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41.
Pretreatment of thickened waste activated sludge (TWAS) by combined microwave and alkaline pretreatment (MAP) was studied to improve thermophilic anaerobic digestion efficiency. Uniform design was applied to determine the combination of target temperature (110–210°C), microwave holding time (1–51 min), and NaOH dose (0–2.5 g NaOH/g suspended solids (SS)) in terms of their effect on volatile suspended solids (VSS) solubilization. Maximum solubilization ratio (85.1%) of VSS was observed at 210°C with 0.2 g-NaOH/g-SS and 35 min holding time. The effects of 12 different pretreatment methods were investigated in 28 thermophilic batch reactors by monitoring cumulative methane production (CMP). Improvements in methane production in the TWAS were directly related to the microwave and alkaline pretreatment of the sludge. The highest CMP was a 27% improvement over the control. In spite of the increase in soluble chemical oxygen demand concentration and the decrease in dewaterability of digested sludge, a semi-continuous thermophilic reactor fed with pretreated TWAS without neutralization (at 170°C with 1 min holding time and 0.05 g NaOH/g SS) was stable and functioned well, with volatile solid (VS) and total chemical oxygen demand (TCOD) reductions of 28% and 18%, respectively, which were higher than those of the control system. Additionally, methane yields (L@STP/g-CODadded, at standard temperature and pressure (STP) conditions of 0°C and 101.325 kPa) and (L@STP/g VSadded) increased by 17% and 13%, respectively, compared to the control reactor.  相似文献   
42.
Laboratory reactors were operated by using piggery wastewater and the effluent of anaerobic digester from piggery wastewater plants to study the effect of anaerobic digestion on nitritation rate.  相似文献   
43.
果蔬废弃物两相厌氧消化特征研究   总被引:3,自引:0,他引:3  
董永亮 《能源环境保护》2011,25(4):19-23,28
厌氧消化在处理果蔬废弃物具有较高的处理效率,同时可获得甲烷等能源气体,具有很大的技术优势和广阔的应用前景。本文通过研究两相厌氧系统启动及试运行,深入分析了该系统处理果蔬废弃物的消化特征。酸化初期,苹果和白菜两种底物在酸化过程中均降解迅速。约10d即可分解70%80%的还原糖;当系统运行40d后,pH稳定在7.5左右,反应器已形成较好的缓冲体系:氧化还原电位稳定于-460--540mV之间。适宜产甲烷阶段的进行。挥发性脂肪酸的分析表明,果蔬废弃物置于循环反应体系中。仍有一段时间的酸化过程。该过程中丁酸由2000mg/L增加至2600mg/L,戊酸由600mg/L增加至1300mg/L。乙酸含量基本稳定在1000mg/L左右,丙酸含量略有提高,由450mg/L增加至600mg/L。此阶段发酵类型为丁酸型发酵.各挥发酸所占比例由高到低依次为丁酸、戊酸、乙酸和丙酸,所占比例分别为45%、23%、20%和10%。  相似文献   
44.
采用微波消解法对固体废物浸出液样品进行前处理,采用乙炔-空气火焰原子吸收法测定钡的含量,检出限为2.04mg/L,加标回收率为94.5%,精密度为4.85%-6.81%。  相似文献   
45.
佟娟  王元月  魏源送 《环境科学》2014,35(10):3814-3820
城市污泥中含有大量的耐药菌,具有向环境传播耐药菌与抗性基因的潜在危险,但目前缺乏对城市污泥厌氧消化过程中耐药菌的研究.为此对某城市污水处理厂卵形消化池污泥进行了为期1 a的调查研究,考察了中温厌氧消化过程中四环素类与β-内酰胺类抗生素厌氧耐药菌的污染特征与去除效果,并分析了耐药菌的季节性变化规律.结果表明,厌氧进泥中四环素类耐药菌浓度与耐药率均低于β-内酰胺类.中温厌氧消化过程可以去除1.48~1.64 log单位的耐药菌(P<0.05),但经过厌氧消化后氨苄西林与头孢噻吩耐药率有显著增长(分别增加了12.0%与14.3%,P<0.05).厌氧进泥中耐药菌分布有明显的季节特征,除金霉素耐药菌外,其它耐药菌的浓度均为寒冷季显著高于温暖季(P<0.05).  相似文献   
46.
微波及其组合工艺强化污泥厌氧消化研究   总被引:4,自引:4,他引:0  
为提高剩余污泥的厌氧消化效能和脱水性能,考察了微波及其组合污泥预处理工艺的强化污泥厌氧消化效果,同时考察了预处理-厌氧消化过程的污泥理化特征及其脱水性能.结果表明,微波及其组合工艺可以强化污泥厌氧消化产甲烷,其中微波-过氧化氢-碱(0.2)的强化效果最为显著,不仅30 d累计产甲烷量比对照组增加了13.34%,而且产甲烷速率也得到了提升.与单独微波处理相比,过氧化氢、碱的投加显著提高了溶解性COD的释放量,这表明微波、过氧化氢、碱之间的协同作用能有效破碎污泥,进而强化厌氧消化效果;微波-酸预处理后的污泥具有良好的脱水性能,毛细吸水时间(CST)只有9.85 s,污泥脱水性能的改善与其表面电性、粒径分布的变化密切相关;不同预处理条件下的污泥经过厌氧消化后,污泥脱水性能较为接近.  相似文献   
47.
