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介绍了臭氧氧化、活性炭吸附去除MIB、GEOSMIN时的主要影响因素,分析了各因素对去除率的影响程度及原因。还介绍了臭氧、PAC去除痕量异味物质的机理。 相似文献
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阴极电场增强活性炭纤维-臭氧体系去除水中硝基苯 总被引:1,自引:0,他引:1
通过对电流强度、反应液初始pH值、电解质种类及浓度等因素分析,探究了电增强活性炭纤维-臭氧体系对水中硝基苯的去除效果和机制.结果表明,与活性炭纤维-臭氧体系比较,电增强活性炭纤维-臭氧体系对硝基苯的去除效率显著提升.电增强活性炭纤维-臭氧体系中电流强度对体系影响不显著,臭氧浓度对水中硝基苯的去除效率有一定影响,反应初始液的pH值对活性炭纤维催化臭氧体系的影响较大.水中无机盐如硫酸钠、硝酸钠及氯化钠的存在会抑制活性炭纤维催化臭氧.此外,单独臭氧对活性炭纤维有破坏作用,降低了活性炭纤维对反应的促进效果,外加阴极电场时,不仅活性炭纤维对有机物的去除效果显著提升,而且保证了活性炭纤维结构不被臭氧所破坏. 相似文献
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利用处理量为3L/d的臭氧陶瓷膜-生物活性炭(BAC)(工艺Ⅰ)和陶瓷膜-BAC(工艺Ⅱ)2种组合工艺处理受污染的原水,研究了工艺对原水中浊度、氨氮和有机物的去除效果,同时考察了臭氧对膜通量和BAC的影响.结果表明,未投加臭氧和2.0mg/L臭氧投加量下,两种组合工艺可去除原水中96%以上的浊度.组合工艺均可去除原水中1.0~2.0mg/L的氨氮.提高溶解氧浓度至30mg/L可强化氨氮的去除能力,两种组合工艺可至少彻底去除5.5mg/L的氨氮.投加2mg/L臭氧后,工艺Ⅰ可去除原水中48.3%的总有机碳(TOC)和51.8%的UV254.工艺Ⅱ对TOC和UV254的平均去除率分别为51.1%和48.2%.臭氧对浊度的去除无影响,但臭氧可改变部分有机物的结构,减轻膜的有机物污染.与未投加臭氧的工艺Ⅱ相比,投加臭氧使工艺Ⅰ中的膜通量提高了25%~30%.但残留臭氧可能影响后续BAC中的微生物,对BAC去除氨氮和有机物的能力产生不利影响. 相似文献
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以实验室制备的羟基化锌(ZnOOH)为催化剂,研究了其催化臭氧化去除水中痕量磺胺嘧啶(SD)的效能,通过研究叔丁醇对催化效果的影响,推断了催化反应机理,探讨了臭氧投加量、水质因素、催化剂投加量和使用次数对催化性能的影响因素.结果表明,ZnOOH对臭氧氧化水中的SD有较强的催化活性.催化剂表面结合的羟基基团有利于催化反应.在优化的实验条件下,蒸馏水中反应30min时,催化臭氧化比单独臭氧化对SD的去除率提高了47.7%.催化过程遵循自由基反应机理,SD的去除效果随催化剂投加量的增加而提高,催化剂在重复使用后催化效果基本不变,水中的氯离子可以明显降低催化剂的活性,偏碱性条件下,催化效果更佳. 相似文献
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氯苯紫外光降解产物对生物过滤塔运行性能的影响 总被引:2,自引:0,他引:2
生物过滤技术对难生物降解VOCs的处理效果较差,构建紫外光降解-生物过滤联合处理工艺是解决难生物降解VOCs处理的一个有效手段.已有研究表明,紫外光降解预处理对氯苯生物过滤塔的去除性能有促进作用.为了考察紫外预处理对生物过滤塔的影响机理,本研究分别考察了氯苯紫外光降解主要产物氯酚、乙酸以及副产物臭氧对生物过滤塔运行性能的影响.研究结果表明,加入乙酸降低了生物过滤塔的氯苯去除性能,在增加喷淋量后去除性能有所恢复.加入邻氯酚使生物过滤塔的氯苯去除性能略有降低.臭氧明显促进了生物过滤塔的氯苯去除性能,当进口臭氧浓度在60~120mg.m-3时,氯苯平均去除率可由70%提高到90%以上.因此,臭氧是紫外预处理促进生物过滤塔运行性能的主要因素. 相似文献
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森林与径流关系——一致性和复杂性 总被引:17,自引:1,他引:16
@论文综述国外近一个世纪以来在配对集水区研究方面所取得的结论,从水的自然属性出发,从森林变化对径流(年径流量、洪峰与枯水径流)的影响,径流响应的干扰临界值及水文恢复各方面探讨森林变化与径流关系的一致性与复杂性。森林变化与径流关系的一致性主要表现在由较长时间尺度表达的年径流量上。绝大多数的配对集水区的试验研究表明,采伐森林就会增加年径流量,而在荒地上造林就会减少年径流量。而由较短时间尺度表达的洪峰径流与枯水流量则呈现较大的复杂性和难预估性。综述表明,对径流特别是洪峰与枯水径流的定义及分析方法的不同也是造成森林与径流关系复杂性的重要原因。森林与径流关系的复杂性要求人们在研究及应用其关系时就必须有系统观,必须考虑植被、径流与其它过程(土壤变化、气候变化等)的相互作用。论文还认为尽管配对集水区试验作为一种研究方法为研究者提供了许多可靠的结论,但由于许多研究者只把集水区看作是“黑箱”Q从而对认识森林与径流关系的复杂性有一定的局限性。未来的研究应把配对集水区的试验与其它对过程的研究技术(同位素、GIS等技术)结合起来。 相似文献
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真菌和细菌对染料的吸附脱色及再生能力的研究 总被引:9,自引:0,他引:9
进行了真菌和细菌共培养对染料的吸附脱色和吸附脱色能力再生的研究。结果表明,青霉菌G-1首先对偶氮染料S-119、蒽醌染料艳紫KN-B(C.I.Reactive violet 22)水溶液中染料进行快速吸附去除,菌丝对同种染料的吸附速度随菌丝培养液中葡萄糖浓度的增加而加快,吸附染料的G-1菌丝在与细菌的共培养中完成对染料的脱色降解,脱色速度受培养液中葡萄和氮源浓度影响较大,从吸附速率和完全脱色时间综合评价,以葡萄糖浓度为5g/L、酒石酸铵为20mmol/L的培养基中培养的菌丝对染料的吸附脱色效果最好,吸附在菌丝上的艳紫KN-B脱色后菌丝吸附脱色能力得到再生,菌丝对100mg/L的艳紫KN-B染料水溶液可重复处理4次。青霉菌G-1对酸性染料废水处理3h,色度去除率为75.9%,吸附染料的菌丝在与细菌共培养中完成对染料的脱色,对试验所用染料废水,菌丝的处理能力获得1次再生。 相似文献
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Fuellen G 《Die Naturwissenschaften》2008,95(6):469-481
The analysis of the ever-increasing amount of biological and biomedical data can be pushed forward by comparing the data within and among species. For example, an integrative analysis of data from the genome sequencing projects for various species traces the evolution of the genomes and identifies conserved and innovative parts. Here, I review the foundations and advantages of this "historical" approach and evaluate recent attempts at automating such analyses. Biological data is comparable if a common origin exists (homology), as is the case for members of a gene family originating via duplication of an ancestral gene. If the family has relatives in other species, we can assume that the ancestral gene was present in the ancestral species from which all the other species evolved. In particular, describing the