1) Chemicobiological phosphorous removal process
化学生物除磷
2) chemical enhancing the phosphorus removal of biological process
化学强化生物除磷
3) Phostrip process
Phostrip生物-化学沉淀除磷法
4) enhanced biological phosphorus removal
强化生物除磷
1.
Based on the documentations from home and abroad, the elements that affect on the competition between phosphorus accumulating organisms (PAOs) and glycogen accumulating organisms (GAOs) in enhanced biological phosphorus removal system were reviewed, and the future research areas were recommended.
根据国内外文献的有关报道,综述了在强化生物除磷系统中聚糖菌与聚磷菌相互竞争的有关影响因素,并指出了今后的研究方向。
2.
The enhanced biological phosphorus removal process was described in the basic concept, function of carbon source added, relationship between phosphorus removal and nitrogen removal, and environmental impact parameters.
对强化生物除磷工艺的基本概念、外加碳源的作用、脱氮除磷的关系、环境影响参数进行了阐述,并介绍了聚磷菌菌群研究的最新进展。
3.
The establishment and development of the dynamic models in enhanced biological phosphorus removal process( EBPR) worldwide were de- scribed, with focus on the operational conditions ,advantages and disadvantages of two kinds of dynamic models:ASM models and Metabolic models.
概述了国内外强化生物除磷(EBPR)动态模型的研究进展,主要介绍了其中较成熟的ASM模型和代谢模型,并对这两类模型中的代表模型的运用条件、优缺点进行了评述。
5) Enhanced biological phosphorus removal (EBPR)
强化生物除磷(EBPR)
6) enhanced biological phosphorus removal(EBPR)
强化生物除磷
1.
To investigate the influence of PHB and PHV formed on phosphorus(P) release,uptake and removal during enhanced biological phosphorus removal(EBPR),anaerobic/aerobic batch experiments were conducted with biomass acclimated with propionic to acetic acid carbon molar ratios of 0.
5和2的合成废水驯化微生物的SBR反应器(SBR1和SBR2)批式实验,研究了强化生物除磷系统中聚烃基丁酸(PHB)和聚烃基戊酸(PHV)的转化对磷吸收/释放及去除率的影响。
补充资料:Phostrip生物-化学沉淀除磷法
分子式:
CAS号:
性质:是一种生物法和化学法共同起作用的除磷方法。它在常规的好氧活性污泥工艺中,增设了厌氧放磷池和化学沉淀池。该工艺的主流部分为常规的活性污泥曝气池,回流污泥的一部分旁流入一个厌氧池,污泥在厌氧池中通常停留8~12h,积磷细菌可吸引发酵产物而放磷,也可因菌体自溶而放磷。脱磷后的污泥回流入曝气池以继续吸磷,富含磷的上清液进入化学沉淀池,用石灰处理使溶磷变成不溶性的磷酸钙沉淀,然后从系统内弃去。
CAS号:
性质:是一种生物法和化学法共同起作用的除磷方法。它在常规的好氧活性污泥工艺中,增设了厌氧放磷池和化学沉淀池。该工艺的主流部分为常规的活性污泥曝气池,回流污泥的一部分旁流入一个厌氧池,污泥在厌氧池中通常停留8~12h,积磷细菌可吸引发酵产物而放磷,也可因菌体自溶而放磷。脱磷后的污泥回流入曝气池以继续吸磷,富含磷的上清液进入化学沉淀池,用石灰处理使溶磷变成不溶性的磷酸钙沉淀,然后从系统内弃去。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条