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21.
Granular acid-activated neutralized red mud (AaN-RM) has been successfully prepared with good chemical stability and physical strength. However, its potential for industrial application remains unknown. Therefore, the performance of granular AaN-RM for phosphate recovery in a fixed-bed column was investigated. The results demonstrated that the phosphate adsorption performance of granular AaN-RM in a fixed-bed column was affected by various operational parameters, such as the bed depth, flow rate, initial solution pH and initial phosphate concentration. With the optimal empty-bed contact time (EBCT) of 24.27 min, the number of processed bed volumes and the phosphate adsorption capacity reached 496.95 and 84.80 mg/g, respectively. Then, the saturated fixed-bed column could be effectively regenerated with a 0.5 mol/L HCl solution. The desorption efficiency remained as high as 83.45% with a low weight loss of 3.57% in the fifth regeneration cycle. In addition, breakthrough curve modelling showed that a 5-9-1 feed-forward artificial neural network (ANN) could be effectively applied for the optimization of the fixed-bed adsorption system; the coefficient of determination (R2) and the root mean square error (RMSE) evaluated on the validation-testing data were 0.9987 and 0.0183, respectively. Therefore, granular AaN-RM fixed-bed adsorption exhibits promising potential for phosphate removal and recovery from polluted water.  相似文献   
22.
Plants constitute a major element of constructed wetlands(CWs).In this study,a coupled system comprising an integrated vertical flow CW(IVCW) and a microbial fuel cell(MFC) for swine wastewater tre atment was developed to research the effects of macrophytes commonly employed in CWs,Canna indica,Acorus calamus,and Ipomoea aquatica,on decontamination and electricity production in the system.Because of the different root types and amounts of oxygen released by the roots,the rates of chemical oxygen demand(COD) and ammonium nitrogen(NH_4~+-N) removal from the swine wastewater differed as well.In the unplanted,Canna indica,Acorus calamus,and Ipomoea aquatica systems,the COD removal rates were 80.20%,88.07%,84.70%,and 82.20%,respectively,and the NH_4~+-N removal rates were 49.96%,75.02%,70.25%,and 68.47%,respectively.The decontamination capability of the Canna indica system was better than those of the other systems.The average output voltages were 520±42,715±20,660±27,and 752±26 mV for the unplanted,Canna indica,Acorus calamus,and Ipomoea aquatica systems,respectively,and the maximum power densities were 0.2230,0.4136,0.3614,and0.4964 W/m~3,respectively.Ipomoea aquatica had the largest effect on bioelectricity generation promotion.In addition,electrochemically active bacteria,Geobacter and Desulfuromonas,were detected in the anodic biofilm by high-throughput sequencing analysis,and Comamonas(Proteobacteria),which is widely found in MFCs,was also detected in the anodic biofilm.These results confirmed the important role of plants in IVCW-MFCs.  相似文献   
23.
F-V_2 O_5-WO3/Ti02 catalysts were prepared by the impregnation method.As the content of F ions increased from 0.00 to 0.35 wt.%,the NO conversion of F-V_2 O_5-WO_3/TiO_2 catalysts initially increased and then decreased.The 0.2 F-V_2 O_5-WO_3/TiO_2 catalyst(0.2 wt.% F ion)exhibited the best denitration(De-NOx) performance,with more than 95% NO conversion in the temperature range 160-360℃,and 99.0% N2 selectivity between 110 and 280℃.The addition of an appropriate amount of F ions eroded the surface morphology of the catalyst and reduced its grain size,thus enhancing the NO conversion at low temperature as well as the sulfur and water resistance of the V_2 O_5-WO3/Ti02 catalyst.After selective catalytic reduction(SCR) reaction in a gas flow containing SO_2 and H_2 O,the number of NH3 adsorption sites,active component content,specific surface area and pore volume decreased to different degrees.Ammonium sulfate species deposited on the catalyst surface,which blocked part of the active sites and reduced the NO conversion performance of the catalyst.On-line thermal regeneration could not completely recover the catalyst activity,although it prolonged the cumulative life of the catalyst.In addition,a mechanism for the effects of S02 and H_2 O on catalyst NO conversion was proposed.  相似文献   
24.
Ozone (O3), as a harmful air pollutant, has been of wide concern. Safe, efficient, and economical O3 removal methods urgently need to be developed. Catalytic decomposition is the most promising method for O3 removal, especially at room temperature or even subzero temperatures. Great efforts have been made to develop high-efficiency catalysts for O3 decomposition that can operate at low temperatures, high space velocity and high humidity. First, this review describes the general reaction mechanism of O3 decomposition on noble metal and transition metal oxide catalysts. Then, progress on the O3 decomposition performance of various catalysts in the past 30 years is summarized in detail. The main focus is the O3 decomposition performance of manganese oxides, which are divided into supported manganese oxides and non-supported manganese oxides. Methods to improve the activity, stability, and humidity resistance of manganese oxide catalysts for O3 decomposition are also summarized. The deactivation mechanisms of manganese oxides under dry and humid conditions are discussed. The O3 decomposition performance of monolithic catalysts is also summarized from the perspective of industrial applications. Finally, the future development directions and prospects of O3 catalytic decomposition technology are put forward.  相似文献   
25.
