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271.
叶智新  任刚 《环境工程学报》2019,13(12):2798-2807
为探讨改性碳纳米管(CNTs)对砷的吸附特性,采用化学修饰对CNTs进行了改性。将CNTs先后进行氧化和酰胺化处理,并与聚苯胺反应,得到酰胺化/氧化碳纳米管-聚苯胺(NMCNTs-PANI),利用SEM观察、比表面积测定、含氧含氮官能团和分子结构分析对改性前后CNTs进行了表征;研究了NMCNTs-PANI在不同反应体系对As(Ⅲ)的吸附效果。结果表明:NMCNTs-PANI总孔容和平均孔径均有所增加;表面含氧含氮基团增加;初始pH对吸附量影响较显著;共存阴离子对吸附量影响可忽略不计;吸附过程符合准一级动力学和准二级动力学方程,证实该过程主要以化学吸附为主;吸附等温线符合Langmuir模型。NMCNTs-PANI通过表面吸附-化学诱导作用可较好地去除水中As(Ⅲ),是一种优良的含砷污染水的吸附剂。  相似文献   
272.
Environmental Science and Pollution Research - The effect of air staging strategies on NOx control was investigated on a 210-kW small-scale biomass boiler (SBB) and a 1.4-MW medium-scale biomass...  相似文献   
273.

Sequential coupling of high-density luffa sponge (HDLS) immobilized microorganism and permeable reactive barriers (IM Bio-PRBs) was superior to intimate coupling of free microorganism and permeable reactive barriers (FM Bio-PRBs) for remediation of 1,1,1-trichloroethane contaminated groundwater. IM Bio-PRBs had much better performance to removal 1,1,1-trichloroethane (1,1,1-TCA) and prevent the transport of 1,1,1-TCA and inorganic ions (NO3?, PO43?, and SO42?). The majority of them were prevented and accumulated in upgradient of IM Bio-PRBs. 1,1,1-TCA and inorganic ions in there contributed to the much faster growth of microorganism in upgradient aquifer. Therefore, the removal of 1,1,1-TCA and consumption of inorganic ions in upgradient of Bio-PRBs played a constructive role in reducing the processing load of following zero-valent iron (ZVI) PRBs and the negative effect of free microorganism cells (biological clogging) and inorganic ions (chemical clogging) on Bio-PRB permeability. In addition, IM Bio-PRBs were more conducive to accelerate the removal of 1,1,1-TCA in long-term remediation and 1,1,1-TCA residual concentration significantly lower than the safety standard of 0.2 mg L?1. The change of terminal by-products of 1,1,1-TCA contaminated groundwater in Bio-PRBs showed that 1,1,1-TCA could be effectively de-chlorinated and mineralized in Bio-PRBs. The reductant H2S (prolong the service life of ZVI-PRBs) was much more produced and utilized in IM Bio-PRBs. Taken together, sequentially coupled IM Bio-PRBs had a better overall performance, and its service life could be prolonged. It was a different design and idea to update conventional PRB remediation technology and theory.

  相似文献   
274.
Environmental Science and Pollution Research - Drinking water containing environmental endocrine disruptor compounds (EDCs) endangers human health, and researching the purification process of...  相似文献   
275.
