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首页> 外文期刊>Science of the total environment >Mineralogy of particulate inputs and P-speciation and mineralogy of recently accreted soils within Everglades stormwater treatment wetlands
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Mineralogy of particulate inputs and P-speciation and mineralogy of recently accreted soils within Everglades stormwater treatment wetlands

机译:百草颗粒雨水治疗湿地颗粒物投入和P-expiation和P-expiation和矿物学的矿物学

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摘要

Phosphorus (P) biogeochemical processes in wetlands are influenced by the chemical composition of both recently accreted and native soils. The evaluation of biogeochemical processes influencing P transformations requires an understanding of the participating chemical components. Here, we use X-ray diffraction (XRD), scanning electron microscopy (SEM)/energy-dispersive X-ray fluorescence spectroscopy (EDS), X-ray absorption near-edge P spectroscopy (P-XANES), and microprobe X-ray fluorescence (u-XRF) to examine the mineralogy and P speciation of solid phases entering and within selected Everglades Stormwater Treatment Areas (STAs). Suspended particulates in the source waters (upstream of the STAs) to the STAs were examined and compared with those of recently-accreted soil (RAS) from inflow, mid-flow, and outflow locations of two flowways (FWs) within STA-2: one dominated by emergent aquatic vegetation (EAV) and the other dominated by submerged aquatic vegetation (SAV). Source water particulates included carbonates and silicates, whereas mineralogies of STA RAS were less diverse, dominated by CaCO_3 and having a lower silicate content, suggesting a strong autochthonous influence on STA RAS composition. No P minerals were detected via XRD. Discrete Ca-P particles were evident, though uncommonly observed, in two of three STA RAS samples analyzed via SEM/EDS. P-XANES of STA RAS indicated the presence of apatitic minerals. The potential presence of apatitic minerals was supported by μ-XRF correlation analysis that revealed strong correlations of P with both Ca and K. Apatitic minerals are a relatively refractory form of P and their presence in the RAS of both EAV and SAV systems indicate that remobi-lization and release of this P from the STAs will have a smaller effect on the downstream oligotrophic conditions of the Florida Everglades than more labile forms of P.
机译:湿地的磷(P)生物地球化学方法受到最近凸起和天然土壤的化学成分的影响。影响P变换的生物地球化学过程的评价需要了解参与化学成分。在这里,我们使用X射线衍射(XRD),扫描电子显微镜(SEM)/能量分散X射线荧光光谱(EDS),X射线吸收近边P光谱(P-Xanes)和微探针X-雷荧光(U-XRF)检查进入的固体阶段的矿物学和P形态,并在选定的大沼泽地雨水处理区域(STA)。检查源水中的悬浮颗粒(在STA的上游)上,并与STA-2中的两个流动道(FWS)的流入,中流和流出位置的最近凸起的土壤(RAS)的悬浮颗粒(RAS)进行比较:由紧急水生植被(EAV)的一个主导,另一个由淹没水生植被(SAV)主导。源水颗粒包括碳酸盐和硅酸盐,而STA RA的矿物凝固较少,由Caco_3支配并具有较低的硅酸盐含量,表明对STA RAS组合物的强烈的自加起来的影响。通过XRD检测到P矿物质。显而易见的Ca-P颗粒,但在通过SEM / EDS分析的三种STA RA样本中,虽然罕见,但在三个STA RA样本中有两种。 STA RA的P-Xanes表示存在apatitic矿物质。通过μ-XRF相关分析支持apatitic矿物质的潜在存在,揭示了p的p与Ca和K的强相关性。apatitic矿物是p的相对难治性的形式,它们在EAV和SAV系统的Ras中的存在表明Remobi -Lization和释放来自STA的P,对佛罗里达州大沼泽的下游植物状况较小,而不是P的下游植物的效果。

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