In this work,we fabricated three kinds of Ag/Fe_2O_3 model catalysts with different morphologies to study the interfacial interactions between Ag and Fe_2O_3,and how they affected the catalytic activity in hydrogenation of p-nitrophenol was explored.The hydrothermal method was used to synthesize the metal oxide supported silver catalyst,with various morphologies including nanoplates(NPs),nanospheres(NSs),and nanocubes(NCs).The crystal structure,morphology and surface elements of the composite were investigated by various measurements,such as X-ray diffraction(XRD),scanning electron microscopy(SEM),transmission electron microscopy(TEM) and X-ray photoelectron spectroscopy(XPS).The catalytic activity was also evaluated by the reduction of p-nitrophenol to p-aminophenol.It was found that the activities of the above catalysts varied with the morphology of the support.Among them,Ag/Fe_2O_3 NPs promoted the highest performance,Ag/Fe_2O_3 NSs were slightly inferior,and Ag/Fe_2O_3 NCs were the worst.At last,we ascribed the remarkable activity of Ag/Fe_2O_3 NPs to the strong metal-support interactions between Ag and Fe_2O_3.  相似文献   
26.
达里诺尔湖水体DOM荧光特征及其来源解析   总被引:1,自引:0,他引:1       下载免费PDF全文
孙伟  胡泓  赵茜  王璐  夏瑞  王晓  卜利胜  薛婕 《环境科学研究》2020,33(9):2084-2093
达里诺尔湖(简称“达里湖”)是内蒙古自治区高原地区重要的生态屏障,探究达里湖水质状况及污染来源,对加强流域水环境治理、改善水环境质量具有十分重要的意义.于2018年9月及2019年6月对湖水进行采样,并通过三维荧光光谱结合PARAFAC(平行因子分析)模型,探究达里湖水体DOM(溶解性有机质)来源及其与水质的关系.结果表明:①达里湖水体中pH较高,ρ(DOC)(DOC为溶解性有机碳)、ρ(NH4+-N)、ρ(TP)相对较高,均超过GB 3838—2002《地表水环境质量标准》Ⅴ类水质标准限值.②水体中DOM含4种荧光组分.夏季水体DOM主要分布于河流入湖口附近,其中,类腐殖质荧光组分(紫外区类富里酸和可见区类富里酸)占总组分的62.93%,类蛋白类荧光组分(类色氨酸和类酪氨酸)占总组分的36.07%;秋季水体DOM主要分布于东南侧,其中,类腐殖质荧光组分占总组分的40.52%,类蛋白类荧光组分占总组分的59.48%.③达里湖采样点荧光参数表明,达里湖DOM自生源特征较强,腐殖化程度较低.类腐殖质荧光组分与ρ(DOC)、ρ(Chla)均呈正相关,类色氨酸荧光组分与pH呈正相关,类络氨酸与ρ(DTN)、ρ(NH4+-N)、ρ(DTP)均呈正相关.研究显示,达里湖DOM具有陆源与生物源双重特性,DOM的形成与微生物、细菌、浮游生物的生命活动密切相关.   相似文献   
27.
环境要素的变化对浮游植物的群落结构和功能具有重要影响.为揭示洞庭湖南汉垸湖区浮游植物群落结构特征及其影响因素,分别于2017年11月(关泵封水期)和2018年6月(开泵放水期)在洞庭湖区典型堤垸——南汉垸进行了采样调查,并对调查区域内的浮游植物及主要水环境因子进行了系统监测和分析.结果表明:①调查期间共检出浮游植物8门62属,主要隶属于绿藻门(Chlorophyta)、硅藻门(Bacillariophyta)和蓝藻门(Cyanophyta),浮游植物分布表现出较为显著的时间差异性,11月浮游植物的丰度为8.34×106~3.02×108 L-1,6月为1.13×106~2.04×107 L-1.②Shannon-Wiener多样性指数(H')介于1.10~3.24之间,Margalef丰富度指数(d)介于1.42~6.40之间,Pielou均匀度指数(J)介于0.48~0.87之间,多样性评价表明,南汉垸整体上介于轻污染与β-中污染之间,局部采样点为α-中污染.③PCA(主成分分析)结果表明,ρ(TN)、ρ(TP)和ρ(NH4+-N)为南汉垸水体的主要污染因子.④RDA(冗余分析)结果表明,南汉垸浮游植物群落结构分布与pH、ρ(NH4+-N)及ρ(TN)呈正相关,与WT(水温)呈负相关.研究显示,南汉垸水体介于轻污染与β-中污染之间,营养状态及浮游植物群落结构在时间上差异较大.   相似文献   
28.
