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1.
在中试规模下,研究青岛市餐厨垃圾与菜市场垃圾混合(质量比1∶1)高温厌氧消化实验,通过监测厌氧消化过程中产气量、气体组成等产气情况和消化液中pH值、SCOD、NH3-H、VFAs含量和组分等化学指标变化,确定混合厌氧消化的最大有机负荷,并分析混合高温厌氧消化技术的可行性,结果表明,(1)青岛市餐厨垃圾与菜市场垃圾混合高温厌氧消化产甲烷具有技术可行性;(2)混合厌氧消化的最大有机负荷可达4.069 kg VS/(m3.d);(3)当系统最大有机负荷时,每天每千克VS最高可产生甲烷量0.346 m3;(4)混合厌氧消化可削减氨氮对餐厨垃圾单独厌氧消化产沼气的影响。  相似文献   

2.
在中试规模下,研究餐厨垃圾高温厌氧消化试验,通过监测餐厨垃圾厌氧消化过程中产气量、气体组成等产气情况和消化液中pH值、SCOD、NH4+-N、VFAs等化学指标含量变化,确定餐厨垃圾厌氧消化的最大有机负荷,并分析餐厨垃圾高温厌氧消化技术的可行性,结果表明,在工程上餐厨垃圾单独进行高温厌氧消化产甲烷具有技术可行性,但难以保证系统长时间安全稳定运行;餐厨垃圾厌氧消化正常运行时最大有机负荷可达2.551 kg VS/(m3.d);当系统有机负荷为2.551 kg VS/(m3.d)时,每天每千克VS最高可产生甲烷量0.622 m3;氨氮对餐厨垃圾厌氧消化产甲烷影响明显;餐厨垃圾中固有Na+含量对厌氧消化产甲烷影响不明显。  相似文献   

3.
进行了餐厨垃圾(FW)和接种污泥(Ⅰ)基于不同VS比(分别为FW/I=1,FW/I=3,FW/I=5)下的中温厌氧消化实验,对比了不同有机负荷下未添加氧化铁和添加氧化铁对餐厨垃圾厌氧消化产气的影响。结果表明,在FW/I=1时,餐厨垃圾厌氧消化体系的产气情况主要由接种污泥决定,添加氧化铁仅能在较小的程度上促进体系产甲烷能力提升;而在FW/I=3时,添加氧化铁可以帮助餐厨垃圾厌氧消化体系从低速产甲烷过程快速进入高速产甲烷,快速降解有机质实现稳定化;而对于FW/I=5时添加氧化铁可以解除由于有机负荷过高造成的酸抑制并恢复体系的产甲烷能力。因此,在实际应用厌氧消化技术处理餐厨垃圾中可以通过添加氧化铁来提高其有机负荷(OLR),提高处理效率,保证餐厨垃圾厌氧消化的正常运行和促进甲烷的产生。  相似文献   

4.
针对糖纸厂污水活性污泥法处理后剩余污泥进行热水解厌氧消化中试研究,结果表明,热水解预处理工艺能够有效改善污泥性质,SCOD与VFA分别提高5.2和7.6倍,在厌氧消化过程中随着水力停留时间(HRT)缩短,消化罐有机负荷和比沼气产率提高,在2.5 kg VS/(m3·d)、HRT=12 d条件下达到28.1Nm3/t.整个厌氧消化过程中无过度酸化现象发生,沼气甲烷含量稳定,平均达到60%.  相似文献   

5.
在中温条件下进行实验室规模的连续式餐厨垃圾厌氧消化试验。采用实时荧光定量PCR(RT-PCR)技术对餐厨垃圾单相厌氧消化失衡条件下系统内古菌和产甲烷菌的数量变化规律进行探析。结果表明,在厌氧消化系统从稳定期到抑制期的过程中,古菌和产甲烷菌的基因浓度都明显降低,其降幅达到70%~80%。2次冲击负荷试验过程中,产甲烷菌基因浓度降幅都大于古菌,说明在系统抑制过程中产甲烷菌相对于古菌来说受到的影响更大。当厌氧消化系统出现抑制状态时,产甲烷菌不能适应环境变化而大量死亡,导致系统平衡被破坏。  相似文献   

