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911.
二氧化钛颗粒的制备及其脱硫吸附性能   总被引:5,自引:0,他引:5  
罗永刚  李大骥  黄震 《环境科学》2003,24(1):147-151
采用溶胶-凝胶法(Sol-gel)在不同烧结温度(340℃,440℃,540℃,640℃)下制备了4种多孔TiO2颗粒,X射线衍射法(XRD)测得4种样品的晶相均为锐钛矿型.低温77K氮气吸附法计算4种样品的比表面积为79~124m2/g,平均孔径56.8~254.8 A.电子扫描电镜分析了样品的表面结构为多孔高孔隙率结构在固定床中对4种样品进行动态脱硫试验,试验结果表明烧结温度在540℃时制备的样品品质较好,每g TiO2颗粒可吸附38.9mg的SO2.以SG 540样品为例,研究了固定床中吸附温度,气相中SO2的浓度以及气体流速对其脱硫吸附性能的影响.与活性炭、沸石物理吸附剂比较,TiO2颗粒具有较高的脱硫吸附能力.FTIR红外光谱分析法,结合加热脱附试验的结果,得知TiO2颗粒吸附剂脱硫的机理主要是物理吸附.  相似文献   
912.
Recently, a building-based air quality model system which can predict air quality in front of individual buildings along both sides of a road has been developed. Using the Macau Peninsula as a case study, this paper shows the advantages of building-based model system in data capture and data mining. Compared with the traditional grid-based model systems with input/output spatial resolutions of 1–2 km, the building-based approach can extract the street configuration and traffic data building by building and therefore, can capture the complex spatial variation of traffic emission, urban geometry, and air pollution. The non-homogeneous distribution of air pollution in the Macau Peninsula was modeled in a high-spatial resolution of 319 receptors·km-2. The spatial relationship among air quality, traffic flow, and urban geometry in the historic urban area is investigated. The study shows that the building-based approach may open an innovative methodology in data mining of urban spatial data for environmental assessment. The results are particularly useful to urban planners when they need to consider the influences of urban form on street environment.  相似文献   
913.
A modularized and air adjustable constructed submerged plant bed (CSPB) which can be used to restore the eutrophic water is introduced in this paper. This plant bed helps hydrophyte grow under poor conditions such as frequently changed water depth, impaired water transparency, algae bloom and substantial duckweed in summer, which are not naturally suitable for growing hydrophyte. This pilot study in Waihuan River of Tianjin, China, revealed that reduction of Chemical Oxygen Demand (COD), Total Nitrogen (TN) and Total Phosphorus (TP) by the use of CSPB could be reached 30%–35%, 35%–40%, 30%–40% respectively in the growing season (from March to October) and 5%–10%, 5%–15%, 7%–20% respectively in the winter (from November to February) when the detention time was 6 d. The relationships between the concentration of COD, TN, TP and the detention time fit the first-order kinetic equation well and the coefficients of determination (R2) were all above 0.9. The attenuation coefficients k of the kinetic equation were a function of the water temperature. When the water temperature was quite low or quite high, k was not significantly changed with increasing or decreasing water temperature. While when the temperature was in a moderate range, an increase or decrease of water temperature would lead to a rapid increase or decrease in k.  相似文献   
914.
一株耐酸耐铜细菌的选育及其吸附铜离子的特性   总被引:1,自引:0,他引:1  
从某铜矿选矿废水中筛选分离出一株在强酸性条件下对铜去除能力较高的菌株Z-1,经鉴定为克雷伯氏杆菌.考察了碳源、氮源、pH、温度、吸附时间、投菌量等因素对菌株Z-1生长量及吸附Cu2+的影响.结果表明,菌株Z-1的最佳碳源为乙酸钠,其最佳用量为3 g.L-1;最佳氮源为硫酸铵,最佳用量为1.2 g.L-1.在投菌量为4 g.L-1、温度为30℃、吸附时间为4 h的条件下,菌株Z-1对pH=3、Cu2+100 mg.L-1的废水吸附效果最优,Cu2+去除率达到59.7%.菌株Z-1对Cu2+的吸附过程能很好地用吸附模型Langmuir方程描述,菌株Z-1去除的铜离子,有92.3%分布在细胞壁上,其余7.7%分布在细胞质内,说明菌株Z-1对铜离子的去除主要为表面吸附.  相似文献   
915.
