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21.
方治国 《环境科学》2010,31(4):1059-1065
以高温厌氧细菌热纤维梭菌(Clostridium thermocellum LQRI)和嗜热厌氧乙醇菌(Thermoanaerobacter ethanolicus X514和Thermoanaerobacter pseudoethanolicus39E)为对象,以纤维素为微生物利用的底物,分析了LQRI纯培养和LQRI+Thermoanaerobacter混合培养对纤维素降解、酒精生产及终产物分布的影响.结果表明,LQRI+Thermoanaerobacter混合培养的酒精生产能力和纤维素降解率明显高于LQRI纯培养.在混合培养体系中,LQRI+X514的酒精生产能力明显高于LQRI+39E.培养基中无外源酵母粉条件下,LQRI纯培养酒精最高浓度约为11.5mmol/L,LQRI+X514和LQRI+39E混合培养最高酒精浓度分别约为71mmol/L和36.5mmol/L,相同的底物纤维素浓度条件LQRI+X514和LQRI+39E混合培养酒精浓度分别约为LQRI纯培养的5~11倍和3~5倍,纤维素降解率分别都约为LQRI纯培养的1.5~5.0倍;培养基中0.6%外源酵母粉存在条件下,LQRI纯培养酒精最高浓度约为12.9mmol/L,LQRI+X514和LQRI+39E混合培养最高酒精浓度分别约为263.5mmol/L和143.5mmol/L,相同的底物纤维素浓度条件LQRI+X514和LQRI+39E混合培养酒精浓度分别约为LQRI纯培养的8~22倍和8~12倍,纤维素降解率均约为LQRI纯培养的1.1倍.在5%Solka Floc为底物和0.6%外源酵母粉的条件下,LQRI+X514混合培养酒精浓度最高可达到263.5mmol/L,相当于1.2%(质量浓度)的酒精,LQRI+39E约为143mmol/L.  相似文献   
22.
高温生物滤塔处理污泥干化尾气的研究   总被引:1,自引:1,他引:0  
利用高温生物滤塔处理污泥干化产生的尾气,气体处理量为2 700~3 100 m~3·h~(-1),停留时间为21.88~25.10 s,研究启动期和稳定运行的运行效果.生物滤塔能有效去除干化尾气中的SO_2、氨以及挥发性有机物,去除率分别达到100%、93.61%以及87.01%.微生物分析结果显示,生物滤塔内形成稳定的生物系统,填料和溶液中生长一定量的细菌和硫细菌.主要功能种群包括类芽孢杆菌Paenibacillus sp.,螯台球菌Chelatococcus sp.,芽孢杆菌Bacillus sp.,梭菌Clostridium thermosuccinogerws,假黄单胞菌Pseudoxanthomonas sp.,地芽孢杆菌Geobacillus debilis.大部分为脱氮、脱硫或者降解挥发性有机物的嗜热菌.  相似文献   
23.
由于硫酸盐还原的影响,普通高温UASB反应器处理亚硫酸盐纸浆厂排出的高硫酸盐难降解废水过程中甲烷菌活性受到了严重抑制.考虑到空气对硫化氢的吹脱和对硫化物的氧化作用可能减轻硫化物对甲烷菌的抑制,本研究在厌氧反应器中引入限量曝气措施.试验结果表明,反应器的运行稳定性和处理能力均得到大幅提高.在有机负荷提高到原来2倍的情况下,曝气后COD去除率仍有提高,从40%~50%提高到60%~70%.试验证明部分甲烷菌可以耐氧,而某些种类的水解酸化细菌则对不完全厌氧环境比较敏感.  相似文献   
24.