6.
研究采用BP神经网络和模糊神经网络(FNN)模型对逐步提高有机负荷的半连续式餐厨垃圾和猪粪混合厌氧消化试验进行日产气量预测.结果表明,BP神经网络模型的预测准确率为77.63%,FNN模型为82.33%,2种模型均可用于产气预测,但FNN模型在传统神经网络模型基础上加入了模糊控制,可提高其准确率,更适用于混合厌氧消化产气量预测.  相似文献   

7.
餐厨垃圾高温中试两相厌氧发酵的稳定性   总被引:1,自引:0,他引:1  
为了考察在高负荷条件下餐厨垃圾厌氧发酵的稳定性,采用餐厨垃圾为发酵原料,以某污水处理厂脱水污泥为接种污泥,在中试规模条件下,采用产酸相中温(35℃,0.33 m3)产甲烷相高温(55℃,1.6 m3)进行连续式发酵。结果表明,餐厨垃圾厌氧发酵的产酸相有机负荷可达29.27 kg VS·(m~3·d)~(-1),产甲烷相有机负荷为6.04 kg VS·(m3·d)-1,容积产气率平均为5.61 m3·(m~3·d)~(-1),原料产气率平均达0.913 m3·(kg VS·d)-1,甲烷浓度平均为73.07%,总菌数为2.41×109个·m L-1,产甲烷菌最高为7.08×108个·m L-1,产甲烷菌数占总菌数的29.4%。两相厌氧发酵工艺可实现餐厨垃圾高负荷条件下的稳定运行。  相似文献   

8.
为了研究进料油脂含量(5%~25%)和有机负荷(40~60 kg VS/m3)对餐厨垃圾中温干式厌氧消化的共同影响,采用软件Design-Expert 8.0.6设计进料参数,以容积产甲烷率作为响应值,对14组序批式实验的结果进行回归分析,并建立容积产甲烷率与油脂含量和有机负荷间的回归方程。结果表明,当有机负荷为40 kg VS/m3时,甲烷产率随油脂含量的增加而增大;当有机负荷为50 kg VS/m3时,甲烷产率随油脂含量的增加先增大后减小;当有机负荷为60 kg VS/m3时甲烷产率随油脂含量的增加而减小。序批式实验中进料的最佳油脂含量和有机负荷分别为18.7%和42.9 kg VS/m3,对应响应面的理论容积产甲烷率最大值为32.74 L CH4/L。研究结论可以应用到实际工程中,为餐厨垃圾干式厌氧消化技术的推广提供一定的理论基础。  相似文献   

9.
针对富含木质纤维素底物利用效率低的问题,通过在中试厌氧消化系统中共接种瘤胃微生物和厌氧污泥来改善水稻秸秆中木质纤维素的水解,采用逐步提升底物有机负荷(OLR)的方式,评估了接种后水稻秸秆的厌氧消化效率。结果表明,在反应体系底物有机负荷达到4.26 g·(L·d)-1(以VS计)时,系统表现出最佳的厌氧消化性能,此时沼气产率为528 mL·g-1 (以VS计),甲烷产率为287 mL·g-1,容积沼气生产强度达到2.20 L·(L·d)-1。在反应器有机负荷从1.05 g·(L·d)-1提升到4.26 g·(L·d)-1的运行过程中,系统的纤维素降解率稳定在(71±2)%,半纤维素降解率稳定在(92±4)%,木质素降解率稳定在(15±3)%。这种稳定性表明反应器的连续运行成功地形成了高效的木质纤维素降解体系,结果可为实际规模化应用提供参考。  相似文献   

