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981.
Microbial application is an efficient, economical, and ecofriendly method for remediating black-odorous rivers. In this study, the field treatment effect and microbial community changes were monitored during remediation by the acclimated complex microorganisms of a typical black-odorous stream. After the treatment, the total phosphorus and ammonia contents decreased by 74.0% and 76.3% and the concentrations of dissolved oxygen increased from 1.65 to 4.90 mg/L, indicating the effectiveness of the acclimated composite microorganisms. The proportion of Bacteroidetes decreased significantly by 48.1% and that of Firmicutes increased by 2.23% on average, and the microbial diversity index first increased and then tended to be uniform. Redundancy analysis demonstrated that the pH, dissolved oxygen, and oxidation-reduction potential together determined the composition of the microbial communities (p < 0.05). These findings showed that the acclimated composite microorganisms can effectively remediate the black odor.  相似文献   
982.
External organic carbon sources are needed to provide electron donors for the denitrification of wastewater with a low COD/NO3--N(C/N) ratio, increasing the treatment cost. The economic strategy is to enhance the bioactivity and/or biodiversity of denitrifiers to efficiently utilize organic substances in wastewater. In this study, novel zero-valent iron(ZVI) composite carriers were prepared and implemented in a suspended carrier biofilm reactor to enhance the bioactivity an...  相似文献   
983.
Bimetallic oxides composites have received an increasing attention as promising adsorbents for aqueous phosphate (P) removal in recent years. In this study, a novel magnetic composite MZLCO was prepared by hybridizing amorphous Zr-La (carbonate) oxides (ZLCO) with nano-Fe3O4 through a one-pot solvothermal method for efficient phosphate adsorption. Our optimum sample of MZLCO-45 exhibited a high Langmuir maximum adsorption capacity of 96.16 mg P/g and performed well even at low phosphate concentration. The phosphate adsorption kinetics by MZLCO-45 fitted well with the pseudo-second-order model, and the adsorption capacity could reach 79% of the ultimate value within the first 60 min. The phosphate adsorption process was highly pH-dependent, and MZLCO-45 performed well over a wide pH range of 2.0-8.0. Moreover, MZLCO-45 showed a strong selectivity to phosphate in the presence of competing ions (Cl, NO3, SO42−, HCO3, Ca2+, and Mg2+) and a good reusability using the eluent of NaOH/NaCl mixture, then 64% adsorption capacity remained after ten recycles. The initial 2.0 mg P/L in municipal wastewater and surface water could be efficiently reduced to below 0.1mg P/L by 0.07 g/L MZLCO-45, and the phosphate removal efficiencies were 95.7% and 96.21%, respectively. Phosphate adsorption mechanisms by MZLCO-45 could be attributed to electrostatic attraction and the inner-sphere complexation via ligand exchange forming Zr/La-O-P, -OH and CO32− groups on MZLCO-45 surface played important roles in the ligand exchange process. The existence of oxygen vacancies could accelerate the phosphate absorption rate of the MZLCO-45 composites.  相似文献   
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985.
986.
细菌等致病微生物可通过空气、水、土壤、食物等途径在自然界中传播,易对人体造成诸如肺结核、淋病、鼠疫等健康风险。目前广泛使用的灭菌方式包括紫外线、臭氧、氯气、电荷等物理或化学方法,其中电荷杀菌因具有无组织毒性的优点被广泛使用。研究表明:有机阳离子型电荷杀菌材料相比传统的金属离子杀菌材料具有抗菌效能优异、不产生耐药性、生物安全性高等优点,其杀菌性能受分子大小、烷基链、反离子类型、电荷密度等因素影响。本文系统综述了目前有机阳离子型电荷杀菌材料的类型、结构特征、杀菌性能及影响因素,抗菌机理及应用现状,分析了其存在的问题和发展方向,为有机阳离子型电荷杀菌材料的后续研究和应用提供一定的借鉴和指导。  相似文献   
987.
Environmental dredging is an efficient means to counteract the eutrophication of water bodies caused by endogenous release of nitrogen and/or phosphorus from polluted sediments. The huge operational cost and subsequent disposal cost of the dredged polluted sediments, as well as the adverse effect on the benthic environment caused by excessive dredging, make the currently adopted dredging methods unfavorable. Precise dredging, i.e., determining the dredging depth based on the pollution level, not only significantly decreases the costs but also leaves a uniform favorable environment for benthos. However, there is still no feasible process to make this promising method executable. Taking a river heavily polluted by organic compounds as an example, we proposed an executable precise dredging process, including sediment survey, model establishment, data interpolation, and calculation of dredging amount. Compared with the traditional dredging method, the precise one would save 16 to 45 % of cost according to different pollutant removal demands. This precise dredging method was adopted by the National Water Project of China to treat the endogenous pollution of Nanfei River in 2010. This research provides a universal scientific and engineering basis for sediment dredging projects.  相似文献   
988.
城市河流是城市的生命线,对于当地经济发展和居民身心健康均有不可替代的重要作用。通过分析我国城市河流污染的总体现状发现,我国城市河流治污面临着城市化进程、区域利益分化、职能部门能力缺失等困境,以此为前提,分别从树立正确的城市河流治污观念、设立流域综合管理机构、预防为主和防控结合、建立科学合理的城市河流生态系统修复模式几方面提出完善对策。  相似文献   
989.
通过分析秦皇岛市2011—2012年每日的API值及大气PM10、 SO2、 NO2的日平均浓度变化与同时期的呼吸系统疾病日门诊人数资料,建立了时间序列分析数学模型,分析了秦皇岛市主要大气污染物与呼吸系统疾病发病的关系。发现秦皇岛市大气污染物的浓度与居民呼吸系统疾病之间存在着一定的正相关性,污染物浓度升高,居民呼吸系统疾病的就诊人数随之增加。  相似文献   
990.
选取典型小区,对秦皇岛市室内甲醛污染现状进行了调查,调查结果表明秦皇岛市住宅内甲醛污染严重,并将全过程控制理论应用于住宅装修过程中,有效降低了室内甲醛污染,提出了通过通风、选材、加温加湿、负离子功能产品、室内净化设施等多种措施来有效控制室内甲醛污染。  相似文献   
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