用紫外-可见分光光度法研究了水溶性金属卟啉Fe(TPPS)Cl催化H2O2氧化降解2,4,6-三氯苯酚(TCP)的动力学(TPPS为四(4-磺酸钠苯基)卟啉),探讨了反应体系酸度、H2O2/Fe(TPPS)Cl物质的量之比、温度对氧化降解速率的影响,提出了反应机理,建立了反应动力学数学模型.研究结果表明,TCP初始浓度为3.8×10-4 mol.L-1、Fe(TPPS)Cl浓度为4.0×10-5 mol.L-1、H2O2浓度为1.8×10-3mol.L-1、温度为25℃、pH值为6.8、反应时间为90 min时,TCP的降解率可达到99%,其表观活化能为10.96 kJ.mol-1.因此,Fe(TPPS)Cl作为模拟过氧化物酶在催化降解TCP过程中是一种有效的催化剂.  相似文献   
916.
Stereoisomeric compositions can provide insights into sources, fate, and ecological risks of contaminants in the environment. In this study, stereoisomeric profiles of ibuprofen and iopromide were investigated in wastewater and receiving surface water of the Pearl River Delta, south China. The enantiomeric fraction (EF) of ibuprofen was 0.108–0.188 and 0.480, whereas the isomer ratio (IR) of iopromide was 1.426–1.673 and 1.737–1.898 in the influent and final effluent, respectively, suggesting stereoselective degradation occurred for both pharmaceuticals during wastewater treatment. Ibuprofen showed enantioselective degradation in the anaerobic, anoxic, and aerobic conditions, whereas iopromide displayed isomer-selective degradation only under the aerobic condition. In the river waters, the EF of ibuprofen was 0.130–0.327 and the IR of iopromide was 1.500–2.531. The results suggested that pharmaceuticals in the mainstream Pearl River were mainly from discharge of treated wastewater, whereas in the tributary rivers and urban canals, direct discharge of untreated wastewater represented a significant contribution. The IR of iopromide can be an applicable and efficient tracer for wastewater discharge in the environment.  相似文献   
917.
Sepiolite and biochar can immobilize heavy metals and organic pollutants in soil effectively, but their impact on the soil microbial community and diversity is still unclear. High-throughput Illumina MiSeq method was used to study the effects of sepiolite and biochar on the diversity of microbial communities in acid red soil amended with cadmium and atrazine. A total of 47,472 microbiological Operational Taxonomic Units (OTUs) were found in all the treated soil samples. Sepiolite and biochar enriched the diversity of soil microbes at different classification levels and OTUs, but the effect of biochar was stronger than that of sepiolite. A Venn diagram showed that compared with other treatments, adding 2% biochar could promote the growth of specific microbes, which is better than the case for 5% biochar. The heat map of species abundance cluster showed that the dominant microbes in soil were different for different treatment doses of sepiolite and biochar. Among all the soil treatments, the top ten dominant bacterial phyla (from high to low dominance) were: Actinobacteria, Proteobacteria, Firmicutes, Bacteroidetes, Acidobacteria, Gemmatimonadetes, Chloroflexi, Planctomycetes, Cyanobacteria­, and Verrucomicrobia. The addition of sepiolite and biochar promoted the restoration of the microbial community diversity in contaminated soil.  相似文献   
918.
This study quantitatively analyzed spatiotemporal changes in land use and landscape pattern in a coastal gulf region of southeast China by comparing classified satellite images from 1988, 2002, and 2007, using a geographic information system (GIS), remote sensing (RS), and landscape pattern metrics. The results show an increase in cropland, built-up area, and aquaculture area and a decrease in orchards, woodland, and beach area during 1988–2007. Over the study period, 64.3% of newly-expanded cropland was from woodland; newly-expanded built-up area of 34.8, 27.2, and 20.4% was converted from cropland, woodland, and beach areas, respectively; and newly-expanded aquaculture increased by 45.1 and 29.4% from beach and water body areas, respectively. Trend analysis of landscape pattern metrics demonstrates fragmentation of the landscape, with landscape pattern structure becoming more complex over the last two decades in the Louyuan Gulf region. Urbanization and policy developed to transfer beach/seawater areas into built-up area/aquaculture are the two main driving forces contributing to dynamic changes in land use and landscape pattern in the last two decades in Louyuan.  相似文献   
919.
