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31.
磁分离技术在我国废水处理中的研究进展 总被引:8,自引:0,他引:8
本文介绍了磁分离技术的基本原理、分离方法和设备,综述了该技术在某些特定废水处理中的应用现状。磁分离技术的实际应用具有分离效率高、分离速度快、选择性好、处理对象广、成本低廉、分离物系的粒度可达到很小,并且不受处理体系的温度、密度、酸碱度限制等优点,可以使某些采用传统分离方法较难或不能分离的物系得以顺利地分离,有较为广泛的应用前景。 相似文献
32.
为研究杂散电流干扰影响范围及严重程度,通过现场测试典型深井和浅埋阳极地床地表电位梯度,探讨地表电位梯度分布规律,分析阳极地床杂散电流干扰特性。结果表明:深井阳极地床地表电位梯度沿阳极井中心辐射线方向先增大后减小,浅埋阳极地床地表电位梯度沿垂直于阳极体方向呈递减趋势;浅埋阳极地床地表电位梯度峰值和衰减速率均大于深井阳极,但强干扰平均影响半径仅为深井阳极的1/2;从强干扰影响半径看,应优先选用浅埋阳极地床;可通过适当增加井深、对干扰区内金属构筑物排流等方式,缓解深井阳极地床杂散电流干扰影响。研究结果可为强制电流阴极保护阳极地床选型和选址提供理论指导。 相似文献
33.
树脂膜作为DGT技术的核心部分,是影响 DGT测定的关键因素。为确保树脂吸附和洗脱实验的准确性,筛选出醋酸-盐酸混合溶液作为甲基汞溶液的保存试剂。以标液中甲基汞的吸附率为指标,比较了4种吸附树脂的基本特征及在室内标液浓度为1μg/L的条件下对甲基汞的吸附效果,筛选出吸附效果最佳的树脂TCH-95,并对TCH-95树脂胶的不同洗脱试剂进行了研究。结果表明:24h TCH-95对甲基汞的吸附率高达98.9%。且在洗脱实验中,对硫脲-盐酸混合溶液添加冰醋酸有助于提高树脂胶中甲基汞的洗脱率,其2%硫脲-0.2mol/L HCl-4%HAc混合溶液的甲基汞洗脱率为84.5%,是目前TCH-95树脂的最佳洗脱剂。 相似文献
34.
土壤中有机氯农药的多残留分析技术 总被引:9,自引:1,他引:9
本文建立了超声波提取 ,硅胶SPE柱净化 ,GC μECD检测土壤中α HCH ,β HCH ,γ HCH ,δ HCH ,HCB ,o p′ DDE ,aES,p p′ DDE ,Diel,Endrin ,p p′ DDD ,o p′ DDT ,p p′ DDT含量的方法 .对提取剂、洗脱剂和前处理步骤优化的结果表明 :体积比为 1∶2的丙酮 /石油醚是较好的提取剂和洗脱剂 ,方法加标回收率在 70 %— 1 1 0 %之间 ,检测限为0 0 5— 1ng·g- 1 . 相似文献
35.
三江平原不同水位梯度湿地地上生物量动态特征 总被引:4,自引:1,他引:4
水分条件变化直接影响湿地植物群落的分布及其生产量,为了阐明不同水分条件湿地初级生产力的形成规律,揭示水文格局对湿地生态系统物质生产过程的调控机理,采用收获法研究了三江平原不同水位梯度上的小叶章(Calamagrostics angustifolia)、乌拉苔草(Carex meyeriana)和毛苔草(Carex lasiocarpa)湿地地上生物量的结构动态及其增长速率,结果表明:3类湿地地上及其各器官生物量均呈单峰型变化,小叶章湿地和乌拉苔草湿地地上生物量的峰值出现的时间早于毛苔草湿地,而且小叶章湿地和乌拉苔草湿地各季节地上生物量均大于毛苔草湿地.茎对小叶章湿地地上生物量的平均贡献率与毛苔草湿地相近,均大于乌拉苔草湿地;叶对小叶章湿地地上生物量的平均贡献率与毛苔草湿地相近,均小于乌拉苔草湿地.3类湿地地上生物量的绝对增长率和相对增长率的变化趋势基本相同,但不同阶段绝对增长率和相对增长率值的大小存在差异.3类湿地地上生物量及各组分生物量的季节动态变化均符合抛物线模型,并且各模型拟合精度均较高,R2基本都在0.92以上. 相似文献
36.
利用景观梯度法分析张家港市城市景观变化 总被引:3,自引:0,他引:3
在遥感与GIS技术平台的支持下,利用景观格局梯度法分析了张家港市各土地利用类型的景观格局及其时空分布特征.研究结果表明,2002-2006年,张家港市城市景观格局总体变化明显,城镇用地增长22.10%,农业用地则减少14.96%.在空间上,呈现出城市一城乡交错带一农业区的变化特征;在时间上,整体样带体现出斑块密度升高、... 相似文献
37.
38.
