首页> 外文期刊>Journal of the American Society for Horticultural Science >THE EFFECT OF LIME, IRRIGATION-WATER SOURCE, AND WATER-SOLUBLE FERTILIZER ON ROOT-ZONE PH, ELECTRICAL CONDUCTIVITY, AND MACRONUTRIENT MANAGEMENT OF CONTAINER ROOT MEDIA WITH IMPATIENS
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THE EFFECT OF LIME, IRRIGATION-WATER SOURCE, AND WATER-SOLUBLE FERTILIZER ON ROOT-ZONE PH, ELECTRICAL CONDUCTIVITY, AND MACRONUTRIENT MANAGEMENT OF CONTAINER ROOT MEDIA WITH IMPATIENS

机译:石灰,灌溉水源和水溶性肥料对含肥容器根介质的根区PH,电导率和微量元素管理的影响

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Hybrid impatiens (Impatiens Wallerana Hook, F,) were planted in a peat-based medium containing two dolomitic liming materials (1.8 kg Ca(OH)(2) . Mg(OH)(2)/m(3) or 8.4 kg CaCO3 . MgCO3/m(3)) and subirrigated for 17 weeks using four irrigation-water sources (IWSs) with varied bicarbonate alkalinity, Ca2+, Mg2+, and SO4-S content and three water-soluble fertilizers (WSFs) that contained (in mg) 200N-20P-200K/liter but a variable NH,: NO, ratio, Ca2+, Mg2+, and SO4-S content, The factorial arrangement of the IWS and WSF resulted in a range of Ca2+, Mg2+, and SO4-S concentrations varying by a factor of 10. After 8 weeks, medium pH ranged from 4.5 to 8.5, The maximum critical medium pH for PO4-P uptake was 7.4 to 7.7, which probably was due to a change in most of the water-soluble P to the less-available HPO42- form, Lime type did not affect the long-term increase in medium pH, Ca2+, and Mg2+ concentrations with nutrient solutions containing low NH4+-N and high Ca2+ and Mg2+, The carbonate lime buffered the medium pH and Ca2+ and Mg2+ concentrations with nutrient solutions containing high NH4+-N and low Ca2+ and Mg2+ compared to that measured with the hydrated lime. With both lime types, there was a linear increase in tissue Ca and Mg as the applied concentrations of the various nutrient solutions increased from 18 to 210 mg Ca2+/liter and 7 to 90 mg Mg2+/liter. The relationship was similar for both lime types up to week 8, after which tissue Ca and Mg decreased more rapidly with the hydrated lime and low solution Ca2+ and Mg2+ compared to that of the same carbonate lime treatments. The minimum critical SO4-S concentration in the applied nutrient solution for plant uptake was 30 to 40 mg S/liter, Below this concentration, tissue S decreased rapidly; above, there was little effect on tissue S.
机译:将杂种凤仙花(Impatiens Wallerana Hook,F)种植在基于泥炭的培养基中,该培养基中包含两种白云石石灰质材料(1.8 kg Ca(OH)(2)。Mg(OH)(2)/ m(3)或8.4 kg CaCO3 MgCO3 / m(3)),并使用碳酸氢盐碱度,Ca2 +,Mg2 +和SO4-S含量各不相同的四种灌溉水源(IWS)和其中包含的三种水溶性肥料(WSF)进行亚灌溉,持续17周)200N-20P-200K /升,但NH,NO,比率,Ca2 +,Mg2 +和SO4-S含量可变,IWS和WSF的因子排列导致Ca2 +,Mg2 +和SO4-S浓度范围变化10倍。8周后,培养基pH值在4.5至8.5之间。摄取PO4-P的最大临界培养基pH为7.4至7.7,这可能是由于大多数水溶性P的变化所致。缺乏HPO42-形式的石灰类型不影响使用低NH4 + -N和高Ca2 +和Mg2 +的营养液长期保持中等pH,Ca2 +和Mg2 +浓度的增加,与用熟石灰测得的营养液相比,生石灰含有较高的NH4 + -N和低的Ca2 +和Mg2 +的营养液缓冲了中等pH和Ca2 +和Mg2 +浓度。对于这两种石灰类型,随着各种营养液的应用浓度从18毫克Ca2 + /升和7毫克Mg2 + /升增加到210毫克,组织Ca和Mg呈线性增加。直到第8周,两种石灰类型的关系都相似,此后,与相同的碳酸钙处理相比,熟石灰和低浓度Ca2 +和Mg2 +的组织Ca和Mg下降更快。施用的营养液中对于植物吸收的最低临界SO4-S浓度为30至40 mg S / L。低于此浓度,组织S迅速下降;以上对组织S几乎没有影响。

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