汽爆秸秆高温固态发酵沼气的研究   总被引:4,自引:1,他引:3  
沼气液态深层发酵及秸秆的物理、化学和生物预处理方式存在效率低、污染重等问题。为了解决这些问题,对蒸汽爆破预处理方式以及固态发酵在玉米秸秆沼气化中的应用进行了研究。秸秆经过蒸汽爆破预处理后,在50℃的高温条件下进行固态发酵沼气,甲烷产量达到138.2 mL/g TS。通过单因素实验优化,确定最佳发酵条件为:固液比1∶7,初始pH值7.5,接种量35%,NH4HCO3添加量0.04 g/g干汽爆秸秆,纤维素酶用量30 IU/g干汽爆秸秆,发酵温度50℃。在上述实验条件下,汽爆秸秆的甲烷产量提高至153.0 mL/g TS,是未汽爆秸秆的2.9倍。发酵后秸秆纤维素和半纤维素的降解率分别为59.86%和67.22%。因此,蒸汽爆破预处理有助于提高秸秆的产气量和降解率。高温固态发酵不仅可以缩短发酵延迟期,提高产气效率,而且发酵结束后不会产生大量废液,对环境友好。  相似文献   
25.
Aerobic thermophilic bacteria enhance biogas production   总被引:6,自引:0,他引:6  
The enhancing effect of aerobic thermophilic (AT) bacteria on the production of biogas from anaerobically digested sewage sludge (methanogenic sludge) was investigated. Sewage sludge (5%, w/w) was incubated at 65°C with shaking for a few months to prepare the AT seed sludge. AT sludge was prepared by incubation of the AT seed sludge (5%, v/v) and sewage sludge (5%, w/w) at 65°C with shaking. The addition of this AT sludge (1.2% ± 0.5% of total volatile solids) to methanogenic sludge enhanced the production of biogas. The optimum volume of the addition and the pretreatment temperature of the AT sludge for optimum biogas production were 5% (v/v) and 65°C. Batch-fed anaerobic digestion was covered with the addition of various AT sludges. The AT sludge prepared with the AT seed sludge improved the biogas production by 2.2 times relative to that from the sewage sludge addition. The addition of sludge without AT seed sludge weakly enhanced biogas production. An aerobic thermophilic bacterium (strain AT1) was isolated from the AT seed sludge. Strain AT1 grew well in a synthetic medium. The production of biogas from the anaerobic digestion of sewage sludge was improved by the addition of 5% (v/v) AT1 bacterial culture compared with that from the sewage sludge addition. The addition of AT1 culture reduced the volatile solids by 21%, which was higher than the 12.6% achieved with the sewage sludge addition. The AT1 bacterial culture enhanced the biogas production more than the AT seed sludge. The phylogenetic analysis of the 16S rRNA gene revealed that strain AT1 is closely related to Geobacillus thermodenitrificans (100% sequence similarity). The improvement in the production of biogas with the AT sludge could be caused by thermophilic bacterial activity in the AT sludge.  相似文献   
26.
To use the selective inhibition method for quantitative analysis of acetate metabolism in methanogenic systems,the responses of microbial communities and metabolic activities,which were involved in anaerobic degradation of acetate,to the addition of methyl fluoride(CH3F),2-bromoethanesulfonate(BES)and hydrogen were investigated in a thermophilic batch experiment.Both the methanogenic inhibitors,i.e.,CH3F and BES,showed their effectiveness on inhibiting CH4 production,whereas acetate metabolism other than acetoclastic methanogenesis was stimulated by BES,as reflected by the fluctuated acetate concentration.Syntrophic acetate oxidation was thermodynamically blocked by hydrogen(H2),while H2-utilizing reactions as hydrogenotrophic methanogenesis and homoacetogenesis were correspondingly promoted.Results of PCR-DGGE fingerprinting showed that,CH3F did not influence the microbial populations significantly.However,the BES and hydrogen notably altered the bacterial community structures and increased the diversity.BES gradually changed the methanogenic community structure by affecting the existence of different populations to different levels,whilst H2 greatly changed the abundance of different methanogenic populations,and induced growth of new species.  相似文献   
27.
