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Phosphorus fraction and phosphate sorption-release characteristics of the wetland sediments in the Yellow River Delta

机译:黄河三角洲湿地沉积物的磷馏分和磷脂吸附特征

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The aim of this study was to investigate phosphorus (P) fractions and phosphate sorption-release characteristics of the surface sediments regarding the wetland restoration in the Yellow River Delta (YRD). Sediments samples were collected from three typical sample plots: Phragmites australis community (p), Suaeda salsa community (s), and bare land (b) both in natural wetland (N) and restored wetland (R). The results showed that the mean content of TP was 541.58 mg/kg, and the rank order of P fractions were: inorganic phosphorus (IP) (65.6%) residual phosphorus (RP) (24.9%) organic phosphorus (OP) (9.5%). For sediments under the same land cover, TP and OP contents were significantly higher in natural wetlands than those in restored wetlands. This indicated that the restoration project really made a difference in TP content of sediments, and the decreased TP might result from decreased OP. For P kinetics sorption, a quick sorption mainly occurred within 0.5 h. The maximum phosphorus adsorption capacities (Q(max)) ranging from 139.40 mg/kg to 224.06 mg/kg and the bonding energy constant (K) ranging from 0.33 mg/L to 1.37 mg/L were both obtained using a Langmuir model. In addition, Q(max), P release (P-r) and P release rates (P-rr) were in the order of Nb Np Ns Rb Rp Rs, Np Rp Ns Rs = Nb Rb and Rp Ns Rs Rb Np Nb, respectively. This indicated that sediments from natural wetland could adsorb more P as well as release more P into overlying water, moreover, more content of P were left in sediments comparing to restored wetland. Sediments from bare land were more likely to retain P as a pool because of the highest sorption capacity while lowest release potential. Our study showed that P sorption-release and the quick sorption processes were mainly affected by sediment moisture, amorphous iron and aluminum oxides (Fe-ox and Al-ox). Besides, Q(max) was related to background value of sediments P. OP
机译:该研究的目的是研究关于黄河三角洲(YRD)中湿地恢复的表面沉积物的磷(P)级分和磷脂吸附释放特性。沉积物样品由三个典型的样品绘图收集:芦苇澳洲社区(P),天然湿地(n)和沼泽地(b)和恢复湿地(r)。结果表明,TP的平均含量为541.58mg / kg,P部分的等级阶数为:无机磷(IP)(65.6%)&残余磷(RP)(24.9%)>有机磷(OP)(9.5%)。对于在同一个陆地覆盖下的沉积物,天然湿地的TP和OP内容显着高于恢复湿地的湿地。这表明恢复项目真正对沉积物的TP含量产生差异,并且降低的TP可能因降低的OP而导致。对于p动力学吸附,快速吸附主要发生在0.5小时内。使用Langmuir模型获得从139.40mg / kg至224.06mg / kg和范围为0.33mg / l至1.37mg / L的最大磷吸附容量(q(max))和粘接能量常数(k)。此外,Q(MAX),P释放(P-R)和P释放速率(P-RR)为Nb&gt的顺序; np& ns& RB& rp&卢比,NP& rp& ns& Rs = NB& RB和RP> ns& RS& RB& np&分别为NB。这表明来自天然湿地的沉积物可以吸收更多的p以及释放更多的p进入覆盖水中,而且,与恢复的湿地相比,沉积物中的p含量更多。由于吸附能力最高,裸机沉积物更有可能保留P作为池作为池,而最低释放潜力。我们的研究表明,P吸附释放和快速吸附过程主要受泥沙水分,无定形铁和氧化铝(Fe-OX和Al-ox)的影响。此外,Q(MAX)与沉积物P. OP的背景值有关

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