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161.
Although several reports are available concerning the composition and dynamics of the microflora during the composting of municipal solid wastes, little is known about the microbial diversity during the composting of agro-industrial refuse. For this reason, the first parts of this study included the quantification of microbial generic groups and of the main functional groups of C and N cycle during composting of agro-industrial refuse. After a generalized decrease observed during the initial phases, a new bacterial growth was observed in the final phase of the process. Ammonifiers and (N2)-fixing aerobic groups predominated outside of the piles whereas, nitrate-reducing group increased inside the piles during the first 23 days of composting. Ammonia-oxidizing bacteria (AOB) and nitrite-oxidizing bacteria (NOB), showed an opposite trend of growth since ammonia oxidation decreased with the increase of the nitrite oxidation activity. Pectinolytics, amylolytics and aerobic cellulolytic were present in greater quantities and showed an upward trend in both the internal and external part of the heaps.Several free-living (N2)-fixing bacteria were molecularly identify as belonging especially to uncommon genera of nitrogen-fixing bacteria as Stenotrophomonas, Xanthomonas, Pseudomonas, Klebsiella, Alcaligenes, Achromobacter and Caulobacter. They were investigated for their ability to fix atmospheric nitrogen to employ as improvers of quality of compost. Some strains of Azotobacter chrococcum and Azotobacter salinestris were also tested. When different diazotrophic bacterial species were added in compost, the increase of total N ranged from 16% to 27% depending on the selected microbial strain being used. Such microorganisms may be used alone or in mixtures to provide an allocation of plant growth promoting rhizobacteria in soil.  相似文献   
162.
为深入了解城市河流中细菌的耐药状况和微生物群落结构特征,在西安市浐河和灞河河段8个采样点以及某污水处理厂二级出水排放口采集水样,利用细菌培养技术、PCR检测和DGGE(变性梯度凝胶电泳)分析技术,对河流中异养菌耐药率、四环素抗性基因以及微生物群落结构进行研究. 结果表明:浐河和灞河水样中异养菌对SMZ(磺胺甲恶唑)、TET(四环素)、CIP(环丙沙星)和CTX(头孢噻肟)的平均耐药率分别为18.3%、6.2%、2.7%和1.3%,耐药率高低顺序与污水厂排放水中的异养菌相同. 城市河流中异养菌浓度与其耐药率并不存在显著的相关性. 与上游河段相比,污水厂排放口下游河段的异养菌浓度没有明显增加,但对多种抗生素的耐药率却有所升高. 浐河和灞河中四环素抗性基因主要是tetA和tetB,检出率分别为100%和75%,这意味着城市河流中异养菌对TET的耐药性可能主要通过编码外输泵蛋白的抗性机制来实现. 污水厂排放水进入城市河流,并未显著影响河流中的微生物群落结构,但却使某些原有的敏感物种消失,而病原菌或条件致病菌在邻近污水厂排放口的下游河段则有所增加.   相似文献   
163.
针对以非常规水源补水的受污染地表水的生态安全问题,文章以北京地区受污染河水为试验用水,利用多组生物效应试验(发光菌、大型蚤和仔鱼)进行急性生物毒性检测,并与污水厂二级出水和再生水厂出水水质进行比较.结果表明:受污染地表水在浓缩倍数达50倍时,发光细菌相对抑制率达到50%以上,大型蚤和仔鱼的急性毒性试验死亡率均达到100...  相似文献   
164.