A two-stage process has been developed for stabilization of sludge and removal of heavy metals from the secondary activated sludge with high rate of energy and time conservation.The first stage of the process involves autoheated thermophilic aerobic digestion at 55-60°C inoculated with less-acidophilic thermophilic sulfur-oxidizing microorganisms(ATAD).The results show that it is possible to maintain the autoheated conditions(55-60°C) in the ATAD reactor up to 24 hr,leading to reduction of 21% total solids(TS),27% volatile solids(VS),27% suspended solids(SS) and 33% volatile suspended solids(VSS) from the sludge.The sludge pH also decreased from 7 to 4.6 due to the activity of less-acidophilic thermophilic microorganisms.In the second stage operation,the digested sludge(pH 4.6,TS 31.6 g/L) from stage one was subjected to bioleaching in a continuous stirred tank reactor,operated at mean hydraulic retention times(HRTs) of 12,24 and 36 hr at 30°C.An HRT of 24 hr was found to be sufficient for removal of 70% Cu,70% Mn,75% Ni,and 80% Zn from the sludge.In all,39% VSS,76% Cu,78.2% Mn,79.5% Ni and 84.2% Zn were removed from the sludge in both the stages.  相似文献   
28.
刘清坤  王君  李国强  马挺  梁凤来  刘如林 《环境科学》2008,29(12):3554-3560
从油田地层水中分离到1株嗜热解烃菌(地芽孢杆菌DM-2),通过研究该菌株在不同条件下降解原油的性能以及在最适条件下降解烃的特性发现:地芽孢杆菌DM-2可在45~70℃、pH 4.0~10.0、 0.2%~3.0%的盐离子浓度缺氧条件下降解原油烃类,其降解原油烃的最适温度和pH值分别为60℃和7.0.在此条件下,该菌可乳化液体石蜡作为碳源进行生长;气相色谱和红外光谱进一步分析表明,其能降解原油中的C14~C30的直链烷烃、支链烷烃和芳香烃类,并能降解C16~C36的长链单烷烃,其中对C28的降解量最高,达88.95%.DM-2菌株代谢烷烃的产物之一为脂肪酸,经液相色谱和质谱分析代谢十六烷产生的脂肪酸为乙酸,5 d产量达0.312 g/L,说明其采用次末端氧化途径氧化烷烃,之后进入β-氧化途径代谢.DM-2菌株在高温缺氧的极端环境下对烃的乳化、降解和产酸特性使其在高温石油污水的生物处理和开采重质原油方面具有潜在的应用价值.  相似文献   
29.
Two dry anaerobic digestions of organic solid wastes were conducted for 6 weeks in a lab-scale batch experiment for investigating the start-up performances under mesophilic and thermophilic conditions. The enzymatic activities, i.e., β-glucosidase, N-α-benzoyl-Largininamide (BAA)-hydrolysing protease, urease and phosphatase activities were analysed. The BAA-hydrolysing protease activity during the first 2-3 weeks was low with low pH, but was enhanced later with the pH increase. β-Glucosidase activity showed the lowest values in weeks 1-2, and recovered with the increase of BAA-hydrolysing protease activity. Acetic acid dominated most of the total VFAs in thermophilic digestion, while propionate and butyrate dominated in mesophilic digestion. Thermophilic digestion was confirmed more feasible for achieving better performance against misbalance, especially during the start-up period in a dry anaerobic digestion process.  相似文献   
30.
周俊  郑伟  李小明  杨麒  陈伟  罗琨 《环境科学学报》2011,31(8):1691-1698
利用从土壤中采集分离出来的嗜热菌进行嗜热酶溶解(S-TE)污泥稳定化处理,同时添加4种金属离子(K+、Ca2+、Mg2+、Fe2+),考察各金属离子对剩余污泥水解效果的影响.实验结果表明,在一定浓度范围内,4种金属离子都能强化污泥酶促反应,反应5h左右时蛋白酶和淀粉酶活力达到最大值.反应过程中,200μmol·L-1K...  相似文献   
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