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141.
Photo-responsive adsorption-photocatalysis nanocomposites are generally used in water and wastewater decontamination; however, the prolonged adsorption capacity of composites and the role of adsorption in concomitant photocatalysis are typically neglected. These composites can be regenerated under light irradiation as their adsorption capacity decreases. Herein, a novel adsorption-photocatalysis bifunctional nanocomposite, Bi-doped TiO2 supported on powdered activated carbon (Bi2O3/TiO2/PAC), was prepared using the sol-impregnation-hydrothermal procedure. Bi2O3/TiO2/PAC with a secondary calcination temperature of 700°C under a nitrogen atmosphere was selected for maximum adsorption capacity on Methyl Orange (MO). The composite displayed an excellent adsorption capacity and was easily separated and recycled. The results demonstrate that 71.2% photocatalytic regeneration efficiency could be attained under visible light irradiation for 1 hr at an intensity of 750?W/m2 and pH 7. Characterization of the as-prepared Bi2O3/TiO2/PAC nanocomposite (700°C) indicates that it possesses a highly specific surface area and great optical properties, showing bifunctional adsorption-photocatalysis characteristics. The p-n heterojunction of the composite played a dominant role in the photocatalytic regeneration process, and effective degradation of MO could be achieved along with composite regeneration. 相似文献
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为探究不同水期河流底泥古菌群落结构特征,选取浑河底泥为研究对象,并于2014年4月(枯水期),9月(丰水期),11月(平水期)对浑河流域进行样品采样,通过PCR-DGGE技术获得3个水期古菌的DGGE指纹图谱,并进行数据分析.结果表明,平水期的古菌多样性和种群丰度都要好于枯水期和丰水期,多样性指数均高于2.10,种群丰度均高于0.94,且上游到下游均匀度波动平缓,数值维持在0.90左右,说明平水期浑河底泥古菌群落结构变化相对稳定.聚类分析结果表明,不同水期浑河底泥古菌群落结构多样性并没有明显的地区特征,但3个水期位于城市段的采样点的古菌亲缘性较为接近.冗余梯度分析(RDA)结果表明,枯水期时水中BOD5、p H和DO是影响古菌群落的主要因素;丰水期时水中的p H和NO-3-N是影响古菌群落的主要因素;平水期时水中的TP和NO-2-N是影响古菌群落的主要因素. 相似文献
145.
A Yin‐Yang approach to education policy regarding health and the environment: early‐careerists' image of the future and priority programmes
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Paul Watts Benjamin Custer Zhuang‐Fang Yi Enoch Ontiri Marivic Pajaro 《Natural resources forum》2015,39(3-4):202-213
Since the inception of sustainable development (SD), there has been a somewhat ignored contradiction between paradigms that are ecosystem‐based and paradigms that are human‐based or purely economic. We suggest that this contradiction can be unified through a balance of the two. The Chinese Yin‐Yang philosophy is applied as a tool or approach to seeking balance between these ecocentric and anthropocentric paradigms. Priority education policy design for the merging of ecology and health are projected through an Ecohealth lens in response to increasing SD challenges and the intention of the international Ecohealth organization to contribute to SD goals. Meeting SD goals along the nexus of health and environment is further considered through early‐careerist cultural assessments and projections. The groups considered for their professional image of the future are: members of the Ecohealth Association Student Section and Chinese early‐careerists participating in a related conference. In response to SD goals, a problem‐based learning design is suggested as an education policy priority. Rather than approaching SD as a boolean concept, for example, by either focusing on ecosystem sustainability or economic development, we suggest education policy for programmes and curriculums that will help emerging professionals balance these paradigms, so as to best address national and global challenges. 相似文献
146.
Advanced treatment of biologically pretreated coal gasification wastewater by a novel heterogeneous Fenton oxidation process 总被引:1,自引:0,他引:1
Haifeng Zhuang Hongjun Han Wencheng M Baolin Hou Shengyong Ji Qian Zhao 《环境科学学报(英文版)》2015,27(7):12-20
Sewage sludge from a biological wastewater treatment plant was converted into sewage sludge based activated carbon(SBAC) with Zn Cl2 as activation agent, which was used as a support for ferric oxides to form a catalyst(Fe Ox/SBAC) by a simple impregnation method.The new material was then used to improve the performance of Fenton oxidation of real biologically pretreated coal gasification wastewater(CGW). The results indicated that the prepared Fe Ox/SBAC significantly enhanced the pollutant removal performance in the Fenton process, so that the treated wastewater was more biodegradable and less toxic. The best performance was obtained over a wide p H range from 2 to 7, temperature 30°C, 15 mg/L of H2O2 and 1 g/L of catalyst, and the treated effluent concentrations of COD, total phenols,BOD5 and TOC all met the discharge limits in China. Meanwhile, on the basis of significant inhibition by a radical scavenger in the heterogeneous Fenton process as well as the evolution of FT-IR spectra of pollutant-saturated Fe Ox/BAC with and without H2O2, it was deduced that the catalytic activity was responsible for generating hydroxyl radicals, and a possible reaction pathway and interface mechanism were proposed. Moreover, Fe Ox/SBAC showed superior stability over five successive oxidation runs. Thus, heterogeneous Fenton oxidation of biologically pretreated CGW by Fe Ox/SBAC, with the advantages of being economical, efficient and sustainable, holds promise for engineering application. 相似文献
147.
基于指标规范变换TOPSIS法的地表水环境质量评价 总被引:1,自引:0,他引:1
对于指标数较多且复杂的地表水环境,传统的TOPSIS法计算工作量大,没有规范统一的正、负理想点,且主观性强.提出基于指标规范变换的TOPSIS法,该法通过设定参照值和规范变换式对指标进行规范变换,可使不同指标同级标准处于一定范围内,且可统一确定同一级标准下的各指标正、负理想点,从而减少了计算工作量.通过将基于指标规范变换的TOPSIS法应用于延河和南宁市内河地表水环境质量评价,评价结果表明该方法准确、可靠且简单、实用. 相似文献
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149.
Qian Zhao Hongjun Han Baolin Hou Haifeng Zhuang Shengyong Ji Fang Fang 《环境科学学报(英文版)》2014,26(11):2231-2239
A system combining granular activated carbon and powdered activated carbon technologies along with shortcut biological nitrogen removal (GAC-PACT-SBNR) was developed to enhance total nitrogen (TN) removal for anaerobically treated coal gasification wastewater with less need for external carbon resources. The TN removal efficiency in SBNR was significantly improved by introducing the effluent from the GAC process into SBNR during the anoxic stage, with removal percentage increasing from 43.8%49.6% to 68.8%-75.8%. However, the TN removal rate decreased with the progressive deterioration of GAC adsorption. After adding activated sludge to the GAG compartment, the granular carbon had a longer service-life and the demand for external carbon resources became lower. Eventually, the TN removal rate in SBNR was almost constant at approx. 43.3%, as compared to approx. 20.0% before seeding with sludge. In addition, the production of some alkalinity during the denitrification resulted in a net savings in alkalinity requirements for the nitrification reaction and refractory chemical oxygen demand (COD) degradation by autotrophic bacteria in SBNR under oxic conditions. PACT showed excellent resilience to increasing organic loadings. The microbial community analysis revealed that the PACT had a greater variety of bacterial taxons and the dominant species associated with the three compartments were in good agreement with the removal of typical pollutants. The study demonstrated that pre-adsorption by the GAC-sludge process could be a technically and economically feasible method to enhance TN removal in coal gasification wastewater (CGW). 相似文献
150.