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31.
X.G. Lin R. Yin H.Y. Zhang J.F. Huang R.R. Chen Z.H. Cao 《Environmental geochemistry and health》2004,26(2):119-128
A survey was done recently in Jiaxing city of Zhejiang Province in the Yangtze River Delta to compare the differences of soil microbiological properties among paddy soils with different land use including continuous open-field vegetable cultivation (OFVC), plastic-greenhouse vegetable cultivation (PGVC) and traditional rice–wheat rotation (RWR). The soil types included are percolating, permeable and waterlogged paddy soils. The results indicate that the microbial flora was markedly changed as the land use changed for all the three soil types. In continuous vegetable cultivation soils, especially in PGVC soils, the bacteria amounts decreased dramatically, but the fungal and actinomyce amounts increased as compared with RWR soils. The dehydrogenase activities decreased significantly in vegetable soils, especially in PGVC soils as compared with RWR soils. The microbial biomass C and the total phospholipid contents (TPL) in vegetable cultivation soil greatly decreased as compared with RWR soils. Biolog analysis indicated that the kinds of carbon sources that could be metabolized by native microbes in PGVC soils greatly decreased as compared with OFVC soils and RWR soils, revealing that microbial diversity had decreased since land use change. The activities of some soil enzymes including urease, invertase and phosphase were all lower in OFVC soils than those in RWR soils, and those in PGVC soils were the lowest. The degradation of microbiological activities in continuous vegetable cultivation soils, especially in PGVC soils, as compared with RWR soils might have been caused by soil acidification and accumulation of salts due to overuse of both organic and inorganic fertilizers in vegetable cultivation. 相似文献
32.
The distribution of degading microorganisms of high molecular weight poly(-propiolactone) (PPL), whose individual structural units are similar to those of poly(-hydroxybutyrate) (PHB) and poly(€-caprolactone) (PCL), was examined. Despite the fact that PPL is a chemosynthetic polymer, many kinds of PPL-degrading microorganisms were found to be distributed as resident populations widely in natural environments. A total of 77 strains of PPL-degrading microorganisms was isolated. From standard physiological and biochemical tests, at least 41 strains were referred to as Bacillus species. Microbial degradation of fibrous PPL proceeded rapidly in some enrichment cultures but was not as complete as that of PHB. Most of the isolated PPL-degrading microorganisms were determined to be PCL degraders and/or PHB degraders. Therefore, it can be assumed that mostly PPL is recognized by the microorganisms as PHB or another natural substrate of the same type as which PCL is regarded. Microbial degradation of PPL was confirmed by some Bacillus strains from type culture collections. The similarity of microbial degradation between PPL and PCL was found to be very close. 相似文献
33.
嗜热微生物在废水处理中的应用 总被引:2,自引:0,他引:2
利用嗜热微生物处理高温排放废水是一项很有前任的废水处理技术,文章对嗜热微生物好氧处理废水及厌氧处理废水的发展进程和研究现状做了综述,例举了嗜热微生物在废水处理中的应用,并论证了一定工艺条件下高温废水处理的可行性和优越性;最后对嗜热微生物在废水处理中的应用前景作了展望。 相似文献
34.
35.
Granulation of filamentous microorganisms in a sequencing batch reactor
with saline wastewater 总被引:1,自引:0,他引:1
Proliferation of filamentous microorganisms frequently leads to operational failure for activate sludge systems. In this study, it was found that filamentous microorganisms could grow in compact granular structure with 5% sodium chloride in the substrate. In the early period of experiment, coccoid and rode-like bacteria predominated in the yellowish-brown granules, and later the white and the black granules were developed by filamentous microorganisms. The filamentous granules exhibited low porosity and fas... 相似文献
36.
Prodigiosin is a reddish antibiotic pigment that plays an important role in the biocontrol of plant diseases by the bacterium
Serratia marcescens. However, its activity is unstable under agricultural conditions; further, it can be degraded by various environmental factors.
