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活性炭

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Biological powdered activated carbon enhanced the growth of nitrifier by absorbed toxic or inhibitory substance.

生物活性炭吸附了对硝化菌产生毒性和抑制的物质、强化了硝化菌在炭表面的生长。

The process of applying PAC to treat source water polluted by nitrobenzene was put forward.

活性炭的应用已经有80多年的历史,是水处理中最常用的吸附剂,但是针对硝基

The adsorption of nitrobenzene on active carbon accords with the Freundlich isothermal formula, the effect of temperature has been studied.

硝基苯在活性炭上的吸附符合Freundlich吸附等温线,以及温度对吸附的影响。

Main to this harmful material -- nitrobenzene, the adsorption with OK and effective activated carbon drops it.

对这次主要的有害物质——硝基苯,活性炭可以有效的吸附(物质表面吸住周围介质中的分子或离子现象)掉它。

The catalytic activated carbon deodorizing device was used for purifying odorous gases in sewage pumping station.

采用催化型活性炭除臭装置对污水泵站产生的臭气进行净化。

But some application is limited because of its poor oxidation resistance.

但是,活性炭较低的抗氧化性能限制了其在工业上的广泛应用。

In view of waterworks development, pre ozonization and thoroughly absorptive treatment with active carbon are becoming the normally processing treatment technology .

分析湖泊水中藻类对城市供水的影响,提出含藻水处理工艺必须结合水源水质情况来确定,改善预氧化条件、强化混凝可提高除藻效果,臭氧预氧化与活性炭吸附深度处理将成为水厂发展和正常运行处理工艺

The proceess of water purification includes fine filtration,ozonization,irradiating of ultraviolet ray, absorption of activated carbon,purifying by mai-fan stone etc.

该机即节省了臭氧,又避免了二次污染,其净化水的过程包括:微细过滤、臭氧氧化、紫外线照射、活性炭吸附、麦饭石净化等。

The surface and section of the dynamic membrane at different concentrations of PAC were observed by scanning electron microscopy.

向由孔径为56μm的普通工业滤布组成的膜生物反应器中投加不同量的粉末活性炭,对恒通量下的单周期运行情况进行了考察,并对被污染的动态膜表面和截面进行了扫描电镜观察。

Therefore, the adsorption capacity of the pancreatin hydrolysate onto activated carbon was higher due to its lower solubility of at acidic pH.

中文意思:所以,胰酶水解产物在酸性pH值条件下由于具有较低的溶解性而易于被活性炭吸附。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。

There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.

双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。