排序方式: 共有54条查询结果,搜索用时 281 毫秒
1.
兼性生化处理生活污水最佳工况研究 总被引:3,自引:0,他引:3
在常温条件下进行兼性生化处理生活污水试验,研究COD去除率与HRT、MLSS、进水有机物浓度和混合液水温的关系。在试验中最佳的水平搭配为MLSS=5500mg/L,进水有机物浓度=180mg/L,HRT=8h和混合液水温=20℃,与回归分析所得出MLSS=5881mg/L,进水有机物浓度=192.7mg/L,HRT=8.9063h和混合液水温=21.3790℃的最佳工艺条件相吻合。最后通过等高线分析得出常温下生活污水兼性生化的适宜范围。 相似文献
2.
电化学产电菌的分离及性能评价 总被引:2,自引:1,他引:1
利用兼性滚管法分离了折流板空气阴极微生物燃料电池(BAFMFC)A、B两格室的阳极生物膜,共获得19株纯菌.将菌株投加至无菌立方型反应器中,检验其产电特性.利用交流阻抗法测量各纯菌电池的内阻,结果显示38个电池的欧姆内阻为25Ω±5Ω,说明了各电池的产电差异来源于菌株本身的活性.其他运行条件均保持不变,在1000Ω外阻下,7株纯菌电池的输出电压在200mV以上.其中,A格室产电活性最高的菌株(A2)产生的最大电压为328mV,输出的最大功率密度为165.1mW/m2,B格室产电活性最高的菌株(B1)最大电压为241mV,最大功率密度为214.4mW/m2.原子力显微镜和脂肪酸快速鉴定表明,A2为肠杆菌科的杆菌,B1为厚壁菌门的芽孢杆菌. 相似文献
3.
Aged refuse from waste landfills closed for eight years was examined and found to contain rich methanotrophs capable of biooxidation
for methane. Specially, community structure and methane oxidation capability of methanotrophs in the aged refuse were
studied. The amount of methanotrophs ranged 61.97 103–632.91 103 cells/g (in dry basis) in aged refuse from Shanghai Laogang
Landfill. Type I and II methanotrophs were found in the aged refuse in the presence of sterilized sewage sludge and only Type I
methanotrophs were detected in the presence of nitrate minimal salt medium (NMS). The clone sequences of the pmoA gene obtained
from the aged refuse were similar to the pmoA gene of Methylobacter, Methylocaldum, and Methylocystis, and two clones were distinct
with known genera of Type I methanotrophs according to phylogenetic analysis. Aged refuse enriched with NMS was used for methane
biological oxidation and over 93% conversions were obtained. 相似文献
4.
5.
针对已筛选获得的甲烷氧化混合菌,选取填埋场覆盖土(LCS)、矿化垃圾(AR)和塘渣(TZ)3种填埋场周边易得的材料为供试生存基质,从基质选择性及长效性角度进行了甲烷减排应用条件的探究及使用效能评估.结果表明,在TZ、LCS、AR、TZ-AR和LCS-AR这5种生存基质中,TZ-AR最适合甲烷氧化混合菌的生长,且TZ与AR的复配比例以5∶5为最佳.甲烷氧化混合菌在TZ-AR的粒径≤4 mm和含水率为20%时具有最高甲烷氧化能力.一次性接种甲烷氧化混合菌在静态体系中的最佳使用有效期为31 d.其在接种量为0.08、0.16、0.20 m L·g-1和0.25m L·g-1时甲烷氧化速率无明显差异,从工程应用角度而言,8%的接种量为最佳. 相似文献
6.
