生物炭与覆盖作物相结合能否改善沙质、坡地和半干旱土壤的健康状况并提高其生产力?

Humberto Blanco-Canqui, Cody F. Creech, Amanda C. Easterly, Rhae A. Drijber, Elizabeth S. Jeske
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引用次数: 0

摘要

生物炭可以改善环境敏感土壤(即低碳、沙质、坡地)的健康状况,尤其是在与覆盖作物(CCs)相结合的情况下,但这方面的研究还很少。我们评估了在美国中部大平原的沙质、坡地和半干旱土壤中施用 0、6.25、12.5、25 和 50 兆克/公顷-1 的木质生物炭(836 克/千克-1)对土壤和作物产量的影响。我们测量了每年的作物产量和CC生物量,以及第1年和第3年的大部分土壤特性。生物炭与 CC 没有相互作用,这表明生物炭与 CC 的组合并不比单独使用生物炭或 CC 更好。在半干旱的土壤中,由于持续干旱,作物和 CC 未能成活。生物炭的益处因地而异。生物炭改善了一些土壤特性,但仅限于沙土和坡地,以及生物炭施用深度(0 至 15 厘米土层深度)。每公顷 50 毫克生物炭可提高土壤的吸水能力(0.08 厘米 s-1/2)。此外,在沙质土壤中,生物炭仅在第一年提高了土壤有机质浓度(2.5 g kg-1)、土壤 pH 值(0.65 单位)和可用水量(0.07 m3 m-3),这表明生物炭对沙质土壤的益处是短暂的。在坡地土壤中,每公顷 25 毫克生物炭降低了容重(0.16 毫克/立方米),增加了土壤水稳团聚体的平均重量直径(0.58 毫米)、有机质浓度(11.42 克/千克)、渗透率(9.35 厘米)、CC 生物量产量(0.27 毫克/公顷)和一些微生物生物量群。生物炭没有影响作物产量。总体而言,每公顷 25 毫克生物碳可改善某些土壤的性质,但不会与 CC 发生相互作用。
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Does biochar combined with cover crops improve health and productivity of sandy, sloping, and semi-arid soils?

Biochar may improve the health of environmentally sensitive soils (i.e., low C, sandy, sloping) especially if combined with cover crops (CCs), but research is scant. We assessed how wood biochar (836 g C kg−1) applied at 0, 6.25, 12.5, 25, and 50 Mg ha−1 to sandy, sloping, and semi-arid soils with and without CCs affects soils and crop yields in the central US Great Plains for 3 years. We measured crop yields and CC biomass each year, and most soil properties in Years 1 and 3. Biochar did not interact with CCs, suggesting the combination was no better than biochar or CC alone. In the semi-arid soil, crop and CC did not establish due to persistent droughts. Biochar benefits were highly site-specific. Biochar improved some soil properties but only in the sandy and sloping soils and at the biochar application depth (0- to 15-cm soil depth). The 50 Mg biochar ha−1 improved the soil's ability to sorb water (0.08 cm s−1/2). Also, in the sandy soil, it increased soil organic matter concentration (2.5 g kg−1), soil pH (0.65 units), and available water (0.07 m3 m−3) only in Year 1, suggesting a biochar benefit in sandy soils is short-lived. In the sloping soil, >25 Mg biochar ha−1 reduced bulk density (0.16 Mg m−3) and increased soil mean weight diameter of water-stable aggregates (0.58 mm), organic matter concentration (11.42 g kg−1), infiltration (9.35 cm), CC biomass production (0.27 Mg ha−1), and some microbial biomass groups. Biochar did not affect crop yields. Overall, >25 Mg biochar ha−1 improved properties in some soils without interacting with CCs.

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