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21.
22.
泸沽湖沉积物-水界面扩散作用对上覆水体基本化学组成的影响 总被引:2,自引:2,他引:2
通过云南泸沽湖--半封闭深水湖泊湖水和沉积物孔隙中Ca^2+、K^+、Na^+、HCO3等基本组分及PH等剖面分布的研究,结果表明,这些基本组分可以自底部沉积物向上覆体扩散迁移,定量地估算了扩散通量及其对上覆水体的影响程度,说明湖泊沉积物-水界面作用在控制整个水体水化学基本组成中的起着重要的作用。 相似文献
23.
采用常温饱和溶液蒸发法,一硫化四甲基秋兰姆与钴(Ⅱ)发生原位反应得到一种新型非均相Fenton催化剂单晶Co(C3H6NS2)3·C6H12N2S3;通过单晶X衍射、红外光谱和C、N和H元素分析对该单晶结构进行了表征;该单晶的空间群为P-1,在不对称单元中有1个Co(Ⅲ)中心,3个新配体C3H7NS2和1个TMTM;Co(Ⅲ)呈现出稍微偏斜的八面体的配位几何构型.利用该单晶催化氧化降解了直接蓝6和直接绿28;结果显示,在酸性和碱性条件下,染料的降解率和矿化率都较高,这是因为活性中心Co(Ⅲ)提高了H2O2的效率.当投加量在1 200~1 600 mg·L-1之间时,处理90 min后,直接蓝6和直接绿28的降解效率可分别达到94.39%和94.78%.相比之下,不加该单晶光催化剂,其它条件完全相同时,处理90 min后2种染料的降解率均不到45%,降解缓慢.使用后的单晶,通过过滤,可反复使用,有利于降低处理成本.此外还研究了催化反应的动力学,反应遵从Langmuir-Hinshelwood动力学模型;2种染料降解反应速率常数k分别为3.03×102和6.25×102 mg·(L·min)-1,吸附常数K分别为1.52×10-4和7.23×10-5 L·mg-1. 相似文献
24.
对中国城市环境地质工作的思考 总被引:9,自引:1,他引:9
本文回顾了国内外城市地质工作的发展历程,阐述了中国城市地质工人的发展方向和重点工作领域。指出城市地质工作必须服务于城市(城市群,经济开发区)的规划,建设和管理,为城市社会经济可持续发展,减灾防灾提供具有针对性,实用性和超前性的基础地质资料和成果。由于中国城市的规模,性质,自然资源承载力,地质环境特征不同,城市环境地质调查,评价的对象,内容也将有所差异。归纳起来,城市地质的重点工作领域为:城市可持续发展,城市可持续发展的资源开发战略与对策,城市地质环境容量及脆弱性分析。城市地质灾害:城市地质灾害风险,影响面,易损性及对灾害的反应,城市环境变化的地质指标体系,城市环境地质综合研究:城市环境地质调查评价的新理论,新方法,新技术,城市环境地质图纱的编制。数字城市环境地质:GIS平台上的地质空间数据库,城市地质环境动态分析,评价,决策系统和地质灾害预警预报系统。 相似文献
25.
提供生物稳定饮用水的最佳工艺 总被引:19,自引:1,他引:19
研究由预处理、常规处理和深度处理组合而成的 7种不同工艺对饮用水源水中可生物同化有机碳 ( AOC)的去除效果 .试验表明 :生物陶粒预处理对 AOC具有较高的去除率 ,达到 45%左右 ,如果在它之前先经过预臭氧化 ,生物处理的去除率可增大到 58.4% ;常规处理对 AOC的去除非常有限 ,去除率平均在 2 0 %左右 ;新活性炭单元因其吸附作用对 AOC的去除效果稳定在30 %左右 ,如和臭氧氧化连用 ,去除效果能提高到 50 %以上 ;包括了常规处理、生物预处理、预臭氧和臭氧活性炭的组合工艺对AOC的去除效果最好 ,达到 86% .因此臭氧氧化、生物炭和生物处理是提高饮用水生物稳定性的重要手段 ,并以本试验结果为依据提出了对于不同的水源水所采用的最佳工艺 . 相似文献
26.
Michael M. Pollock Timothy J. Beechie 《Journal of the American Water Resources Association》2014,50(3):543-559
Intact riparian ecosystems are rich in biological diversity, but throughout the world, many have been degraded. Biodiversity declines, particularly of vertebrates, have led to experimental efforts to restore riparian forests by thinning young stands to accelerate creation of large diameter live trees. However, many vertebrates depend on large diameter deadwood that is standing as snags or fallen to the forest floor or fallen into streams. Therefore, we reviewed the sizes of deadwood and live trees used by different vertebrate species to understand which species are likely to benefit from different thinning treatments. We then examined how riparian thinning affects the long‐term development of both large diameter live trees and deadwood. To this end, we used a forest growth model to examine how different forest thinning intensities might affect the long‐term production and abundance of live trees and deadwood. Our results suggest that there are long‐term habitat tradeoffs associated with different thinning intensities. Species that utilize large diameter live trees will benefit most from heavy thinning, whereas species that utilize large diameter deadwood will benefit most from light or no thinning. Because far more vertebrate species utilize large deadwood rather than large live trees, allowing riparian forests to naturally develop may result in the most rapid and sustained development of structural features important to most terrestrial and aquatic vertebrates. 相似文献
27.
