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991.
市政污水处理厂产生的脱水剩余污泥中含有大量的细菌胞外聚合物、胞内聚合物等大分子有机物,是一种良好的生物吸附剂制备原料。以脱水污泥为原料,采用碱提取的方法,对污泥中胞外聚合物与胞内聚合物进行提取,提取得到聚合物吸附剂,分析了聚合物吸附剂中聚合物浓度、核酸浓度随提取剂中NaOH浓度的变化,考察了聚合物吸附剂对水中镉的等温吸附性能。研究结果表明,当NaOH浓度小于0.5 mol/L时,随着提取剂NaOH浓度的升高,得到的提取液中聚合物浓度、核酸浓度逐渐升高。最佳的提取剂中NaOH浓度为0.3 mol/L,该条件下能够充分实现污泥中聚合物的提取。当NaOH浓度高于0.5 mol/L,聚合物中核酸存在一定程度的分解。聚合物吸附剂对水中Cd2+的吸附符合Langmuir模型,NaOH浓度为0.3 mol/L条件下提取得到的聚合物吸附剂的镉饱和吸附容量最大,达1.022 mmol/g。  相似文献   
992.
城市市政污水处理厂产生的剩余污泥是一种良好的重金属生物吸附剂制备原料。以北京某市政污水处理厂产生的脱水剩余污泥为原料,采用碱改性处理方法,制备得到碱改性脱水污泥生物吸附剂,通过其对水中镉的等温吸附实验,考察其重金属吸附效能。研究结果表明:碱改性脱水污泥对水中镉的等温吸附曲线符合Langmuir等温吸附模型。碱改性处理后,脱水污泥对水中镉的最大饱和吸附容量提高了2.8倍,达0.966 mmol/g,显著高于同类型脱水污泥生物吸附剂。碱改性脱水污泥对水中镉的最大饱和吸附容量与改性过程中所使用的Na OH浓度之间的线性相关性较差,呈现一定的波动变化趋势。  相似文献   
993.
A high strength chemical industry wastewater was assessed for its impact on anaerobic microbial com- munity dynamics and consequently mesophilic methane generation. Cumulative methane production was 251 mL/g total chemical oxygen demand removed at standard temperature and pressure at the end of 30 days experimental period with a highest recorded methane percentage of 80.6% of total biogas volume. Volatile fatty acids (VFAs) analysis revealed that acetic acid was the major intermediate VFAs produced with propionic acid accumulating over the experimental period. Quantitative analysis of microbial communities in the test and control groups with quantitative real time polymerase chain reaction highlighted that in the test group, Eubacteria (96.3%) was dominant in comparison with methanogens (3.7%). The latter were dominated by Methanomicrobiales and Methanobacteriales while in test groups increased over the experimental period, reaching a maximum on day 30. Denaturing gradient gel electrophoresis profile was performed, targeting the 16S rRNA gene of Eubacteria and Archaea, with the DNA samples extracted at 3 different time points from the test groups. A phylogenetic tree was constructed for the sequences using the neighborhood joining method. The analysis revealed that the presence of organisms resembling Syntrophomonadaceae could have contributed to increased production of acetic and propionic acid intermediates while decrease of organisms resembling Pelotomaculum sp. could have most likely contributed to accumulation of propionic acid. This study suggested that the degradation of organic components within the high strength industrial wastewater is closely linked with the activity of certain niche microbial communities within eubacteria and methanogens.  相似文献   
994.
Arsenic in the environment is attracting increasing attention due to its chronic health effects. Although arsenite(As(III)) is generally more mobile and more toxic than arsenate(As(V)), reducing As(V) to As(III) may still be a means for decontamination, because As(III) can be removed from solution by precipitation with sulfide or by adsorption or complexation with other metal sulfides. The performance of As(V) bio-reduction under autohydrogenotrophic conditions was investigated with batch experiments. The results showed that As(V) reduction was a biochemical process while both acclimated sludge and hydrogen were essential. Most of the reduced arsenic remained in a soluble form, although 20% was removed with no addition of sulfate, while 82% was removed when sulfate was reduced to sulfide. The results demonstrated that the reduced arsenic was re-sequestered in the precipitates, probably as arsenic sulfides. Kinetic analysis showed that pseudo first-order kinetics described the bio-reduction process better than pseudo second-order. In particular, the influences of pH and temperature on As(V) reduction by acclimated sludge under autohydrogenotrophic conditions and total soluble As removal were examined. The reduction process was highly sensitive to both pH and temperature, with the optimum ranges of pH 6.5–7.0 and 30–40°C respectively. Furthermore, Arrhenius modeling results for the temperature effect indicated that the As(V) reduction trend was systematic. Total soluble As removal was consistent with the trend of As(V) reduction.  相似文献   
995.
