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Experiment results as follows: the COD consistency of second retting water was 6000 to 7100mg/L, but the COD consistency could reach 1779.50—2198.3 mg/L after consumption by anaerobic microbe in UASB. The remove rate of COD can achieve 66% or more, and water affluently was stable.

研究表明:沤麻"二遍水"COD在6000~7100mg/L之间,经过UASB反应器中厌氧微生物的降解,出水COD在1779.50--2198.3mg/Lmg/L之间,去除率保持在66%以上,而且出水水质比较稳定。

As for the wastewater containing organic nitrogen, thebest approach of ammoniation should be anaerobic ammoniation.

对含有机氮的废水,其最佳氨化途径为厌氧氨化。

It may be also applied in the separation and detection for other facultative anaerobe.

本法也可广泛应用于其他兼性厌氧菌的分离检测工作。

Objective To observe the anti - anaerobe activities of secnidazole.

目的观察塞克硝唑对厌氧菌的抑菌效果。

After the synthetic pyrethroids wastewater passes through the suitable pretreatment definitely anaerobe processing method to carry on further processes,its COD removeing rate can achieves 80%.

拟除虫菊酯生产废水经过适当的预处理后,完全可以采用厌氧流化床工艺进行进一步处理,其COD去除率达到80%。

Anaerobic digestion is one of the key technologies for modern wastewater treatment.

厌氧消化是现代废水处理中的关键技术之一。

In this paper, the method of full-scale magnified anaerobic reactors was discussed.

在本文中,系统研究了复合厌氧生物反应器的生产性放大方法。

The cultural condition of PGPR strains Temperature,pH,light,cultural method,acid or alkali producing,and salt tolerance of 9 PGPR strains isolated from Gramineous Forage were tested,the results showed that all the PGPR strains could grow in the temperature range from 5℃~45℃,and optimum temperature for 178,O-6,Dry6 strains was 35℃,for X5,173,Y5,C-6 strains was 30℃,for N4 strain was 25℃~35℃,for 86 strain was 25℃;most of PGPR strains prefered to neutral or alkaline condition,strains 178,O-6,N4 and X5 were preferable to alkali condition especially;light was beneficial to PGPR's growth;all of them produce alkali;most of PGPR strains were not sensitive to NaCl concentration;all the strains were aerobiotic bacteria.

结果表明:各供试菌株对温度的适应范围较广,在5℃~45℃范围内均能生长,178、O-6、Dry6 菌株的适宜生长温度为35℃,X5、173、Y5、C-6 菌株的适宜生长温度为30℃,N4 菌株的适宜生长温度为25℃~35℃,86 菌株的适宜生长温度为25℃;大部分菌株在中性或偏碱性的条件下生长好,特别是Dry6、N4 和X5 菌株对碱性环境适应性强,在pH 值8.0 时生长最好;光照有利于菌株的生长;绝大部分菌株在3%NaCl浓度下生长良好,在5%~7% NaCl 浓度下除173 和86 菌株外,其它菌株都能生长,即对盐份的耐受性较好,且9 个菌株均为产碱菌;除173 菌株是兼性厌氧细菌外,其它都是好氧性细菌。

The results showed that at the anaerobic phase, the PHB concentration in the cell and orthophosphate concentration of the anaerobic effluent obviously increased, the poly-P concentration in the cell decreased, and the cucci and bacilli with a size of 1.0~1.5 μm were dominant and formed grapy cellular cluster. At the anoxic phase, the PHB concentration and orthophosphate concentration decreased significantly, the amount of poly-P increased, and the elliptical cucci of 0.5~1 μm and spheral bacilli of 1.0~1.5 μm were dominant. At the aerobic phase, the PHB and orthophosphate concentration almost reduced to zero, the poly-P increased significantly, cucci appeared single or in pair, and the contour of sphere was blur and almost disappeared.

试验结果表明,在厌氧阶段,微生物细胞内PHB的量大幅提高,上清液中磷酸盐的含量上升,聚磷酸盐含量明显下降,粒径为1~1.5 μm、呈球状和棒状的菌群构成的葡萄状细胞簇占居优势;在缺氧阶段,微生物细胞内PHB的量下降,上清液中磷酸盐含量下降,聚磷酸盐含量上升,粒径为0.5~1 μm的椭球菌与1.0~1.5 μm的球杆菌占优势;在好氧阶段,微生物细胞内PHB的量较低或接近零,上清液中磷酸盐的含量接近零,聚磷酸盐含量明显上升,此时粒径1.0~1.5 μm的球菌以单个或成对出现,球菌不再饱满,呈现接近消失的状态。

According to the above study result, the diversity of microorganisms population in the SUFR system is complex and the bio-community formed in the SUFR system is stable. The close relations between abundance of bacteria and nutrients were found. The correlation between heterotrophic bacteria and COD was 0.949. The correlation between organic phosphate bacteria and TP was 0.815. The correlation between nitrosobacteria and NH3-N was 0.909. The correlation between disnitrifier bacteria and TN was 0.653. These inneglectable great factors effecting on phosphorus-uptake and phosphorus-release of phosphorus accumulating organisms are the influent COD、the concentration of DO、the sludge retention time、the temperature. The diversity of organic phosphate bacteria population in the SUFR reactor was complex and there is no phosphate bacteria taking the absolute superiority in quantity. The near-native pure culture method powerfully complement the traditional pure culture technique and enrich culture technique. The sludgy bioactivity is very good in whole SUFR reactor. By the quality of being biochemistry, the anaerobic phase is higher than anoxic phase and the anoxic phase is higher than aerobic phase of SUFR.

通过以上试验内容研究发现,SUFR 系统中的微型动物种群较多,微生物生态系统稳定;系统中微生物的数量与营养盐的含量密切相关,其中总异养菌与COD的相关系数r 为0.949,有机磷细菌与TP 的相关系数r 为0.815,亚硝化菌与NH4+-N的相关系数r 为0.909,反硝化菌的数量和TN 的相关系数r 为0.653;污水生物除磷工艺中进水COD 的浓度、DO 浓度、泥龄的长短、温度都是影响聚磷菌释磷及吸磷效果的不可忽视的因素;SUFR 系统中的磷细菌呈现种群多样化的趋势,没有占绝对优势数量的磷细菌;微孔滤膜近自然培养法是对传统纯培养技术和富集培养技术的有力补充;整个SUFR 反应器系统中污泥的生物活性很好,就可生化性来讲,厌氧反应器大于缺氧反应器大于好氧反应器;按照动力学方程式求出的细胞生长动力学特征值和SUFR 脱氮除磷系统工艺的实测值结果基本吻合。

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