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denitrification相关的网络例句

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与 denitrification 相关的网络例句 [注:此内容来源于网络,仅供参考]

The impact of denitrifying bacteria, soil diameter and soil-column height upon denitrification was investigated, and the enrichment of 15 in the effluent was presented.

动态试验考查了反硝化细菌、土壤粒径和土柱高度对反硝化作用的影响,并应用15N说明了出水中硝酸盐氮的富集作用。

In recirculating aquaculture system, wastewater characterizes as low C/N ratio and high dissolved oxygen content, deoxygenating and adding extra organic carbon are necessary for complete denitrification of wastewater.

由于养殖废水C/N低且溶解氧含量高,需要补充碳源并有效脱氧,才能保证高效反硝化。

Denitrification gradually took over methanogenesis to become the main reaction responsible for decomposition of MSW, while nitrogen gas was generated instead. Additionally, owing to long term exposure of nitrified leachate to MSW, the bacterial structure of landfill was changed.

在此过程中,反硝化逐渐代替产甲烷作用成为填埋场内垃圾降解的主要反应,产生气体以氮气为主,而非甲烷;硝化渗滤液与垃圾的长期作用也改变了填埋场的菌群结构。

The results indicate that ① the reactor with sulfur particle size of 2.8-5.6 mm can effectively remove nitrate from nitrified leachate up to a concentration of 400 mg/L NO - 3 N at a hydraulic retention time of 5.71h;② the minimum hydraulic retention time necessary for complete denitrification depends on sulfur particle size and influent nitrate concentration;③the maximum volume...

结果表明,当HRT为5.71h,硫磺粒径为2.8-5.6mm时,最高处理浓度(以NO-3-N计)达400mg/L。达到完全反硝化所需的最小停留时间取决于硫磺粒径及进水硝酸盐浓度。硫磺粒径为2.8-5.6mm,5.6-11.2mm,11.2-16mm时,NO-3-N最高容积负荷分别为594,278,175.4g/(m3d)。NO-3-N最大表面负荷约为0.68g/(m2d),是自养反硝化的控制因素,与硫磺粒径无关。

Stable, compact and well-settling nitrifying granules can be developed for simultaneous nitrification and denitrification removal of nitrogen.

在本试验中,培养出结构致密稳定性良好,硝化效果和反硝化效果均良好的硝化颗粒。

Beneficial bacteria, it is with the characteristic of ammonification, nitrification, denitrification, desulfidation and dephosphorylation, etc., its growth is very quickly, it has the good efficiency for degrading water quality factor, it can well reduce ammonia and nitrogen, degrade nitrite, increase the dissolved oxygen in water, activate water quality, rich water, purify water, adjust water color, increase the transparency of water, restrain the reproduction of pathogen, prevent diseases of fish, by using this product for long term, can restore the water-ecological balance destroyed by slathering disinfector, antibiotics, form the advantage community, improve the water quality quickly, keep the good water ecological balance, decrease the disk of breeding, increase the benefit of breeding.

具有氨化、硝化、反硝化、脱硫除磷等生理特性,生长快,对水质因子降解效能高,可有效降低氨氮、降解亚硝酸盐、增加水中溶氧、活化水质、肥水、净水、调整水色、增加水体透明度、抑制病原菌繁殖、预防细菌性鱼病发生、长期使用本品可有效修复因大量使用消毒剂、抗生素等破坏的水生态平衡,形成优势种群,快捷改善水质质量,维持水体良性生态平衡。达到健康养殖、生态防病的目的,降低养殖风险,提高养殖效益。

Denitrification is a microbial process in which oxidized nitrogen compounds are used as alternative electron acceptors for energy production.

反硝化是微生物以氮氧化物作为电子受体产生能量的过程。

The expression of one-dimensional mathematical model of vertical migration of ammonia in the CRI system is:The parameters in the CRI model are determined as following: the retardarce coefficient is determined by static isothermal absorption experiment, the velocity of sewage travel through the soil column is determined by permeability test, the vertical dispersion coefficient is determined by test the electric conductivity of tracer in the dispersion experiment, the rate of nitrification and denitrification is determined by test of Baps technology.

依据单一氨氮、硝氮配水条件下的试验结果,引入多孔介质的溶质运移理论及对流-弥散方程,考虑NH4+-N在CRI系统中的运移受到对流和水动力弥散作用的影响,并吸附-解吸、硝化与反硝化3个过程,首次将配水流经CRI土柱的孔隙水流速方程与CRI土柱内发生的、以氧为约束条件的硝化、反硝化过程联系起来,建立了CRI系统一维垂向氨氮运移转化数学模型,表达式为:研究分别通过静态等温吸附实验率定了模型方程中的阻滞系数、通过渗滤试验测定了土柱中的孔隙水流速、通过测定弥散试验中示踪剂的电导率确定了纵向弥散系数、通过气压过程分离技术测定了土柱中的总硝化与反硝化反应速率常数,最后通过测定土柱沿程氧化-还原电位的方法分析氨氮在CRI系统中的运移转化机理。

Jiangnan "Ammonia - Fertilizer Law" of flue gas desulphurization technology 1 complete resource - the "sulfur" Resource Recycling completely, generating ammonium sulfate fertilizers, waste to treasure 2 There is no secondary pollution - completely closed circulation system, without any wastewater, waste residue discharge, no CO2 greenhouse gas emissions 3 systems in small resistance - resistance at 1200Pa following system does not have to replace or increase the fan to save power consumption 4 installation of equipment, an area of small - to facilitate transformation of the old boiler 5 both desulfurization denitration again - at no additional investment and operating costs, while denitrification rate of 40

江南&氨-肥法&烟气脱硫技术1)完全资源化--将&硫&资源完全回收,生成硫酸铵化肥,变废为宝2)没有二次污染--系统完全闭路循环,无任何废水、废渣排放,更没有温室气体CO2的排放3)系统阻力小--系统阻力在1200Pa以下,不须更换或增加排风机,节省电耗4)装置设备占地小--便于老锅炉改造5)既脱硫又脱硝--在不增加投资和运行费用的情况下,同时脱硝率达40

After two rice-wheat rotations, 11%–13% of applied labeled N remained in 0-60 cm soil (mostly in the 0-20 cm soil); leaching of labeled urea applied in rice season was little (only 0.6%–1.1% of the applied N accumulated in 20-60 cm soil), and the leaching of fertilizer N occurred in wheat season and the beginning flooding period of the next rice season; 47%–54% of applied fertilizer N was lost and ammonia emission and nitrification-denitrification were the main pathways.

水稻季施用的肥料氮向耕层以下移动很少,20—60 cm土层中累积肥料氮仅占施氮量的0.6%~1.1%,主要发生在小麦季及水稻泡田时期,肥料氮损失占施氮量的47~54%,氨挥发和硝化反硝化气态损失是主要途径。

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