微波消解ICP-AES法测定土壤中的金属元素研究   总被引:1,自引:0,他引:1  
采用硝酸-盐酸-氢氟酸-双氧水作溶剂,通过微波消解技术、电感耦合等离子发射光谱法测定土壤中的锑、砷、铍、镉、铬、铜、铅、镍、硒、银、铊、锌,优化了微波消解仪和等离子发射光谱仪的工作参数,研究了共存离子的干扰和消除方法。优化后的微波消解酸体系及用量比例为HNO3∶HCl∶HF∶H2O2=5∶2∶3∶1,方法线性良好,各元素的检出限在0.000 2 mg/L~0.010 1 mg/L之间,土壤样品测定的标准偏差在0.001~0.051之间,加标回收率在85.5%~108.5%之间。该方法检出限低、精密度高、准确度好,测定结果令人满意。  相似文献   
48.
土壤样品的传统消解方法是用电热板硝酸-氢氟酸-高氯酸体系,消解时间长,试剂用量大,对操作人员身体危害大,并且测定结果也不准确。本文阐述了微波消解——原子吸收分光光度法测定土壤中的钴、钼。通过硝酸-盐酸-氢氟酸-高氯酸消解体系,选择出微波消解的最佳消解条件,通过对微波消解体系和传统消解体系进行对比试验,微波消解体系具有赶酸时间短,准确度高,对人体危害小,是一种值得推广的土壤消解方法。  相似文献   
49.
魏欣  薛顺利  杨帆  李响  刘振鸿  薛罡  高品 《环境科学》2017,38(2):697-702
为研究污泥高温厌氧消化过程中零价铁(Fe0)对抗生素抗性基因的消减影响,采用荧光定量PCR方法定量检测了7种四环素抗性基因(TC-ARGs,包括tetA、tetC、tetG、tetM、tetO、tetW和tetX)及第一类整合子int I1基因在厌氧消化过程中的丰度变化,同时检测分析了挥发性脂肪酸(VFAs)的质量浓度变化,并探讨了目标基因与VFAs之间的相关关系.结果表明,适量Fe0(如0.10 g·g~(-1),以Fe0/VSS计)不仅可以强化污泥厌氧消化进程,显著提高总VFAs和乙酸的产生量,而且能够增强TCARGs和int I1基因的消减效果.尽管如此,过量Fe0(如1.17 g·g~(-1),以Fe0/VSS计)对污泥高温厌氧消化过程中TC-ARGs和int I1基因消减的增强效果并不显著,推测可能是由于基因水平转移的发生所导致的.通过相关性分析可知,TC-ARGs(除tetO基因外)和int I1基因与乙酸之间存在显著负相关性,表明乙酸可能对TC-ARGs和int I1基因的消减具有促进作用.  相似文献   
50.
Vacuum evaporation consists in the boiling of a liquid substrate at negative pressure, at a temperature lower than typical boiling temperature at atmospheric conditions. Condensed vapor represents the so called condensate, while the remaining substrate represents the concentrate.This technology is derived from other sectors and is mainly dedicated to the recovery of chemicals from industrial by-products, while it has not been widely implemented yet in the field of agricultural digestate treatment. The present paper relates on experimental tests performed in pilot-scale vacuum evaporation plants (0.100 and 0.025 m3), treating filtered digestate (liquid fraction of digestate filtered by a screw-press separator). Digestate was produced by a 1 MWe anaerobic digestion plant fed with swine manure, corn silage and other biomasses. Different system and process configurations were tested (single-stage and two-stage, with and without acidification) with the main objectives of assessing the technical feasibility and of optimizing process parameters for an eventual technology transfer to full scale systems.The inputs and outputs of the process were subject to characterization and mass and nutrients balances were determined.The vacuum evaporation process determined a relevant mass reduction of digestate.The single stage configuration determined the production of a concentrate, still in liquid phase, with a total solid (TS) mean concentration of 15.0%, representing, in terms of mass, 20.2% of the input; the remaining 79.8% was represented by condensate. The introduction of the second stage allowed to obtain a solid concentrate, characterized by a content of TS of 59.0% and representing 5.6% of initial mass.Nitrogen balance was influenced by digestate pH: in order to limit the stripping of ammonia and its transfer to condensate it was necessary to reduce the pH. At pH 5, 97.5% of total nitrogen remained in the concentrate. This product was characterized by very high concentrations of total Kjeldhal nitrogen (TKN), 55,000 mg/kg as average.Condensate, instead, represented 94.4% of input mass, containing 2.5% of TKN. This fraction could be discharged into surface water, after purification to meet the criteria imposed by Italian regulation. Most likely, condensate could be used as dilution water for digestion input, for cleaning floor and surfaces of animal housings or for crop irrigation.The research showed the great effectiveness of the vacuum evaporation process, especially in the two stage configuration with acidification. In fact, the concentration of nutrients in a small volume determines easier transportation and reduction of related management costs. In full scale plants energy consumption is estimated to be 5–8 kWhe/m3 of digestate and 350 kWht/m3 of evaporated water.  相似文献   
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