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1.
降解喹啉的微生物燃料电池的产电特性研究   总被引:6,自引:2,他引:4  
通过构建双极室微生物燃料电池(Microbial fuel cell,MFC),对喹啉的降解及MFC的产电性能进行了研究.试验结果表明,当喹啉初始浓度为500 mg·L-1,葡萄糖与喹啉浓度之比为1:1,3:5,1:5时,MFC的最大输出电压分别为558 mV、469 mV、328 mV,运行周期分别为56.4 h、70h、82.5 h;最大功率密度分别为173 mW·m-2、122 mW·m-2、60 mW·m-2(按阳极截面积计算)或者35 W·m-3、24 W·m-3、12 W·m-3(按阳极室有效容积计算).MFC可实现对喹啉的高效降解,但葡萄糖的浓度对喹啉的降解速率有较大影响.当葡萄糖浓度分别为500 mg.L-1、300mg·L-1和100 mg·L-1时,使500 mg·L-1喹啉完全降解的时间分别为6 h、24 h和72 h.MFC闭路条件下对喹啉的降解速率高于开路厌氧条件下的喹啉降解速率约10%.MFC对喹啉的降解与产电速率之间存在差距,喹啉被快速降解至较低浓度(<5rag·L-1)后,MFC的产电性能才达到最优.MFC以用喹啉和葡萄糖作为混合燃料时,可以在实现高效降解喹啉的同时可稳定地向外输出电能,这为杂环芳烃类难降解有机物的高效低耗处理提供了新的途径.  相似文献   

2.
以吡啶和葡萄糖为燃料的MFC产电特性研究   总被引:1,自引:0,他引:1  
不同类型的有机物对MFC的产电性能有不同的影响,通过构建填料型MFC,以吡啶和葡萄糖为混合燃料,以铁氰化钾为电子受体,对有机物在MFC中的降解以及产电性进行研究.结果表明,外阻为1 000Ω的条件下,MFC的最大输出电压随着葡萄糖浓度的降低而降低,当吡啶初始浓度为500 mg/L,葡萄糖浓度分别为500、250、100 mg/L时,运行周期逐渐缩短,分别为49.5、25.7、25.2 h;最大体积功率密度为48.5、36.2、15.2 W/m3,最高电压为623 mV.MFC可实现对吡啶的高效降解,24h内吡啶去除率高达95%,但葡萄糖的浓度对吡啶的降解速率影响不大;高浓度吡啶存在的条件下对MFC利用葡萄糖产电的性能影响不大.利用500 mg/L单一吡啶作为MFC的燃料时,无明显产电现象.MFC利用吡啶和葡萄糖作为混合燃料时,可以在实现吡啶降解的同时稳定地向外输出电能.  相似文献   

3.
高浓度苯酚的MFC降解及产电性能   总被引:4,自引:1,他引:3  
以铁氰化钾溶液作为电子受体,在阴阳两极室中分别填充石墨颗粒的基础上构建了填料型微生物燃料电池(Microbial Fuel cell,MFC),研究了苯酚为单一燃料和苯酚 葡萄糖为混合燃料条件下MFC的产电特性以及对苯酚和COD的去除效果.在1OOOΩ外电阻条件下,1000mg·L-1苯酚为单一燃料运行时,MFC在苯酚去除率达到约90%时输出电压达到最大值,最大输出电压为540mV,产电曲线存在单一极大值;以1000 mg·L-1苯酚 500 mg·L-1葡萄糖为混合燃料运行时,最大输出电压可达657mV,产电曲线存在2个峰值,第1峰值和第2峰值出现时对应的苯酚去除率分别约为20%和90%.混合燃料运行条件下,前后2个产电峰值出现时MFC的最大体积(面积)功率密度分别为28.3w·m-3(342.OmW·m-2)和12.6 w·m-3(152.2mW·m-2),内阻分别为194Ω和246Ω.在2种燃料情形下,MFC对苯酚和COD的去除率均可在60h之内分别达到95%和90%以上.试验结果表明,MFC能够利用高浓度苯酚作为燃料,在实现高效降解的同时稳定地向外输出电能,这为酚类难降解有机物的高效低耗处理提供了新的研究思路.  相似文献   