低碳农业评价指标体系的构建及对广东的评价   总被引:1,自引:0,他引:1  
本文对低碳农业评价指标体系的构建进行深入探讨,主要从农业生产要素产出效率、能源利用低碳化水平、农业生产方式低碳化水平、农业碳汇效应4个维度构建指标体系,并运用德尔菲法、加乘混合合成法确立综合指标评价值及设定低碳农业发展水平的等级评价标准,以此为科学量化评价农业低碳发展水平提供一个简便工具,实现对低碳农业评价由定性描述向定量分析的转变。在此基础上,将该评价指标体系应用于对广东省低碳农业发展综合评价的实证研究,以期为农业决策者制定和实施科学的低碳发展政策提供依据。研究结果显示,2006-2010年广东省低碳农业发展水平与低碳农业发展要求尚有较大差距,处于从较高碳发展水平向中碳发展水平迈进的阶段;“农业生产方式低碳化水平”成为广东农业低碳发展的最大制约性因素;与全国其他9省区比较,广东省低碳农业发展综合指数属于中等偏下的位次。由此可见,当前广东省高碳化的现代农业发展模式,成为阻碍低碳农业发展的最大因素;而坚持现有耕地的有效保护与合理拓展有效耕地面积,并因地制宜地提高农地的复种指数,对增强广东种植业的碳汇效应,保护和改善生态环境具有关键性的作用。  相似文献   
920.
O3对水稻叶片氮代谢、脯氨酸和谷胱甘肽含量的影响   总被引:2,自引:0,他引:2  
臭氧(O3)被认为是重要的气污染物之一,水稻又是主要的粮食作物,因而准确地评估O3浓度升高对水稻生长发育的影响具有十分重要的意义。采用开顶式气室法模拟研究了O3对水稻叶片可见伤害症状、氮代谢、脯氨酸和谷胱甘肽含量的影响。结果显示,O3污染胁迫会导致水稻叶片产生明显的伤害症状,具体表现为:老叶叶鞘褪绿,有褐斑,直至完全干枯;稻穗小且黄化,籽粒不饱满;水稻成熟期提前等。O3浓度升高对水稻叶片的硝酸还原酶活性有显著影响。当O3浓度为40、80和120nL.L-1时,水稻叶片硝酸还原酶活性与对照组相比均降低,其中,分蘖期分别降低了25.3%、67.4%和86.3%;拔节期分别降低了57.4%、75.7%和97.8%;抽穗期分别降低了91.0%、97.2%和99.3%;乳熟期分别降低了89.5%、89.5%和96.7%。水稻叶片铵态氮和硝态氮含量随着O3浓度的升高而显著地降低,例如当O3浓度为40、80和120nL.L-1时,与对照相比,水稻叶片硝态氮含量分别降低46.3%、52.7%和65.7%,铵态氮含量分别降低6.5%、12.9%和43.4%。O3污染胁迫下水稻叶片脯氨酸含量在不同生长期变化不同,分蘖期、拔节期和抽穗期脯氨酸含量在40nL.L-1浓度O3熏蒸下急剧地提高,但是随着O3浓度的增加,脯氨酸含量又不断地降低。在水稻乳熟期,脯氨酸含量均随着O3浓度的增加而显著地下降。O3污染胁迫导致水稻叶片还原型谷胱甘肽(GSH)含量显著低于对照组,而氧化型谷胱甘肽(GSSG)含量显著高于对照组。当O3浓度为40、80和120nL.L-1时,乳熟期水稻叶片GSH含量分别比对照组降低68.7%、80.2%和78.2%,GSSG含量分别比对照提高494.4%、527.2%和439.8%。研究表明,O3污染胁迫对水稻叶片氮代谢和抗氧化系统产生了极显著的影响。  相似文献   
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