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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
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Fate of ah receptor agonists during biological treatment of an industrial sludge containing explosives and pharmaceutical residues 总被引:1,自引:0,他引:1
Gustavsson LK Klee N Olsman H Hollert H Engwall M 《Environmental science and pollution research international》2004,11(6):379-387
GOAL, SCOPE AND BACKGROUND: Sweden is meeting prohibition for deposition of organic waste from 2005. Since 1 million tons of sludge is produced every year in Sweden and the capacity for incineration does not fill the demands, other methods of sludge management have to be introduced to a higher degree. Two biological treatment alternatives are anaerobic digestion and composting. Different oxygen concentrations result in different microbial degradation pathways and, consequently, in a different quality of the digestion or composting residue, It is therefore necessary to study sludge treatment during different oxygen regimes in order to follow both degradation of compounds and change in toxicity. In this study, an industrial sludge containing explosives and pharmaceutical residues was treated with anaerobic digestion or composting, and the change in toxicity was studied. Nitroaromatic compounds, which are the main ingredients of both pharmaceutical and explosives, are well known to cause cytotoxicity and genotoxicity. However, little data are available concerning sludge with nitroaromatics and any associated dioxin-like activity. Therefore, we studied the sludge before and after the treatments in order to detect any changes in levels of Ah receptor (AhR) agonists using two bioassays for dioxin-like compounds. METHODS: An industrial sludge was treated with anaerobic digestion or composting in small reactors in a semi-continuous manner. The same volume as the feeding volume was taken out daily and stored at -20 degrees C. Sample preparation for the bioassays was done by extraction using organic solvents, followed by clean up with silica gel or sulphuric acid, yielding two fractions. The fractions were dissolved in DMSO and tested in the bioassays. The dioxin-like activity was measured using the DR-CALUX assay with transfected H4IIE rat hepatoma pGudluc cells and an EROD induction assay with RTL-W1 rainbow trout liver cells. RESULTS AND DISCUSSION: The bioassays showed that the sludge contained AhR agonists at levels of TCDD equivalents (TEQs) higher than other sludge types in Sweden. In addition, the TEQ values for the acid resistant fractions increased considerably after anaerobic digestion, resulting in an apparent formation of acid resistant TEQs in the anaerobic reactors. Similar results have been reported from studies of fermented household waste. There was a large difference in effects between the two bioassays, with higher TEQ levels in the RTL-W1 EROD assay than in the DR-CALUX assay. This is possibly due to a more rapid metabolism in rat hepatocytes than in trout hepatocytes or to differences in sensitivities for the AhR agonists in the sludge. It was