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Artificial weathering reveals reduced elemental leachability from hardened biomass ash.

机译:人工风化揭示了来自硬化生物质灰分的元素可浸出性降低。

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摘要

Biomass ashes are potential soil amendments that reduce soil acidity and provide plant nutrients, but trace elements in ash may be leached from the solid phase, thereby posing environmental concerns. We determined the leachability of major and trace elements as influenced by ash pre-treatments, the presence of soil, and the pH of the receiving environment. Weathering was simulated by serial batch extraction where pH was uncontrolled, and by single extraction under controlled pH conditions. We found that hardening reduced the solubility of ash, and reduced the leachability of Al, Ba, Ca, Cu, Mo, Sr, and V, as determined by ICP-MS. In a separate experiment, extractions of ash samples showed that when pH was lowered the leachability of most elements increased while a few decreased. The results of the weathering experiments support the use of ash as a soil amendment. --Leaf ii.
机译:生物质灰是降低土壤酸度并提供植物养分的潜在土壤改良剂,但是灰分中的微量元素可能会从固相中浸出,从而引起环境问题。我们确定了主要和微量元素的可浸出性,这些影响受灰分预处理,土壤的存在以及接收环境的pH的影响。通过连续分批萃取(其中pH不受控制)和在受控pH条件下单次萃取模拟风化。我们发现,通过ICP-MS测定,硬化会降低灰分的溶解度,并降低Al,Ba,Ca,Cu,Mo,Sr和V的浸出性。在一个单独的实验中,灰分样品的提取表明,当pH降低时,大多数元素的浸出率提高,而另一些元素则降低。风化实验的结果支持使用灰作为土壤改良剂。 -叶ii。

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