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991.
2,2',4,4'-四溴联苯醚的好氧微生物降解 总被引:1,自引:0,他引:1
从北京高碑店污水处理厂活性污泥中筛选出1株能好氧降解2,2’,4,4’-四溴联苯醚(BDE-47)的细菌,并对其降解特性及有关蛋白质进行分析,目的是了解好氧条件下BDE-47的微生物降解机制.BDE-47降解菌通过平板划线法获得,其16S rDNA与不动杆菌(Acintobacter sp.)的相似度最大,为90%.采用250 mL锥形瓶研究了所得菌对BDE-47的降解情况,在BDE-47初试浓度为146μg.L-1的条件下,经过63 d的培养,所得菌降解了45.44%的BDE-47,降解产物主要为4-OH-联苯醚,菌量增加了7倍左右.分别以BDE-47和酵母提取物为碳源培养所得菌2周,然后各自提取蛋白质,通过蛋白质双向电泳及质谱检测,发现了与BDE-47降解有关的一些特异蛋白质.本研究表明,在好氧条件下,细菌可以BDE-47为碳源生长,其过程涉及多种蛋白质的作用. 相似文献
992.
黄土丘陵区不同坡向对土壤微生物生物量和可溶性有机碳的影响 总被引:15,自引:2,他引:13
选取黄土高原丘陵沟壑区延河流域两个典型植被区(森林植被区、草原植被区)下相同植被不同坡向(阳坡、阴坡)的土样进行分析,研究了不同坡向土壤微生物生物量碳(SMBC)、微生物生物量氮(SMBN)、微生物生物量磷(SMBP)和可溶性有机碳(DOC)的含量及其相互关系.结果表明,森林植被区阳坡、阴坡0~10 cm土层SMBC分别为532.1~792.5 mg·kg-1、333.6~469.8 mg·kg-1,SMBN分别为53.66~87.31 mg·kg-1、47.58~61.38 mg·kg-1,两者均表现为阳坡高于阴坡,草原植被区SMBC分别为68.90~75.34 mg·kg-1、65.29~128.67 mg·kg-1,SMBN分别为13.94~18.61 mg·kg-1、13.00~20.10mg·kg-1,两者均表现为阴坡高于阳坡;两个植被区SMBP与SMBC、SMBN变化不一致;SMBC占SMBC与DOC之和(SMBC+DOC)的比例在森林植被区阳坡最高,达77.74%,在草原植被区按阴坡到阳坡、0~10 cm土层到10~30 cm土层的顺序依次递减.相同植被区不同坡向土壤水分、温度的差异对土壤微生物生物量产生重要影响,进而使SMBC占SMBC+DOC的比例不同,SMBC+DOC比SMBC更能反映土壤碳素有效性,森林植被区阴坡阳坡0~10 cm土层土壤微生物群落结构可能已发生明显改变. 相似文献
993.
It is very important to identify the dominant precursors for N-nitrosamine formation from bulk organic matter, to enhance the understanding of N-nitrosamine formation pathways in water treatment plants and allow the development of practical treatment technologies. In this study, dissolved organic matter (DOM) from two source waters was fractionated with XAD resins and ultra- filtration membranes. The N-nitrosamine formation potential (FP) (ng of N-nitrosamines formed per mg of dissolved organic carbon (DOC)) from raw water and each fraction were measured and correlated with the fluorescence excitation-emission matrix (EEM), molecular weight (MW) and other assays. The results showed that the hydrophilic fraction had N-nitrosamine FP 1.3 to 3.5 times higher than the hydrophobic fraction from both source waters. The DOM fraction with low MW was the dominant fraction in these two source waters and contributed more precursors for N-nitrosamine formation than the larger MW fraction. The EEM spectra indicated there were notable amounts of soluble microbial products (SMPs) and aromatic proteins in the two studied rivers, which probably originated from wastewater discharge. The SMPs tended to be more closely correlated with N-nitrosodimethylamine formation potential than the other DOM components. Higher N-nitrosamine FP were also related to fractions with lower DOC/DON ratios and lower SUVA 254 values. 相似文献
994.