4.
以苯胺和葡萄糖为燃料的微生物燃料电池的产电特性研究   总被引:2,自引:0,他引:2  
通过构建空气阴极型双室微生物燃料电池(Microbial FueI Cell,MFC),并以苯胺和葡萄糖为燃料,研究了MFC对苯胺的降解特性及MFC 的产电性能.结果表明,在1000Ω电阻下,500mg·L-1葡萄糖为单一燃料时,MFC的最大输出电压为440mV,最大输出功率密度为215mw·m-2.当苯胺的初始浓度为...  相似文献   

5.
以苯酚为燃料的微生物燃料电池产电特性   总被引:10,自引:2,他引:8  
选取城市污水处理厂的好氧和厌氧混合污泥作为接种液,构建了双极室微生物燃料电池(Microbial fuel cell, MFC),对以葡萄糖、葡萄糖和苯酚、苯酚为不同燃料的MFC进行了有机物降解和产能效果的研究.试验结果表明,以葡萄糖为单一燃料时MFC的启动时间最短,以苯酚为单一燃料时MFC启动时间最长.MFC在不同燃料来源条件下对苯酚去除率均大于85%,COD去除率超过80%.MFC的连续运行试验结果表明,在1000Ω外电阻条件下,以葡萄糖为单一燃料的MFC运行周期最长,可达400h,最大输出电压为551mV,功率密度为 121 mW·m-2(阳极);以葡萄糖和苯酚为混合燃料的MFC运行周期约200h,最大输出电压为208mV,功率密度为 16mW·m-2(阳极);而以苯酚为单一燃料的MFC运行周期仅约为100h,最大输出电压为121mV,功率密度为 6 mW·m-2(阳极).试验结果最终表明,MFC能够利用苯酚作为燃料,在实现高效降解的同时可稳定地向外输出电能,这为酚类难降解有机物的高效低耗处理提供了新的研究思路.  相似文献   

6.
以吲哚为燃料的微生物燃料电池降解和产电特性   总被引:4,自引:1,他引:3       下载免费PDF全文
以铁氰化钾为电子受体,在两极阴阳室内使用碳毛刷纤维为电极材料构建了循环式微生物燃料电池(MFC),研究了以吲哚为单一燃料和吲哚+葡萄糖为混合燃料条件下MFC的产电特性以及对吲哚和COD的去除效果.结果表明,以1000mg/L葡萄糖+250mg/L吲哚为混合燃料时,MFC的最高电压和最大功率密度分别为660mV和51.2W/m3(阳极),MFC运行10h对吲哚和COD的去除率分别为100%和89.5%;分别以250,500mg/L吲哚为单一燃料时,MFC的平均最高电压分别为115,118mV,最大功率密度分别为2.1,2.3W/m3(阳极).在MFC中,250,500mg/L吲哚被完全降解的时间分别为6,30h.MFC能够利用吲哚为燃料,在实现高效降解吲哚的同时对外产生电能,可用于处理含有毒且难降解有机物的焦化工业废水.  相似文献   

7.
以活性炭阳极双室生物燃料电池为基础,使用葡萄糖(COD为2000mg·L-1)作为底物,比较了铁氰化钾、过氧化氢、重铬酸钾和高锰酸钾分别作为生物燃料电池阴极电子受体时电池的开路电压和功率输出.结果表明,铁氰化钾、过氧化氢和重铬酸钾对应的开路电位分别为0.72V、0.33V和1.13V,均低于高锰酸钾的1.4lV.铁氰化钾和重铬酸钾对应的最大功率密度分别为4788mW·m-3和10951m W·m-3,相比之下高锰酸钾对应的最大功率达到了21912 mW·m-3.除过氧化氢外,3种氧化剂对应的电池内阻没有区别,均在2200Ω左右.当高锰酸钾浓度为200mg·L-1、pH为2.0时,开路电位高达1.44V,阴极电位达到1.38V,pH对电池电压输出的影响比高锰酸钾浓度更为显著.将高锰酸钾用于生物燃料电池从有机废水中发电不但可以极大提高系统的功率输出,还具有十分显著的经济和环境效益.  相似文献   

