首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Methane in pristine and impaired mangrove soils and its possible effect on establishment of mangrove seedlings.
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Methane in pristine and impaired mangrove soils and its possible effect on establishment of mangrove seedlings.

机译:原始和受损红树林土壤中的甲烷及其对建立红树林幼苗的可能影响。

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Pristine and impaired mangrove soils (from road construction, aquaculture, and sewage) in Baja California Sur, Mexico were investigated for methane dynamics, related soil properties, and their impact on initial establishment of black mangrove propagules. All soils (Salic Fluvisols and Histosols) had neutral to alkaline pH, were saline, and had variable organic carbon content, and redox potentials. Most pristine mangrove soils showed low methane concentration, low methane production rates, and no methane emission. Impaired mangrove soil (from aquaculture) and mangrove soil affected by sewage water showed high methane concentration, high methane production rates, and high methane emission, thus acting as a methane source. Elevated methane concentrations, similar to levels detected in the impaired mangrove soil, reduce the growth of seedlings under closed chamber conditions. Addition of sulfate to the soil reversed the trend. These results indicate that impaired mangrove soils in dry climatic regions produce and emit methane and that elevated methane concentration in the vicinity of propagules may affect establishment of mangrove seedlings in impaired mangrove soils.
机译:调查了墨西哥下加利福尼亚州苏尔州原始和受损的红树林土壤(来自道路建设,水产养殖和污水处理)的甲烷动力学,相关的土壤特性及其对黑红树林繁殖体初步建立的影响。所有土壤(Salic Fluvisols和Histosols)的pH值均为中性至碱性,为盐水,有机碳含量和氧化还原电势可变。大多数原始的红树林土壤显示出低甲烷浓度,低甲烷产生率和无甲烷排放。受损的红树林土壤(来自水产养殖)和受到污水影响的红树林土壤显示出高甲烷浓度,高甲烷产生率和高甲烷排放量,因此是甲烷源。甲烷浓度升高,类似于在受损的红树林土壤中检测到的浓度,会降低密闭条件下幼苗的生长。向土壤中添加硫酸盐扭转了这一趋势。这些结果表明,干旱气候区受损的红树林土壤会产生和排放甲烷,而繁殖体附近的甲烷浓度升高可能会影响受损红树林土壤中红树林幼苗的形成。

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