首页> 外文期刊>Journal of Coastal Conservation >Aboveground biomass and carbon stock are related with soil humidity in a mangrove at the Piraqu-A double dagger u River, Southeastern Brazil
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Aboveground biomass and carbon stock are related with soil humidity in a mangrove at the Piraqu-A double dagger u River, Southeastern Brazil

机译:地上生物量和碳股与在Piraqu的红树林中的土壤湿度有关。巴西东南部的双匕首乌河

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In Brazil, few studies have been conducted about the assimilation of carbon and biomass accumulation in mangroves despite its great role as a carbon sink. In this sense, this study aimed to estimate the aboveground biomass (AGB) and carbon stocked by mangrove species in a stretch along the Piraqu-A double dagger u River in southeastern Brazil, and to verify their relation with some soil parameters. For such, the height and diameter of all trees inside six plots of 100 m(2) were measured and used to quantify AGB through an allometric equation, and soil samples were collected to calculate granulometry, humidity, time of infiltration and permeability. Multiple regressions were used to identify relations between AGB and soil parameters. A total of 296 trees were found in the area and the AGB and carbon assimilated were 2.92 t ha(-1) and 1.46 t ha(-1), respectively. Laguncularia racemosa was the most abundant species and contributed with 61% of these values. Only a positive relation between AGB/carbon of L. racemosa and soil humidity was found, probably due to the substrate characteristics which contain a large concentration of silt/clay, and may store more water and do not yet provide firmness to the roots. By comparison, this mangrove had a low amount of AGB and carbon stocked and has yet to develop structurally. Along with other ecological functions and its associated ecosystem services such as supplying food for the local community, these features highlight the importance to conserve the studied mangrove and the interlinked coastal ecosystems.
机译:在巴西,尽管其作为碳汇在一起,但在红树林中的碳和生物质积累的同化也进行了很少的研究。从这个意义上讲,这项研究旨在估计地上生物量(AGB)和红树林种类的碳,沿着巴西东南部的Piraqu-A双匕首U河延伸,并验证其与一些土壤参数的关系。因此,测量六个图中的所有树木的高度和直径,并用于通过同种异体方程量化AgB,收集土壤样品以计算粒度计,湿度,渗透时间和渗透性。使用多元回归来识别AGB和土壤参数之间的关系。在该地区共发现296棵树,AGB和碳同化分别为2.92吨HA(-1)和1.46吨(-1)。 LaguncuartaIa Racemosa是最丰富的物种,占这些价值的61%。发现了L. HAPS的AGB /碳与土壤湿度之间的阳性关系,可能是由于含有大浓度的淤泥/粘土的基板特性,并且可以将更多的水储存,并且尚未向根部提供坚定的状态。相比之下,这款红树林的股票和碳含量较少,尚未在结构上发展。随着其他生态功能及其相关的生态系统服务,如提供当地社区的食物,这些功能突出了保护圣红树和相互关联的沿海生态系统的重要性。

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