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221.
In the tropical mountains of Southeast Asia, slash-and-burn (S/B) agriculture is a widely practiced and important food production system. The ecosystem carbon stock in this land-use is linked not only to the carbon exchange with the atmosphere but also with food and resource security. The objective of this study was to provide quantitative information on the land-use and ecosystem carbon stock in the region as well as to infer the impacts of alternative land-use and ecosystem management scenarios on the carbon sequestration potential at a regional scale. The study area was selected in a typical slash-and-burn region in the northern part of Laos. The chrono-sequential changes of land-use such as the relative areas of community age and cropping (C) + fallow (F) patterns were derived from the analysis of time-series satellite images. The chrono-sequential analysis showed that a consistent increase of S/B area during the past three decades and a rapid increase after 1990. Approximately 37% of the whole area was with the community age of 1–5 years, whereas 10% for 6–10 years in 2004. The ecosystem carbon stock at a regional scale was estimated by synthesizing the land-use patterns and semi-empirical carbon stock model derived from in situ measurements where the community age was used as a clue to the linkage. The ecosystem carbon stock in the region was strongly affected by the land-use patterns; the temporal average of carbon stock in 1C + 10F cycles, for example, was greater by 33 MgC ha−1 compared to that in 1C + 2F land-use pattern. The amount of carbon lost from the regional ecosystems during 1990–2004 periods was estimated to be 42 MgC ha−1. The study approach proved to be useful especially in such regions with low data-availability and accessibility. This study revealed the dynamic change of land-use and ecosystem carbon stock in the tropical mountain of Laos as affected by land-use. Results suggest the significant potential of carbon sequestration through changing land-use and ecosystem management scenarios. These quantitative estimates would be useful to better understand and manage the land-use and ecosystem carbon stock towards higher sustainability and food security in similar ecosystems.  相似文献   
222.
运用微体化石的研究结果辨识岩心不同的沉积阶段的沉积特征及古海洋学特点 ,并辅以δ18O曲线及AMS14 C测年去探讨岩心的沉积时代。该岩心是 1996年 5月中国、法国、韩国科学家一起利用法国L’ATALANTE号海洋调查船在东海陆架获取的 17个岩心中的一个 ,分别做了粒度、矿物、CaCO3、微体化石、δ18O、AMS14 C测年等分析 ,初步分析认为 :依据微体化石的冷、暖水种的丰度变化 ,可以辨识出该岩心气候的 7个冷期 (C1、C2 、C3、C4 -1、C4 -2 、C5、C6、C7) ,然后结合岩心中的矿物成份、CaCO3 含量、粒度变化、AMS14 C的测年数据把岩心划分为 4个沉积阶段 ,1.晚更新世早玉木冰期沉积。 2 .玉木亚间冰期沉积。 3 .晚更新世玉木冰期沉积。 4.全新世冰后期沉积。另外 ,利用浮游有孔虫壳体对不同的沉积阶段所做的AMS14 C测年结果分别为 96 90aBP、12 980aBP ,2 6 35 0aBP ,2 796 0aBP ,37410aBP ,412 6 0aBP .  相似文献   
223.
近万年来冲绳海槽北部浮游藻类沉积率反映的环境变化   总被引:3,自引:0,他引:3  
对冲绳海槽北部B-3GC柱状样的84份样品做了浮游藻类(绝大多数是沟鞭藻孢囊)沉积率分析。冲绳海槽约6790a以前的全新世早期和3620-2390aB.P.两个阶段的沟鞭藻孢囊沉积率较高,特别是在全新世早期,孢囊沉积率明显高于其他阶段。沟鞭藻孢囊沉积率的变化反映了冲绳海槽北部全新世表层海水营养和生产力水平的变化,其趋势与黑潮影响强度的变化趋势一致。在黑潮影响甚微的全新世早期,表层海水富营养且高生产力,约6790aB.P.起黑潮影响强度明显加大,表层海水营养和生产力幅度下降,只是在3620-2390aB.P.期间因黑潮影响强度减弱而表层海水营养和生产力有小幅度上升。黑潮对于冲绳槽表层海水营养和生产力的营养,不公亩在为其本身低营养、低生产力的特性,也由于其对来自我国大陆一侧陆源输入物的阻隔作用。Operculodinium centrocarpum沉积率在剖面下段高于Spiniferites spp.,上段则呈相反的情况,Spiniferites spp沉积率较高,变化的转折点(约6790aB.P.)与黑潮对冲绳海槽影响强度出现骤然变化的时间吻合。所以,Operculodinium centrocarpum沉积率高实际上指示了偏低的表层水温,约6790aB.P.冲绳海槽北部表导水温明显上升。  相似文献   
224.
The wave characteristics of Pc5 magnetic pulsations are analyzed with data of OGO-5, ISEE-1 and -2 satellites. The toroidal modes (δBD >δBH) of Pc5 pulsations are observed at a higher magnetic latitude in the dawnside outer magnetosphere. The compressional and poloidal modes (δBz.dfnc;δBH >δBD) of Pc5 pulsations are mostly observed near the magnetic equator in the duskside outer magnetosphere. This L.T. asymmetry in the occurrence of dominant modes of Pc5's in space can be explained by the velocity shear instability (Yumoto and Saito, 1980) in the magnetospheric boundary layer, where Alfvénic signals in the IMF medium are assumed to penetrate into the magnetospheric boundary layer along the Archimedean spiral. The asymmetrical behaviour of Pc5 pulsation activity on the ground across the noon meridian can be also explained by the ionospheric screening effect on the compressional Pc5 magnetic pulsations. The compressional modes with a large horizontal wave number in the duskside magnetosphere are expected to be suppressed on the ground throughout the ionosphere and atmosphere.  相似文献   
225.