Aerobic granules, pre-cultivated at the organic loading rate (OLR) of 3.0 kg COD/(m3 ·day), were used to treat low-strength wastewater in two sequencing batch reactors at low OLRs of 1.2 and 0.6 kg COD/(m3 ·day), respectively. Reactor performance, evolution of granule morphology, structure and microbial community at low OLRs under long-term operation (130 days) were investigated. Results showed that low OLRs did not cause significant damage to granule structure as a dominant granule morphology with size over 540 μm was maintained throughout the operation. Aerobic granules at sizes of about 750 μm were finally obtained at the low OLRs. The granule reactors operated at low OLRs demonstrated effective COD and ammonia removals (above 90%), smaller granule sizes and less biomass. The contents of extracellular polymeric substances in the granules were decreased while the ratios of exopolysaccharide/exoprotein were increased (above 1.0). The granules cultivated at the low OLRs showed a smoother surface and more compact structure than the seeded granules. A significant shift in microbial community was observed but the microbial diversity remained relatively stable. Confocal Laser Scanning Microscopy observation showed that the live cells were spread throughout the whole granule, while the dead cells were mainly concentrated in the outer layer of the granule, and the proteins, polysaccharides and lipids were mainly located in the central regime of the granule. In conclusion, granules cultivated at high OLRs show potential for treating low-strength organic wastewater steadily under long-term operation. 相似文献
995.
Three identical sequencing batch reactors (SBRs) were operated to investigate the effects of various idle times on the biological phosphorus (P) removal. The idle times were set to 3 hr (R1), 10 hr (R2) and 17 hr (R3). The results showed that the idle time of a SBR had potential impact on biological phosphorus removal, especially when the influent phosphorus concentration increased. The phosphorus removal efficiencies of the R2 and R3 systems declined dramatically compared with the stable R1 system, and the Prelease and P-uptake rates of the R3 system in particular decreased dramatically. The PCR-DGGE analysis showed that uncultured Pseudomonas sp. (GQ183242.1) and β-Proteobacteria (AY823971) were the dominant phosphorus removal bacteria for the R1 and R2 systems, while uncultured γ-Proteobacteria were the dominant phosphorus removal bacteria for the R3 system. Glycogen-accumulating organisms (GAOs), such as uncultured Sphingomonas sp. (AM889077), were found in the R2 and R3 systems. Overall, the R1 system was the most stable and exhibited the best phosphorus removal efficiency. It was found that although the idle time can be prolonged to allow the formation of intracellular polymers when the phosphorus concentration of the influent is low, systems with a long idle time can become unstable when the influent phosphorus concentration is increased. 相似文献
996.
997.
关于红外光度法测定水中油类的讨论 总被引:1,自引:0,他引:1
结合实际工作经验,对红外光度法测定石油类和动植物油(GB/T16488-1996)所规定的仪器、试剂等进行了进一步的探讨,并提出操作建议。 相似文献
998.
Composite Biofilms grown in Acidic Mining Lakes and assessed by Electron Microscopy and Molecular Techniques 总被引:1,自引:0,他引:1
Heinrich Lünsdorf Dirk F. Wenderoth Wolf-Rainer Abraham 《Water, Air, & Soil Pollution: Focus》2002,2(3):69-79
Microbial consortia of composite biofilms, grown in surface water of acidicmining lakes near Lauchhammer, Germany, were investigated. The red-brown colored lake water was acidic (pH 2.5), had high concentrations of Fe(III), Al(III), and sulphate and low concentrations of dissolved organic matter. As a result the abundance of bacteria in the lake is with 104 cells mL-1 rather low. One input of organic material into the lake are autumnal leaves from trees, growing in the lakeside area. From aliquots of unfixed birch leave biofilms the 16S rRNA genes were amplified by PCR and community fingerprints were determined by single-strand conformation polymorphism (SSCP) analysis. Specific bands within the fingerprints were extracted from SSCP gels and sequenced for the taxonomical affiliation.These results were compared with those from the second type of biofilms which were grown on sterile substrata, floating submersed in surface waters of the lakes. By excising the bands from the gel and sequencing the individual bands bacterial taxa, common to both types of biofilms, were found but also some, which were only present in one type of biofilm. Ultrathin sectioned biofilms often showed bacteria associated with electron dense particles as main inorganic constituents. Elemental microanalysis by energy dispersive X-ray analysis (EDX) revealed them to contain iron, sulfur and oxygen as main elemental fractions and electron diffraction ring pattern analysis classified them to be schwertmannite. These bacteria and their interactions with each other as well as with the inorganic minerals formed in this lake generally is of great interest, in order to use these results for bioremediation applications. 相似文献
999.