8.
葡萄糖和硝基苯为混合燃料时MFC的产电特性研究   总被引:2,自引:2,他引:0  
通过构建双极室微生物燃料电池(microbial fuel cell,MFC),以铁氰化钾溶液为阴极电子受体,以硝基苯(nitrobenzene,NB)和葡萄糖为混合燃料,研究MFC的产电特性和NB的降解情况.结果表明,在外阻为1000Ω的条件下,随着NB初始浓度的增加,双极室MFC的产电特性明显受到抑制.当葡萄糖浓度为1000mg/L,NB初始浓度分别为0、50、150、250mg/L时,MFC的运行周期逐渐缩短,分别为55.7、51.6、45.9、32.2h;最大输出电压分别为670、597、507、489mV;最大体积功率密度分别为28.57、20.42、9.29、8.47W/m3;电荷量分别为65.10、43.50、35.48、30.32C.MFC利用NB和葡萄糖为混合燃料,可以在稳定地输出电能的同时实现有机物高效降解,MFC对NB去除率高达100%,对COD的去除率达到87%~98%.但以250mg/LNB为单一燃料时,MFC无明显产电现象.DGGE图谱表明NB的加入改变了MFC阳极电极上微生物的群落结构.  相似文献   

9.
多环芳烃是我国近岸海域水体和沉积物中需要优先控制的首位有机污染物,喹啉是典型的含氮杂环芳烃,具有较大的毒性、致畸性和潜在的致癌作用。该研究利用填料型MFC对单一喹啉为燃料的产电性能进行了研究。经过6个月利用喹啉和葡萄糖作混合燃料的驯化,MFC中的阳极群落发生了改变,可以利用单一喹啉进行产电,以200 mg/L喹啉为燃料时的最大体积功率密度为2.7 W/m3。在没有外加葡萄糖可能带来的协同共代谢作用下,利用单一喹啉做燃料时,对喹啉在MFC中的降解途径进行了研究。实验结果表明,以喹啉为燃料时,MFC可以在不利用有机物本身作为电子受体的作用下,通过外电路的电子传递完成电子从阳极到阴极的传递而达到相同的目的。  相似文献   

10.
微生物燃料电池(Microbial fuel cell,MFC)阳极微生物的种类和作用机制对MFC的产电性能有着重要影响.从稳定运行了210d,以200mg·mL-1喹啉为燃料的MFC阳极室分离得到一株革兰氏阴性菌,命名为Q1,其16S rRNA基因序列与Pseudomonas citronellolisDSM50332T的同源性为96.9%,属于假单胞菌属(Pseudomonassp.).循环伏安法及构建纯菌MFC方法的测定结果均表明Q1具电化学活性.菌株Q1能利用单一喹啉或喹啉和葡萄糖混合燃料产电.在本试验所用浓度范围内,增加葡萄糖浓度,菌株Q1对应的最高输出电压增加,增加喹啉浓度菌株Q1的产电性能则降低,研究表明,菌株Q1库仑量和库仑效率达到最高时(分别为18.65C和36.56%),存在一个最佳喹啉与葡萄糖浓度比1∶3.在MFC中喹啉的降解效果优于普通厌氧培养,葡萄糖对菌株Q1降解喹啉有促进作用,以喹啉和葡萄糖为混合燃料24h对喹啉的去除率达99.53%,优于以单一喹啉为燃料的情况.循环伏安法和不同更换基质方式试验表明,附着在电极上的菌株Q1对产电起主要作用,Q1的溶解态代谢产物对产电过程起电子介体的作用.  相似文献   

11.
Soil contaminated with heavy metals cadmium(Cd)and lead(Pb)is hard to be remediated.Phytoremediation may be a feasible method to remove toxic metals from soil,but there are few suitable plants which can hyperaccumulate metals.In this study,Cd and Pb accumulation by four plants including sunflower(Helianthus annuus L.),mustard(Brassica juncea L.),alfalfa(Medicago sativa L.), ricinus(Ricinus communis L.)in hydroponic cultures was compared.Results showed that these plants could phytocxtract heavy metals, the ability of accumulation differed with species,concentrations and categories of heavy metals.Values of BCF(bioconcentration factor)and TF(translocation factor)indicated that four species had dissimilar abilities of phytoextraction and transportation of heavy metals.Changes on the biomass of plants,pH and Eh at different treatments revealed that these four plants had distinct responses to Cd and Pb in cultures.Measurements should be taken to improve the phytoremediation of sites contaminated with heavy metals,such as pH and Eh regulations,and so forth.  相似文献   