秸秆发酵乳酸菌复合系SFC-2的构建及其组成多样性研究   总被引:5,自引:2,他引:5  
为了获得促进作物干秸秆乳酸发酵的微生物,以玉米秸秆和水稻秸秆的自然发酵物为菌种来源,用MRS蔗糖培养基,通过连续定向继代培养,筛选出pH下降迅速、乳酸含量高、组成稳定的乳酸菌复合系SFC-2.DGGE分析表明,SFC-2经过连续继代培养,从第25代开始其微生物组成基本稳定.SFC-2 培养12 h后pH下降至3.8,乳酸含量达10.64 mg/mL,其中64%为L-(+) 乳酸.通过平板分离获得4株细菌,全部为Lactobacillus,其近缘种分别为L. fermentum、L. plantarum、L. paracasei和L. paracasei sub sp.;通过16S rDNA克隆文库分析获得7个克隆,其近缘种主要为L. fermentum、L. plantarumL.paracasei;在16S rDNA的克隆文库中,76.3%为L. fermentum的近缘种,20.3%为L. plantarum的近缘种,3.4%为L. paracasei的近缘种.  相似文献   
165.
孔秀琴  梁锐振 《环境工程》2007,25(6):20-22,25
采用厌氧酸化+二级光合细菌(PSB)流化床的组合工艺对植物压榨发酵废水进行降解实验,一级流化床(PSB1)中填料为轻质多孔炭渣,二级流化床(PSB2)为活性炭,扰动方式分别采用机械流化和机械气动组合流化,稳定运行40d。结果表明,进水酸化12h后CODCr由80000~120000mg/L降至63000~95000mg/L,进而由系统出水回流稀释至8000~12000mg/L,进入二级流化床反应器,PSB1白天厌氧光照、夜间微好氧,PSB2白天微好氧、夜间好氧,停留48h,CODCr降至295.8~384mg/L,稳定实现96.2%以上的CODCr去除率,TN去除率为71.3%。  相似文献   
166.
强化厌氧污泥体系同步脱硫反硝化特性研究   总被引:2,自引:2,他引:2  
徐金兰  侯圣春  黄廷林 《环境科学》2010,31(5):1246-1251
以硫化物为电子给体的自养反硝化厌氧体系是代替传统异养反硝化工艺处理低C/N比含氮废水的有效工艺,可以同时去除硫化物和硝酸盐.将脱氮硫杆菌菌悬液接种到厌氧污泥体系中,脱氮硫杆菌快速富集,采用5组进水比N/S比不同的反应瓶进行试验,运行15d后,测定不同时段的出水硫化物、硝酸盐、亚硝酸盐、硫酸盐浓度等指标,考察强化厌氧污泥体系去除硫化物和硝酸盐的特性,并对生化反应机制进行初步研究.结果表明,强化厌氧污泥体系运行3h后,进水中90%的硫化物被去除,硫化物的去除与进水N/S比无关,硫化物(以S计)去除速率高达20~24g·(m3·h)-1,是相关文献报道的10倍左右;运行6h后,进水中65%的硝氮被去除,硝氮的去除负荷随着进水N/S比的提高而增大,最高达到940g·(m3·h)-1,约为硫自养反硝化体系硝氮去除负荷的2倍,此时体系中亚硝氮积累,最高浓度达到93mg·L-1,进水N/S比低的条件下,6h后亚硝氮消失,进水N/S比较高时,21h后出水中未检测到亚硝氮.表明强化厌氧污泥体系停留6h后可以实现同时去除硫化物和硝酸盐,但硝酸盐首先转化为亚硝氮.与以往不同的是研究发现硫化物与生物硫粒产生多硫化合物的链式反应,是硫化物迅速转化的主要途径,此外,还原硝氮的电子给体并不来源于硫化物,可能主要来源于体系中产生的单质硫.  相似文献   
167.
The discharge of slau ghterhouse wastewater(SWW) is incre asing and its wastewater has to be treated thoroughly to avoid the eutrophication.The hybrid zeolite-based ion-exchange and sulfur autotrophic denitrification(IX-AD) process was developed to advanced treat SWW after traditional secondary biological process.Compared with traditional sulfur oxidizing denitrification(SOD),this study found that IX-AD column showed:(1) stronger ability to resist NO3-pollution load,(2) low...  相似文献   
168.