also demonstrated by GC/FID analysis that the sludge contained high concentrations of nitroaromatics. It is suggested that nitroaromatic metabolites, such as aromatic amines and nitroanilines, are possible candidates for the observed bioassay effects. It was also found that the AhR agonists in the sludge samples were volatile. CONCLUSIONS: The sludge contained fairly high concentrations of volatile AhR agonists. The increase of acid resistant AhR agonist after anaerobic digestion warrants further investigations of the chemical and toxic properties of these compounds and of the mechanisms behind this observation. RECOMMENDATION AND OUTLOOK: This study has pointed out the benefits of using different types of mechanism-specific bioassays when evaluating the change in toxicity by sludge treatment, in which measurement of dioxin-like activity can be a valuable tool. In order to study the recalcitrant properties of the compounds in the sludge using the DR-CALUX assay, the exposure time can be varied between 6 and 24 hours. The properties of the acid-resistant AhR agonists formed in the anaerobic treatment have to be investigated in order to choose the most appropriate method for sludge management. 相似文献
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对采用共沉淀法制备的纳米Fe3O4颗粒进行表征,并探究在中温(35 ℃)厌氧消化过程中纳米Fe3O4浓度对产气性能的影响。结果表明:纳米Fe3O4浓度为100 mg/L时可使厌氧体系中的氨氮浓度维持在600~1 200 mg/L,pH为7~8,TCODCr以及SCODCr去除率分别提高了8.35%和9.90%;该浓度下厌氧体系中产生的挥发性脂肪酸(VFA)浓度最大,可达4 300 mg/L,且强化了对乙酸的利用;该试验组的产气性能最好,相对于空白组,其累积产气量提高了28.08%,产气周期缩短了2 d,甲烷浓度提高了6%。 相似文献
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考察系统负荷(以COD计)为11.36 g·(L·d)-1时,6种不同进料频率下,餐厨垃圾和剩余污泥中温厌氧共发酵过程中产气量、气体组分、SCOD、pH和挥发性脂肪酸(VFAs)的变化,旨在明确进料频率对系统稳定性的影响,同时结合单一VFA的产甲烷动力学特性,探明系统不稳定的原因。结果表明,进料频率较高时,进料周期内系统的气体组分、SCOD和pH无明显变化,产气量呈线性增长,且基本无VFA积累。随着进料频率降低,进料初期过快的水解酸化导致SCOD和VFAs浓度呈现明显的先升高后逐渐降低的趋势,从而导致pH和甲烷含量波动明显。当进料频率为1 次·d-1时,系统中pH降至7.5,甲烷含量降至45.4%,丙酸占总有机酸的比例最高可达87.9%。相比乙酸而言,丙酸在甲烷化过程中存在的延滞期(1.21 h)及较低的甲烷化速率(5.01 mL·h-1)可能是导致存在丙酸积累的低频进料系统中稳定性较差的原因之一。 相似文献
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考察一次性降温和阶梯式降温对厌氧氨氧化反应器(ASBR)脱氮性能的影响。一次性降温方式(30 ℃降至15 ℃),阶梯式降温方式(30 ℃降至25 ℃,再降至20 ℃,最后降至15 ℃)。温度30 ℃时,NH4+-N和NO2--N的去除率分别为97.3%和98.5%,总氮去除速率为5.12 mg·(g·h)-1,ΔNO2--N/ΔNH4+-N为1.33,厌氧氨氧化活性(SAA)为0.139 g·(g·d)-1。一次性降温至15 ℃时,NH4+-N和NO2--N的去除率分别降至47.9%和55.1%,总氮去除速率降至2.74 mg·(g·h)-1,ΔNO2--N/ΔNH4+-N升至1.51,SAA降至0.071 g·(g·d)-1。阶梯式降温至15 ℃时,NH4+-N和NO2--N的去除率降至51.6%和61.2%,总氮去除速率降至3.22 mg·(g·h)-1,ΔNO2--N/ΔNH4+-N升至1.48,SAA降为0.083 g·(g·d)-1。阶梯式降温方式脱氮性能更佳。 相似文献
89.
为提高污泥、香蕉秸秆厌氧发酵的甲烷产率,采用批式实验,研究污泥与香蕉秸秆厌氧发酵及其协同特性。实验结果表明:污泥和香蕉秸秆实验组分别会出现氨抑制、酸抑制现象,影响厌氧发酵的进行,一段时间后都可以自行解除抑制恢复产气。热碱污泥、碱浴秸秆实验组均可以解除抑制作用,甲烷产率较预处理前分别提高43%、176%。混合物质发酵实验组的甲烷产率较热碱污泥、碱浴秸秆实验组分别提高了110%、30%,较污泥和香蕉秸秆实验组分别提高了200%、259%。说明污泥和香蕉秸秆混合厌氧发酵,可以提高甲烷产率。 相似文献
90.
沼液回流对秸秆与污泥混合中温厌氧消化的影响 总被引:1,自引:0,他引:1
为了提高秸秆与市政污泥混合厌氧消化的消化产率,以秸秆污泥混合物作为底物,在批次实验中研究不同沼液回流对中温(35 ℃)混合厌氧消化过程的影响。实验采用0% 、20%、30%、40%、50%和60%等6种不同的沼液回流量,分析不同沼液回流量下产气量、甲烷含量、发酵过程氨氮含量、sCOD、总挥发酸(VFAs)的变化情况。结果表明:50%的沼液回流产气量和甲烷产量均最大,分别是1 645 mL和797.5 mL,TS和VS去除率达到17.5%和47.8%,单位VS甲烷产量为613.45 mL·g-1,较未加沼液的发酵瓶提高了37.7%,且无VFAs积累。过高的沼液回流量提升了厌氧反应的氨氮浓度,对厌氧产气过程产生了抑制。50%沼液回流量可以作为秸秆污泥混合厌氧消化最佳回流量。 相似文献