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211.
The microbial fuel cell (MFC) was employed to convert reductive potential in sulfate-laden wastewaters to electricity via reducing sulfate to sulfide by sulfate-reducing bacteria and then oxidizing sulfide to sulfur by exoelectrogens. The excess sulfide presented in the anodic solution inhibited the activities of functional strains in MFC. This study proposed the use of a two-anode system, with a sulfate-reducing bacteria anode and an exoelectrogen (C27) anode in the anodic cell, to efficiently convert reductive potential of sulfate into electricity. The microbial community of sulfate-reducing bacteria anode and the electrochemical characteristics of the studied MFCs were reported.  相似文献   
212.
<正>Delivery of safe and pathogen-free drinking water is crucial to public health.However,there exist challenges to the maintenance of the sterility of drinking water throughout the drinking water distribution systems(DWDS).Microbial growth in DWDS,such as growth of opportunistic pathogenic microorganisms,can lead to severe health problems in consumers(Berry et al.,2006;Brettar and Hofle,2006;Lu et al.,2014;Zhang et al.,2015).  相似文献   
213.
In order to evaluate the influence of microbial community structure of seed sludge on the properties of aerobic nitrifying granules, these granules were cultivated with different seed sludge, and the variation of microbial community and dominant bacterial groups that impact the nitrogen removal efficiency of the aerobic nitrifying granules were analyzed and identified using 16s rDNA sequence and denaturing gradient gel electrophoresis (DGGE) profiles. The results presented here demonstrated that the influence of the community structure of seed sludge on the properties of aerobic nitrifying granules was remarkable, and the granules cultivated by activated sludge from a beer wastewater treatment plant showed better performance, with a stable sludge volume index (SVI) value of 20 mL/g, high extracellular polymeric substance (EPS) content of 183.3 mg/L, high NH4+-N removal rate of 89.42% and abundant microbial population with 10 dominant bacterial groups. This indicated that activated sludge with abundant communities is suitable for use as seed sludge in culturing aerobic nitrifying granules.  相似文献   
214.
● The highest seed germination index was achieved at 0.3 g/g total solids of food waste. ● Proline was identified as the key amino acid related with the composting process. ● Amino acid metabolism sequences predominated during the whole composting process. This study systematically investigated the changes of amino acids as the composting process of food waste proceeded. It is found that the addition of 0.3 g/g total solids of food waste achieved the highest seed germination index of the product (268 %). The microbial community results indicated that the abundance of amino acid metabolism sequences remained at high levels during the whole composting process. Proline was identified as the key amino acid related with the nutrient quality of product during the composting of food waste. Further plant germination and hydroponic experiments found, that compared with those without the addition of proline, the addition of 50 mg/L proline increased seed germination rate by 20 %, increased shoot length by 3 %, increased root biomass of seedlings by 82 %, and increased leaf biomass of seedlings by 76 %, respectively. Firmicutes, γ-Pseudomonadota, Chloroflexi and Planctomycetes were the key identified bacteria related with the increase of proline during the composting of food waste. Meanwhile, the enzymatic tests of the activities of superoxide dismutase, peroxidase and malondialdehyde indicated that proline did not cause oxidative damage on the growth of plants. This study provided novel insights into the changes of amino acids, microbial community, and enzymatic activities related with the nutrient quality of product during the composting of food waste.  相似文献   
215.
影响煤炭微生物脱硫因素的研究   总被引:3,自引:0,他引:3       下载免费PDF全文
对能源条件、细菌接种量、氮素营养和酸预浸洗煤样等影响微生物煤脱硫的因素进行了研究。研究结果表明,采用亚铁盐作能源条件培养的菌株,其脱硫效果较好;对于定量的煤样,在一定限度内增加细菌接种量,可提高煤的脱硫率,但超过某限度后,煤脱硫率的提高并不明显;在煤浆中添加适量的无机氮营养,可有效提高煤的脱硫率;脱硫前用酸预处理煤样,不仅可提高脱硫效率,还能缩短煤脱硫反应的时间。   相似文献   
216.
