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首页> 外文期刊>Wetlands Ecology and Management >Mangrove rehabilitation dynamics and soil organic carbon changes as a result of full hydraulic restoration and re-grading of a previously intensively managed shrimp pond
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Mangrove rehabilitation dynamics and soil organic carbon changes as a result of full hydraulic restoration and re-grading of a previously intensively managed shrimp pond

机译:全面的水力修复和对以前密集管理的虾塘进行重新分级后,红树林恢复动力学和土壤有机碳变化

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Hydraulic restoration by opening the shrimp pond banks facilitated the establishment of planted mangroves and colonisation by non-planted mangrove species and was shown to be an effective method of mangrove rehabilitation. Planted Rhizophora apiculata and Rhizophora mucronata had grown significantly in 6 years, to 300 and 350 cm, respectively. However, the growth rate of Bruguiera cylindrica was merely 150 cm in the same period despite vigorous growth in the initial stage. About 15 non-planted mangrove species had colonised within 6 years after reopening the banks, with the dominant species being Avicennia marina (46.9%) followed by B. cylindrica (27.0%) and Ceriops tagal (14.9%). After the enhancement, soil organic carbon increased considerably from 110 to 160 tonC ha−1 in 2 years at the lower elevation, indicating that hydraulic restoration could stimulate carbon recovery through enhancement of mangrove growth. However, soil organic carbon decreased by almost half in the higher ground, suggesting that carbon decomposition was accelerated due to drying of soils.
机译:通过打开虾塘河岸进行水力恢复有助于人工种植红树林的建立和非人工种植红树林物种的殖民化,这被证明是一种有效的红树林恢复方法。种植的Rhizophoora apiculata和Rhizophora mucronata在6年中显着增长,分别达到300 cm和350 cm。然而,尽管最初阶段生长旺盛,但在同一时期,Bruguiera cylindrica的生长速度仅为150 cm。在重新开放河岸后的6年内,大约有15种未种植的红树林物种开始定殖,优势物种是Avicennia marina(46.9%),其次是B. cylindrica(27.0%)和Ceriops tagal(14.9%)。强化后,低海拔地区的土壤有机碳在2年内从110 tonC ha -1 显着增加,这表明水力恢复可以通过促进红树林的生长来刺激碳的回收。但是,在高地上土壤有机碳几乎减少了一半,这表明由于土壤干燥而加速了碳的分解。

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