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Changes in soil chemistry following a watershed-scale application of wollastonite (CaSiO_3) at Hubbard Brook, New Hampshire, USA

机译:在美国新罕布什尔州哈巴德溪(Casio_3)的流域水化学水上化学变化

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Decades of acidic deposition in the northeastern United States is believed to have caused the loss of substantial amounts of calcium from forest soils. This process of 'calcium depletion' affected the chemistry of drainage waters in the region and mayhave impacted forest health. To study this phenomenon, we applied 45 Mg of wollastonite (1316 kg Ca ha~(-1)) to watershed 1 (Wl) at the Hubbard Brook Experimental Forest, in New Hampshire, USA in October, 1999. Exchangeable Ca (1 M NH4CI) and soil pH increased significantly in the Oie and Oa horizons, and in the top 10 cm of the mineral soil, in samples collected 1, 3, and 7 years after treatment. Exchangeable acidity (1 M KC1) decreased significantly in the Oie and Oa ' horizons after treatment, but the effect in the upper mineral soil was not clear. Base saturation and effective cation exchange capacity (CEC_e) increased significantly after wollastonite application in all layers studied, primarily on the strength of the increased exchangeable Ca. Wedid not observe compensatory decreases in exchangeable Al, or other exchangeable cations, as initially hypothesized. Therefore, while wollastonite addition has improved the base status of Wl soils, it has not resulted in decreases in exchangeable Al.
机译:美国东北部的酸性沉积数十年据信导致森林土壤中大量钙丧失。这种“钙耗尽”的过程影响了该地区排水水域化学,可能会影响森林健康。为了研究这个现象,我们采用硅灰石(1316公斤钙公顷〜(-1))至分水1(WL)在哈伯德布鲁克实验林,新罕布什尔州,美国在1999年10月可交换的Ca(1 M的45 Mg的NH4CI)和土壤pH在OIE和OA视野中显着增加,并在矿物土壤的前10厘米,在治疗后的1,3和7年。可交换酸度(1米KC1)在治疗后的OIE和OA的视野中显着下降,但上矿物质的效果尚不清楚。在研究中的所有层中的硅灰石施用后,基础饱和度和有效的阳离子交换能力(CEC_E)显着增加,主要是增加可交换CA的强度。持续不观察更改的Al或其他可交换阳离子的补偿减少,如最初假设。因此,虽然硅藻土添加改善了WL土壤的基础状态,但它没有导致可更换的Al降低。

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