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991.
利用3D打印灵活可控的特点和复合材料混合打印的优势,将可见光响应的ZnO/g-C3N4催化剂掺入ABS塑料,利用3D打印制成催化剂均匀稳定分布的光催化系统,使用流体动力学仿真模拟对反应器结构进行优化设计,用于处理相对密闭的室内空间中的病毒气溶胶.结果表明,病毒气溶胶比细菌气溶胶具有更强的抗逆性,添加螺旋导流板可以显著提升反应器传质性能并有效改善系统光催化效果,以提高对病毒气溶胶的去除率.以商业LED灯为光源的螺旋式反应器对高浓度病毒气溶胶(MS2、PhiX174噬菌体)和细菌气溶胶(大肠杆菌)具有高效去除效果,在3.75min停留时间可以实现对气溶胶的完全去除. 相似文献
992.
The anaerobic biodegradability of wastewaters from different chemical plants was determined by an integrated test strategy consisting of an anaerobic toxicity test, a static anaerobic biodegradation test and a continuously operated fixed bed reactor test. This integrated procedure offered a useful tool for screening wastewaters for anaerobic biodegradability. Four different wastewaters were tested for anaerobic toxicity and biodegradability. One wastewater was used in subsequent testing in a fixed bed reactor which aimed to illustrate a potential design of an anaerobic treatment plant. 相似文献
993.
Leguan Zhang Bo Xiao Zhiquan Hu Shiming Liu Gong Cheng Piwen He Lei Sun 《Waste management (New York, N.Y.)》2014,34(1):180-184
Pyrolysis of sewage sludge was studied in a free-fall reactor at 1000–1400 °C. The results showed that the volatile matter in the sludge could be completely released to gaseous product at 1300 °C. The high temperature was in favor of H2 and CO in the produced gas. However, the low heating value (LHV) of the gas decreased from 15.68 MJ/N m3 to 9.10 MJ/N m3 with temperature increasing from 1000 °C to 1400 °C. The obtained residual solid was characterized by high ash content. The energy balance indicated that the most heating value in the sludge was in the gaseous product. 相似文献
994.
Under mesophilic conditions (37 °C), a bench-scale experiment of dry fermentation start-up using kitchen waste was conducted in a fed-batch single phase reactor over a period of 40 days. The results showed that (1) comparing biogas production, efficiencies, and methane concentrations, three apparent different stages emerged: adaption, growth, and stability; (2) in adaption and growth stages, daily biogas production was 0–0.2 L/day and 0.2–0.4 L/day, respectively, and the concentration of methane in the biogas was 22.91% and 48.79%, respectively, with a biodegradation rate of approximately 34.72% in the adaption phase and 27.60% during the growth phase; (3) in the stability stage, the biogas production efficiency attained the maximal level and stabilized at approximately 0.6–0.4 L/day and the concentration of methane was 54.32%. Furthermore, the pH fell to 4.15, and the concentration of chemical oxygen demand increased from 51.139 to 119.295 mg/ml. 相似文献
995.
Biosorption of zinc (II) ions onto pre-treated powdered waste sludge (PWS) was investigated using a completely mixed tank operating in fed-batch mode instead of an adsorption column. Experiments with variable feed flow rate (0.05-0.5 L h(-1)), feed Zn(II) ion concentrations (37.5-275 mg L(-1)) and amount of adsorbent (1-6 g PWS) were performed using fed-batch operation at pH 5 and room temperature (20-25 degrees C). Break-through curves describing variations of aqueous (effluent) zinc ion concentrations with time were determined for different operating conditions. Percent zinc removal from the aqueous phase decreased, but the biosorbed (solid phase) zinc ion concentration increased with increasing feed flow rate and zinc concentration. A modified Bohart-Adams equation was used to determine the biosorption capacity of PWS (q'(s)) and the rate constant (K) for zinc ion biosorption. Biosorption capacity (q'(s)=57.7 g Zn kg(-1) PWS) of PWS in fed-batch operation was found to be comparable with powdered activated carbon (PAC) in column operations. However, the adsorption rate constant (K=9.17 m(3) kg(-1) h(-1)) in fed-batch operation was an order of magnitude larger than those obtained in adsorption columns because of elimination of mass transfer limitations encountered in the column operations. Therefore, a completely mixed tank operated in fed-batch mode was proven to be more advantageous as compared to adsorption columns due to better contact between the phases yielding faster adsorption rates. 相似文献
996.
