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91.
The impacts of landfill leachate irrigation on methane oxidation activities and methane-consuming bacteria populations were studied by incubation of landfill cover soils with leachate and (NH4)2SO4 solution at different ammonium concentrations. The community structures and abundances of methane-oxidizing bacteria (MOB) and ammonia-oxidizing bacteria (AOB) were examined by PCRDGGE and real-time PCR. Compared with the pure (NH4)2SO4 solution, leachate addition was found to have a positive effect on methane oxidation activity. In terms of the irrigation amount, ammonium in leachate was responsible for the actual inhibition of leachate. The extent of inhibitory effect mainly depended on its ammonium concentration. The suppression of the predominant methaneconsuming bacteria, type I MOB, was responsible for the decreased methane oxidation activity by ammonium inhibition. Methaneconsuming bacteria responded diversely in abundance to ammonium. The abundance of type I MOB decreased by fivefold; type II MOB showed stimulation response of fivefold magnification upon the first addition but lessened to be lower than the original level after the second addition; the amount of AOB was stimulated to increase for 20-30 times gradually. Accumulated nitrate from nitrification strengthened the ammonium inhibition on type I and type II MOB, as a result, repetitive irrigation was unfavorable for methane oxidation.  相似文献   
92.
A simulated landfill biocover microcosm consisting of a modifying ceramsite material and compost were investigated. Results show that the mixture can improve the material porosity and achieve a stable and highly efficient (100%) methane oxidation over an extended operating period. The diversity of the methanotrophic community in the microcosm was assessed. Type I methanotrophs were enhanced in the microcosm due to the increased air diffusion and distribution, whereas the microbial diversity and population density of type II methanotrophs were not significantly affected. Moreover, the type I methanotrophic community structure significantly varied with the reactor height, whereas that of type II methanotrophic communities did not exhibit a spatial variation. Phylogenetic analysis showed that type I methanotroph-based nested polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) resulted in the detection of eight different populations, most of which are related to Methylobacter sp., whereas that of type II resulted in the detection of nine different populations, most of which are related to Methylocystaceae. Methanotrophic community analysis also indicated that a number of new methanotrophic genera not closely related to any known methanotrophic populations were present.  相似文献   
93.
某危险废物填埋场地下水污染预测及控制模拟   总被引:8,自引:2,他引:6  
以某危险废物填埋场为研究对象,在收集其水文地质资料基础上,运用Visual Modflow建立填埋场地下水水流和溶质运移耦合模型,对填埋场防渗层发生渗漏后,渗滤液中Cr6+在地下水中的运移过程以及地面硬化、防渗墙和排水沟3种污染控制措施对污染羽阻隔效果进行模拟预测.结果表明,Cr6+随地下水流方向运移形成污染羽,10 a后污染羽到达水塘边界,运移距离约为1 450 m,但随后10~20 a之间污染羽扩散范围没有明显扩大;地表硬化后,20 a内污染羽未扩散至水塘边界;防渗墙设置到上层含水层底部时,监测井Cr6+浓度高于未设置防渗墙时浓度,设置到下层含水层底部时,Cr6+浓度与设置于上层含水层时监测结果相反;排水沟日排水量达到2 642 m3时能有效控制污染羽扩散,20 a后污染羽尚未污染监测井;地表硬化与排水沟组合控制污染物扩散,效果最佳,同时排水沟日排水量可减少为1 878 m3.因此,当填埋场发生渗漏时,建议采用设置排水沟与周边地表硬化组合的地下水污染控制措施.  相似文献   
94.
泥炭预处理吸附垃圾渗滤液中的COD   总被引:1,自引:0,他引:1  
通过对泥炭改性去除水中COD进行了试验研究。探讨了磷酸、硫酸、盐酸、硝酸和氢氧化钠对COD去除效果的影响和吸附机理。结果表明,在酸、碱改性过程中,用5%的硫酸改性的泥炭去除COD的效果最佳,改性泥炭用量为每10 g/100 mL,吸附时间为60 min,pH为10的试验条件下,COD的去除率为68.5%以上,磷酸较硫酸次之,去除率为55%左右,而盐酸和硝酸较差分别为45%和38%,氢氧化钠为40%左右。并对其吸附机理进行了研究,其吸附等温线符合Freundlich型。通过扫描电镜观察泥炭表面的结构,硫酸改性后的泥炭表面结构比较粗糙,比表面积最大,与实验结果相吻合。用原子吸收法对泥炭处理前后的水样进行比较,表明泥炭对重金属也有很好的去除率。本研究为泥炭利用提供了可借鉴的思路。  相似文献   
95.
李志华  张银  韩杏  余科  李汝佳 《环境科学》2015,36(10):3913-3917
本研究尝试用SF(OURmax/OURen)代替S(0)/X(0)来作为呼吸法确定COD组分最优实验条件的参数,从而简化测量过程且可实现自动化操作.另外由生长消耗COD与生物量的比值来判断测量结果的可靠性.结果表明,获得可靠的RBCOD组分分析结果的实验条件为:1对于易生物降解含量较高的水质(如由乙酸钠配制的污水),SF在2.8~5.3范围内,生长消耗COD与生物量比值在30%以内;2对于易生物降解和难生物降解物质适中的水质(如典型生活污水),SF应在5.8~6.4左右,生长消耗COD与生物量比值在30%以内;3而对于含有大量难生物降解物质的工业废水(垃圾渗滤液),SF在15以下,且生长消耗COD与生物量的比值在40%以内.由此可见,采用呼吸法确定COD组分,其最优条件SF范围随碳源的复杂程度的上升而上升.  相似文献   
96.
