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首页> 外文期刊>Experimental agriculture >FIELD EVALUATION OF SOIL AND WHEAT RESPONSES TO COMBINED APPLICATION OF HARDWOOD BIOCHAR AND INORGANIC FERTILIZERS IN ACIDIC SANDY LOAM SOIL
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FIELD EVALUATION OF SOIL AND WHEAT RESPONSES TO COMBINED APPLICATION OF HARDWOOD BIOCHAR AND INORGANIC FERTILIZERS IN ACIDIC SANDY LOAM SOIL

机译:硬木生物炭和无机肥在酸性砂土土壤中综合应用的土壤和小麦应答的田间评价

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摘要

Biochar application appears to be a promising method to improve soil physicochemical and biological properties by increasing soil carbon. Along with the influence of hardwood biochar on wheat growth, yield and soil quality for a period of two years, this study also evaluates the major soil parameters to be taken as minimum data set while assessing the impact of hardwood biochar in an acidic sandy loam soil. Five fertilizer treatments combining inorganic fertilizers and biochar were applied: unfertilized control (T1); 100% NPK (T2); 5 Mg ha(-1) biochar (T3); 100% NPK + 5 Mg ha(-1) biochar (T4); and 50% N + 100% PK + 5 Mg ha(-1) biochar (T5). Biochar application (T3 vs. T1; T4 and T5 vs. T2) significantly increased leaf chlorophyll content, net photosynthesis rate, leaf N concentration and above and belowground biomass, with improved wheat yield and grain quality (total grain protein and carbohydrate). Soil pH, water-holding capacity, available nutrients (N, P and K), organic carbon and its fractions also enhanced in biochar applied plots with reduced bulk density. Increased activities of soil enzymes urease, phosphatase, dehydrogenase, fluorescein di-acetate and arylsulphatase were recorded in biochar treatment along with significant increase in N recovery index (22%) and agronomic efficiency (40%). Multivariate analysis identified activity of phosphatase, pH and humic acid to fulvic acid ratio as the indicators to explain the total variance from biochar addition in acidic sandy loam soil under wheat cultivation. Soil quality index showed a significant improvement when biochar was added with reduced N doses (T5). This study confirms the efficacy of biochar as a soil conditioner when applied with reduced N fertilizer and would be a sustainable option to improve wheat production and soil quality in acidic sandy loam soils of northeast India.
机译:BioChar应用似乎是通过增加土壤碳来改善土壤理化化学和生物学性质的有希望的方法。随着硬木生物炭对两年内小麦生长,产量和土壤质量的影响,本研究还评估了主要的土壤参数作为最低数据集,同时评估硬木生物炭在酸性砂土土壤中的影响。采用五种肥料治疗,组合无机肥料和生物炭:未受精的对照(T1); 100%NPK(T2); 5 mg ha(-1)生物炭(t3); 100%NPK + 5 mg HA(-1)生物炭(T4);和50%n + 100%pk + 5mg ha(-1)生物炭(t5)。生物炭施用(T3与T1; T4和T5 Vs.T2)显着增加了叶片叶绿素含量,净光合速率,叶N浓度和高于和下面的生物量,具有改善的小麦产量和粒度(总谷物蛋白质和碳水化合物)。土壤pH,水持量,可用营养素(N,P和K),有机碳及其级分也在生物炭施加的堆积密度降低的施加图中增强。在生物炭处理中记录了土壤酶,磷酸酶,脱氢酶,荧光素二乙酸盐和芳基硫酸酯的增加,随着N恢复指数(22%)和农艺效率(40%)显着增加。多变量分析鉴定了磷酸酶,pH和腐殖酸的活性,以富含富酸比作为指标,以解释小麦培养下酸性砂土土壤中生物炭加入的总差异。当加入生物炭(T5)减少时,土壤质量指数显示出生物炭时的显着改善。本研究证实了生物炭作为土壤调节剂的效果,当施用减少的N肥料时,将是一种可持续选择,以提高印度东北酸性砂土土壤中的小麦生产和土壤质量。

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