10.
以餐余垃圾作原料,进行连续式中温和高温高固体厌氧消化120 d。将厌氧消化过程分为适应阶段(0~15d),产气速率(GPR)持续上升;启动阶段(中温16~30 d,高温16~36 d),GPR开始下降;抑制阶段(中温31~67 d,高温37~67 d)GRP最小,平均为1.45 L·d-1和2.09 L·d-1;恢复及稳定阶段(68 d~120 d),GPR回升后达到稳定,平均分别为16.55 L·d-1和19.03 L·d-1。厌氧消化过程中主要存在2种抑制形式:p H抑制和游离氨(FA)抑制,2种温度下厌氧消化抑制情况类似,抑制阶段主要是p H抑制,稳定阶段主要是FA抑制,p H抑制较轻,中温厌氧消化稳定阶段的FA抑制比高温厌氧消化时严重。  相似文献   

11.
This study investigated the effects of food waste constituents on thermophilic (55 degrees C) anaerobic codigestion of sewage sludge and food waste by using statistical techniques based on biochemical methane potential tests. Various combinations of grain, vegetable, and meat as cosubstrate were tested, and then the data of methane potential (MP), methane production rate (MPR), and first-order kinetic constant of hydrolysis (kH) were collected for further analyses. Response surface methodology by the Box-Behnken design can verify the effects and their interactions of three variables on responses efficiently. MP was mainly affected by grain, whereas MPR and kH were affected by both vegetable and meat. Estimated polynomial regression models can properly explain the variability of experimental data with a high-adjusted R2 of 0.727, 0.836, and 0.915, respectively. By applying a series of optimization techniques, it was possible to find the proper criteria of cosubstrate. The optimal cosubstrate region was suggested based on overlay contours of overall mean responses. With the desirability contour plots, it was found that optimal conditions of cosubstrate for the maximum MPR (56.6 mL of CH4/g of chemical oxygen demand [COD]/day) were 0.71 g of COD/L of grain, 0.18 g of COD/L of vegetable, and 0.38 g of COD/L of meat by the simultaneous consideration of MP, MPR, and kH. Within the range of each factor examined, the corresponding optimal ratio of sewage sludge to cosubstrate was 71:29 as the COD basis. Elaborate discussions could yield practical operational strategies for the enhanced thermophilic anaerobic codigestion of sewage sludge and food waste.  相似文献   

12.
餐厨垃圾的高温厌氧消化处理研究   总被引:8,自引:1,他引:7  
在55℃条件下,研究了餐厨垃圾高温厌氧消化过程中pH、VFA、总磷、产气量以及COD、TS和VS的变化,结果表明:在消化过程中pH先下降后上升,总VFA浓度增大,而其中游离态VFA浓度先增大后减少。消化过程总产气量为43 211 mL,整个过程消耗TS的平均产气率为158.98 mL/g TS,COD去除率为38.76%,总磷去除率达到98.87%,底物TS和VS去除率分别31.71%和50.24%。经过厌氧消化处理,沼渣中不含对人体和许多动物有害的沙门氏菌、痢疾杆菌、大肠杆菌及粪大肠杆菌,而富含有机质、氮、磷和钾等的营养物质和芽孢杆菌、防线菌等有益菌种。  相似文献   

13.
Four combinations of litter and carcasses from broiler chickens were examined utilizing a thermophilic, stirred-tank digester of demonstration size of approximately 10,000 gal. Under computed optimal loading rates, litter with paper bedding had the highest daily production of methane over an 8-day retention period. The greatest methane production per lb of volatile solids was achieved over 10 days with litter and paper bedding combined with carcasses. This research found that sufficient poultry litter is generated within 20 mi (32 km) of Moorefield, WV, to support a commercial-sized digester operation. However, anaerobic digestion of poultry waste cannot be financially supported by methane production alone. To be financially viable, anaerobic digestion requires a disposal fee for poultry waste and/or the sale of the digested solid effluent as an organic fertilizer to retail markets.  相似文献   

