper activity. It was established that the Emisan-6 is more harmful to S. mossambicus than Asulox-40. The harmless concentrations of these chemicals were 1.2 p.p.m. for Asulox-40 and 0.6 p.p.m. for Emisan-6.

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本文采用一体式膜生物反应器(SMBR)-复合垂直流人工湿地(IVCW)组合工艺(SMBR-IVCW)系统,研究了该系统对复合废水的净化效果。结果表明,当系统进水为CODCr397~890mg.L-1、氨氮9.40~27.1mg.L-1、TP4.30~10.7mg.L-1、TN45.9~75.8mg.L-1的条件下,在SMBR和IVCW的水力负荷分别为1000L.d-1和375mm.d-1的最优工况下运行,系统CODCr、NH3-N、TN和TP的去除率分别为97.5%、99.0%、59.6%和65.2%;系

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分别研究了室内和露天条件下在鹅卵石上着生的刚毛藻Cladophora oligoclona对富营养化湖水中氮(N)和磷(P)的净化效果及其对水华藻类生长的抑制能力,同时对处理后湖水的藻类生长潜力进行了测试.结果显示,刚毛藻在原始浓度总氮(TN)10.512 mg/L和总磷(TP)0.856 mg/L的富营养化湖水中能维持正常的生长代谢,并能有效去除水体中的N、P养分.在室内12 d培养期间,刚毛藻对TN、氨氮(NH4-N)、TP和无机磷(PO4-P)的平均去除率分别达53.13%,44.40%,35.71

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该研究首次将复合垂直流人工湿地同池塘养殖结合,通过构建养殖-湿地生态系统,验证人工湿地对水产养殖用水和废水净化与回用的可行性。近9个月的新建人工湿地运行结果表明,水力负荷从313、469、625 mm/d增加到781mm/d,人工湿地对TSS、CODC r和BOD5去除率的变动范围分别为80.5%~82.9%、45.2%~64.2%和61.0%~77.0%,对NH4+-N、NO3--N、TN去除率的变动范围分别为51.5%~67.8%-、90.6%~40.0%和29.1%~68.6%,对TP和IP的去除率