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气化草炭和木本生物炭促进酸性矿山土壤中的植物定植。

Gasified Grass and Wood Biochars Facilitate Plant Establishment in Acid Mine Soils.

作者信息

Phillips Claire L, Trippe Kristin M, Whittaker Gerald, Griffith Stephen M, Johnson Mark G, Banowetz Gary M

出版信息

J Environ Qual. 2016 May;45(3):1013-20. doi: 10.2134/jeq2015.09.0470.

Abstract

Heavy metals in exposed mine tailings threaten ecosystems that surround thousands of abandoned mines in the United States. Biochars derived from the pyrolysis or gasification of biomass may serve as a valuable soil amendment to revegetate mine sites. We evaluated the ability of two biochars, produced by gasification of either Kentucky bluegrass seed screenings (KB) or mixed conifer wood (CW), to support the growth of plants in mine spoils from the abandoned Formosa and Almeda Mines in Oregon. To evaluate the potential for plant establishment in mine tailings, wheat was grown in tailings amended with biochar at rates ranging from 0 to 9% (w/w). Both KB and CW biochars promoted plant establishment by increasing soil pH, increasing concentrations of macro- and micronutrients, and decreasing the solubility and plant uptake of heavy metals. Formosa tailings required at least 4% biochar and Almeda soil required at least 2% biochar to promote healthy wheat growth. A complimentary experiment in which mine spoils were leached with simulated precipitation indicated that biochar amendment rates ≥4% were sufficient to neutralize the elution pH and reduce concentrations of potentially toxic elements (Zn, Cu, Ni, Al) to levels near or below concern. These findings support the use of gasified biochar amendments to revegetate acid mine soils.

摘要

露天矿尾矿中的重金属威胁着美国数千座废弃矿山周边的生态系统。生物质热解或气化产生的生物炭可作为一种有价值的土壤改良剂,用于矿山植被恢复。我们评估了两种生物炭(由肯塔基蓝草种子筛选物(KB)或针叶混交林木材(CW)气化产生)在俄勒冈州废弃的福尔摩沙矿和阿尔梅达矿的矿渣中支持植物生长的能力。为了评估植物在矿尾矿中生长的潜力,将小麦种植在用生物炭改良的尾矿中,生物炭添加比例为0至9%(重量/重量)。KB和CW生物炭均通过提高土壤pH值、增加大量和微量营养素浓度以及降低重金属的溶解度和植物对重金属的吸收,促进了植物生长。福尔摩沙尾矿至少需要4%的生物炭,阿尔梅达土壤至少需要2%的生物炭才能促进小麦健康生长。一项补充实验,用模拟降水对矿渣进行淋溶,结果表明生物炭添加比例≥4%足以中和淋溶pH值,并将潜在有毒元素(锌、铜、镍、铝)的浓度降低到接近或低于关注水平。这些发现支持使用气化生物炭改良剂来恢复酸性矿山土壤的植被。

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