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1)  ferric phosphate reduction
磷酸铁还原
2)  phosphate reduction
磷酸盐还原
1.
The influence of influent nitrate on phosphorus removal efficiency of phosphate reduction systems under anoxic and aerobic condition was studied by changing the concentration of influent nitrate.
通过改变进水硝酸盐浓度,考察了硝酸盐对缺氧和好氧两种不同氧环境下的磷酸盐还原系统除磷效能的影响。
2.
Transformation of phosphorus forms in the construction process of biological phosphate reduction system was discussed in treating saline and high-phosphorus pickled mustard tube wastewater to resolve problems encountered with present phosphorus removal technology.
L-1,水温30℃,且未排泥的条件下,成功构建了超高盐(7%盐度)条件下的磷酸盐还原系统。
3)  phospho-tungstic acid deoxidizing method
磷钨酸还原法
4)  reduced molybdenum phosphate
还原型钼磷酸盐
1.
A new reduced molybdenum phosphate,[Ni(phen)3]2[Ni(PO4)2(H2PO4)6(OH)6(MoO2)12](phen: 1,10-phenanthroline),was synthesized by mild hydrothermal techniques,and the crystal structure was determined by single-crystal X-ray diffraction analysis.
利用中温水热技术合成一种新型还原型钼磷酸盐:[Ni(phen)3]2[Ni(PO4)2(H2PO4)6(OH)6(MoO2)12](phen:邻菲啰啉),并通过单晶X射线衍射技术测定了该化合物的晶体结构。
5)  phosphate reducing bacteria
磷酸盐还原细菌
6)  biological phosphate reduction
磷酸盐生物还原
1.
Taking the mustard tuber wastewater with high salinity and phosphorus concentration as research object,the phosphorus removal efficiency by biological phosphate reduction in an anaerobic sequencing batch biofilm reactor(ASBBR) was discussed.
以高盐、高磷榨菜废水为研究对象,探讨了厌氧序批式生物膜反应器(ASBBR)生物还原磷酸盐的除磷效能,考察了温度、pH、负荷及NO3--N浓度等因素对磷酸盐生物还原除磷的影响。
补充资料:钨铁电炉出铁(吉林铁合金厂)


钨铁电炉出铁(吉林铁合金厂)


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