12.
The oxidation of As(Ⅲ) with potassium permanganate was studied under conditions including pH, initial As(Ⅲ) concentration and dosage of Mn(Ⅶ). The results have shown that potassium permanganate was an effective agent for oxidizing of As(Ⅲ) in a wide pH range. The pH value of tested water was not a significant factor affecting the oxidation of As(Ⅲ) by Mn(Ⅶ). Although theoretical redox analyses suggest that Mn(Ⅶ) should have better performance in oxidization of As(Ⅲ) within lower pH ranges, the experimental results show that the oxidation efficiencies of As(Ⅲ) under basic and acidic conditions were similar, which may be due to the adsorption of As(Ⅲ) on the Mn(OH)2 and MnO2 resulting from the oxidation of As(Ⅲ).  相似文献   

13.
Laogang landfill near Shanghai is the largest landfill in China, and receives about 10000 t of daily garbage per day, Samples of topsoil and plants were analyzed to evaluate mercury pollution from the landfill. For topsoil samples, there were significant correlations among total mercury (HgT), combinative mercury (Hgc) and gaseous mercury (HgG), and content of total organic carbon (TOC), but, no significantly relationship was found between Hg content and filling time. Hg content changes in vertical profiles with time showed that the average Hgv of profiles 1992, 1996, and 2000 was similar, but their average HgG was quite different. HgT was significantly correlated with Hgc in profile 1992 and 2000, and Hgv was significantly correlated with Hg6 in profile 1996. HgG/Hgv ratio in profile samples decreased in the order of (HgG,/HgT)1992〉(HgG/HgT)1996〉〉(HgG/HgT)2000. A simple outline of Hg release in landfill could be drawn: with increasing of filling time, degradation undergoes different biodegradation, accordingly, gaseous mercury goes through small, more, and small proportion to total mercury. Distribution of Hg in plants was inhomogeneous, following the order of leaf〉root〉stem. The highest value of leaf may be associated with higher atmospheric Hg from landfill. Ligneous plants (e.g. Phyllostachys glanca, Prunus salicina and Ligustrum lucidum) are capable of enriching more Hg than herbaceous plants.  相似文献   

14.
Phytoremediation is a potential cleanup technology for the removal of heavy metals from contaminated soils.Bidens maximowicziana is a new Pb hyperaccumulator,which not only has remarkable tolerance to Pb but also extraordinary accumulation capacity for Pb.The maximum Pb concentration was 1509.3 mg/kg in roots and 2164.7 mg/kg in overground tissues.The Pb distribution order in the B. maximowicziana was:leaf>stem>root.The effect of amendments on phytoremediation was also studied.The mobility of soil Pb and the Pb concentrations in plants were both increased by EDTA application.Compared with CK(control check),EDTA application promoted translocation of Pb to overground parts of the plant.The Pb concentrations in overground parts of plants was increased from 24.23-680.56 mg/kg to 29.07-1905.57 mg/kg.This research demonstrated that B.maximowicziana appeared to be suitable for phytoremediation of Pb contaminated soil,especially,combination with EDTA.  相似文献   

15.
Decomposition of alachlor by ozonation and its mechanism   总被引:1,自引:0,他引:1  
Decomposition and corresponding mechanism of alachlor, an endocrine disruptor in water by ozonation were investigated. Results showed that alachlor could not be completely mineralized by ozone alone. Many intermediates and final products were formed during the process, including aromatic compounds, aliphatic carboxylic acids, and inorganic ions. In evoluting these products, some of them with weak polarity were qualitatively identified by GC-MS. The information of inorganic ions suggested that the dechlorination was the first and the fastest step in the ozonation of alachlor.  相似文献   

