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Balance of Chemicals in Pine and Spruce Forests of Karelia

机译:卡累利阿云杉林中化学品平衡

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摘要

An equation of the balance of chemicals is proposed which makes it possible to estimate the changes in their quantity in the soil under a growing stand. When determining the sources of chemicals for forest soils, the measured data of their contents in atmospheric precipitation and estimated inputs of dieback are used. Sinks of elements are calculated from lysimetric data and their accumulation is determined for phytomass increase. Due to the insufficient study of element migration during transpiration, the influence of this process on the balance is evaluated for two options: with and without taking possible losses of chemicals as a result of biogenic evaporation into account. Growth increment and dieback phytomass are estimated differentially for the soil cover and the stand. We have documented the species-averaged contents of certain chemicals accumulating by growing phytomass and returning with dieback in pine and spruce stands and their soil covers. The accumulation of elements in soil cover rises due to precipitation falling through the forest canopy. The greatest increase is obtained in the input of potassium and calcium. Their contribution is the highest in the precipitation flux of all studied chemicals in the soil cover. However, the precipitation of potassium is comparable to its uptake by phytomass. Dieback is the dominant source of silicon, nitrogen, and total phosphorus for the forest soils. The balance model shows that the mature and old-growth stands support the accumulation of nutritional elements in the soils. Losses of silicon might be compensated by its soil storage.
机译:提出了化学品平衡的方程,这使得可以在不断增长的支架下估计其在土壤中数量的变化。在确定森林土壤的化学物质来源时,使用其在大气降水中的含量测量和估计的重背部输入。从Lysimetric数据计算元素的沉积,并确定它们的累积是为了植物瘤增加。由于在蒸腾过程中对元素迁移的研究不足,对两种选择进行了评估了这一过程对余额的影响:随着生物蒸发而没有考虑生物蒸发的可能损失。生长增量和沉浸植物植物用于土壤覆盖和支架估计。我们已经记录了通过生长植物组织积累的某些化学品的物种平均含量,并用皱纹和云杉架和土壤覆盖物返回。土壤覆盖中的元素的积累升高由于森林冠层落下的沉淀因子。在钾和钙的输入中获得最大的增加。它们的贡献是土壤覆盖物中所有研究的沉淀通量中的最高。然而,钾的沉淀与植物瘤的吸收相当。沉浸是硅,氮和森林土壤的总磷的主要来源。余额模型表明,成熟和旧成长支撑着土壤中营养元素的积累。硅的损失可能会通过土壤储存来补偿。

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