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首页> 外文期刊>Scientia horticulturae >Effect of fertilizer potential acidity and nitrogen form on the pH response in a peat-based substrate with three floricultural species
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Effect of fertilizer potential acidity and nitrogen form on the pH response in a peat-based substrate with three floricultural species

机译:化肥潜在酸度和氮素形态对三种花卉植物在泥炭基质中pH响应的影响

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摘要

The potential of a water soluble fertilizer (WSF) to raise or lower substrate-pH is estimated in calcium carbonate equivalents (CCE) of acidity or basicity per unit mass of fertilizer. The CCE is currently estimated using Pierre's Method, PM, which isbased on assumptions as to the effects of nitrogen and other ions in field soils that may not apply in container substrates. In a greenhouse experiment, the substrate-pH change was measured with 18 WSFs that varied in the concentration of NH_4-N, N0_3-N, urea-N and other nutrients. 'Ringo Deep Red' Pelargonium x hortorum (Bailey. L.H.), 'Super Elfin Bright Orange' Impa-tiens wallerana (Hook. F.), and 'Ultra Red' Petunia x hybrida seedling plugs were grown in 70%:30% (v:v) peatiperlite substrate amendedwith dolomitic hydrated limestone. Plants in 900 mL, 6-celled containers were top-irrigated with a total of 3.07 L over 4 weeks at 100mgLN without leaching. Plant species varied in their pH effect, in the order from acidic to basic of Pelargonium, Impatiens, and Petunia. Fertilizer CCE was positively correlated with substrate-pH, with r~2 between 0.54 and 0.80 depending on the species. Multivariate regression also quantified NH_4-N, NO_3-N, and urea-N concentration effects on substrate-pH and CCE of applied fertilizer. Estimated mequiv. of acid (negative values) or base (positive values) per mmol of each nitrogen form applied were NH_4-N -0.6678, -0.6143, -0.8123; N0_3-N 0.0713, 0.2746, -0.1296; and urea-N -0.2038, -0.1445, -0.2711 for impatiens. Petunia, and Pelargonium, respectively. Ammonium-N therefore had a strong acid effect, nitrate-N was a weak base or acid, and urea-N was a weak acid. Calculation of CCE based on PM or nitrogen alone provided a similar R~2 with observed pH, despite a wide range in concentrations of macronutrients other than N in the fertilizer blends. Pierre's Method and nitrogen estimates of CCE for fertilizer blends were similar to each other (P~2 =0.97). However, PM estimates were biased compared with experimental results, over-predicting acidity of high-ammonium fertilizers, and over-predicting basicity of high-nitrate fertilizers. Results indicate that nitrogen form and concentration may provide a simple estimation of the acidity or basicity of blended fertilizers, although research under other growing conditions would be required. Accurate estimation of CCE is important to help growers formulate appropriate fertilizers to balance other factors such as water alkalinity and plant species.
机译:水溶性肥料(WSF)升高或降低底物pH值的潜力以每单位质量肥料的酸度或碱度的碳酸钙当量(CCE)估算。目前,CCE是使用Pierre's Method PM估算的,该方法基于以下假设:田间土壤中氮和其他离子的影响可能不适用于容器基质。在温室实验中,使用18种WSF来测量底物的pH变化,这些WSNH4–N,NO_3–N,尿素N和其他营养素的浓度均发生变化。 'Ringo Deep Red'天竺葵x hortorum(Bailey。LH),'Super Elfin Bright Orange'Impa-tiens wallerana(Hook。F.)和'Ultra Red'Petunia x hybrida幼苗插条的生长率为70%:30%( v:v)用白云母水合石灰石修正的珍珠岩基质。将900 mL 6槽容器中的植物在100毫升/升的条件下于4周内最高灌溉总量为3.07升,且不进行淋洗。植物种类的pH值影响范围从天竺葵,凤仙花和矮牵牛的酸性到碱性依次变化。肥料的CCE与底物pH呈正相关,r〜2介于0.54和0.80之间,取决于物种。多元回归还定量了NH_4-N,NO_3-N和尿素-N浓度对施肥底物pH和CCE的影响。估计的mequiv。所施加的每种氮形式的毫摩尔酸(负值)或碱(正值)的NH_4-N -0.6678,-0.6143,-0.8123; N0_3-N 0.0713,0.2746,-0.1296;以及对于凤仙花的尿素-N -0.2038,-0.1445,-0.2711。矮牵牛和天竺葵。因此,铵-N具有强酸作用,硝酸盐-N是弱碱或酸,尿素-N是弱酸。仅基于PM或氮的CCE的计算提供了与观察到的pH相似的R〜2,尽管肥料混合物中除N以外的大量常量营养素的浓度范围也很广。皮埃尔法和混合肥料的CCE氮估算值彼此相似(P〜2 = 0.97)。但是,与实验结果相比,PM估计值存在偏差,高估了高铵肥的酸度,高估了高硝酸盐碱度。结果表明,尽管需要在其他生长条件下进行研究,但氮的形式和浓度可以提供对混合肥料的酸度或碱度的简单估算。准确估算CCE对帮助种植者配制合适的肥料以平衡其他因素(例如水碱度和植物种类)很重要。

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