relationships among the duplicated biological sequences found in the various species is often possible by a phylogeny, which is more informative than homology statements. Detecting and elaborating on common origins may answer how certain biological sequences developed, and predict what sequences are in a particular species and what their function is. Such knowledge transfer from sequences in one species to the homologous sequences of the other is based on the principle of 'my closest relative looks and behaves like I do', often referred to as 'guilt by association'. To enable knowledge transfer on a large scale, several automated 'phylogenomics pipelines' have been developed in recent years, and seven of these will be described and compared. Overall, the examples in this review demonstrate that homology and phylogeny analyses, done on a large (and automated) scale, can give insights into function in biology and biomedicine. 相似文献
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以泉水来源的伊宁市城市水系,具有特有城市标志的同时对伊宁市起着重要的生态、景观、润泽作用。近年来,城市建设的快速发展给伊宁市水系带来了新的问题。文章以如何保护好伊宁市城市水系为出发点,以现场调查及相关数据为基础,对现状问题进行分析,提出了城市水系保护方面的一些建议对策。 相似文献
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韩文峰 《安全.健康和环境》2011,11(3):40-43
以某联合站为例,根据油气集输联合站站场功能,将联合站划分为油气处理、储运及污水处理3个单元,对各单元发生火灾爆炸事故的可能条件进行分析,并利用DNV公司的SAFETI软件对事故后果进行模拟计算,根据事故影响范围数据,提出相应的安全措施。 相似文献
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Pesticides and trace elements in cannabis: Analytical and environmental challenges and opportunities
Caley B. Craven Nicholas Wawryk Ping Jiang Zhongshan Liu Xing-Fang Li 《环境科学学报(英文版)》2019,31(11):82-93
Cannabis is increasingly used for both medicinal and recreational purposes with an estimate of over 180 million users annually. Canada has recently legalized cannabis use in October 2018, joining several states in the United States of America (e.g., Colorado, California, and Oregon) and a few other countries. A variety of cannabis products including dry flowers, edibles, and oil products are widely consumed. With high demand for cannabis products worldwide, the quality of cannabis and its related products has become a major concern for consumer safety. Various guidelines have been set by different countries to ensure the quality, safety, and efficacy of cannabis products. In general, these guidelines require control of contaminants including pesticides, toxic elements, mycotoxins, and pathogens, as well as residual solvents in regard to cannabis oil. Accordingly, appropriate analytical methods are required to determine these contaminants in cannabis products for quality control. In this review, we focus on the current analytical challenges and method development for detection of pesticides and toxic elements in cannabis to meet various guidelines. 相似文献
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A total of 2931 women randomized to either transabdominal CVS, transceirvical CVS, or amniocentesis were studied. Unless intended or unintended abortion had occurred, they had completed up to 28 weeks of pregnancy. No significant difference was seen between total fetal loss in the transabdominal CVS group and the amniocentesis group (6.5 and 6.8 per cent, respectively, SE difference = 0.92 per cent, p = 0.01). The total fetal loss in the transcervical CVS group was 10.1 per cent. After pooling our data with data from the Canadian randomized study and the American non-randomized study, the difference in risk between trans-cervical CVS and amniocentesis was 1.8 per cent (SE difference = 0.64 per cent, p = 0.8). When the number of failed procedures and those cases evaluated as infeasible for the assigned method-for anatomical reasons-are compared, the overall sampling efficacy is poorer transcervically than transabdominally. 相似文献