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1.
Environ Monit Assess ; 189(10): 511, 2017 Sep 18.
Artigo em Inglês | MEDLINE | ID: mdl-28924917

RESUMO

Mangrove forests play an important role in biogeochemical cycles of metals, nutrients, and C in coastal ecosystems. However, these functions could be strongly affected by the mangrove soil degradation. In this study, we performed an intensive sampling characterizing mangrove soils under different types of environment (lagoon/gulf) and vegetation (Rhizophora/Avicennia/dead mangrove) in the Venezuelan coast. To better understand the spatial heterogeneity of the composition and characteristics of the soils, a wide range of the soil attributes were analyzed. In general, the soils were anoxic (Eh < 200 mV), with a neutral pH and low concentration in toxic metals; nevertheless, they varied widely in the soil and its quality-defining parameters (e.g., clay contents, total organic carbon, Fe, Al, toxic trace metals). It is noteworthy that the mangroves presented a low FePyrite content due to a limitation in the Fe oxyhydroxide contents, especially in soils with higher organic C content (TOC > 15%). Finally, the dead mangrove showed significantly lower amounts of TOC and fibers (in comparison to the well-preserved mangrove forest), which indicates that the C pools in mangrove soils are highly sensitive also to natural impact, such as ENSO.


Assuntos
Avicennia/crescimento & desenvolvimento , Monitoramento Ambiental/métodos , Florestas , Rhizophoraceae/crescimento & desenvolvimento , Solo , Áreas Alagadas , Avicennia/química , Metais/análise , Rhizophoraceae/química , Solo/química , Solo/normas , Oligoelementos/análise , Venezuela
2.
Mar Pollut Bull ; 119(1): 460-464, 2017 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-28392093

RESUMO

Mangrove forests play an important role in biogeochemical cycle of C, storing large amounts of organic carbon. However, these functions can be controlled by the high spatial heterogeneity of these intertidal environments. In this study were performed an intensive sampling characterizing mangrove soils under different type of vegetation (Rhizophora/Avicennia/dead mangrove) in the Venezuelan coast. The soils were anoxic, with a pH~7; however other soil parameters varied widely (e.g., clay, organic carbon). Dead mangrove area showed a significant lower amounts of total organic carbon (TOC) (6.8±2.2%), in comparison to the well-preserved mangrove of Avicennia or Rhizophora (TOC=17-20%). Our results indicate that 56% of the TOC was lost within a period of 10years and we estimate that 11,219kgm-2 of CO2 was emitted as a result of the mangrove death. These results represent an average emission rate of 11.2±19.17tCO2ha-1y-1.


Assuntos
Avicennia , Carbono/análise , Solo/química , Áreas Alagadas , Monitoramento Ambiental , Florestas , Rhizophoraceae
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