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261.
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
262.
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
263.
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
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265.
通过优化阴极材料,构建新型单室无膜壁式空气阴极微生物燃料电池,开展了污泥浓度、阳极面积、导线材料和NaCl离子浓度等影响因素及其优化试验研究。结果显示:在恒温30℃和外接电阻1 000Ω的条件下,以铜线为导线,污泥浓度为21 000 mg/L,阳极面积为31.4 cm2,Na+浓度为200 mmol/L时,其产电性能最佳,最大电压为597 mV,最大输出功率密度为301 mW/m2,内阻为92.5Ω。此外,还分析了污泥运行过程中的变化。与目前其他以未经过预处理的剩余污泥作为底物的微生物燃料电池相比,该新型单室无膜壁式空气阴极微生物燃料电池功率密度较高,内阻较低。 相似文献
266.
以城市污水厂中的剩余污泥为主要原料制备污泥吸附剂(SA),并用于柠檬黄-85(Tt-85)脱色的实验研究。静态实验主要考察了pH值、投加量、反应时间、反应温度和Tt-85初始浓度对吸附的影响。结果表明:在投加质量浓度为6 g/L,pH值=2.0,温度为25℃的条件下,反应90 min后,SS对水中初始质量浓度为65 mg/L和221 mg/L的Tt-85去除率分别达到了97%和75%。对动力学实验数据进行拟合,发现准二级动力学模型能较好地描述SA对Tt-85的吸附行为。动态吸附柱实验表明,污泥凝胶球对水中Tt-85的去除率为64%。Langmuir等温吸附模型符合SA对Tt-85的吸附过程,其最大吸附质量比为27.78 mg/g,由SEM,FTIR和XRD的分析可得,SA对柠檬黄-85的化学吸附主要发生在表面,其中SA表面羟基官能团起到关键性作用。 相似文献
267.
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269.
结合沈阳市污泥及其生物干化后的产物指标情况,对污泥处理产物的资源化利用方向进行分析,主要有土地利用、焚烧发电及填埋场覆盖土等几个方面。 相似文献
270.
UASB处理生物柴油废水的效果研究 总被引:1,自引:0,他引:1
采用升流式厌氧污泥床(UASB)工艺处理地沟油回收制备生物柴油废水,通过试验研究了UASB反应器各个阶段对该类废水的处理效果,并考察了甲基磺酸、对甲基苯磺酸两种预酯化催化剂对该类废水处理效果的影响。结果表明:当进水COD为15g/L、容积负荷为15kg/(m3·d)时,UASB反应器COD的去除率稳定在87%左右,出水VFA为4~6mmol/L,沼气产量为16.8L/d;当容积负荷稳定在5kg/(m3·d),进水甲基磺酸浓度为5500mg/L时,UASB反应器COD的去除率达83%以上,进水对甲基苯磺酸浓度为1 000mg/L时,UASB反应器COD的去除率为58.3%,从废水处理的难易程度角度考虑,建议采用甲基磺酸为预酯化催化剂。 相似文献