998 resultados para AF-18


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土壤氮素矿化是陆地生态系统氮素转化的重要组成部分。不同的土地利用(管理)方式会改变土壤氮素转化过程,影响土壤肥力的保持,进而可能造成土壤内氮素渗漏流失。为系统了解内蒙古农牧交错区土壤氮素转化的特点,本实验采用原位培养顶盖埋管法进行野外培养,每间隔一个月定期取样,于2004年7月-2006年10月在植物所恢复生态学实验站进行了两个试验,1:选择农牧交错区四种有代表性的土地类型(围封样地:FS,放牧样地:GS,弃耕地:AF,和农田:CF),比较土地利用方式之间氮素矿化的异同;2:在施肥样地通过不同施肥处理(F0: 1g N m-2, F1: 1g N m-2, F2: 2g N m-2, F3: 4g N m-2, F4: 8g N m-2, F5: 16g N m-2, F6: 32g N m-2, F7: 64g N m-2) 的土壤氮素转化动态,确定过度放牧的典型草原围封禁牧后,植被恢复过程中最适宜的施肥量。主要结论如下: 1. 与试验初期相比,整个非生长季围封样地、弃耕地和农田的铵态氮和无机氮含量逐渐降低,培养结束时铵态氮含量分别减少了67.04%,77.31%和70.54%,而放牧地的含量增加1.63%。围封样地、放牧地、弃耕地和农田的硝态氮含量分别增加了61.61%,376.43%,199.75%和133.16%。非生长季四种土地类型的土壤氮素转化速率主要受温度影响。围封样地、放牧地、弃耕地和农田非生长季矿化速率均值分别为-0.016,0.0429,-0.0051和-0.0030 μg g-1 d-1。硝化速率均值变幅为-0.43-0.17 μg g-1d-1。 2. 与没有冷冻而融化的土壤相比,冻融显著影响土壤无机氮含量的变化。只有在较低的土壤温度条件下冷冻以后,融化才会促进土壤氮素矿化。不同的冷冻时间长度下融化均会促进土壤硝化速率。土壤温度、土壤含水量变化是影响氮素转化速率的重要因子。 3. 四种土地类型的年日均矿化速率为放牧样地>农田>弃耕地>围封样地,分别为0.25,0.11,0.10,0.06μg g-1d-1,其年平均速率分别为11.65,5.50,5.00和2.46g m-2 y-1,而年日平均硝化速率分别为0.27,0.095,0.097和0.05μg g-1d-1。其中生长季日均矿化速率和日均硝化速率均为其年日均速率的两倍。因此,生长季形成的矿化氮是全年的93%,而形成的硝态氮占全年的86%。四种土地类型年均矿化氮的累积量平均为615.04 kg ha-1,而硝化作用的累积量变幅为230.44-1218.86 kg ha-1。四种土地类型的矿化速率和硝化速率的季节动态变化与气候因子的变化一致。 4. 不同施肥处理对典型草原土壤氮素转化均有显著影响。与对照相比,少量施肥(F1,F2)土壤铵态氮,硝态氮和无机氮含量分别减少20.57%,11.18%和17.18%。当施肥量大于F4(8g N m-2)时,随施肥量增加土壤铵态氮,硝态氮和无机氮含量增加18%-1191%。除F5(16g N m-2)外,与对照相比,随施肥量增加,土壤矿化速率增加了5-21倍。4 g N m-2 (F3)左右是典型草原生态系统比较合适的施肥量。 5. 氨气挥发速率的季节动态特征与气象因子的变化一致,其速率变幅为17.65 - 1228.39µg m-2 d-1,其中7月挥发量占全年的37%。与对照相比,少量施肥氨气挥发速率降低了1-2%,施肥量大于F3 (4g N m-2),速率增加了1-4倍。实验期间总的流失量变幅为23.76-84.91mg m-2,而且通过氨气挥发流失量低于土壤全氮的3%。氨气挥发不是典型草原过量氮素流失的主要方式。 6. 氮素限制的典型草原,植被恢复过程中外源氮素添加阈值为:4 g N m-2 (F3)。与对照相比,短期施肥(3年)不会显著影响根系碳储量和土壤碳氮储量。施肥处理的土壤硝态氮和无机氮含量显著增加,说明施肥显著刺激硝化作用。典型草原60%植物根系主要分布在地下0-10cm,这里的碳储量占地下储量(0-50cm)的63%以上。随土壤深度增加,土壤全氮,全碳,无机氮储量降低。而铵态氮储量和可利用的无机氮含量随土壤深度增加,说明植物根系主要吸收利用上层可利用氮素,而且下层氮素矿化速率降低。

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Till now there have been only two families of Bivalves with four genera known from freshwater in Ceylon. The material used for this study consists of members of three genera. This study deals with the family Unionidae, the family Corbiculidae is only represented by one specimen.

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世居云南的少数民族中,壮、傣、水、布依、布朗、德昂、佤、彝、白、怒、哈尼、傈僳、拉祜、纳西、景颇、阿昌、基 诺和独龙18 个民族是由“羌”、“濮”、“越”3 大部落群体演化而来,是云南的土著居民。利用PCR2RFL P 方法对这18 个土著民族进行Y染色体上13 个双等位基因位点进行基因分型。结果显示,不同历史族源的民族群体在Y染 色体双等位基因单倍型分布上具有一定的差异:在百越后裔民族群体中以单倍型H11 、H12 为主要分布;在氐羌后 裔民族中以单倍型H5 、H6 和H8 为主要分布;在百濮后裔民族群体中主要单倍型分布为H6 、H8 和H11 。进一步 主成分分析表明,百越后裔民族群体和氐羌后裔民族在主成分图上聚为两组,提示父系基因库有不同的来源,与历 史记载相印证。

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Dehydroacetic acid and ammonia were found to be very effective in checking the growth of all the cultures at all concentrations tried. The two nitrofuran derivatives namely, semicarbazone and AF-2 were fairly effective, semicarbazone being more effective than AF-2. Sodium nitrite was found to be totally ineffective against the cultures at all concentrations tried.

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Data, information gaps and related monitoring requirements including trans-boundry issues; alternative livelihoods; critical habitat and develoment issues; policy, planning and institutional development.

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Establishment of a working group of regional experts in Marine Protected Areas (MPAs); inventory and status of existing MPAs; gap analysis;establishment of common data requirements and protocols;development of a regional action plan;training and capacity building; outreach activities; proposal f0r management of existing and creation of new MPAs.

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Objectives included; a contribution to understanding large-scale processes affecting the Bay of Bengal Large Marine Ecosystem Project (BOBLME) and it's living resources; and to align with International Indian Ocean Expedition (IIOE-2) (2015-2020) which will extensively explore and study the Indian Ocean to improve understanding of the ocean and coupled climate processes.

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The design and manufacture of a prototype chip level power supply is described, with both simulated and experimental results. Of particular interest is the inclusion of a fully integrated on-chip LC filter. A high switching frequency of 660MHz and the design of a device drive circuit reduce losses by supply stacking, low-swing signaling and charge recycling. The paper demonstrates that a chip level converter operating at high frequency can be built and shows how this can be achieved, using zero voltage switching techniques similar to those commonly used in larger converters. Both simulations and experimental data from a fabricated circuit in 0.18μm CMOS are included. The circuit converts 2.2V to 0.75∼1.0V at ∼55mA. ©2008 IEEE.