序批式生物反应器填埋场脱氮微生物多样性分析   总被引:7,自引:6,他引:1  
为探究序批式生物反应器填埋场脱氮过程中的微生物作用机制,本研究采用建立脱氮功能基因(amoA、nosZ)克隆文库及PCR-RFLP技术对序批式生物反应器填埋场垃圾稳定化后期的主要脱氮功能微生物多样性进行分析.结果表明,矿化垃圾反应器中检测到的氨氧化细菌存在高度多样性,大部分为未知类群,且均为不可培养菌或未经分离获得的细菌,经系统发育树分析系统内氨氧化细菌以β-变形菌门中的亚硝化单胞菌属(Nitrosomonas)为主;新鲜垃圾反应器中反硝化细菌种群丰富,主要有β-变形菌纲中的陶厄氏菌属(Thauera)和硫杆菌属(Thiobacillus).Thauera属在好氧条件下具有反硝化特性,Thiobacillus属中的脱氮硫杆菌(Thiobacillus denitrificans)是一种硫自养反硝化菌,可见新鲜垃圾单元稳定化后期以好氧反硝化和自养反硝化的脱氮途径为主.此外文库中检测到的一部分反硝化细菌可能归属于α-变形菌纲的慢生根瘤菌科(Bradyrhizobiaceae).  相似文献   
97.
使用单级和两级串联臭氧-生物活性炭(O3-BAC)处理垃圾焚烧渗滤液的二级生物处理尾水,比较研究了污染物去除效果.结果表明,臭氧投加量为200 mg·L-1时,两级串联O3-BAC对COD、UV254和色度的去除率分别为75.9%±2.1%、78.8%±2.9%和96.8%±0.9%,处理出水COD基本保持在100 mg·L-1以下,色度低于40倍,满足GB 16889-2008排放要求;而单级O3-BAC对COD、UV254和色度的去除率分别为68.2%±1.3%、69.7%±0.5%和92.5%±1.1%,处理出水COD和色度分别为150 mg·L-1和60倍,不能达到排放要求.单级O3-BAC在290 mg·L-1臭氧投加量下,才能达到两级串联O3-BAC在200mg·L-1臭氧投加量下的污染物去除效果.此外,两级串联O3-BAC在臭氧投加量200 mg·L-1时的总磷去除率为63.5%±4.4%,出水总磷浓度稳定在1 mg·L-1以下,直接满足GB 16889-2008排放要求.  相似文献   
98.
采用紫外(UV)活化双氧水(H2O2)和过一硫酸盐(PMS)产生活性氧物种降解准好氧矿化垃圾床渗滤液尾水中有机污染物.结果表明,紫外辐射双氧水(UV-H2O2)和紫外辐射过一硫酸盐(UV-PMS)体系对有机污染物的降解相比于单独体系效果显著.初始pH值和氧化剂投加量能够显著影响2种体系的降解效能,增加氧化剂投加量能够一定程度提高2种体系对渗滤液尾水中有机物的去除;2种体系均在酸性条件下效果较好,初始pH值的升高对2种体系过程有机物降解有抑制作用并且对UV-H2O2体系的抑制尤为显著.在最优条件下(初始pH值为3,氧化剂投量为0.084mol/L),UV-H2O2与UV-PMS体系处理后出水COD去除率分别达到了72.09%和56.22%.另外,UV-H2O2体系中主要活性氧物种是羟基自由基,而UV-PMS体系中主要是由羟基自由基和硫酸根自由基的共同作用.紫外-可见光谱与三维荧光光谱表明两体系中均能降解渗滤液尾水中难降解芳香类有机物质,并且UV-PMS较UV-H2O2体系对腐殖质的反应速率更快,但是两种体系对渗滤液尾水中腐殖质的降解途径存在显著差异.研究结果可为光化学氧化处理垃圾渗滤液中难降解有机物提供参考.  相似文献   
99.
Low organic matter content and high heavy metal levels severely inhibit the anaerobic digestion (AD) of sewage sludge. In this study, the effect of added manganese oxide-modified biochar composite (MBC) on methane production and heavy metal fractionation during sewage sludge AD was examined. The MBC could increase the buffering capacity, enhance the methane production and degradation of intermediate acids, buffer the pH of the culture, and stabilize the sewage sludge AD process. The application of MBC positively impacted methane production and the cumulative methane yield increased up to 121.97%, as compared with the control. The MBC addition can improve metal stabilization in the digestate. An optimum MBC dose of 2.36?g was recommended, which would produce up to 121.1?L/kg volatile solids of methane. After the AD process, even though most of the metals accumulated in the residual solids, they could be transformation from the bio-available fractions to a more stable fraction. The total organic- and sulfide-bound and residual fraction content at a 3?g dose of MBC that is 0.12?g/g dry matter were 51.06% and 35.11% higher than the control, respectively. The results indicated that the application of MBC could improve the performance of AD and promote stabilization of heavy metals in sewage sludge post the AD process.  相似文献   
100.
The biofiltering capacity, distribution patterns and degradation of the antimicrobial sulfamethazine(SMT) by halophyte Chenopodium quinoa under hydroponic conditions and its further biodegradation through anaerobic digestion were evaluated. C. quinoa was cultivated for a complete life cycle under different concentrations of SMT(0, 2 and 5 mg/L) and sodium chloride(0 and 15 g/L). C. quinoa is able to uptake and partially degrade SMT. The higher the SMT concentration in the culture medium, the higher the SMT content in the plant tissue. SMT has different distribution patterns within the plant organs, and no SMT is found in the seeds.Dry crop residues containing SMT have a great potential to produce methane through anaerobic digestion and, in addition, SMT is further biodegraded. The highest specific methane yields are obtained using crop residues of the plants cultivated in the presence of salt and SMT with concentrations between 0 and 2 mg/L.  相似文献   
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