The nitrogen changes and the nitrogen mass balance in a free water surface flow constructed wetland (CW) using the four-year monitoring data from 2008 to 2012 were estimated. The CW was composed of six cells in series that include the first settling basin (Cell 1), aeration pond (Cell 2), deep marsh (Cell 3), shallow marsh (Cell 4), deep marsh (Cell 5) and final settling basin (Cell 6). Analysis revealed that the NH4+-N concentration decreased because of ammonification which was then followed by nitrification. The NO4+-N and NO4+-N were also further reduced by means of microbial activities and plant uptake during photosynthesis. The average nitrogen concentration at the influent was 37,819 kg/year and approximately 45% of that amount exited the CW in the effluent. The denitrification amounted to 34% of the net nitrogen input, whereas the accretion of sediment was only 7%. The biomass uptake of plants was able to retain only 1% of total nitrogen load. In order to improve the nutrient removal by plant uptake, plant coverage in four cells (i.e., Cells 1, 3, 4 and 5) could be increased.  相似文献   
996.
A novel method based on the selective pressure of particle size (particle-size cultivation method, PSCM) was developed for the cultivation and operation of aerobic granular sludge in a continuous-flow reactor, and compared with the conventional method based on the selective pressure of settling velocity (settling-velocity cultivation method, SVCM). Results indicated that aerobic granules could be cultivated in continuous operation mode by this developed method within 14 days. Although in the granulation process, under particle-size selective pressure, mixed liquor suspended solids (MLSS) in the reactor fluctuated greatly and filamentous bacteria dominated the sludge system during the initial operation days, no obvious difference in profile was found between the aerobic granules cultivated by PSCM and SVCM. Moreover, aerobic granules cultivated by PSCM presented larger diameter, lower water content and higher specific rates of nitrification, denitrifieation and phosphorus removal, but lower settling velocity. Under long term operation of more than 30 days, aerobic granules in the continuous-flow reactor could remain stable and obtain good chemical oxygen demand (COD), NH4^+-N, total nitrogen (TN) and total phosphorus (TP) removal. The results indicate that PSCM was dependent on the cultivation and maintenance of the stability of aerobic granules in continuous-flow bioreactors.  相似文献   
997.
在A/A/O普通活性污泥工艺中引入非寡毛类微型后生动物考察其生长条件和对剩余污泥的减量效果及对系统处理效果的影响。结果表明,当进水负荷小于0.5 mg(/mg MLSS·d)时,非寡毛类微型后生动物可大量生长;当内回流比升高、外回流比降低时,更有利于虫体的繁殖。经过适时的运行工艺调整可使生化系统虫体密度和稳定性提高,污泥减量效果可达到40%以上。非寡毛类后生动物的活动与摄食作用提高了系统污泥的沉降性能,并对系统出水COD、NH3-N、TN、TP、SS没有影响。。  相似文献   
998.
采用铁碳微电解法对聚氯乙烯(PVC)离心母液废水进行预处理。分别考察反应时间、铁粉投加量、Fe/C(质量比)、pH值及曝气速率对母液废水中的COD和聚乙烯醇(PVA)去除率的影响,并在此基础上通过正交实验确定了废水COD的最佳处理条件。结果表明,最佳处理条件为:反应时间为4 h、铁粉投加量为30 g/L、Fe/C为1:2、pH值为2、曝气速率为0.8 L/min。在该条件下,废水中COD、PVA和TOC的平均去除率分别为(67%±2)%、(98%±1)%和(55%±3)%,废水的BOD/COD值从0.3提高到0.5,可生化性得到了显著提高。同时,废水中的NH3-N、浊度也在很大程度上得到了去除,出水中总铁含量也很低。  相似文献   
999.
针对UASB耐冲击能力低的问题,采用短暂冲击负荷的方法进行52 d中试研究,并考察接种絮状污泥的UASB对以污冷凝水为主要成分的酒精废水的处理效果,结果表明,UASB呈现较强耐冲击负荷能力;第49天产气速率最高,可达3.03 L/(L·d),反应器内形成了粒径0.5~1.5 mm的颗粒,电镜扫描的颗粒污泥结构致密,由多个杆状细菌形成网状结构。在夏季无保温措施、负荷冲击条件下培养颗粒污泥是可行的。  相似文献   
1000.
采用萃取结晶法回收石油磺酸盐工业生产中高盐废水中的石油磺酸盐,根据溶解度筛选萃取剂,研究各萃取剂的回收效果。采用平衡法测定各溶剂对石油磺酸盐和硫酸铵的溶解度,优选乙醇、异丙醇和正丁醇为萃取剂回收石油磺酸盐并脱除硫酸铵。室温下,一定溶剂比的正丁醇对硫酸铵的结晶率远小于乙醇和异丙醇,而正丁醇回收的石油磺酸盐的纯度远大于乙醇和异丙醇,高达98%;各萃取剂对石油磺酸盐的回收率顺序:乙醇>异丙醇>正丁醇。因此,根据产品需求选择合适的萃取剂及溶剂比处理废水,从而达到脱盐和回收石油磺酸盐的双重目的。  相似文献   
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