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Impacts of biochar application on soil fertility, plant nutrients uptake and maize (Zea mays L.) yield in saline sodic soil

机译:生物炭应用对土壤肥力,植物营养摄取和玉米(Zea 5月L.)产量的影响

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Biochar as a soil amendment recently take special attention for ameliorating salt-affected soils, whereas it can be an agriculturally important resource for increasing soil fertility and productivity through the ameliorating of salt-affected soils. The experimental field was conducted in 2013-2014 and 2014-2015 growing season for maize in saline-sodic soil at Agricultural Faculty Farm, Tanta University. The objectives of this study were (i) to study the reclamation effectiveness of wood sawdust (BW) and maize stalk biochars (BM) at rates of 5, 10, and 19 ton ha(-1) on amelioration of a saline sodic soil; (ii) evaluation of the response of maize (Zea mays L.) crop and plant nutrients uptake to different treatments; and (iii) monitoring of the gradual improvement in saline sodic soil chemical properties. The results indicated that biochar application significantly increased soil organic matter (SOM), microbial biomass (C), cation exchange capacity (CEC), exchangeable cations, available phosphorus concentration, fertility index but decreased electrical conductivity (EC), and exchangeable sodium percentage (ESP) of the studied soil. The treatment of 19 ton ha(-1) of wood sawdust biochar showed the highest decreases in EC by 62.0%, ESP by 74.5%, and exchangeable Na by 67.4% relative to the control. The highest significant increase in the uptake of NPK, grain, and straw yield of maize plants and soil fertility index corresponded to the 19 ton ha(-1) wood sawdust biochar treatment. Our results indicate that biochar can ameliorate saline-sodic soils and improve soil fertility.
机译:生物炭作为土壤修正最近特别注意改善盐影响的土壤,而通过改善盐受影响的土壤,它可以是增加土壤肥力和生产力的农业资源。实验领域是在坦塔大学农业学院农业农业学院农业盐水土壤中玉米种植季节的2013-2014和2014-2015生长季节。本研究的目的是(i)研究木锯末(BW)和玉米秸秆生物谱(BM)在5,10和19吨HA(-1)率的盐水钠土壤的改善方面的回收效果; (ii)评价玉米(Zea 5月L.)作物和植物营养吸收对不同治疗的响应; (iii)监测盐水碳化土壤化学性质逐步改善。结果表明,生物炭申请显着增加土壤有机物(SOM),微生物生物量(C),阳离子交换能力(CEC),可交换阳离子,可用磷浓度,生育指数降低(EC),可交换钠百分比( ESP)研究的土壤。治疗19吨HA(-1)木锯末Biochar,EC的最高降低62.0%,ESP×74.5%,可互换的Na相对于对照约67.4%。玉米植物的NPK,谷物和秸秆产量的吸收的最高显着增加,土壤肥力指数对应于19吨HA(-1)木锯末生物炭治疗。我们的结果表明,生物炭可以改善盐水 - 碳化土壤并改善土壤肥力。

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