首页> 外文期刊>Global Ecology and Conservation >Biochar mitigates dissolved organic carbon loss but does not affect dissolved organic nitrogen leaching loss caused by nitrogen deposition in Moso bamboo plantations
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Biochar mitigates dissolved organic carbon loss but does not affect dissolved organic nitrogen leaching loss caused by nitrogen deposition in Moso bamboo plantations

机译:生物炭减轻了溶解有机碳的损失,但不影响由毛竹种植园中氮沉积引起的溶解有机氮的淋失

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Dissolved organic matter (DOM) is one of the most reactive and mobile components in terrestrial ecosystems. Frequent loss of DOM has a negative effect on the surrounding environment. Current abundant deposition of atmospheric nitrogen (N) could significantly influence DOM leaching, and biochar has been suggested to be applied for improving acidic soils However, it remains unclear whether biochar affects dissolved organic carbon (DOC) or dissolved organic nitrogen (DON) loss induced by N deposition in acidic soils. In this study, we observed the effects of biochar amendment (BC0: 0?t biochar hasup?1/sup, BC20: 20?t biochar hasup?1/sup, and BC40: 40?t biochar hasup?1/sup) on the leaching of soil DOC and DON in Moso bamboo plantations that received simulated N deposition (N30: 30?kg?N hasup?1/sup yrsup?1/sup, N60: 60?kg?N hasup?1/sup yrsup?1/sup, N90: 90?kg?N hasup?1/sup yrsup?1/sup, and N-free) for 34 months. DOC loss showed a marked seasonal variation with the lowest loss occurring in spring and the largest loss in summer; no such trend was observed in DON loss. Nitrogen deposition generally increased DOC and DON leaching loss in all four seasons, except DOC leaching loss in spring. Biochar amendment significantly decreased DOC leaching loss in spring, autumn, and winter; however, there was no significant effect on DON. Biochar may therefore mitigate DOC and DON loss caused by N deposition. DOC loss mitigation was also greater than that for DON, especially in autumn. Biochar application is a potential approach to mitigate the DOC and DON leaching loss induced by increasing atmospheric N deposition in Moso bamboo plantations.
机译:溶解有机物(DOM)是陆地生态系统中最易反应和最易流动的成分之一。 DOM的频繁丢失会对周围环境产生负面影响。当前大量的大气氮(N)沉积可显着影响DOM的浸出,并且已提出将生物炭用于改良酸性土壤。但是,目前尚不清楚生物炭是否影响溶解的有机碳(DOC)或诱导的溶解的有机氮(DON)损失氮在酸性土壤中的沉积。在这项研究中,我们观察了生物炭修正的影响(BC0:0?t biochar ha ?1 ,BC20:20?t biochar ha ?1 和BC40:40在模拟氮沉降量(N30:30?kg?N ha ?1 yr)的毛竹林中土壤DOC和DON的淋溶过程中有?t biochar ha ?1 ) ?1 ,N60:60?kg?N ha ?1 yr ?1 ,N90:90?kg?N ha ? 1 yr ?1 ,并且无氮)持续34个月。 DOC损失表现出明显的季节变化,春季损失最小,夏季损失最大。在DON损失中没有观察到这种趋势。除春季的DOC淋失外,氮沉降通常在所有四个季节中都增加了DOC和DON的淋失。生物炭改良剂可显着减少春季,秋季和冬季的DOC淋溶损失;但是,对DON没有明显影响。因此,生物炭可以减轻由于N沉积引起的DOC和DON损失。 DOC损失的减轻幅度也大于DON,特别是在秋季。生物炭的应用是减轻由于毛竹林中大气氮沉降增加而引起的DOC和DON淋溶损失的潜在方法。

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