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首页> 外文期刊>International Journal of Wildland Fire >Prescribed fire, soils, and stream water chemistry in a watershed in the Lake Tahoe Basin, California
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Prescribed fire, soils, and stream water chemistry in a watershed in the Lake Tahoe Basin, California

机译:加利福尼亚州太浩湖流域的分水岭中规定的火,土壤和溪流水化学成分

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摘要

Before Euro-American settlement fire was a common process in the forests of the Lake Tahoe Basin. The combination of drought, fire suppression, and past harvesting has produced ecosystems that are susceptible to high-severity wildfires. Consequently, a program of prescribed fire has been recommended but there is incomplete understanding of the ecological effects of fuels treatments, especially with regard to how treatments will affect the flow of nutrients to Lake Tahoe. Nitrogen and phosphorus are the most important nutrients affecting algal growth, and thus lake clarity. Existing data demonstrate a long-term shift from a co-limitation by both nitrogen and phosphorus to phosphorus limitation. Two high-consumption, moderate-intensity prescribed fires were conducted to determine their effects on soil and stream water chemistry. Stream water calcium concentrations increased in burned watersheds whereas soluble reactive phosphorus concentrations were not significantly different. Prescribed fires released calcium and raised soil pH and this may have resulted in the incorporation of phosphorus into insoluble forms. Stream monitoring data indicates water quality effects last for similar to3 months. Prescribed fires did not significantly increase the amount of soluble reactive phosphorus in stream waters. However, additional research is needed to determine if prescribed fire increases erosion or movement of particulate P, particularly in areas with steep slopes.
机译:在欧美定居之前,太浩湖流域的森林经常发生火灾。干旱,灭火和过去的收成相结合,产生了容易遭受高强度野火侵袭的生态系统。因此,建议使用明火方案,但对燃料处理的生态影响尚不完全了解,尤其是在处理将如何影响营养流向太浩湖方面。氮和磷是影响藻类生长并因此影响湖泊澄澈度的最重要营养素。现有数据证明了从氮和磷的共限制向磷限制的长期转变。进行了两次高消耗量,中等强度的明火,以确定它们对土壤和溪流水化学的影响。在烧过的流域,溪水钙浓度增加,而可溶性反应性磷浓度没有显着差异。规定的大火释放了钙并提高了土壤的pH值,这可能导致磷掺入不溶形式。河流监测数据表明水质影响持续了近3个月。规定的大火并没有明显增加溪流水中可溶性反应性磷的含量。但是,还需要进行其他研究来确定规定的火灾是否会加剧颗粒P的侵蚀或运动,特别是在陡坡地区。

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