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131.
三八河河口潮滩有机碳、油类、硫化物及微生物分布特征 总被引:1,自引:0,他引:1
为了评价烟台市牟平区三八河河口潮滩中主要污染物的分布及土著微生物的修复潜力,研究了潮滩沉积物中w(TOC),w(油类),w(硫化物)和微生物的水平及垂直分布规律. 利用单因子污染指数法对污染状况进行了分析. 结果表明:各因子污染指数由大到小为有机碳(TOC)>硫化物>油类,河口区域w(TOC),w(油类)和w(硫化物)明显高于对照点,越靠近河口表层(0~≤20 cm)沉积物污染越重,说明潮滩污染主要由河流排污引起. 垂直深度上污染物主要集中在亚表层(5~≤20 cm),0~≤50 cm深度范围内w(TOC),w(油类)和w(硫化物)随深度的增加呈先增大后减小的趋势. 微生物分布规律显示,外源有机物的输入可提高沉积物中异养菌总数和呼吸强度,潮滩微生物可通过呼吸过程实现有机碳的矿化和输出,具有一定的修复潜力. 相似文献
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Anaerobic ammonium oxidation (ANAMMOX) technology has potential technical superiority and economical efficiency for the nitrogen removal from landfill leachate, which contains high-strength ammonium nitrogen (NH4 -N) and refractory organics. To complete the ANAMMOX process, a preceding partial nitritation step to produce the appropriate ratio of nitrite/ammonium is a key stage. The objective of this study was to determine the optimal conditions to acquire constant partial nitritation for landfill leachate treatment, and a bench scale fixed bed bio-film reactor was used in this study to investigate the effects of the running factors on the partial nitritation. The results showed that both the dissolved oxygen (DO) concentration and the ammonium volumetric loading rate (Nv) had effects on the partial nitritation. In the controlling conditions with a temperature of 30±1℃, Nv of 0.2-1.0 kg NH4 -N/(m3d), and DO concentration of 0.8-2.3 mg/L, the steady partial nitritation was achieved as follows: more than 94% partial nitritation efficiency (nitrite as the main product), 60%-74% NH4 -N removal efficiency, and NO2--N/NH4 -N ratio (concentration ratio) of 1.0-1.4 in the effluent. The impact of temperature was related to iVv at certain DO concentration, and the temperature range of 25-30癈 was suitable for treating high strength ammonium leachate. Ammonium-oxidizing bacteria could be acclimated to higher FA (free ammonium) in the range of 122-224 mg/L. According to the denaturing gradient gel electrophoresis analysis result of the bio-film in the reactor, there were 25 kinds of 16S rRNA gene fragments, which indicated that abundant microbial communities existed in the bio-film, although high concentrations of ammonium and FA may inhibit the growth of the nitrite-oxidizing bacteria and other microorganisms in the reactor. 相似文献
135.
LIU Ting-feng SUN Cheng TA N HONG Jun YANG Shao-gui CHEN Chuan-xiang 《环境科学学报(英文版)》2007,19(10):1235-1238
The influence of coexisting copper (Cu) ion on the degradation of pesticides pyrethroid cypermethrin and cyhalothrin in soil and photodegradation in water system were studied.Serial concentrations of the pesticides with the addition of copper ion were spiked in the soil and incubated for a regular period of time,the analysis of the extracts from the soil was carried out using gas chromatography (GC).The photodegradation of pyrethroids in water system was conducted under UV irradiation.The effect of Cu~(2 ) on the pesticides degradation was measured with half life (t_(0.5)) of degradation.It was found that a negative correlation between the degradation of the pyrethroid pesticides in soil and Cu addition was observed.But Cu~(2 ) could accelerate photodegradation of the pyrethroids in water.The t_(0.5) for cyhalothrin extended from 6.7 to 6.8 d while for cypermethrin extended from 8.1 to 10.9 d with the presence of copper ion in soil.As for photodegradation,t_(0.5) for cyhalothrin reduced from 173.3 to 115.5 rain and for cypermethrin from 115.5 to 99.0 min.The results suggested that copper influenced the degradation of the pesticides in soil by affecting the activity of microorganisms.However, it had catalyst tendency for photodegradation in water system.The difference for the degradation efficiency of pyrethroid isomers in soil was also observed.Copper could obviously accelerate the degradation of some special isomers. 相似文献
136.
