首页> 外文期刊>Science of the total environment >Water, vegetation and sediment gradients in submerged aquatic vegetation mesocosms used for low-level phosphorus removal
【24h】

Water, vegetation and sediment gradients in submerged aquatic vegetation mesocosms used for low-level phosphorus removal

机译:用于低水平除磷的水下水生植被中观中的水,植被和沉积物梯度

获取原文
获取原文并翻译 | 示例
           

摘要

Gradients in phosphorus (P) removal and storage were investigated over 6 years using mesocosms (each consisting of three tanks in series) containing submerged aquatic vegetation (SAV) grown on muck and limerock (LR) substrates. Mean inflow total P concentrations (TP) of 32 ug L"1 were reduced to 15 and 17 ug L"1 in the muck and LR mesocosms, respectively. Mesocosm P loading rates (mean = 1.75 g m~2 year"1) varied widely during the study and were not correlated with outflow TP, which instead varied seasonally with lowest monthly mean values in December and January. The mesocosms initially were stocked with Najas guadalupensis, Ceratophyllum demersum, and Chara zeylanica, but became dominated by C. zeylanica. At the end of the study, highest vegetative biomass (1.1 and 1.4 kg m~2 for muck and LR substrates) and tissue P content (1775 and 1160 mg kg"1) occurred in the first tank in series, and lowest biomass (1.0 and 0.2kgm~2) and tissue P (147 and 120mgkg~') in the third tank. Sediment accretion rates (2.5, 1.9 and 0.9cmyr~' on muck substrates), accrued sediment TP (378, 309 and 272 mg kg"1), and porewater soluble reactive P (SRP) concentrations (40, 6 and 4 ug L"1) in the first, second and third tanks, respectively, exhibited a similar decreasing spatial trend. Plant tissue calcium (Ca) near mesocosm inflow (19-30% dry weight) and outflow (23-26%) were not significantly different, and sediment Ca was also similar (range of 24 to 28%) among sequential tanks. Well-defined vegetation and sediment enrichment gradients developed in SAV wetlands operated under low TP conditions. While the mesocosm data did not reflect deterioration in treatment performance over 6 years, accumulation of P-enriched sediments near the inflow could eventually compromise hydraulic storage and P removal effectiveness of these shallow systems.
机译:使用包含在渣土和石灰岩(LR)基质上生长的水下水生植物(SAV)的中观(每个由三个串联的水箱组成)进行了6年的研究,研究了磷(P)去除和储存的梯度。在粪便和LR介体膜中,平均流入总P浓度(TP)分别降至32 ug L“ 1和15 ug L” 1。在研究期间,中观膜P的加载速率(平均= 1.75 gm〜2年“ 1”)变化很大,与流出TP无关,反而随季节变化,在12月和1月具有最低的月平均值。最初,中观膜中储有Najas guadalupensis ,Ceratophyllum demersum和Chara zeylanica,但以zec zeylanica为主,在研究结束时,最高的营养生物量(渣土和LR底物为1.1和1.4 kg m〜2)和组织P含量(1775和1160 mg kg) “ 1”发生在串联的第一个储罐中,最低的生物量(1.0和0.2kgm〜2)和组织P(147和120mgkg〜')发生在第三个储罐中。沉积物的沉积速率(在渣土基质上为2.5、1.9和0.9cmyr〜'),累积的沉积物TP(378、309和272 mg kg•“ 1)和孔隙水可溶性反应性P(SRP)浓度(40、6和4 ug L•) 1)分别在第一,第二和第三槽中表现出相似的下降空间趋势。在连续罐中,近中观流入(19-30%干重)和流出(23-26%)附近的植物组织钙(Ca)没有显着差异,并且沉积钙也相似(范围为24%至28%)。在低TP条件下运行的SAV湿地中形成了清晰的植被和沉积物富集梯度。虽然中观数据未反映6年多来处理性能的下降,但流入附近富P沉积物的积累最终可能会损害这些浅层系统的水力存储和P去除效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号