为研究不同来源再生水灌溉对土壤微生物群落结构的影响,以地下水灌溉土壤为对照,采用Illumina MiSeq高通量测序技术对长期利用生活源和工业源再生水灌溉的土壤微生物群落结构进行分析,进一步探究土壤环境因子及其相互作用对微生物群落结构的影响.结果表明,与地下水灌溉相比,长期生活源再生水灌溉可显著提高土壤中TOC、 DOC、 Eh、 NH~+_4-N和TP的含量,长期工业源再生水灌溉导致Cd、 Cr、 Cu、 Pb和Zn在表层土壤大量累积.再生水灌溉显著增加了土壤中Acidobacteria和Planctomycetes的相对丰度,降低了Firmicutes和Tectomicrobia的相对丰度,且不同来源再生水对土壤中功能微生物的影响不同,生活源再生水灌溉可显著增加Chloroflexi和Nitrospirae的相对丰度,而工业源再生水灌溉对Actinobacteria具有显著的抑制作用.db-RDA分析结果表明,生活源再生水灌溉土壤菌群主要受TN、 TP、 DOC和Eh影响(P0.05),工业源再生水灌溉土壤菌群主要受重金属影响(P0.05).长期再生水灌溉可改变土壤环境因子间的相互作用,进而影响微生物群落结构,生活源再生水灌溉土壤中微生物主要受DOC、 TN和TP等营养物质含量的增加和氧化还原条件的改变控制,工业源再生水灌溉土壤中微生物与重金属的积累显著相关.  相似文献   
29.
使用管式炉模拟村镇生活垃圾焚烧过程,研究不同焚烧温度和不同垃圾含水率条件下,村镇垃圾焚烧烟气中多环芳烃(PAHs)、氯苯及苯系物的生成和分布特性.结果表明,焚烧温度为550℃时,烟气中多环芳烃和氯苯的释放量最大,当温度小于550℃时,多环芳烃和氯苯的释放量随温度升高而增加,温度大于550℃时,多环芳烃和氯苯的释放量随温度升高而降低.高温焚烧不仅可以抑制烟气中多环芳烃的浓度及减少大分子量PAHs的排放,还能降低氯苯的释放量和氯代数,从而减小村镇垃圾焚烧烟气中的毒性;苯系物随着温度升高,由热解转变为高温合成,释放量也随着增加.水分对多环芳烃和氯苯有较大影响,对苯系物的影响较小.在400℃条件焚烧时,水分含量对多环芳烃总体上是促进的,而在850℃焚烧条件下则表现出抑制作用;而水分对氯苯则均表现出抑制作用,并且可以降低氯苯化合物的氯代数.  相似文献   
30.
以重庆市江津区现代农业园区内4种农用地类型的653个表层土样为研究对象,测定土壤重金属元素含量.依据绿色食品产地环境相关标准,采用重金属污染指数法对标准中所涉及的Cu、Cr、Cd、Hg、As和Pb共6种重金属元素开展土壤环境质量评价和潜在生态风险评价,并结合用地类型确定绿色农产品生产的适宜性土壤分区.结果表明:除元素Cu、Cr和As外,其他元素的平均含量均高于重庆市土壤背景值;除元素As和Hg外,其他元素的平均含量均高于我国土壤背景值.土壤重金属元素Cu、Cr、Cd、Hg、As和Pb的平均浓度均达到《绿色食品产地环境质量》标准要求,但Cd污染已处于安全警戒线内,应高度警惕和严格监管园区内该元素的污染.水田、旱地和果园的土壤环境均以尚清洁为主,其他园地的土壤环境以轻度污染水平为主.部分水田存在一定程度的Pb污染(轻度)、Hg污染(中度)和Cd污染(中度),旱地存在一定程度的Hg污染(中度)和Cd污染(中度),果园和其他园地的土壤存在一定程度的Cd的轻、中度污染.全区符合《绿色食品产地环境质量》标准要求的土壤面积为12.47km2,占农用地总面积的63.64%,旱地、果园、水田和其他园地中符合该标准的面积分别占各自总面积的84.83%、68.07%、56.51%和42.09%.4种用地类型的土壤环境生态风险水平均以低等为主,共占研究区总面积的74.70%.Cd和Hg在园区表层土壤重金属生态风险评估中占有较大的贡献率,应列为优先控制污染元素并对其生态效应开展进一步研究.  相似文献   
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