16.
The influence of the nonionic surfactant Tween 80 on pentachlorophenol (PCP) oxidation catalyzed by horseradish peroxidase was studied. The surfactant was tested at concentrations below and above its critical micelle concentration (CMC). Enhancement of PCP removal was observed at sub-CMCs. The presence of Tween 80 in the reaction mixture reduced enzyme inactivation which occurred through a combination of free radical attack and sorption by precipitated products. A simple first-order model was able to simulate time profiles for enzyme inactivation in the presence or absence of Tween 80. At supra-CMCs, the surfactant caused noticeable reductions in PCP removal, presumably through micelle partitioning of PCP which precluded the hydrophobic PCP molecule from interacting with the enzyme.  相似文献   

17.
The Xijiang River is the major source of water for about 4.5 millions of urban population and 28.7 millions of rural population. The water quality is very important for the health of the rural population. The concentration and distribution of chlorobenzenes (CBs) in both water and waterweeds collected from 4 stations in the Xijiang River (Gangdong section) of the Pearl River in April and November were determined. The result showed that nearly every congener of CBs was detected. The total contents of CBs (∑CBs) in the river water ranged from 111.1 to 360.0 ng/L in April and from 151.9 to 481.7 ng/L in November, respectively. The pollution level of CBs in the water in April was higher than that in November. The contents of ∑ CBs in waterweeds ranged from 13.53×102 μg/g to 38.27×102μg/g dry weight (dw). There was no significant difference between April and November in waterweeds. The distribution of CBs in roots, caulis, and leaves of Vallisneria spiralis L. showed different patterns. The leaves mainly contained low-molecular-weight CBs(DCBs), whereas the roots accumulated more PCBs and HCBs. The average lgBCFlip (bioconcentration factor) of CBs ranged from 0.64 to 3.57 in the waterweeds. The spatial distribution character of CBs in the Xijiang River was: Fengkai County < Yunan County <Yun'an County < Gaoyao County according to the ∑CBs, and the pollution deteriorated from the upstream to the downstream of the Xijiang River. Further analysis demonstrated that the discharge of waste containing CBs may be the main source of CBs pollution in the Xijiang River.  相似文献   

18.
以三峡大学的校园河道求索溪为研究对象,利用综合水质标识指数法确定求索溪水质类别,分析其水质时空变化规律,并利用对应分析法得出求索溪中不同监测点的主要污染因子.研究结果表明:求索溪整体的综合水质标识指数为7.423,整体水质为劣V类(地表水环境质量标准GB 3838-2002)且黑臭.从时间变化来看,求索溪4月份的水质最差,5月份次之,4、5月份所有监测点的水质都劣于V类且黑臭;8月份水质最好,水质为Ⅳ类;从空间分布来看,8个监测点综合水质标识指数均超过6.0,水质为劣V类,其中6号监测点的水质相对最好,监测点3号的水质相对最差;对应分析法得出求索溪的整体水体污染程度受总氮因子的影响最大,其次为总磷.该研究拟为求索溪及类似校园河道的水环境治理研究提供基础依据和参考.  相似文献   

19.
Degradation of 2,4-dichlorophenol(2,4-DCP)was studied in a novel three-electrode photoelectrocatalytic(PEC)integrative oxidation process,and the factors influencing the degradation rate,such as applied current,flow speed of O_2,pH,adscititious voltage and initial 2,4-DCP concentration were investigated and optimized.H_2O_2 was produced nearby cathode and Fe~(2 )continuously generated from Fe anode in solution when current and O_2 were applied,so,main reactions,H_2O_2-assisted TiO_2 PEC oxidation and E-Fenton reaction,occurred during degradation of 2,4-DCP in this integrative system.The degradation ratio of 2,4-DCP was 93% in this integrative oxidation process,while it was only 31% in E-Fenton process and 46% in H_2O_2-assisted TiO_2 PEC process.So,it revealed that the degradation of 2,4-DCP was improved greatly by photoelectrical cooperation effect.By the investigation of pH,it showed that this integrative process could work well in a wide pH range from pH 3 to pH 9.  相似文献   

20.
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   

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