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1)  sludge creation
污泥产生
1.
To reduce sludge creation at water-treating plant W-1 in treating oilfield produced water according to the present high pH (8.
5 ,加入除铁剂、除铁增效剂各 10 0mg/L ,得到了最好的净水效果 (滤膜系数MF >30 ) ;与原污水相比 ,净化水污泥产生量由 10 。
2)  sludge production
污泥生产
3)  sludge output
污泥产生量
1.
Taking sludge output of Zhenjiang city as a grey system,GM(1,1) model was established by sludge output of Zhenjiang in 2001-2006 as original data.
把镇江市污泥产生量作为一个灰色系统,以2001~2006年镇江市污泥产生量作为原生序列,建立灰色GM(1,1)模型,通过模型精度的检验,表明所建立的GM(1,1)预测模型精度满足要求,预测结果可信,同时利用建立的GM(1,1)模型预测2007~2010年污泥产生量,为镇江市污泥处理处置提供规划依据。
4)  sludge yield
污泥产率
1.
Bio-film Technology was applied to treat synthetically domestic wastewater,and controllable ecological factors such as DO and F/M were studied to observe their influences on sludge yield.
采用生物膜反应器处理人工配制生活污水,考察了反应器中可控因子溶解氧(DO)、污泥负荷(F/M)对系统污泥产率的影响。
2.
The effects of eight chemicals,including o-chlorophenol(oCP),m-chlorophenol(mCP),2,4-dichlorophenol(DCP),2,4,5-trichlorophenol(TCP),p-nitrophenol(pNP),m-nitrophenol(mNP),2,4-dinitrophenol(DNP) and 3,3′,4′,5-tetrachlorosalicylanilide(TCS),on sludge yields in batch cultures were compared.
研究比较了8种化学物质———邻氯苯酚(oCP),间氯苯酚(mCP),2,4-二氯苯酚(DCP),2,4,5-三氯苯酚(TCP),对硝基苯酚(pNP),间硝基苯酚(mNP),2,4-二硝基苯酚(DNP)和3,3′,4′,5-四氯水杨酰苯胺(TCS)对污泥产率的影响。
3.
During 30d of operation period,the sludge yield was reduced by about 25% and 50% when the mass concentration of TCP was 2.
0 mg/L的污泥产率分别比对照反应下降了约25%和50%,而基质的去除率及出水的氮和磷浓度均未受很大影响,污泥的沉降性能也未受影响。
5)  sludge production rate
污泥产率
1.
The sludge production rates by treatment processes with different coagulants,such as Al_2(SO_4)_3,FeCl_3,PAC and PAFC were compared in detail in the paper during the renovation project of industrial wastewater treatment process of Shenzhen SEG HITACHI Color Display Devices CO.
实例表明,平均污泥产率为1。
6)  sludge biogas production
污泥产气
补充资料:固定盖污泥消化池(污泥消化设施)


固定盖污泥消化池(污泥消化设施)


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