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首页> 外文期刊>Soil & Tillage Research >Mobilization of phosphate in variable-charge soils amended with biochars derived from crop straws
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Mobilization of phosphate in variable-charge soils amended with biochars derived from crop straws

机译:用作物秸秆生物炭修正的可变电荷土壤中的磷酸盐动员

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摘要

The content of available phosphorus in variable-charge soils is often low due to the strong adsorption of phosphate by the soils. The application of crop straw-derived biochars can change surface chemical properties of variable-charge soils, and thus, should affect phosphate adsorption and phosphorus availability in the soils. However, little information is available on the effect of biochars on the mobility and bioavailability of phosphate in variable-charge soils. The objectives of this study were to investigate the effect of crop straw-derived biochars incorporated on phosphate adsorption by variable-charge soils, and then gain insight into the mechanisms for the effect of biochars on phosphate adsorption. Results showed that crop straw-derived biochars are characterized by large specific surface area, highly negative charged surface, ample of anionic functional groups, and moderate concentrations of divalent Ca2+ and Mg2+. The incorporation of the biochars increased soil CEC (cation-exchange capacity), thus, increased the repulsion of soil surfaces to phosphate, and subsequently decreased the phosphate adsorption by the soils. The ample anionic functional groups on added biochars competed for the adsorption sites on the variable-charge soils with phosphate, and thus, inhibited phosphate adsorption by the soils. The Ca2+ and Mg2+ from the biochars formed precipitates with phosphate in the soils and have the potential to increase apparent phosphate adsorption. Rice straw biochar with the higher CEC and the lowest contents of Ca2+ and Mg2+ showed the greatest inhibition on the phosphate adsorption, and thus, could likely be the best choice as amendment to mobilize phosphate in the variable-charge soils. The phosphate adsorption by both control soil and biochars-amended soils decreased with rising pH. Incorporation of the biochars increased the pH of the amended soils, thereby, further mobilizing phosphate in the soils. (C) 2014 Elsevier B.V. All rights reserved.
机译:由于土壤对磷酸盐的强烈吸附,可变电荷土壤中的有效磷含量通常较低。农作物秸秆衍生的生物炭的使用可以改变可变电荷土壤的表面化学性质,因此,应影响土壤中磷酸盐的吸附和磷的有效性。但是,很少有关于生物炭对可变电荷土壤中磷酸盐的迁移率和生物利用度影响的信息。这项研究的目的是调查掺入农作物秸秆的生物炭对可变电荷土壤吸附磷酸盐的影响,然后深入了解生物炭对磷酸盐吸附的影响机理。结果表明,农作物秸秆衍生的生物炭具有比表面积大,带负电的表面高,阴离子官能团充足以及中等浓度的二价Ca2 +和Mg2 +的特征。生物炭的掺入增加了土壤的CEC(阳离子交换能力),因此增加了土壤表面对磷酸盐的排斥力,并随后减少了土壤对磷酸盐的吸附。添加的生物炭上充足的阴离子官能团与磷酸盐竞争可变电荷土壤上的吸附位点,因此抑制了土壤对磷酸盐的吸附。来自生物炭的Ca2 +和Mg2 +与土壤中的磷酸盐形成沉淀,并具有增加表观磷酸盐吸附的潜力。 CEC较高且Ca2 +和Mg2 +含量最低的稻草生物炭显示出对磷酸盐吸附的最大抑制作用,因此,作为在可变电荷土壤中动员磷酸盐的改良剂,可能是最佳选择。对照土壤和经生物炭改性的土壤对磷酸盐的吸附均随pH的升高而降低。生物炭的掺入增加了改良土壤的pH,从而进一步使土壤中的磷酸盐动员。 (C)2014 Elsevier B.V.保留所有权利。

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