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Carbon storage estimation of Lessonia trabeculata kelp beds in Southern Peru: an analysis from the San Juan de Marcona region

机译:秘鲁南部课程Trabeculata海藻床的碳储存估算:San Juan De Marcona地区分析

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摘要

Carbon storage is one of the most important ecosystem services provided by kelp beds. Laminarialean kelps are widely harvested along the Warm Temperate South-eastern Pacific coast, a marine province shared by Chile and Peru. Carbon storage assessments of kelps in Peru are lacking. From a blue economy and sustainable management perspectives, information on the carbon storage of kelps is important. We conduct the first carbon storage assessment ofLessonia trabeculatain Peru and contribute to the development of biomass estimation models in order to monitor kelps using the least destructive methodologies. We chose three commonly harvested sites in San Juan de Marcona to haphazardly extractLessonia trabeculatasporophytes using transects. Sporophyte height (m), wet biomass (kg), maximum (D) and minimum (d) holdfast disk widths (cm) were measured in the field. In the laboratory, C content was measured to calculate the best-fitting coefficients for future estimations by using allometric equations. Individual biomass was best estimated from sporophyte height through a rational model, while holdfast area (ellipse in cm(2)) was a good proxy of biomass with a sinusoidal model. The southernmost, least accessible, and most exposed site (Elefante) had significantly higher values of stored carbon. We estimated a carbon standing stock (from sporophytes only) of 2044 t C in these kelp beds. Nevertheless, additional and more detailed measurements will likely produce more accurate estimates both in time and space. We provide allometric equations for future carbon assessments. Our results highlight the importance carbon assessment for kelp management and blue carbon estimates and the need to develop science-based marine planning strategies.
机译:碳存储是海带床铺提供的最重要的生态系统服务之一。 Laminarialean Kelps沿着智利和秘鲁共享的海洋省温带暖温带的海岸沿岸广泛收获。缺乏Kelps的碳储存评估。从蓝色经济和可持续管理的观点来看,有关Kelps碳储存的信息很重要。我们开展了无需奥诺氏菌秘鲁的碳储存评估,并有助于发展生物量估计模型,以利用最少的破坏性方法监测Kelps。我们选择了三个常用的San Juan De Marcona网站以随意解密,使用Transfects脱口无欲。孢子体高度(m),湿生物质(kg),最大(d)和最小(d)在该领域中测量保持圆盘宽度(cm)。在实验室中,测量C含量以通过使用同传方程来计算未来估计的最佳拟合系数。通过合理模型,最佳地从孢子体高度估计单个生物质,而Hyptfast面积(厘米(2))是具有正弦模型的良好生物量的良好代理。最南端,最不访问的和最暴露的网站(Elefante)具有显着较高的储存碳值。我们估计这些海藻床中2044吨C的碳常规股票(仅从孢子体)。尽管如此,额外的和更详细的测量可能会在时间和空间中产生更准确的估计。我们为未来的碳评估提供各种方程。我们的结果突出了海带管理和蓝碳估计的重要性碳评估以及开发基于科学的海洋规划战略的必要性。

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