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首页> 外文期刊>The American Midland Naturalist >Soil Properties in 35 y old Pine and Hardwood Plantations after Conversion from Mixed Pine-hardwood Forest
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Soil Properties in 35 y old Pine and Hardwood Plantations after Conversion from Mixed Pine-hardwood Forest

机译:松木—硬木混交林改建后35年老松人工林的土壤性质

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Past management practices have changed much of the native mixed pine-hardwood forests oil upland alluvial terraces of the western Gulf Coastal Plain to either pine monocultures or hardwood (angiosperm) stands. Changes in dominant. tree species call alter soil chemical, biological, and physical properties and processes, thereby changing soil attributes, and ultimately, soil functions. Restoring these forests may be slow or difficult if soil function is altered appreciably. We studied the soil properties and processes ill pine or hardwood-dominated stands after 35 y since conversion from a mixed pine-hardwood stand. The pine forest. floor biomass wits about twice as great as that of the oak stands, the oak soils were 20-30% wetter than the pine soils throughout the sampling period, the oak soils released more CO2 through respiration and had higher rates of N mineralization in the summer. We observed few differences between pine and oak stands in soil chemistry or microbial biomass. Since the difference in forest floor depth and soil biological activity may confer competitive advantages or disadvantages to some species, this Study supports the hypothesis that pine- or hardwood-only stands create functionally different soils on these site types after 35 y.
机译:过去的管理做法已将墨西哥湾沿岸平原的许多原生松木-阔叶混交林油山地冲积阶地改为松树单一栽培或硬木(被子植物)林分。主导地位的变化。树木物种改变了土壤的化学,生物和物理特性及过程,从而改变了土壤的属性,最终改变了土壤的功能。如果土壤功能发生明显变化,恢复这些森林可能会很缓慢或困难。自混合松木—硬木林分转化后的35年后,我们研究了以松木或硬木为主的林分的土壤特性和过程。松树林。地板生物量是橡木林的两倍,整个采样期间橡木土壤比松树土壤湿润20-30%,橡木土壤在夏季通过呼吸释放更多的二氧化碳,氮的矿化率更高。我们观察到松树和橡树林在土壤化学或微生物生物量方面几乎没有差异。由于林地深度和土壤生物活性的差异可能给某些物种带来竞争优势或劣势,因此本研究支持以下假设:仅松木或硬木林分在35年后会在这些站点类型上产生功能不同的土壤。

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