从长期受十二烷基苯磺酸钠(sodiumdodecylbenzenesulfonate,SDBS)污染的土壤中,筛选到3株对SDBS降解能力很强的细菌,分别为荧光假单胞杆菌(PseudomonasfluorescensP-11)、芽孢杆菌(Bacilussp.B-24)、气单胞菌(Aeromanassp.A-2)。3株细菌均属中温细菌,最适生长温度为30℃,最适生长pH为7.0,在低浓度SDBS中生长比在高浓度中生长好。在选定的最适条件下,测定了3株菌对SDBS的降解能力,在含40mg/LSDBS的培养基上,于28℃生长72h,SDBS的降解率均超过95%,其中P-11达100%。   相似文献   
217.
• MEDCC combined with Fenton process was developed to treat real pesticide wastewater. • Pesticide removal was attributable to desalination in the MEDCC. • High COD removal was attributable to organic distributions in different chambers. The combination of the microbial electrolysis desalination and chemical-production cell (MEDCC) and Fenton process for the pesticide wastewater treatment was investigate in this study. Real wastewater with several toxic pesticides, 1633 mg/L COD, and 200 in chromaticity was used for the investigation. Results showed that desalination in the desalination chamber of MEDCC reached 78%. Organics with low molecular weights in the desalination chamber could be removed from the desalination chamber, resulting in 28% and 23% of the total COD in the acid-production and cathode chambers, respectively. The desalination in the desalination chamber and organic transfer contributed to removal of pesticides (e.g., triadimefon), which could not be removed with other methods, and of the organics with low molecular weights. The COD in the effluent of the MEDCC combined the Fenton process was much lower than that in the perixo-coagulaiton process (<150 vs. 555 mg/L). The combined method consumed much less energy and acid for the pH adjustment than that the Fenton.  相似文献   
218.
有机污染场地微生物修复研究进展   总被引:1,自引:0,他引:1  
结合国内外研究,从典型有机污染物微生物修复机理、降解菌株的筛选、微生物修复技术,以及微生物修复技术的表面活性剂和电化学强化等方面综述了微生物修复技术的研究进展,并对其发展方向和趋势做出展望。  相似文献   
219.
In order to evaluate the impact of atmospheric pollutants emitted by the industrial settlement of Milazzo (Italy) on agriculture, sulphur dioxide and ozone levels in air were monitored and the data were used to estimate yield losses of the most widespread cultures. Trace element concentrations in crops and soils were also detected and metabolic profiles of soil microbial communities were considered. Vibrio fischeri test was used to appraise airborne pollutant ecotoxicity and epidemiological studies on causes of death distribution were carried out to characterize health state of people living in the area. All the sampling points were selected in farms on the basis of a theoretical meteo-diffusive model of industrial air pollutants. Experimental SO2 and O3 values mainly exceeded the threshold established by Italian and EU regulations to protect vegetation and they correspond to estimated significant crop losses. Conversely toxic element residues in soils and in agroalimentary products were generally lower than the fixed values. SO2 and O3 concentrations, toxic element contents and ecotoxicity levels of airborne pollutants were not related only to industrial site emissions, while the fluctuations on metabolic profiles of soil microbial communities seem to agree with the predicted deposition of xenobiotic compounds from the industrial plants. The epidemiological study evidenced a better health state of populations living in the investigated area than in the Messina province and the Sicily region but, inside the area, males living in the municipalities closest to the industrial settlement exhibited a worst health state than those in the very far ones.  相似文献   
220.
研究了六氯苯(HCB)对微型水生生物群落的影响及其吸附、传递过程.测定了群落的耗氧量和不同粒经颗粒物的生物量及HCB变化.试验结果显示,在6μg/L HCB影响下,群落的呼吸作用受到抑制,生物量减少.试验第1天,30.0%(质量分数,下同)的HCB以溶解态存在,26.3%吸附在0.22~2 μm的颗粒物(以细菌为主)上,22.1%吸附在2~8 μm的颗粒物(以鞭毛虫和藻类为主)上,21.6%吸附在大于8 μm的颗粒物(以藻类和大型原生动物为主)上.48 h后,溶解态的HCB逐渐减少,并由食物链低营养级向高营养级传递.最后74.9%的HCB都吸附在微型生物群落等颗粒物上,只有25.1%的HCB以溶解态存在.  相似文献   
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