土壤微生物的C、N、P养分需求和代谢限制与环境养分的有效性有着密切关系.然而,有机无机肥配施如何影响苹果园土壤微生物C、N、P代谢限制亟待进一步研究.因此,基于2008年建立的苹果园长期定位试验,应用土壤酶化学计量学理论与方法,系统研究有机无机肥配施对土壤C、N和P周转相关的酶活性(β-1,4-葡萄糖苷酶,BG;β-1,4-N-乙酰基氨基葡萄糖苷酶,NAG;L-亮氨酸氨基肽酶,LAP;碱性磷酸酶,PHOS)及其化学计量特征的影响,并分析其与环境因子和微生物碳利用率之间的关系.试验共设4个处理,分别为不施肥(CK)、单施氮磷钾化肥(NPK)、单施有机肥(M)和化肥配施有机肥(MNPK).结果表明:①在果树各生育期,施用有机肥处理(MNPK和M)的微生物量碳(microC)含量显著高于不施有机肥处理(CK和NPK);微生物量氮(microN)含量,在萌芽期NPK、MNPK和M处理比CK处理分别增加了89%、269%和213%(P<0.05).②CK处理在萌芽期有较高的叶片ω(N)和ω(P)(29.8 g ·kg-1和2.17 g ·kg-1),并且仅果树萌芽期的叶片P含量与土壤有效磷(AP)含量呈显著负相关.③土壤酶化学计量分析的所有数据点均在1 :1线以上,表现为微生物群落存在较强的P限制;果树生长期,矢量长度和角度的变化范围分别为0.56~0.79和59.3°~67.7°,且研究中矢量角度均>45°,也体现了微生物存在较强的磷限制.④RDA和随机森林模型分析结果表明,有机碳和速效氮(AN)是影响矢量长度的主要理化因子,AP、AN和土壤含水量是影响矢量角度的主要理化因子;SEM分析表明,AN和可溶性有机碳(DOC)直接影响microC和microN,AP直接影响microP和microN,DOC和AP直接影响矢量长度,AP和microN直接影响矢量角度;微生物碳利用率与矢量长度呈显著正相关,与矢量角度呈显著负相关.综上所述,有机无机肥配施通过影响果树不同生育期土壤碳和磷含量,调控微生物碳、磷代谢进而影响微生物碳利用率,为有机无机肥配施提升土壤质量、维持土壤健康提供科学依据. 相似文献
1000.
设置对照(CK)、摩西球囊霉菌(GM)、摩西球囊霉菌+柠檬酸(GM+CA)、摩西球囊霉菌+巨大芽孢杆菌(GM+BM)和摩西球囊霉菌+巨大芽孢杆菌+柠檬酸(GM+BM+CA)这5个处理,通过测定土壤全Cd、有效Cd和植株Cd吸收量及微生物群落变化,分析了外源菌剂和柠檬酸添加对龙葵修复Cd污染效果的影响.结果表明,相对于CK处理,GM处理龙葵根、茎和叶生物量显著增加35.67%、41.35%和65.38%,GM+BM+CA处理龙葵根和茎生物量显著增加73.38%和75.38%.GM处理提高了龙葵各部位Cd含量但差异不显著,GM+BM+CA处理龙葵叶部的Cd含量显著提高79.34%.GM处理龙葵茎和叶Cd累积量显著提高47.51%和89.58%.GM+BM+CA处理龙葵叶部Cd累积量显著提高226.84%.GM+BM+CA处理显著增加了Cd由龙葵茎向叶的转运系数,增幅为52.47%.GM+BM+CA处理显著增加了叶的富集系数,增幅为120.53%.此外,联合修复对根际微生物群落结构也产生了影响,特别体现在诱导某些关键微生物类群,如变形菌门、放线菌门、球囊菌门和油壶菌门相对丰度增加2.00%~5.77%、0.76%~9.96%、2.11%~3.63%和0.54%~2.98%.RDA分析发现变形菌门和放线菌门与土壤全Cd呈显著负相关,球囊菌门和油壶菌门与土壤全Cd呈负相关.关键微生物的变化增强了龙葵吸收根际养分和抗Cd胁迫的能力,提高龙葵Cd累积能力,有效降低土壤全Cd含量.综上,摩西球囊霉菌、柠檬酸与巨大芽孢杆菌通过共接种的方式活化了土壤中的难溶态Cd,有助于龙葵富集更多的Cd,同时也与摩西球囊霉菌产生联合修复的效果.富集植物-微生物联合修复Cd污染土壤有较好的应用潜力. 相似文献