Leachates from Helophyte Leaf-Litter Enhance Nitrogen Removal from Wastewater Treatment Plant Effluents

被引:23
作者
Ribot, Miquel [1 ]
Cochero, Joaquin [2 ]
Vaessen, Timothy N. [1 ]
Bernal, Susana [1 ,3 ]
Bastias, Elliot [1 ]
Gacia, Esperanca [1 ]
Sorolla, Albert [4 ]
Sabater, Francesc [3 ]
Marti, Eugenia [1 ]
机构
[1] CSIC, CEAB, Integrat Freshwater Ecol Grp, Blanes, Girona, Spain
[2] ILPLA Inst Limnol Dr Raul A Ringuelet, La Plata, Buenos Aires, Argentina
[3] Univ Barcelona, Dept Biol Evolut Ecol & Ciencies Ambientals BEECA, Av Diagonal 643, E-08028 Barcelona, Spain
[4] Naturalea, Castellar Del Valles, Spain
基金
欧盟第七框架计划;
关键词
DISSOLVED ORGANIC-MATTER; COMMUNITY STRUCTURE; DENITRIFYING BACTERIA; CONSTRUCTED WETLANDS; NUTRIENT RETENTION; OPTICAL-PROPERTIES; DENITRIFICATION; CARBON; STREAM; NITRATE;
D O I
10.1021/acs.est.8b07218
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Bioengineering techniques are currently used in a wide variety of wastewater treatment systems. Aquatic plants (i.e., helophytes) used in these techniques reduce excess nitrogen (N) from water column via assimilation. Moreover, leachates from plant leaf-litter can serve as an additional source of labile dissolved organic matter (DOM), which can promote aerobic respiration and N removal via denitrification. We tested the influence of leaf-litter leachates from Iris pseudacorus and Phragmites australis on the structure and activity of freshwater biofilms grown in flumes fed by effluent from a wastewater treatment plant (WWTP). The responses of the epilithic biofilm to the inputs of leaf-litter leachates were compared to those measured using a brewery byproduct rich in sugars and to the WWTP effluent water (i.e., control). All DOM sources significantly enhanced aerobic respiration and denitrification of the biofilm when compared to the controls, with increases in total microbial abundance but not in denitrifier abundance. The results suggest that metabolic activity of biofilms may be limited by bioavailability of DOM in WWTP effluent; and leaf-litter leachates of helophytes used in bioengineering techniques could alleviate this limitation by enhancing microbial N and C uptake.
引用
收藏
页码:7613 / 7620
页数:8
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