CAI Peng HUANG Qiao-yun LU Yan-du CHEN Wen-li JIANG Dai-hu LIANG Wei 《环境科学学报(英文版)》2007,19(11):1326-1329
Polymerase chain reaction(PCR)was used to amplify a 600-base pair(bp)sequence of plasmid pGEX-2T DNA bound on soil colloidal particles from Brown soil(Alfisol)and Red soil(Ultisol),and three different minerals(goethite,kaolinite,montmorillonite). DNA bound on soil colloids,kaolinite,and montmorillonite was not amplified when the complexes were used directly but amplification occurred when the soil colloid or kaolinite-DNA complex was diluted,10- and 20-fold.The montmorillonite-DNA complex required at least 100-fold dilution before amplification could be detected.DNA bound on goethile was amplified irrespective of whether the complex was used directly,or diluted 10- and 20-fold.The amplification of mineral-bound plasmid DNA by PCR is,therefore,markedly influenced by the type and concentration of minerals used.This information is of fundamental importance to soil molecular microbial ecology with particular reference to monitoring the fate of genetically engineered microorganisms and their recombinant DNA in soil environments. 相似文献
137.
天然红树林土壤微生物大片段宏基因组文库的构建 总被引:2,自引:0,他引:2
采用改良及优化后的原位裂解法提取红树林土壤环境DNA,通过脉冲场电泳图谱显示所得DNA片段主要集中于23~50 kbp范围, 表明大片段DNA在总DNA中的比率明显提高; 对改良后的原位裂解提取法与不同DNA纯化方法的组合进行比较分析, 确定电洗脱为最佳纯化方法; 运用改良后的原位裂解提取法与电洗脱纯化法联用实验方案,构建了4个季节天然红树林土壤Cosmid宏基因组文库. 随机挑取克隆子,提取质粒后经BamHI酶切验证, 平均插入片段均大于35 kbp,且片段类型各不相同, 推测该文库至少包含了335 Mbp潮间带微生物基因组信息. 该方法的建立使得开发红树林湿地生态系统的特色微生物资源成为可能, 并为探索其它生境的未培养微生物资源提供借鉴. 相似文献
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为探明亚致死剂量农药对土壤微生物多样性影响,基于大田控制试验,采用Biolog-ECO微平板技术分析喷施亚致死剂量的莠去津对野生植物群落下土壤微生物群落功能多样性的影响.结果表明:① 莠去津的喷施浓度对土壤微生物群落利用全部碳源的能力无显著影响(P>0.05),但与喷施处理后第30天相比,处理后第60天的土壤微生物群落利用全部碳源的能力有所降低,其中处理Ⅰ〔喷施浓度(以质量浓度计)为1 200 g/hm2〕、处理Ⅲ(喷施浓度为300 g/hm2)显著下降(P < 0.05),而CK(对照组)、处理Ⅱ(喷施浓度为600 g/hm2)降低程度不显著(P>0.05),并且其各处理间土壤微生物群落对全部碳源的利用能力大小为CK >处理Ⅲ >处理Ⅱ >处理Ⅰ.② 喷施处理后第30天土壤微生物群落对碳水化合物类碳源的利用能力最强,对羧酸类碳源的利用能力相对较弱;喷施处理后第60天土壤微生物群落对碳水化合物类碳源的利用能力降幅最大,处理Ⅰ、处理Ⅱ、处理Ⅲ分别下降了0.63、0.78、0.85、0.76.③ 喷施除草剂后第30天处理Ⅱ的Shannon-Wiener指数和Simpson指数显著低于其他处理(P < 0.05),而第60天各处理间多样性指数无显著差异;与喷施处理后第30天相比,第60天各处理多样性指数都有所下降,但没有显著差异(P>0.05).④ 对土壤微生物群落碳源利用能力进行主成分分析结果显示,提取的与土壤微生物碳源利用相关的主成分累积贡献率为86.6%,主成分1能够区分喷施处理后两个时期的土壤微生物群落特征.⑤ 冗余分析(RDA)表明,pH是土壤微生物利用碳源能力差异的重要影响因素之一.研究显示,除草剂莠去津的施用可在一定程度上降低野生植物群落下土壤微生物群落功能多样性. 相似文献
140.
文章着重对新型生物脱氮工艺-CANON工艺中微生物学方面的研究进行了综述;论述了生物膜内可能发生的硝化、亚硝化、氨氧化等反应的原因及其相应的生物化学反应机理,继而指出生物膜内可能存在的几种微生物及其自身的物质与能量代谢途径;阐述了CANON工艺的微生物学工作原理,分析了工艺模型中各类功能微生物间的相互作用关系、生化反应机理和对处理效率的贡献.本文为该新型生物脱氮技术的实践应用打下了理论基础. 相似文献