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1)  wastewater P removal
废水脱磷
2)  Demagging waste solution of phosphate ore
磷矿脱镁废水
1.
An integrating equation of moving boundary model was used to describe the kinetics with changing bulk concentration of removing Mg2+ from demagging waste solution of phosphate ore by 0017 resins.
用动边界模型积分方程描述了0017树脂脱除磷矿脱镁废水中的Mg2+的有限浴交换动力学,得到了动力学总方程。
3)  phosphorus wastewater
含磷废水
1.
The paper discusses the treatment of phosphorus wastewater by experiments and proposes a way of decreasing P by slaked lime and phosphate crystallization method.
文章对含磷废水的处理技术进行了实验研究,提出石灰乳脱磷与磷酸盐结晶法处理工艺。
2.
The removal of P from phosphorus wastewater with calcinated or uncalcinated red mud were investigated.
研究了赤泥投加量、反应时间、pH值和搅拌速度对含磷废水去除效果的影响,探讨了赤泥煅烧活化前后对废水中磷的去除作用。
4)  phosphating wastewater
磷化废水
1.
At present,the main methods to solve phosphating wastewater are biological,chemical,and physical-chemical etc.
文章以成都某汽车厂的废水处理工程为例,研究了磷化废水的处理工艺及原理,表明采用物化与生化相结合的工艺处理汽车磷化废水可取得良好的处理效果。
2.
A novel composite flocculant for removal of P from phosphating wastewater was devel-oped,and its efficiency in wastewater treatment was examined.
研制了一种新型絮凝剂,对高浓度磷化废水进行脱磷试验,结果表明,对磷含量为145mg/L左右的磷化污水,通过控制污水的pH值、絮凝剂的投加量、反应时间及沉降时间等参数,可使废水中磷的去除率达99%以上,出水磷含量达到国家综合污水排放一级标准(小于0。
5)  phosphorus-containing wastewater
含磷废水
1.
Effect of the lime dosage on treatment of phosphorus-containing wastewater by microfiltration;
微滤处理含磷废水时石灰的作用
2.
Treatment of high-concentration phosphorus-containing wastewater produced from automobile painting-industry using microfiltration with and without coagulation pretreatment was studied.
采用直接微滤和混凝-微滤2种工艺对高浓度含磷废水进行了处理。
6)  yellow phosphorus wastewater
黄磷废水
1.
Comprehensive treatment of yellow phosphorus wastewater and iodine recovery from the wastewater;
黄磷废水的综合治理及碘回收工艺研究
2.
The two stage physico chemical process has been studied to remove fluoride in yellow phosphorus wastewater.
通过控制合适的pH、钙盐和磷酸的投加量、反应时间、反应温度、搅拌强度和絮凝剂的投加量,可使黄磷废水中氟的质量浓度降至5mg/L,氟的去除率达到99%以上,出水中氟的质量浓度达到GB8978—1996一级排放标准。
补充资料:废水脱氮
分子式:
CAS号:

性质:为防止水体富营养化而对废水进行脱氮处理的过程。一般分为物理化学法和生物脱氮法两种。物理化学法脱氮包括折点氯化法、空气气提或蒸汽汽提法、选择性离子交换法。实践中多采用硝化-反硝化作用的生物脱氮法,即先在好氧条件下利用废水中硝化细菌将氮化合物氧化为硝酸盐(硝化阶段),然后在缺氧条件下(溶解氧小于0.5mg/L),利用废水中反硝化细菌将硝酸盐还原成气态氮及其他最终气体产物并释放到大气中(反硝化阶段)。

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