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首页> 外文期刊>Alexandria Journal of Agricultural Research >Adsorption Characteristics of Phosphorus on Calcite, Mg-Calcite and Calcareous Soils: Effect of Dissolved OrganicCarbon
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Adsorption Characteristics of Phosphorus on Calcite, Mg-Calcite and Calcareous Soils: Effect of Dissolved OrganicCarbon

机译:方解石,镁-方解石和钙质土壤对磷的吸附特性:溶解有机碳的影响

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Influence of incorporated magnesium (Mg) into synthetic calcite and dissolved organic carbon (DOC) on P sorption by synthetic calcite (SC), synthetic Mg-calcite (SMC), and some selected calcareous soil samples were examined in different laboratory experiments. The sorption of P onto SC or SMC was time dependent particularly by SMC. After 6 h of reaction, 81% of P was removed from solution by SC which represented 9 folds of that removed by SMC. The sorption progress is characterized by C shape for SCand S shape for SMC, indicating retardation effect of Mg. Sorption of P throughout 24 h reaction period was significantly positive correlated with the equilibrium solution pH (r = 0.90**). Mg incorporated into SC reduced the adsorption of P onto calciteand/or hindered nucleation and crystal growth of the precipitated P. Soils were selected based on Mg/Ca ratio of their carbonate fraction. After 24 h of the sorption, removal of P by soil samples ranged between 22 to 50% of the added P that accompanied with slight increase of pH ranged from 0.07 to 0.31 units. The multivariable regression analysis showed that not only calcium carbonate is the sole factor controlling P sorption in calcareous soils, but also soil texture, ionic strength and organic matterare important factors. Applied dissolved organic carbon (DOC) of poultry manure (PM), wheat straw (WS), and faba bean straw (FBS) inhibited P sorption by SMC and soils containing 49.8 and 40% total carbonate while, had no effect on P sorption by SC andsoils containing 30 and 19% carbonate . It seems that incorporation of Mg into calcite and addition of DOC can enhance P availability through decreasing P adsorption and/or precipitation and can also add a value to the effect of DOC.
机译:在不同的实验室实验中,研究了将镁(Mg)掺入合成方解石和溶解的有机碳(DOC)中对合成方解石(SC),合成镁-方解石(SMC)和一些选定的钙质土壤样品对P吸附的影响。 P吸附在SC或SMC上的时间是依赖于时间的,尤其是SMC。反应6小时后,通过SC从溶液中去除了81%的P,这是被SMC去除的P的9倍。吸附过程的特征是:SC的C形和SMC的S形,表明了Mg的阻滞作用。在整个24小时的反应过程中,P的吸附与平衡溶液的pH呈显着正相关(r = 0.90 **)。掺入SC中的Mg减少了P在方解石上的吸附和/或阻碍了沉淀P的成核和晶体生长。根据土壤中碳酸盐的Mg / Ca比值选择土壤。吸附24小时后,土壤样品中P的去除量为所添加P的22%至50%,同时pH值略有增加,为0.07至0.31个单位。多元回归分析表明,不仅碳酸钙是控制石灰性土壤中磷吸收的唯一因素,而且土壤质地,离子强度和有机质也是重要因素。施用家禽粪便(PM),小麦秸秆(WS)和蚕豆秸秆(FBS)的溶解有机碳(DOC)可以抑制SMC和碳含量分别为49.8和40%的土壤对磷的吸收,而对磷的吸收无影响含30%和19%碳酸盐的SC土。似乎将Mg掺入方解石中并添加DOC可以通过减少P的吸附和/或沉淀来提高P的利用率,并且还可以增加DOC的价值。

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