The potential risk of groundwater contamination by the excessive leaching of N, P and heavy metals from soils amended at heavy loading rates of biosolids, coal ash, N-viro soil (1:1 mixture of coal ash and biosolids), yard waste compost and co-compost (3:7 mixture of biosolids to yard wastes), and by soil incorporation of green manures of sunn hemp (Crotalaria juncea) and sorghum sudangrass (Sorghum bicolor x S. bicolor var. sudanense) was studied by collecting and analyzing leachates from pots of Krome very gravelly loam soil subjected to these treatments. The control consisted of Krome soil without any amendment. The loading rate was 205 g pot(-1) for each amendment (equivalent to 50 t ha(-1) of the dry weight), and the amounts of the cover crops incorporated into the soil in the pot were those that had been grown in it. A subtropical vegetable crop, okra (Abelmoschus esculentus L.), was grown after the soil amendments or cover crops had been incorporated into the soil. The results showed that the concentration of NO3-N in leachate from biosolids was significantly higher than in leachate from other treatments. The levels of heavy metals found in the leachates from all amended soils were so low, as to suggest these amendments may be used without risk of leaching dangerous amounts of these toxic elements. Nevertheless the level of heavy metals in leachate from coal ash amended soil was substantially greater than in leachates from the other treatments. The leguminous cover crop, sunn hemp, returned into the soil, increased the leachate NO3-N and inorganic P concentration significantly compared with the non-legume, sorghum sudangrass. The results suggest that at heavy loading rates of soil amendments, leaching of NO3- could be a significant concern by application of biosolids. Leaching of inorganic P can be increased significantly by both co-compost and biosolids, but decreased by coal ash and N-viro soil by virtue of improved adsorption. The leguminous cover crop, sunn hemp, when incorporated into the soil, can cause the concentration of NO3-N to increase by about 7 fold, and that of inorganic P by about 23% over the non-legume. Regarding the metals, biosolids, N-viro soil and coal ash significantly increased Ca and Mg concentrations in leachates. Copper concentration in leachate was increased by application of biosolids, while Fe concentration in leachates was increased by biosolids, coal ash and co-compost. The concentrations of Zn, Mo and Co in leachate were increased by application of coal ash. The concentrations of heavy metals in leachates were very low and unlikely to be harmful, although they were increased significantly by coal ash application.  相似文献   
276.
中水已成为热电厂的重要水源,其深度处理是影响电厂水处理系统的关键。为评估双膜法在电厂深度处理中的潜力与稳定性,考察了山东某热电厂石灰混凝-超滤(UF)-反渗透(RO)系统不同季节的处理效果及污染物去除特征与各工段贡献率。研究表明:双膜法对浊度、色度、电导、碱度、COD和TOC的去除率分别达95.82%、96.62%、96.73%、98.22%、96.42%和89.13%,在夏季严重膜污堵的条件下,也可保障产水达标,是一种有效的中水深度处理技术。预处理仅去除某些大分子腐殖酸类有机物、硬度类物质、悬浮物,富里酸类有机物、氮等其他溶解性物质主要由RO去除(去除率均60%),因此,存在膜结垢和污堵的风险。不同季节污染物浓度变化不显著,但夏季高温条件下微生物代谢和繁殖速率较高,荧光指数(fluorescence index, FI)大于2,生物指数(biological index, BIX)为1.2左右,这是夏季膜污堵爆发的关键原因。  相似文献   
277.
太湖水质指标相关性与富营养化特征分析   总被引:26,自引:3,他引:26  
为研究太湖第一阶段治理水质富营养化的特征,根据1999年10月采样数据,对总磷、总氮等与富营养化相关的水质指标进行了统计分析。发现透明度与叶绿素a之间并未表现出显著的相关性,而在聚类图中,悬浮物与总磷、总氮显示出密切关系。指出农村面源仍是太湖中营养物质的重要来源。  相似文献   
278.
本文主要介绍汽车尾气催化转化器模型的研究进展 ,包括反应器内气体流动特性、单通道反应器内的传递现象和反应动力学、通道间的热传递和反应行为的模拟 ;并指出认识反应器内的各种特性和规律对设计汽车尾气催化转化器的必要性和意义  相似文献   
279.
基于当前可获得的与该课题相关的资料 ,本文综述了陆地生态系统产生挥发性含硫气体的微观和宏观机理过程。讨论了控制生物硫气体产生的环境因素。阐述了含硫气体释放进入大气后的环境归趋  相似文献   
280.
生态农业园区废弃物资源化处理利用研究   总被引:2,自引:0,他引:2  
本文介绍了蟹岛生态园区农业废气物及生活污水的资源化处理工艺方案 ,通过对沼气池和生活污水厌氧 -好氧 -生态塘处理系统进行综合设计 ,实现了节能环保和废弃物无害化综合处理利用。形成了种植业、养殖业、肥料加工、能源利用和休闲度假有机结合的生态农业经济 ,为实现农村经济可持续发展提供了一种新模式  相似文献   
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