土木建筑与环境工程
土木建築與環境工程
토목건축여배경공정
JOURNAL OF CIVIL, ARCHITECTURAL & ENVIRONMENTAL ENGINEERING
2009年
6期
117-121
,共5页
黄娟%王世和%钟秋爽%鄢璐
黃娟%王世和%鐘鞦爽%鄢璐
황연%왕세화%종추상%언로
构型%溶解氧%人工湿地%脱氮效果
構型%溶解氧%人工濕地%脫氮效果
구형%용해양%인공습지%탈담효과
structure%dissolved oxygen%constructed wetland%nitrogen removal effect
通过2组对比试验(垂直流与水平流湿地、单段式与三段式水平流湿地),考察了不同构型湿地中溶解氧的分布情况及脱氮效果.结果表明:不同构型人工湿地水力流态的区别,导致了床体溶解氧分布和脱氮效果的差异.垂直流人工湿地独特的结构设计和水力流态更有利于湿地内部的供氧,局部氧浓度可比水平流湿地高0.17 mg/L;脱氮效果优于相同运行条件下的水平流湿地,NH_4~+-N、TN去除率分别可提高约9%、5%.三段式水平流湿地通过接触槽内复氧,有效改善了溶解氧分布,利于硝化反应进行,NH_4~+-N去除率最高达66%,TN去除率最高达71%,分别比单段式湿地提高约8%和5%.此外,三段式湿地在较低水位下运行仍能取得较好的脱氮效果,其最佳停留时间的范围也得以延展.
通過2組對比試驗(垂直流與水平流濕地、單段式與三段式水平流濕地),攷察瞭不同構型濕地中溶解氧的分佈情況及脫氮效果.結果錶明:不同構型人工濕地水力流態的區彆,導緻瞭床體溶解氧分佈和脫氮效果的差異.垂直流人工濕地獨特的結構設計和水力流態更有利于濕地內部的供氧,跼部氧濃度可比水平流濕地高0.17 mg/L;脫氮效果優于相同運行條件下的水平流濕地,NH_4~+-N、TN去除率分彆可提高約9%、5%.三段式水平流濕地通過接觸槽內複氧,有效改善瞭溶解氧分佈,利于硝化反應進行,NH_4~+-N去除率最高達66%,TN去除率最高達71%,分彆比單段式濕地提高約8%和5%.此外,三段式濕地在較低水位下運行仍能取得較好的脫氮效果,其最佳停留時間的範圍也得以延展.
통과2조대비시험(수직류여수평류습지、단단식여삼단식수평류습지),고찰료불동구형습지중용해양적분포정황급탈담효과.결과표명:불동구형인공습지수력류태적구별,도치료상체용해양분포화탈담효과적차이.수직류인공습지독특적결구설계화수력류태경유리우습지내부적공양,국부양농도가비수평류습지고0.17 mg/L;탈담효과우우상동운행조건하적수평류습지,NH_4~+-N、TN거제솔분별가제고약9%、5%.삼단식수평류습지통과접촉조내복양,유효개선료용해양분포,리우초화반응진행,NH_4~+-N거제솔최고체66%,TN거제솔최고체71%,분별비단단식습지제고약8%화5%.차외,삼단식습지재교저수위하운행잉능취득교호적탈담효과,기최가정류시간적범위야득이연전.
The dissolved oxygen distribution and nitrogen removal effect in different structures of wetlands were investigated by two groups of comparison experiments (vertical flow with horizontal flow; single-stage with three-stage horizontal flow). It was found that the different hydraulic flow patterns in different structures of wetlands would result in different oxygen distribution and nitrogen removal effect. The special structure design and hydraulic flow pattern of vertical flow wetland were favorable to its dissolved oxygen distribution, which could increase 0.17 mg/L in local area than that in horizontal flow wetland. The nitrogen removal effect of vertical flow wetland was better than that of horizontal flow wetland in the same operation conditions. The removal efficiency of NH_4~+-N and TN could increase 9% and 5% respectively in vertical flow wetland than that in horizontal flow wetland. Because of reaeration in contacting channels of three-stage wetland, the removal efficiency of NH_4~+-N and TN reached 66% and 71% respectively, which improved 8% and 5% respectively than that of single-stage wetland. In addition, three-stage wetland could keep higher nitrogen removal effect even in low operation water level, and the range of its best hydraulic retention time(HRT) was extended.