14.
ABSTRACT

Four combinations of litter and carcasses from broiler chickens were examined utilizing a thermophilic, stirred-tank digester of demonstration size of approximately 10,000 gal. Under computed optimal loading rates, litter with paper bedding had the highest daily production of methane over an 8-day retention period. The greatest methane production per lb of volatile solids was achieved over 10 days with litter and paper bedding combined with carcasses. This research found that sufficient poultry litter is generated within 20 mi (32 km) of Moorefield, WV, to support a commercial-sized digester operation. However, anaerobic digestion of poultry waste cannot be financially supported by methane production alone. To be financially viable, anaerobic digestion requires a disposal fee for poultry waste and/or the sale of the digested solid effluent as an organic fertilizer to retail markets.  相似文献   

15.
As Class B biosolids land application has become less acceptable to many local jurisdictions, low-cost processes to achieve Class A standards have become more popular. Prominent among these low-cost processes is thermophilic anaerobic digestion. As a result, thermophilic anaerobic digestion is now a popular topic in wastewater treatment literature, but quantifiable methods for selecting a particular thermophilic process have not been offered. To provide for this need, an empirical model was developed from data collected in thermophilic anaerobic digestion studies conducted using East Bay Municipal Utility District's (Oakland, California) primary and waste activated sludge to feed both bench- and full-scale digesters. The model predicts at which thermophilic temperature and mean cell residence time (MCRT) one process will outperform or equal another, with respect to fecal coliform reduction. The different disinfection efficiencies in the different thermophilic processes might be explained by the presence or absence of high volatile acid and/or un-ionized ammonia levels in the processes' digested sludges. Data from these studies also show an apparent relationship between increased thermophilic temperatures and volatile solids destruction, and between increased temperatures and specific volatile acids production, for digesters operating at a 13-day MCRT and higher, but not for digesters operating at a 2-day MCRT.  相似文献   

16.
The aim of this study was to examine the fate of the organothiophosphorus pesticide methidathion during anaerobic digestion of biological waste. Three reactor experiments were conducted under various conditions of temperature, pH and retention time. The influence of pH and temperature as well as the partitioning between solid and aqueous phase were studied in batch experiments. The mesophilic (25, 35 degrees C) reactor experiments showed a decline to about 10% of the maximum methidathion concentration within 30-80 d. In the thermophilic (55 degrees C) reactor experiment, methidathion disappeared within 20 d. The batch experiments showed an abiotic hydrolysis of methidathion over the experiment period of 4 d, accelerated by alkaline conditions (pH 10.5 and 12.8) and high temperatures (55 degrees C). The hydrolysis was also noticeable at a neutral pH, while methidathion was most stable at weakly acid pH values. Methidathion bonded strongly to the biological waste, and the amount released into the water phase was below the maximum aqueous solubility. About 10% of methidathion remained non-extractable. High concentrations of dissolved organic carbon and yeast extract as a model substance for disintegrated cells further reduced the content of methidathion in the water phase, possibly caused by co-sorption to the solid organic matter.  相似文献   

17.
有机固体废物堆肥化处理的微生物学机理研究   总被引:9,自引:0,他引:9  
由于符合持续发展的理念 ,利用微生物技术处理有机固体废物越来越受到人们的重视 ,其核心问题则是木质纤维素的生物降解。随着园林废物等高木质纤维素含量的城市生活垃圾的不断增加 ,以及对农业固体废物和食品工业废物再利用的需要 ,这一领域的研究取得了很大的进展。在研究中 ,针对好氧堆肥和厌氧发酵 2项主要的微生物处理技术 ,对其优势微生物菌群、不同降解底物和微生物降解动力学方面的最新研究进展进行了回顾和总结 ,并对环境微生物制剂的应用以及有机固体废物的微生物处理技术的发展做了合理的展望。  相似文献   

18.
农业蔬菜废物处理方法研究进展和探讨   总被引:6,自引:0,他引:6  
目前我国农业蔬菜废物污染问题正日益加重 ,蔬菜废物和其他固体废物相比具有高含水率、高营养成分和基本无毒害的特性 ,适宜于单独收集处理。本文介绍了国内外蔬菜废物处理方法的研究进展 ,包括好氧堆肥法、厌氧消化法、好氧 -厌氧联合处理法 ,并对这些方法的适用条件进行了论述。同时 ,探讨了接种微生物自然堆沤法的初步研究结果  相似文献   

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