The main objective of this paper was to perform a preliminary comparative study between chemical and electrochemical coagulation processes, both followed by flocculation and sedimentation of an effluent from an upflow anaerobic sludge blanket (UASB) reactor treating simulated wastewater from an unbleached Kraft pulp mill. The electrochemical treatment removed up to 67% (with aluminum electrodes) and 82% (with stainless-steel electrodes) of the remaining chemical oxygen demand (COD) and 84% (stainless steel) and 98% (aluminum) of the color in the wastewater. These efficiencies were achieved with an energy consumption ranging from 14 to 20 Wh l(-1). The coagulation-flocculation treatment with ferric chloride and aluminum sulfate removed up to 87% and 90% of COD and 94% and 98% of color, respectively. The addition of a high molecular weight cationic polymer enhanced both COD and color removal efficiencies. The two post-treatment processes proved to be technically feasible; however the economical feasibility could not be assessed since the experiments were performed with small reactors that could distort scale factors. 相似文献
997.
The safety assessment of an accident in the lunar base power plant is investigated for the stability of the operation. The lunar surface reactor is modeled for this study. The accident of cooling loop failure (ACLF) is one of the important scenarios for the virtual case in the moon nuclear power plant (NPP). The newly designed lunar nuclear power reactor (LNPR) is suggested for the commercial purpose. The system dynamics (SD) is used for the simulation of the safety assessment. The cyclic variation of the lunar surface temperature can affect to the physical situation of the coolant, which is expressed by the time step. The result shows the performance possibility of the long term cooling increases slightly in the short period of the time step. The dynamical simulation of the lunar environment is performed for the conceptual design of the NPP. 相似文献
998.
提盐速率对序批式生物反应器性能和微生物群落结构的影响 总被引:1,自引:0,他引:1
使用序批式生物反应器驯化耐盐活性污泥,探究提盐速率对污染物去除效果、活性污泥特性和微生物群落结构的影响.结果表明,快速提升盐度至30‰(30 d内提升盐度),COD和NH4+-N去除率均出现明显下降,由最初的85.5%和98.5%,分别降低至72.2%和81.7%;缓慢提升盐度至30‰(90 d内提升盐度),COD和NH4+-N去除率受盐度影响较小,表现出良好的去除性能.在缓慢提升盐度过程中,盐度为20‰,出水NO2--N升高至11.13 mg·L-1,NO3--N降低为0.56 mg·L-1,实现短程硝化;盐度为30‰,亚硝酸盐积累率约为90%,TN去除率升高至75%左右.随着盐度升高,胞外聚合物中多糖和蛋白质的含量不断增加,当盐度高于15‰时,多糖明显增加.高通量测序结果表明,经快速提盐和缓慢提盐驯化,微生物多样性明显下降,Shannon指数由8.06分别降为4.34和6.17.随着盐度增加,Micropruina、Denitromonas、TM7a和Marinicella表现出良好的耐盐特性.经快速提盐驯化后,Denitratisoma、Defluviimonas、Arenimonas和Denitromonas等反硝化菌的相对丰度明显减少. 相似文献
999.
对内循环厌氧(IC)反应器的探讨 总被引:1,自引:0,他引:1
IC反应器是在UASB反应器的基础上发展起来的第3代厌氧反应器,它具有效率高、能耗低、投资少、占地省等优掌。详细分析了IC反应器的一些特性,并介绍了一种由我国研究者自行研制开发的内循环厌氧反应器——多级内循环厌氧(MIC)反应器。 相似文献
1000.