首页> 外文期刊>Field Crops Research >Effects of amendment of biochar-manure compost in conjunction with pyroligneous solution on soil quality and wheat yield of a salt-stressed cropland from Central China Great Plain.
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Effects of amendment of biochar-manure compost in conjunction with pyroligneous solution on soil quality and wheat yield of a salt-stressed cropland from Central China Great Plain.

机译:生物炭-肥料堆肥配合热解溶液对华中大平原盐胁迫农田土壤质量和小麦产量的影响。

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Salt stress has been one of the extreme conditions threatening world crop production which may become more serious under climate change. This study is to address the potential of using biochar as an organic matter-rich material to ameliorate salt stressed soil in order to enhance crop production in dry croplands. A two year field experiment with soil amendment of biochar poultry manure compost (BPC) and pyroligneous solution (PS) was conducted in a moderately salt stressed Entisol from Central China. The soil was amended with BPC at 12 t ha-1 following treatment with diluted PS solution at 0.15 t ha-1 1 week before winter wheat sowing. Samples of topsoil and plant were collected while the yield was measured when harvested. The changes in soil salinity, fertility properties as well as crop yield were examined with comparison between the plots treated for one year and for two years. In the first cropping year of 2010-2011, a significant decreases under BPC-PS amendment was observed in soil salinity by 3.6 g kg-1, soil pH by 0.3 and in soil bulk density by 0.1 g cm-3 while increase was seen in SOC and available phosphorous by 2.6 g kg-1 and by 27 mg kg-1 respectively. The yield was increased over the control by several folds and by 38% under BPC-PS treatment respectively for 1 year and for 2 years. Furthermore, the decrease in soil salinity, soil pH, and bulk density was even greater in the plots treated for 2 years than for one year though the yield under the treatment was not significantly different between the consecutive two years with a spring drought in 2012. These results demonstrated a strong effect of BPC-PS treatment on salinity reduction and crop productivity enhancement in the salt stressed soil, which could sustain for at least two years. Therefore, biochar amendment of biochar compost in conjunction with pyroligneous solution from wheat straw could be an effective option to alleviate the salt stress and improving crop productivity in salt affected croplands.Digital Object Identifier http://dx.doi.org/10.1016/j.fcr.2012.11.015
机译:盐胁迫一直是威胁世界农作物产量的极端条件之一,在气候变化下,这种情况可能变得更加严重。这项研究旨在探讨使用生物炭作为富含有机物质的材料来改善盐分胁迫的土壤以提高旱地作物产量的潜力。在来自中国中部的中等盐分胁迫的Entisol中,进行了为期两年的田间试验,对生物炭家禽粪便堆肥(BPC)和焦木溶液(PS)进行了土壤改良。在冬小麦播种前1周,在0.15 t ha -1 的稀释PS溶液处理后,在12 t ha -1 的土壤上用BPC进行改良。收集表土和植物样品,同时收获时测量产量。通过比较处理一年和两年的地块,检查了土壤盐分,肥力特性和作物产量的变化。在2010-2011年的第一个种植年度,根据BPC-PS修正案,土壤盐分降低了3.6 g kg -1 ,土壤pH降低了0.3,土壤容重降低了0.1 g cm -3 ,SOC和有效磷分别增加2.6 g kg -1 和27 mg kg -1 。在BPC-PS处理下,一年和两年的产量分别比对照提高了几倍和38%。此外,尽管2012年春季干旱造成的连续两年间的处理产量没有显着差异,但处理2年的地块的土壤盐分,土壤pH值和堆积密度的下降甚至更大。这些结果证明了BPC-PS处理对盐胁迫土壤中盐分降低和作物生产力提高的强大作用,这种作用可持续至少两年。因此,生物炭堆肥的生物炭改良剂与小麦秸秆的焦木溶液一起使用,可能是缓解盐碱化农田中的盐胁迫和提高作物生产力的有效选择。数字对象标识符http://dx.doi.org/10.1016/j .fcr.2012.11.015

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