Chorng-Horng Lin a Jimmy Kuo a Yen-Wen Wang Michael Chen Chin-Ho Lin 《Journal of environmental science and health. Part. B》2013,48(7):710-717
The aim of this study was to investigate the bacterial communities on paclobutrazol [(2RS, 3RS)-1-(4-Chlorophenyl)-4, 4-dimethyl-2-(1H-1,2,4-triazol-1-yl) pentan-3-ol]–applied agricultural soils by denaturing gradient gel electrophoresis (DGGE) of polymerase chain reaction (PCR) amplified 16S rDNA gene fragments. Three different agricultural soil samples were collected from paclobutrazol applied mango and waxapple orchards, peanut fields and untreated rice fields as a control for DGGE analysis. The DGGE pattern of PCR- generated 16S rDNA gene fragments indicated that the bacterial populations from four paclobutrazol–applied soils of peanut fields were closely related to each other and two paclobutrazol–applied soils of mango and waxapple orchards harbored closely related bacterial communities. But, paclobutrazol–free agricultural soils comprised relatively a different bacterial group. However, the bacterial populations of mango and waxapple orchard are completely different from the bacterial communities of peanut field. Further purification and sequence analysis of 40 DGGE bands followed by phylogenetic tree assay showed similar results that soil bacteria from paclobutrazol applied mango and waxapple orchard are phylogenetically related. Based on the phylogenetic analysis, the clone M-4 was clad 100 % (bootstrap value) with Mycobacterium sp. The Mycobacterium sp. has been proved to degrade the phenolic compounds such as phenol, 4-chlorphenol, 2,4-dichlorophenol and paclobutrazol molecule containing chlorobenzene ring. 相似文献
39.
Kostanjsek R Lapanje A Drobne D Perović S Perović A Zidar P Strus J Hollert H Karaman G 《Environmental science and pollution research international》2005,12(6):361-368
- Goal, Scope, Background. Lake Skadar is the largest lake in Balkan Peninsula, located on the Montenegro-Albanian border. The
unique features of the lake and wide range of endemic and rare or endangered plant and animal species resulted in the classification
of the Skadar as a wetland site of international significance. In spite of its importance the Lake is influenced by inflowing
waters from river Morača and other regional rivers contaminated by the industry, municipal and agricultural activities in
the area. Therefore, the Lake has been subject of various physical, chemical, biological and toxicological examinations. However,
community-level analyses are most relevant to assess the effect of stressors on aquatic ecosystems. In the present study bacterial
community structure among differently polluted sites of the lake was compared by genetic fingerprinting technique.
Methods Water and sediment samples were collected from five differently polluted sampling sites on the Lake Skadar in spring and
autumn of the same year. The bacterial community structure in the samples was characterized and compared by temporal temperature
gel electrophoresis (TTGE) analysis of polymerase chain reaction-amplified bacterial 16S rRNA genes.
Results and Discussion The TTGE analysis resulted in many distinguishable and reproducible band patterns, allowing reliable comparison of bacterial
communities among sampling sites. Results on the bacterial community structure revealed that three of the selected locations
can be considered as sites that have not shown any pollution degradation determined by our method, due to similar structure
of bacterial community in the sediment samples. On the other hand, significant shifts in bacterial community structure in
the mouth of the river Morača and Plavnica were shown. Since the results coincide with some of the bioassays and chemical
analysis performed previously, the changes in bacterial community structure are explained as an effect of antropogenic pollution
on the lake ecosystem by waters of river Morača and stream Plavnica.
Conclusion The TTGE has proven to be an efficient and reliable method to monitor bacterial dynamics and community shifts in aquatic
environment, especially in the sediments. Within the variety of environmental quality assessments the use of TTGE analyses
of bacterial community is strongly recommended, particularly as an initial investigation. However, in any conclusion on the
state of the environment, the TTGE results should be combined to some other biological, chemical and hydrological data.
Recommendation and Outlook Since prokaryotes are a crucial group of organisms in the biosphere, the ecosystem function studies are largely based on
bacterial communities. Therefore, bacterial community structure analysis should be a part of an integrated weight of evidence
approach in pollution assessment. In case of Triad approach, consisting of chemical analyses, bioassays, and community studies
in the field, the TTGE bacterial community structure analyses should be placed in the later Triad leg. In comparison to other
community studies, based on various biotic indices, the TTGE bacterial community analysis has proven to be very sensitive,
reliable and less time consuming. 相似文献
40.
在微波无极灯下将烯氧基瓜环固载到巯基硅胶(MSG)上,制得固载化瓜环(ACB[6]-SG).通过红外光谱表征固载产物,并研究固载化瓜环对磺胺间甲氧嘧啶(SMM)的吸附性能.结果表明,SMM在固载化瓜环上的吸附基本在2 min内即可达到平衡;Henry方程和Freundlich方程均能较好地拟合SMM在固载化瓜环和巯基硅胶上的等温吸附曲线,但是SMM在固载化瓜环上的吸附主要是在瓜环中的分配,而SMM在巯基硅胶上的吸附则主要是多分子层的表面吸附作用;SMM在固载化瓜环上的平衡吸附量远大于在巯基硅胶上的平衡吸附量;SMM在两者上的吸附过程是一个放热过程,温度越低吸附效果越好. 相似文献