Crystalline enstatite (MgSiO3) grains were produced by the simultaneous evaporation of SiO grains and Mg vapor in a plasma field. The MgSiO3 grains were spherical or needlelike. The necessity of a plasma field in astromineralogy is suggested in the present study.  相似文献   
226.
Summary. Six submarine rocks dredged from guyots in the western Pacific were dated by means of 40Ar–39Ar step heating dating technique. All ages show mid- to late-Cretaceous ages in accordance with the generally supposed age of the ocean crust estimated from the magnetic anomaly pattern.
The back-tracked paths were calculated for the guyots with the use of their absolute ages, for both the Pacific plate movements proposed by Morgan and by Clague & Jarrard. In both cases these show birth places for the guyots, which are located near the equator.
Fossil ages are nearly concordant with the 40Ar–39Ar ages for the guyots which are older than 95 Myr, whereas the fossil ages are considerably younger than the 40Ar–39Ar ages for the guyots younger than 90 Myr. This contrast may be due to the world-wide marine transgression, whose climax is believed to have occurred at about 85 Myr BP.  相似文献   
227.
Chemical analyses of 30 melt inclusions from Satsuma-Iwojima volcano, Japan, were carried out to investigate volatile evolution in a magma chamber beneath the volcano from about 6300 yr BP to the present. Large variations in volatile concentrations of melts were observed. (1) Water concentration of rhyolitic melts decreases with time; 3–4.6 wt.% at the time of latest caldera-forming eruption of Takeshima pyroclastic flow deposit (ca. 6300 yr BP), 3 wt.% for small pyroclastic flow (ca. 1300 yr BP) of Iwodake, post-caldera rhyolitic dome, and 0.7–1.4 wt.% for submarine lava eruption (Showa-Iwojima) in 1934. (2) Rhyolitic melts of the Takeshima and Iwodake eruptions contained CO2 of less than 40 ppm, while the Showa-Iwojima melt has higher CO2 concentration of up to 140 ppm. (3) Water and CO2 concentrations of basaltic to andesitic melt of Inamuradake, a post-caldera basaltic scoria cone, are 1.2–2.8 wt.% and ≤290 ppm, respectively.Volatile evolution in the magma chamber is interpreted as follows: (1) the rhyolitic magma at the time of the latest caldera-forming eruption (ca. 6300 yr BP) was gas-saturated due to pressure variation in the magma chamber because the large variation in water concentration of the melt was attributed to exsolution of volatile in the magma prior to the eruption. Iwodake eruption (ca. 1300 yr BP) was caused by a remnant of the caldera-forming rhyolitic magma, suggested from the similarity of major element composition between these magmas. (2) Volatile composition of the Showa-Iwojima rhyolitic melt agrees with that of magmatic gases presently discharging from a summit of Iwodake, indicating the low pressure degassing condition. (3) The degassing of the magma chamber by magma convection in a conduit of Iwodake during non-eruptive but active degassing period for longer than 800 years decreased water concentration of the rhyolitic magma. (4) Geological and petrological observations indicate that a stratified magma chamber, which consists of a lower basaltic layer and an upper rhyolitic layer, might have existed during the post-caldera stage. Addition of CO2 from the underlying basaltic magma to the upper gas-undersaturated (degassed) rhyolitic magma increased CO2 concentration of the rhyolitic magma.  相似文献   
228.
A one-dimensional ecosystem model has been used to investigate the processes relevant to the spring diatom bloom which play important roles in the biogeochemical cycle in the western subarctic Pacific. The model represents the plankton dynamics and the nutrient cycles in the spring diatom bloom; its results show the importance of dilution by deep mixing in winter. It is supposed that the vertically integrated biomass of phytoplankton decreases in the winter due to the decrease of photosynthesis, because the deep mixing transports phytoplankton to a layer with a low light level. However, the observed integrated diatom biomass increases as the mixed layer deepens. This is because the decrease of concentration due to dilution by mixing causes the diatom grazed pressure to be less significant than diatom photosynthesis. In other words, the effect of dilution on the grazed rate is more significant than the effect on the photosynthesis rate because the grazed rate depends on the concentrations of both diatom and grazer, whereas the photosynthesis rate depends only diatom concentration. The average specific diatom grazed rate, defined as grazed rate divided by diatom biomass, decreases by 35% associated with the deepening, while the average specific photosynthesis rate of diatom decreases by 11%. As a result, the average specific net diatom growth rate during the deep mixing is about 70% of its maximum during the spring diatom bloom. The deep mixing significantly affects the amplitude of the spring diatom bloom not only by the supply of nutrients but also by the dilution which drastically decreases the grazed pressure. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   
229.
Effects of vertical stability on spring blooms of phytoplankton were investigated for the western subarctic Pacific ocean using a one-dimensional (depth) ecosystem model. In the model, vertical stability was expressed by diffusion constants calculated from observed density distribution. Dynamics of phytoplankton in blooms was calculated by the model using the vertical diffusion. Then, the calculated results were compared with the Coastal Zone Color Scanner (CZCS) data. The comparison shows that the shallow surface mixed layer causes early start days of spring blooms at inshore (northern) stations. In addition, spring blooms continue long at inshore (northern) stations since a water column has weak stability. This is because weak stability of a water column causes large nutrient supply from a deep layer and large diffusive transport of phytoplankton biomass from the subsurface maximum.  相似文献   
230.
INTRODUCTIONEnvironmentalpollutionhasbecomeaveryseriousproblemwiththerapidindustrializa tion .Thepollutioncausedbypollutantssuchasnutrients ,heavymetalsandorganiccompounds(includingpesticides)etc .coulddamagethewell balancedcirculationofnaturalecosysteman…  相似文献   
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