Department of Geography, Institute of Ecology and Earth Sciences, University of Tartu, Vanemuise 46, Tartu 51014, Estonia.
Department of Geography, Institute of Ecology and Earth Sciences, University of Tartu, Vanemuise 46, Tartu 51014, Estonia.
Sci Total Environ. 2018 Oct 15;639:67-74. doi: 10.1016/j.scitotenv.2018.05.146. Epub 2018 May 26.
Biochar has shown great potential as an amendment to improve soil quality and promote plant growth, as well as to adsorb pollutants from water. However, information about the effect of biochar on the wastewater treatment efficiency in horizontal subsurface flow (HSSF) constructed wetlands (CWs) is still scarce. In this study, we assessed the effect of biochar amendment on the purification efficiency of pretreated municipal wastewater in planted (Typha latifolia) experimental horizontal subsurface flow filters filled with lightweight expanded clay aggregates (LECA). The addition of wood-derived biochar (10% v/v) to LECA significantly increased plant biomass production and enhanced the wastewater treatment efficiency of the planted filters. Both the aboveground plant biomass and belowground plant biomass were higher (1.9- and 1.5-fold, respectively) in the filters of the LBP (LECA + biochar + plants) treatments compared to the LP (LECA + plants) filters. The water pH was significantly lower in the planted filters (LBP < LP < LB-LECA + biochar). The efficiencies of TN and TP removal from wastewater were highest in the LBP filters (20.0% and 22.5%, respectively), followed by the LP (13.7% and 16.2%, respectively) and LB (9.5% and 15.6%, respectively) filters. More N and P were incorporated into the plant biomass from wastewater in the presence of biochar in the filter medium. The study results confirm that biochar can be an advantageous supplement for planted HSSF CWs to enhance the treatment efficiency of these systems.
生物炭作为一种改良剂,具有改善土壤质量和促进植物生长以及吸附水中污染物的巨大潜力。然而,关于生物炭对水平潜流人工湿地(CWs)中废水处理效率的影响的信息仍然很少。在这项研究中,我们评估了生物炭改良剂对填充轻质膨胀粘土骨料(LECA)的种植(香蒲)实验性水平潜流过滤器中预处理城市废水净化效率的影响。将木质衍生生物炭(10%v/v)添加到 LECA 中,显著增加了植物生物量的产生,并提高了种植过滤器的废水处理效率。与 LP(LECA+植物)过滤器相比,LECA+生物炭+植物(LBP)处理的过滤器中的地上植物生物量和地下植物生物量分别增加了 1.9 倍和 1.5 倍。种植的过滤器中的水 pH 值显著较低(LBP<LP<LB-LECA+生物炭)。从废水中去除 TN 和 TP 的效率在 LBP 过滤器中最高(分别为 20.0%和 22.5%),其次是 LP(分别为 13.7%和 16.2%)和 LB(分别为 9.5%和 15.6%)过滤器。在过滤介质中存在生物炭的情况下,更多的 N 和 P 从废水中被植物生物量吸收。研究结果证实,生物炭可以作为种植水平潜流 CWs 的有利补充,以提高这些系统的处理效率。