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1)  minimum influent substrate concentration
进水最低浓度
1.
Based on Monod kinetics and the relationship between biomass growth and substrate biodegradation,the minimum effluent substrate concentration(S_(E,MIN)) and the minimum influent substrate concentration(S_(0,min)) of constant stirred anaerobic reactor treating low strength organic wastewater were deduced.
以Monod模式和微生物增长与底物降解的基本关系为基础,推导了描述完全混合式厌氧反应器处理低浓度有机废水的出水最低浓度Se,m in和进水最低浓度S0,m in的数学模型,并对影响厌氧反应动力学参数的因素进行了讨论。
2)  low consistency of the inlet water
进水低浓度
3)  low-strength wastewater
低浓度进水
1.
Effect of cationic polymer on granulation in lab-scale UASB reactors treating low-strength wastewater was examined.
运行2个UASB反应器,研究常温低浓度进水条件下,投加阳离子季胺盐絮凝剂对厌氧颗粒污泥形成的影响。
4)  minimum effluent substrate concentration
出水最低浓度
1.
Based on Monod kinetics and the relationship between biomass growth and substrate biodegradation,the minimum effluent substrate concentration(S_(E,MIN)) and the minimum influent substrate concentration(S_(0,min)) of constant stirred anaerobic reactor treating low strength organic wastewater were deduced.
以Monod模式和微生物增长与底物降解的基本关系为基础,推导了描述完全混合式厌氧反应器处理低浓度有机废水的出水最低浓度Se,m in和进水最低浓度S0,m in的数学模型,并对影响厌氧反应动力学参数的因素进行了讨论。
5)  concentration limit
最低浓度
6)  concentration [英][,kɔnsn'treɪʃn]  [美]['kɑnsṇ'treʃən]
进水浓度
1.
The influence of the concentration of sewage on sludge granularing in the UASB reactor under treating swinefaeces waste water condition;
UASB处理养猪废水条件下进水浓度对污泥颗粒化的影响
2.
The glucose wastewater was treated by EGSB and the influence of COD concentration on the sludge granulation was studied.
实验结果表明:随着进水COD浓度从2 000 mg/L上升到10 000 mg/L,传质过程中进入颗粒内部的营养量逐渐增加,促进污泥颗粒化,颗粒直径也随之增大;进水浓度剧烈变化对反应器造成很大冲击,引起细菌生长过快,污泥结构松散,沉降性能下降,COD去除率和产气率降低。
3.
The effect of sludge loading on biological removal of phosphorus, nitrogen and organic matter was investigated by parallel experiments with changing concentration, flow rate of synthetic wastewater and MLSS.
分别改变进水浓度(C)、流量(Q)及污泥浓度(MLSS),通过对照实验考察污泥负荷改变对污水生物去除有机物、磷和氮效果的影响。
补充资料:最低浓度
分子式:
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性质:定性分析中对鉴定反应灵敏度的一种表示方式。指某一方法能检出某一离子的最低浓度,常用符号cl表示,单位为g/L。

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