To examine the effect of epiphytic microbes on the stability of prodigiosin used for biological control processes, we collected
a total of 1,280 bacterial isolates from the phylloplane of cyclamen and tomato plants. Approximately 72% of the bacterial
strains isolated from the cyclamen plants and 66% of those isolated from the tomato plants grew on minimal agar medium containing
100 μg ml−1 prodigiosin. Certain isolates obtained from both plant species exhibited prodigiosin-degrading activity. We compared the
16S rRNA gene sequences derived from the isolates with sequences in a database. The comparison revealed that the sequences
determined for the prodigiosin-degrading isolates were homologous to those of the genera Pseudomonas, Caulobacter, Rhizobium, Sphingomonas, Janthinobacterium, Novosphingobium, and Rathayibacter. These results indicate that indigenous epiphytic microorganisms may interfere with the interaction between plant pathogens
and biocontrol agents by degrading the antibiotics produced by the agents. 相似文献
37.
采用机械破碎方式灭活活性污泥中高等微生物,并通过测定破碎前后泥样耗氧速率(OUR)之差别间接计算高等微生物的活性作用.实验结果表明,以分散机破碎活性污泥,高等微生物均可被有效地破碎灭活,且再培养138h后不再恢复.与此同时,对酵母菌破碎实验显示,机械破碎并未对其数量、形态以及活性产生太大影响,这表明机械破碎亦不会对个体尺寸比酵母菌更小的细菌构成任何影响.为使破碎前后活性污泥絮凝体形态基本一致,将破碎后的泥样经离心处理,以尽可能使絮凝体恢复如初(以SVI衡量).通过比较破碎前后泥样的OUR并计算可知,高等微生物活性相对于活性污泥总活性约占12%~14%. 相似文献
38.
空气中微生物附着在雾霾颗粒物上,随呼吸进入人体危害健康,是多种疾病的致病因素,故而快速准确的监测出区域空气微生物的数量,对于后续采取防控措施具有积极意义.在国家没有出台相关监测技术标准的情况下,通过设置不同采样时间、培养时间,获取了不同实验条件下的监测结果,分析不同组别数据结果的差异性,得出细菌采样时间3~5 min,培养48h比较合适,霉菌采样时间3 min,培养72h即可的实验结论.这样既保证了采集到绝大部分微生物,同时能够尽快的得到空气中微生物菌落数量,对相关监测方法的进一步研究具有参考价值. 相似文献
39.
板式生物滴滤塔高效净化硫化氢废气的研究 总被引:7,自引:5,他引:2
采用营养液分层喷淋、pH分别在线控制(pH 2.5、 4.5、 6.5)的板式生物滴滤塔(plate type-biotrickling filter, PTBTF)净化H2S废气,考察PTBTF于挂膜启动及稳定运行阶段对H2S的降解性能.结果表明,PTBTF系统在14 d内即完成挂膜,对浓度为188.6mg·m-3的H2S去除率达到100%;在进口浓度100~1000mg·m-3、空床停留时间(EBRT)28~4 s的条件下,H2S的去除率可达到99%以上;当H2S去除率≥90%时, PTBTF系统的最大去除负荷随EBRT(3.3~6 s)的增加而增大,EBRT 6 s的最大去除负荷达到1019.0g·(m3·h)-1;上、中、下3层填料对H2S的去除负荷随进口H2S负荷的波动呈显著变化;通过荧光染色观察填料上的细胞数,发现在挂膜阶段微生物数量增长明显,第125 d上层、中层和下层填料上的菌落数(以干填料计)分别达到了1.29×107、 5.47×108和1.07×109个·g-1;采用扫描电镜观察填料表面的生物膜,可见上填料层和下填料层的优势菌分别为杆菌和丝状菌;利用变性梯度凝胶电泳初步揭示了系统运行过程中生物群落的演替规律;通过对产物的分析,确定该PTBTF系统降解H2S后主要产生SO2-4和单质硫. 相似文献
40.