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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Effect of wastewater step-feeding on removal efficiency of pilot-scale horizontal subsurface flow constructed wetlands
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Effect of wastewater step-feeding on removal efficiency of pilot-scale horizontal subsurface flow constructed wetlands

机译:分步进水对中试水平地下流人工湿地去除效率的影响

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摘要

The performance of a pilot-scale horizontal subsurface flow (HSF) constructed wetland is investigated with emphasis on the effects of wastewater step-feeding. One pilot-scale unit, of dimensions 3 m in length and 0.75 m in width, operated continuously from January 2004 until February 2007. The unit contained cobbles obtained from a river bed and was planted with common reed (Phragmites australis). Synthetic wastewater was introduced to the unit. During the first two years of operation (period A) one inflow point was used at the upstream end of the unit. During the third year of operation (period B), wastewater step-feeding was adopted. Wastewater was introduced to the unit through three inlet points: one at the upstream end of the unit length and the other two at 1/3 and 2/3 of the unit length. Two wastewater step-feeding schemes were examined during the second working period: 33:33:33 and 60:25:15. Three HRTs (6,8 and 14 days) were applied; wastewater temperatures varied from 6.0 to 25.0 °C On the whole, the adoption of step-feeding in a HSF CW may be positive if an appropriate scheme is selected. Indeed, the removal of organic matter (BOD5 and COD), nitrogen (TKN and ammonia) and phosphorus (Total Phosphorus and ortho-phosphate) was improved under the step-feeding Scheme 60:25:15, while the other scheme (33:33:33) affected negatively the wetland performance.
机译:研究了中试规模的水平地下流(HSF)人工湿地的性能,重点是废水分步进料的影响。从2004年1月至2007年2月,一个长3m,宽0.75m的中试规模的装置连续运行。该装置装有从河床获得的鹅卵石,并种植了普通芦苇(芦苇)。将合成废水引入该装置。在运行的前两年(A期),在设备的上游端使用了一个流入点。在运营的第三年(期间B),采用废水分步进料。废水通过三个入口引入设备:一个在设备长度的上游端,另一个在设备长度的1/3和2/3。在第二个工作阶段中,检查了两种废水分步进料方案:33:33:33和60:25:15。应用了3个HRT(6,8和14天);废水温度从6.0到25.0°C不等。总体而言,如果选择合适的方案,则在HSF CW中采用分步进料可能是积极的。实际上,分步进料方案60:25:15改善了有机物(BOD5和COD),氮(TKN和氨)和磷(总磷和正磷酸盐)的去除,而另一种方案(33: 33:33)对湿地性能产生负面影响。

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