Siedlecka EM Stepnowski P 《Environmental science and pollution research international》2009,16(4):453-458
Background, aim, and scope Ionic liquids are regarded as essentially “green” chemicals because of their insignificant vapor pressure and, hence, are
a good alternative to the emissions of toxic conventional volatile solvents. Not only because of their attractive industrial
applications, but also due to their very high stability, ionic liquids could soon become persistent contaminants of technological
wastewaters and, moreover, break through into natural waters following classical treatment systems. The removal of harmful
organic pollutants has forced the development of new methodologies known as advanced oxidation processes (AOPs). Among them,
the Fenton and Fenton-like reactions are usually modified by the use of a higher hydrogen peroxide concentration and through
different catalysts. The aim of this study was to assess the effect of hydrogen peroxide concentration on degradation rates
in a Fenton-like system of alkylimidazolium ionic liquids with alkyl chains of varying length and 3-methyl-N-butylpyridinium chloride.
Materials and methods The ionic liquids were oxidized in dilute aqueous solution in the presence of two different concentrations of hydrogen peroxide.
All reactions were performed in the dark to prevent photoreduction of Fe(III). The concentrations of ionic liquids during
the process were monitored with high-performance liquid chromatography. Preliminary degradation pathways were studied with
the aid of 1H NMR.
Results Degradation of ionic liquids in this system was quite effective. Increasing the H2O2 concentration from 100 to 400 mM improved ionic liquid degradation from 57–84% to 87–100% after 60 min reaction time. Resistance
to degradation was weaker, the shorter the alkyl chain.
Discussion The compound omimCl was more resistant to oxidation then other compounds, which suggests that the oxidation rates of imidazolium
ionic liquids by OH· are structure-dependent and are correlated with the n-alkyl chain length substituted at the N-1-position. The level of degradation was dependent on the type of head group. Replacing
the imidazolium head group with pyridinium increased resistance to degradation. Nonetheless, lengthening the alkyl chain from
four to eight carbons lowered the rate of ionic liquid degradation to a greater extent than changing the head group from imidazolium
to pyridinium. 1H-NMR spectra show, in the first stage of degradation, that it is likely that radical attack is nonspecific,
with any one of the carbon atoms in the ring and the n-alkyl chain being susceptible to attack.
Conclusions The proposed method has proven to be an efficient and reliable method for the degradation of imidazolium ionic liquids by
a Fenton-like reagent deteriorated with lengthening n-alkyl substituents and by replacing the imidazolium head group with pyridinium. The enhanced resistance of 1-butyl-3-methylpyridinium
chloride when the resistance of imidazolium ionic liquids decreases with increasing H2O2 concentration is probably indicative of a change in the degradation mechanism in a vigorous Fenton-like system. H-NMR spectra
showed, in the first stage of degradation, that radical attack is nonspecific, with any one of the carbon atoms in the ring
and the n-alkyl chain being susceptible to attack.
Recommendations and perspectives Since ionic liquids are now one of the most promising alternative chemicals of the future, the degradation and waste management
studies should be integrated into a general development research of these chemicals. In the case of imidazolium and pyridinium
ionic liquids that are known to be resistant to bio- or thermal degradation, studies in the field of AOPs should assist the
future structural design as well as tailor the technological process of these chemicals 相似文献
28.
Fenton 法降解抗生素磺胺间甲氧嘧啶钠 总被引:2,自引:1,他引:2
应用Fenton高级氧化技术降解水溶液中抗生素磺胺间甲氧嘧啶钠(SMMS),系统探讨了起始pH、CSMMS、CFe2+、CH2O2和温度等因素对SMMS降解效果的影响。结果表明:CSMMS=4.53 mg/L,pH=4.0,CH2O2=0.49 mmol/L,CFe2+=19.51μmol/L,T=25℃为最佳反应条件。在最佳条件下,87.4%的SMMS可以在120 min内降解。反应动力学研究表明Fenton氧化降解SMMS分为两个阶段,快速反应阶段和慢速反应阶段,并建立了两阶段动力学模型,模型拟合结果较好。研究结果为含有SMMS的污废水处理提供了基础数据和科学参考。 相似文献
29.
城市污水再生处理流程大多采用几种深度处理单元组合而成,由单个处理单元对污染物的去除效果来准确评价组合流程整体的处理效率对于工艺方案的确定和实际运行具有重要意义。在对处理过程中污染物浓度分布变化分析的基础上,建立了污水深度处理流程污染物去除效果的评价分析方法,并根据3种常用再生处理单元的实验结果,以总大肠菌群为例,评价了混凝沉淀过滤与生物活性炭和超滤联用处理流程对总大肠菌群的去除效果,计算结果表明,这种评价分析方法是准确可行的。 相似文献
30.
Maria A. L. Milhome Lucélia K. de Lima Crisiana de A. Nobre Francisco de A. F. Lima Ronaldo F. do Nascimento 《Journal of environmental science and health. Part. B》2013,48(12):786-792
AbstractThis study investigates the oxidation of trifluralin residues during ozonation in aqueous and food matrices (tomato). Domestic ozonation equipment with average production of 23.9?mg O3 L?1 h?1 was used in the tests. Modern chromatographic systems (SPME-GC-IT/MS/MS and QuEChERS-GC-IT/MS/MS) were applied for extraction and detection of trifluralin residue in fortified samples of ultrapure water, tap water, superficial water and tomato fruit. The samples were submitted to the ozonation process during 0, 5, 10 and 20?min. Treatment at 5?min was able to degrade 71.5% of herbicide trifluralin in surface water. The removal (%) in ultrapure water reached 83.4% after 20?min of ozonation. The degradation of trifluralin in fortified tomato samples (0.025–0.1?mg kg?1) were conducted with ozonation at 20?min, and it ranged from 84.4 to 92.7%. After treatment, levels of trifluralin in tomato remained within the established MRLs to EU, USEPA and ANVISA (Brazil). The data provided evidence that ozone is effective for removing trace trifluralin from water and foods. 相似文献