A simulated landfill biocover microcosm consisting of a modifying ceramsite material and compost were investigated. Results show that the mixture can improve the material porosity and achieve a stable and highly efficient (100%) methane oxidation over an extended operating period. The diversity of the methanotrophic community in the microcosm was assessed. Type I methanotrophs were enhanced in the microcosm due to the increased air diffusion and distribution, whereas the microbial diversity and population density of type II methanotrophs were not significantly affected. Moreover, the type I methanotrophic community structure significantly varied with the reactor height, whereas that of type II methanotrophic communities did not exhibit a spatial variation. Phylogenetic analysis showed that type I methanotroph-based nested polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) resulted in the detection of eight different populations, most of which are related to Methylobacter sp., whereas that of type II resulted in the detection of nine different populations, most of which are related to Methylocystaceae. Methanotrophic community analysis also indicated that a number of new methanotrophic genera not closely related to any known methanotrophic populations were present. 相似文献
7.
8.
Soil samples were collected from three plots under di erent land utilization patterns including degradation, farming, and restoration.
The abundances of methanotrophs were quantified using real-time polymerase chain reaction (PCR) based on the pmoA and 16S
rRNA genes, and the community fingerprint was analyzed using denaturing gradient gel electrophoresis (DGGE) aiming at pmoA
gene. Significantly lower 16S rRNA and pmoA genes copies were found in the degradation treatment than in farming and restoration.
Higher abundances of Type I than those of Type II methanotrophs were detected in all treatments. The treatment of farming was
clearly separated from degradation and restoration according to the DGGE profile by cluster analysis. The lowest diversity indices
were observed in the F (farming plot), suggesting that the community structure was strongly a ected by farming activities. There were
significantly positive correlations between the copy numbers of pmoA also Type II-related 16S rRNA genes and soil available K content.
Strong negative and positive correlations were found between Type I and soil pH, and available P content, respectively. We concluded
that the vegetation cover or not, soil characteristics including pH and nutrients of P and K as a result of anthropogenic disturbance may
be key factors a ecting methanotrophic communities in upland soil. 相似文献
9.
准好氧填埋场垃圾样品中甲烷氧化菌的群落多样性分析 总被引:2,自引:0,他引:2
为了探讨准好氧垃圾填埋场中的甲烷氧化机理,本研究利用RealTime-PCR和PCR-DGGE技术对其中的甲烷氧化菌分别进行了定量分析和群落多样性分析。研究结果表明,PCR-DGGE技术可以用于垃圾样品中甲烷氧化菌的微生物多样性分析;在距导气管0、2.5、5.0、10.0和15.0 m处垃圾样品中甲烷氧化菌的数量分别为1.13×109、2.22×108、2.38×108、2.20×107和5.21×106g-1,呈现逐渐降低的趋势;垃圾样品中甲烷氧化菌的丰富度和香侬多样性指数依次为:0 m〉2.5 m〉5.0 m=10.0m〉15.0 m,此外,垃圾样品中甲烷氧化菌可归为:Methylocaldum(甲基暖菌属)、Methylobacterium(甲基杆菌属)和Methylocystis(甲基孢囊菌属),且优势菌种为Type I型Methylocaldum。 相似文献
10.
产甲烷菌和甲烷氧化菌分布对土壤-植物系统甲烷逸出的影响 总被引:1,自引:0,他引:1
CH4(甲烷)的逸出量与产甲烷菌和甲烷氧化菌的数量密切相关.采用FISH(荧光原位杂交)技术定量解析芦苇和香蒲混栽土壤-植物生态系统基质,探讨CH4的产生机理.结果表明,植物有利于微生物的生长,甲烷氧化菌主要聚居在植物根区,产甲烷菌数量高于甲烷氧化菌.气温变化和系统ORP(氧化还原电位)对土壤-植物生态系统CH4排放通量的影响很大,芦苇和香蒲混栽土壤-植物生态系统CH4年均排放通量为22.9 mg/(m2·h),最高达185.6 mg/(m2·h),排放峰值出现在夏季.表明芦苇和香蒲的生长促进了根际分泌物的产生,为产甲烷菌提供了较多生长所需的底物,从而刺激系统CH4的排放. 相似文献