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Effects of Sediment Chemical Properties on Phosphorus Release Rates in the Sediment-Water Interface of the Steppe Wetlands

机译:沉积物化学性质对草原湿地沉积物-水界面磷释放速率的影响

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摘要

Rising temperature causes a process of phosphorus release, which can be characterized well using phosphorus release rates (VP). The objective of the present study was to investigate the major factors affecting sediment phosphorus release rates through a wetland habitat simulation experiment. The results showed that the VP of different wetland sediments were different and changed with the order of W–R (river wetland) > W–L (lake wetland) > W–M (grassy marsh wetland) > W–A (reservoir wetland). The main driving factors which influenced sediment phosphorus flux velocity in the sediment–water interface were sediment B-SO42−, B-MBN and A-MBP content. Path analysis and determination coefficient analysis indicated the standard multiple regression equation for sediment phosphorus release rates in the sediment–water interface, and each main factor was Y = −0.105 + 0.096X1 + 0.275X2 − 0.010X3 (r = 0.416, p < 0.01, n = 144), where Y is sediment phosphorus release rates; X1 is sediment B-SO42− content; X2 is sediment B-MBN; and X3 is sediment A-MBP content. Sediment B-SO42−, B-MBN and A-MBP content and the interaction between them were the main factors affecting sediment phosphorus release rates in the sediment–water interface. Therefore, these results suggest that soil chemical properties and microbial activities likely play an important role in phosphorus release rates in the sediment–water interface. We hope to provide effective scientific management and control methods for relevant environmental protection departments.
机译:温度升高会导致磷释放过程,可以使用磷释放速率(VP)很好地表征。本研究的目的是通过湿地生境模拟实验研究影响沉积物磷释放速率的主要因素。结果表明,不同湿地沉积物的VP值不同,且以W–R(河湿地)> W–L(湖湿地)> W–M(草沼泽湿地)> W–A(水库湿地)的顺序变化。 。影响沉积物-水界面中沉积物磷通量速度的主要驱动因素是沉积物B-SO4 2-,B-MBN和A-MBP含量。路径分析和确定系数分析表明了沉积物-水界面中沉积物磷释放速率的标准多元回归方程,每个主要因子为Y = -0.105 + 0.096X1 + 0.275X2-0.010X3(r = 0.416,p <0.01 ,n = 144),其中Y是沉积物磷的释放速率; X1为沉积物B-SO4 2-含量; X2是沉积物B-MBN; X3为沉积物A-MBP含量。沉积物中B-SO4 2-,B-MBN和A-MBP的含量以及它们之间的相互作用是影响沉积物-水界面中沉积物磷释放速率的主要因素。因此,这些结果表明,土壤化学性质和微生物活性可能在沉积物-水界面的磷释放速率中起重要作用。我们希望为有关环保部门提供有效的科学管理和控制手段。

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