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Influence of nitrogen fertilizer forms and crop straw biochars on soil exchange properties and maize growth on an acidic Ultisol

机译:氮肥肥料和作物秸秆生物谱对酸性Ultisol对土壤交换性能和玉米生长的影响

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Effects of repeated application of urea (UN) and calcium nitrate (CN) singly and together with crop straw biochars on soil acidity and maize growth were investigated with greenhouse pot experiments for two consecutive seasons. Canola straw biochar (CB), peanut straw biochar (PB) and wheat straw biochar (WB) were applied at 1% of dried soil weight in the first season. N fertilizers were applied at 200mg N kg(-1). In UN treatments, an initial rise in pH was subjected to proton consumption through urea hydrolysis, afterwards nitrification of NH4+ caused drastic reductions in pH as single UN had soil pH of 3.70, even lower than control (4.27) after the 2nd crop season. Post-harvest soil analyses indicated that soil pH, soil exchangeable acidity, NH4+, NO3- and total base cations showed highly significant variation under N and biochar types (P0.05). Articulated growth of plants under combined application with biochars was expressed by 22.7%, 22.5%, and 35.7% higher root and 25.6%, 23.8%, and 35.9% higher shoot biomass by CB, PB and WB combined with CN over UN, respectively. Therefore, CN combined with biochars is a better choice to correct soil acidity and improve maize growth than UN combined with biochars.
机译:尿素(联合国)和硝酸钙(CN)与作物秸秆生物藻对土壤酸性和玉米生长的影响对土壤酸性和玉米生长的影响,进行了温室盆栽试验。油菜秸秆生物炭(CB),花生秸秆生物炭(PB)和小麦秸秆生物炭(WB)在第一季施用1%的干燥土壤重量。施用N肥料以200mg n kg(-1)。在联合国治疗中,通过尿素水解对pH的初始升高进行质子消耗,然后硝化NH4 +导致pH值的急性减少,单一的土壤pH为3.70,甚至低于对照(4.27)后的第2季季节。收获后土壤分析表明土壤pH,土壤可交换酸度,NH4 +,NO3和总基阳离子在N和生物炭类型下显示出高度显着的变化(P <0.05)。 CB,Pb和Wb分别表达了22.7%,22.5%和35.7%,23%,23.8%和35.6%,22.5%,25.6%,23.8%和35.6%,22.7%,23.8%和35.9%的植物的植物的生长分别表示。因此,CN与Biochar结合的是更好的选择纠正土壤酸度并改善玉米生长而不是联合联合与生物脉。

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