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Biochar amendment of soil improves resilience to climate change

机译:生物炭修正土壤改善了气候变化的抵御力

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Because of climate change, insufficient soil moisture may increasingly limit crop productivity in certain regions of the world. This may be particularly consequential for biofuel crops, many of which will likely be grown in drought-prone soils to avoid competition with food crops. Biochar is the byproduct of a biofuel production method called pyrolysis. If pyrolysis becomes more common as some scientists predict, biochar will become more widely available. We asked, therefore, whether the addition of biochar to soils could significantly increase the availability of water to a crop. Biochar made from switchgrass ( Panicum virgatum L.) shoots was added at the rate of 1% of dry weight to four soils of varying texture, and available water contents were calculated as the difference between field capacity and permanent wilting point water contents. Biochar addition significantly increased the available water contents of the soils by both increasing the amount of water held at field capacity and allowing plants to draw the soil to a lower water content before wilting. Among the four soils tested, biochar amendment resulted in an additional 0.8–2.7?d of transpiration, which could increase productivity in drought-prone regions or reduce the frequency of irrigation. Biochar amendment of soils may thus be a viable means of mitigating some of the predicted decrease in water availability accompanying climate change that could limit the future productivity of biofuel crops.
机译:由于气候变化,土壤水分不足可能越来越限制世界某些地区的作物生产力。这可能是尤其相应的生物燃料作物,其中许多可能在干旱的土壤中种植,以避免与粮食作物的竞争。生物炭是生物燃料生产方法的副产品,称为热解。如果热解变得更为常见,因为一些科学家预测,Biochar将变得更加广泛。因此,我们要求将生物炭添加到土壤中可以显着增加水的可用性。由SwitchGrass(Panicum Virgatum L.)芽的生物炭以1%的干重至四个不同质地的土壤的速率加入,并且可以计算出现场容量和永久性衰弱点水含量的差异。 Biochar加入显着增加了土壤的可用水含量,增加了在田间容量下持有的水量,并使植物将土壤将土壤将土壤放入较低的水含量之前。在测试的四种土壤中,生物炭修正案导致蒸腾额外0.8-2.7℃,这可以提高干旱易发的地区的生产率或降低灌溉频率。因此,生物炭修正土壤可能是减轻伴随气候变化的一些预测的水可用性降低的可行方法,这可能会限制生物燃料作物的未来生产率。

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