High efficient removal of antibiotics during nutriments recovery for biomass production poses a major technical challenge for photosynthetic microbial biofilm-based wastewater treatment since antibiotics are always co-exist with nutriments in wastewater and resist biodegradation due to their strong biotoxicity and recalcitrance. In this study, we make a first attempt to enhance metronidazole (MNZ) removal from wastewater using electrochemistry-activated binary-species photosynthetic biofilm of Rhodopseudomonas Palustris (R. Palustris) and Chlorella vulgaris (C. vulgaris) by cultivating them under different applied potentials. The results showed that application of external potentials of -0.3, 0 and 0.2 V led to 11, 33 and 26-fold acceleration in MNZ removal, respectively, as compared to that of potential free. The extent of enhancement in MNZ removal was positively correlated to the intensities of photosynthetic current produced under different externally applied potentials. The binary-species photoelectrogenic biofilm exhibited 18 and 6-fold higher MNZ removal rate than that of single-species of C. vulgaris and R. Palustris, respectively, due to the enhanced metabolic interaction between them. Application of an external potential of 0V significantly promoted the accumulation of tryptophan and tyrosine-like compounds as well as humic acid in extracellular polymeric substance, whose concentrations were 7.4, 7.1 and 2.0-fold higher than those produced at potential free, contributing to accelerated adsorption and reductive and photosensitive degradation of MNZ.  相似文献   
169.

从连云港某废弃化工厂污染土壤中分离筛选高效石油烃降解菌株,研究菌株的生理生化特征并对其进行测序和种属鉴定,采用单因素试验对菌株降解柴油的环境因子进行分析。结果表明:从污染土壤中共分离出柴油降解菌株4株,经过测序及同源比对,与该4株菌株同源性最高的分别为阴沟肠杆菌(Enterobacter_cloacae,HY1),肺无色杆菌(Achromobacter_pulmonis,HY2),台湾假单胞菌(Pseudomonas_taiwanensis,HY3),铜绿假单胞菌(Pseudomonas_aeruginosa,HY4),同源性均达98%以上;4株菌株具备不同的产表面活性剂能力和柴油降解能力,其中菌株HY1和HY2对柴油的降解率最高,当柴油浓度为0.5%,处理时间为20 d时,二者对柴油的降解率均达37%以上;通过单因素试验对降解条件进行优化后,发现在柴油浓度为0.5%,降解时间为8 d时,菌株HY2和HY1最佳降解条件是初始pH为7,摇床转速为180 r/min,接种量为3%~4%,此时,二者对柴油的降解率分别为40.15%和43.87%。本研究可以丰富石油烃降解菌的菌种信息,为石油烃污染土壤修复提供菌种资源及数据支持。

  相似文献   
170.
The purpose of this study is to investigate the effects of nano-sized or submicro Fe_2O_3/Fe_3O_4 on the bioreduction of hexavalent chromium(Cr(VI)) and to evaluate the effects of nano-sized Fe_2O_3/Fe_3O_4 on the microbial communities from the anaerobic flooding soil.The results indicated that the net decreases upon Cr(VI) concentration from biotic soil samples amended with nano-sized Fe_2O_3(317.1 ± 2.1 mg/L) and Fe_3O_4(324.0 ± 22.2 mg/L) within21 days,which were approximately 2-fold of Cr(VI) concentration released from blank control assays(117.1 ± 5.6 mg/L).Furthermore,the results of denaturing gradient gel electrophoresis(DGGE) and high-throughput sequencing indicated a greater variety of microbes within the microbial community in amendments with nano-sized Fe_2O_3/Fe_3O_4 than the control assays.Especially,Proteobacteria occupied a predominant status on the phylum level within the indigenous microbial communities from chromium-contaminated soils.Besides,some partial decrease of soluble Cr(VI) in abiotic nano-sized Fe_2O_3/Fe_3O_4 amendments was responsible for the adsorption of nano-sized Fe_2O_3/Fe_3O_4 to soluble Cr(VI).Hence,the presence of nano-sized Fe_2O_3/Fe_3O_4 could largely facilitate the mobilization and biotransformation of Cr(VI) from flooding soils by adsorption and bio-mediated processes.  相似文献   
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