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51.
52.
由于人口的快速增长,人类活动导致近地层O3浓度不断提高,O3浓度升高将对植物、动物和人体健康产生极大的危害.采用开顶式气室(OTC)原位实验方法,研究O3浓度升高对不同生长期冬小麦叶片抗氧化系统的影响,进而分析O3对植物的伤害机制.结果表明,O3浓度升高可导致冬小麦拔节期和抽穗期叶片超氧化物歧化酶(SOD)、过氧化物酶... 相似文献
53.
目的 探究碳纤维复合材料在舰船应用时与金属材料的电偶腐蚀问题。方法 针对一种典型舰船用碳纤维增强乙烯基树脂复合材料,在青岛海洋大气环境下开展0.5、1、1.5、2 a期的自然曝晒试验,进而采用电化学分析手段考察其与低合金钢的电偶腐蚀效应,结合老化机制探究碳纤维复合材料的老化行为对其与钢电偶腐蚀的影响。结果及结论 在青岛大气环境曝晒不同周期的复合材料试样,开路电位与低合金钢相差较大,存在较高的电偶腐蚀倾向。随曝晒时间的延长,复合材料表面微裂纹不断产生、扩展,导致电化学反应活性点增多,两者电偶电流密度随之增大。在青岛海洋大气环境下暴露2 a后,碳纤维增强乙烯基树脂复合材料与低合金钢的电偶电流为0.356 9 μA/cm2,两者的电偶腐蚀敏感性达到B级。 相似文献
54.
萃取膜生物反应器处理苯酚废水的试验研究 总被引:2,自引:0,他引:2
从经过驯化的活性污泥中筛选出苯酚降解菌.制备成菌悬液,对比活性污泥体系和菌悬液体系的萃取膜生物反应器(EMB)对苯酚废水的处理效果,考察了料液苯酚浓度、反应器温度等因素对膜萃取速率及生物降解效果的影响.结果表明,通过以苯酚为唯一碳源,逐渐提高苯酚浓度的方法对活性污泥进行驯化.当进水苯酚浓度为700 mg·L-1时,苯酚去除率达99%以上;适当提高反应器温度和料液初始浓度有利于提高膜萃取速率;当初始料液苯酚浓度为2000 mg·L-1时,膜萃取速率高于生物降解速率,生物相中产生苯酚积累;菌悬液体系EMB的生物膜厚度明显小于活性污泥体系,且水力反冲洗可有效控制生物膜厚度.对苯酚生物降解产物的GC-MS分析结果表明,苯酚的生物降解较彻底,基本无苯酚中间产物的残留. 相似文献
55.
于2002年对抚顺市辖区内水污染源进行了调查,结果表明:抚顺市COD排放总量为5.8万吨,入浑河总量2.7万吨,氨氮总排放量为0.7万吨,入浑河总量0.2万吨.分析了造成水污染的主要原因,提出了水污染防治对策。 相似文献
56.
Pengzhe Sui Xianghua Wen Xia Huang 《Frontiers of Environmental Science & Engineering》2007,1(3):362-367
In this study, ultrasound was used to control the membrane fouling online in an anaerobic membrane bioreactor (AMBR). Short-term running experiments were carried out under different operating conditions to explore feasible ultrasonic parameters. The experimental results indicated that when the crossflow velocity was more than 1.0 m/s, membrane fouling could be controlled effectively only by hydrodynamic methods without ultrasound. When ultrasound was applied, an ultrasonic power range of 60–150 W was suitable for the membrane fouling control in the experimental system. The experimental results showed that the membrane fouling was controlled so well that membrane filtration resistance (ΣR) could stay at 5 × 1011 m?1 for more than a week with the crossflow velocity of 0.75 m/s, which equaled the effect of crossflow velocity of more than 1.0 m/s without ultrasound. 相似文献
57.
58.
Yu Gang Zhang Qing Huang Jun Cai Zhenxiao Sui Qian 《Frontiers of Environmental Science & Engineering in China》2007,1(1):13-17
As a party of the Stockholm Convention on Persistent Organic Pollutants, China must submit its national implementation plan
(NIP) for this convention. The strategy and action plan for reducing the release of dioxins in China are the most important
components of the NIP. Three problems are key points for developing such strategy and action plan—what are the key sources
for applying the best available technology/best environmental practice (BAT/BEP) to reduce the release of dioxins? How about
the capacity for reducing the dioxins release from the key sources? Where are the areas of priority for applying BAT/BEP?
This paper shows the efforts towards the solution of these problems. The list of key sources covering about half of the total
dioxins release was determined considering four criteria. The capacity of key sources were estimated based on the difference
between the emission factor corresponding to the actual situation in 2004 and that corresponding to the scenario that all
key sources have been applied BAT/BEP to reduce the dioxins release. The priority analysis using the geographical information
system (GIS) tool has revealed that castern provinces should be of high priority in the future reduction activities of dioxins
release in China. 相似文献
59.
垃圾焚烧飞灰基本性质的研究 总被引:6,自引:3,他引:3
分析了几种焚烧飞灰的基本性质,讨论了燃烧过程中可能影响飞灰中重金属分布的因素,研究表明:焚烧飞灰结构复杂性和性质多变,其主要的化学组成为Cl、Ca、K、Na、Si、Al、O等,主要的重金属为Zn、Pb、Cr、Cu等;飞灰多以不规则的无定形态和多晶聚合体的结构存在,浸出毒性一般超过危险废物鉴别标准;重金属主要以气溶胶小颗粒和富集于飞灰颗粒表面的形式存在于飞灰中.焚烧厂和焚烧时间的变化对于飞灰性质有较大影响,几种飞灰的Cl含量范围为6.93%~29.18%,SiO2为4.48%~24.84%;浸出毒性则在0~163.10mg·L-1(Pb)、0.049~164.90mg·L-1(Zn)之间变化. 相似文献
60.
Cometabolic bioventing for removal of TCE in the unsaturated zone was studied in a soil column study using methane as growth substrate. A numerical model was developed for simulating the behavior of TCE during cometabolic bioventing. The model parameters were estimated independently through laboratory batch experiments or from the literature. Simulations were found to provide reasonable agreement with the experimental data. The experimental data show that a total TCE remediation efficiency of over 95% was obtained. The volatilization-to-biodegradation ratio of TCE was about 7:1 and T
c
values ranging from 0.0078 to 0.07 were obtained in this methane-driven system. Due to the toxicity of the high TCE concentrations to the microbial biomass in the initial stages of the experiment, cometabolic biodegradation was enhanced and was more efficient in the later stages of cometabolic bioventing. 相似文献