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Biochar boosts tropical but not temperate crop yields

机译:生物炭可提高热带作物的产量,但不增加温带作物的产量

摘要

Applying biochar to soil is thought to have multiple benefits, from helping mitigate climate change [1, 2], to managing waste [3] to conserving soil [4]. Biochar is also widely assumed to boost crop yield [5, 6], but there is controversy regarding the extent and cause of any yield benefit [7]. Here we use a global-scale meta-analysis to show that biochar has, on average, no effect on crop yield in temperate latitudes, yet elicits a 25% average increase in yield in the tropics. In the tropics, biochar increased yield through liming and fertilization, consistent with the low soil pH, low fertility, and low fertilizer inputs typical of arable tropical soils. We also found that, in tropical soils, high-nutrient biochar inputs stimulated yield substantially more than low-nutrient biochar, further supporting the role of nutrient fertilization in the observed yield stimulation. In contrast, arable soils in temperate regions are moderate in pH, higher in fertility, and generally receive higher fertilizer inputs, leaving little room for additional benefits from biochar. Our findings demonstrate that the yield-stimulating effects of biochar are not universal, but may especially benefit agriculture in low-nutrient, acidic soils in the tropics. Biochar management in temperate zones should focus on potential non-yield benefits such as lime and fertilizer cost savings, greenhouse gas emissions control, and other ecosystem services.
机译:人们认为将生物炭应用于土壤具有多种益处,从帮助缓解气候变化[1,2]到管理废物[3]到保护土壤[4]。人们也普遍认为生物炭可以提高农作物的产量[5,6],但是关于任何产量收益的程度和原因也存在争议[7]。在这里,我们使用全球规模的荟萃分析显示,平均而言,生物炭对温带地区的农作物产量没有影响,但在热带地区却平均提高了25%。在热带地区,生物炭通过石灰和施肥提高了产量,这与典型的可耕热带土壤的低pH值,低肥力和低肥料投入相一致。我们还发现,在热带土壤中,高营养生物炭投入物比低营养生物炭投入物对产量的刺激作用要大得多,从而进一步支持了养分施肥在观察到的增产作用中的作用。相比之下,温带地区的可耕土壤的pH值适中,肥力较高,并且通常接受较高的肥料投入,因此几乎没有余地为生物炭带来更多好处。我们的发现表明,生物炭的增产效应并不普遍,但在热带地区低营养,酸性土壤中尤其有利于农业。温带地区的生物炭管理应侧重于潜在的非单产收益,例如节省石灰和化肥成本,控制温室气体排放以及其他生态系统服务。

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