环境科技
環境科技
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Environmental Science and Technology
2015年
5期
1-3
,共3页
不同泥质%固体回收率%含水率%深度减容%吨干泥药耗
不同泥質%固體迴收率%含水率%深度減容%噸榦泥藥耗
불동니질%고체회수솔%함수솔%심도감용%둔간니약모
Different sludge property%Solid recovery rate%Moisture content%Depth reduction%Dry mud drug consumption per ton
以国电银河水务青岛开发区污水处理厂为例,按照m(生物泥):m(厌氧泥):m(化学泥):m(混合泥)=8:1:2:5的比例进行优化配比. 在保证固体回收率达到92%的前提下, 利用带式脱水机将剩余污泥含水率由97%降至79%,再通过板框压滤机降至60%,最终达到深度减容目的,同时保持吨干泥药耗低于业内均值3 kg.这类优化配比方式适用于复杂多变的剩余污泥深度减容,相比原先将不同泥质的剩余污泥进行逐步单一减容的工序,此法更有利于污水处理厂降本增效,具有推广应用的价值.
以國電銀河水務青島開髮區汙水處理廠為例,按照m(生物泥):m(厭氧泥):m(化學泥):m(混閤泥)=8:1:2:5的比例進行優化配比. 在保證固體迴收率達到92%的前提下, 利用帶式脫水機將剩餘汙泥含水率由97%降至79%,再通過闆框壓濾機降至60%,最終達到深度減容目的,同時保持噸榦泥藥耗低于業內均值3 kg.這類優化配比方式適用于複雜多變的剩餘汙泥深度減容,相比原先將不同泥質的剩餘汙泥進行逐步單一減容的工序,此法更有利于汙水處理廠降本增效,具有推廣應用的價值.
이국전은하수무청도개발구오수처리엄위례,안조m(생물니):m(염양니):m(화학니):m(혼합니)=8:1:2:5적비례진행우화배비. 재보증고체회수솔체도92%적전제하, 이용대식탈수궤장잉여오니함수솔유97%강지79%,재통과판광압려궤강지60%,최종체도심도감용목적,동시보지둔간니약모저우업내균치3 kg.저류우화배비방식괄용우복잡다변적잉여오니심도감용,상비원선장불동니질적잉여오니진행축보단일감용적공서,차법경유리우오수처리엄강본증효,구유추엄응용적개치.
This paper takes the Sewage t reatment plant of the Guodian galaxy water Qingdao development Zone as an example, followed by the ratio of 8:1:2:5 (biological sludge:anaerobic sludge:chemical sludge:mixed sludge) to achieve optimization and proportioning. Under the condition that the recovery of solid reaching 92%, the belt dewatering machine was used to decrease the Sludge moisture content from 97% to 79%, and then the plate and frame filter press was continued to reduce to 60%to achieve the depth reduction of capacity purpose and keep the dry mud drug consumption perton lower than the industry average at 3 kg. This kind of optimized proportioning method is suitable for the complex and changeable residual sludge depth reduction. Compared with the original process of make different property surplus sludge gradually and single to reduction, this method is more beneficial for the sewage treatment plant to reduce the cost and it also has the value of popularization and application.