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91.
电化学氧化技术因其具有氧化能力强、可控性高、运行费用低及对环境友好的特点,引起了人们极大的关注.处于核心地位的DSA(Dimensionally Stable Anodes)电极是电化学工作者研究的重点.Ti基氧化铅、氧化铱、锡锑氧化物等电极是目前最有研究价值的DSA电极,文章介绍了这些电极的一些最新的研究成果. 相似文献
92.
电化学氧化技术因其具有氧化能力强、可控性高、运行费用低及对环境友好的特点,引起了人们极大的关注。处于核心地位的DSA(Dimensionally Stable Anodes)电极是电化学工作者研究的重点。Ti基氧化铅、氧化铱、锡锑氧化物等电极是目前最有研究价值的DSA电极,文章介绍了这些电极的一些最新的研究成果。 相似文献
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黄地老虎NPV增效作用的研究 总被引:3,自引:0,他引:3
对黄地老虎核型多角体病毒(AsNPV)的多角体蛋白和病毒粒子组分进行分离纯化,分别与棉铃虫核型多角体病毒(HaNPV)混合感染三龄棉铃虫幼虫,发现此二种组分均能够提高棉铃虫幼虫的死亡率,缩短半致死时间,降低半致死浓度。使用酶联免疫吸附测定(ELISA)技术检验AsNPV多角体蛋白和病毒粒子与粘虫颗粒体病毒增效因子(PsGV-SF)和HaNPV多角体蛋白的同源性,发现AsNPV多角体蛋白和病毒粒子与 相似文献
96.
Dietary uptake is the major way that inorganic arsenic (iAs) enters into benthic fish; however, the metabolic process of dietborne iAs in fish muscle following chronic exposure remains unclear. This was a 40-day study on chronic dietborne iAs [arsenite (AsIII) and arsenate (AsV)] exposure in the benthic freshwater food fish, the crucian carp (Carassius auratus), which determined the temporal profiles of iAs metabolism and toxicokinetics during exposure. We found that an adaptive response occurred in the fish body after iAs dietary exposure, which was associated with decreased As accumulation and increased As transformation into a non-toxic As form (arsenobetaine). The bioavailability of dietary AsIII was lower than that of AsV, probably because AsIII has a lower ability to pass through fish tissues. Dietary AsV exhibited a high potential for transformation into AsIII species, which then accumulated in fish muscle. The largely produced AsIII considered more toxic at the earlier stage of AsV exposure should attract sufficient attention to human exposure assessment. Therefore, the pristine As species and exposure duration had significant effects on As bioaccumulation and biotransformation in fish. The behavior determined for dietborne arsenic in food fish is crucial for not only arsenic ecotoxicology but also food safety. 相似文献
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Fang Shubo Cui Qu Dai Xiaoyan 《Environmental science and pollution research international》2020,27(9):8835-8845
Environmental Science and Pollution Research - This study proposed an in situ soil experimental system to quantify concentration and accumulation rates of polychlorinated biphenyl (PCB) congeners... 相似文献
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Qin Wei Huidan Deng Hengmin Cui Jing Fang Zhicai Zuo Junliang Deng Yinglun Li Xun Wang Ling Zhao 《Environmental science and pollution research international》2018,25(34):33926-33935
Fluorine or fluoride can have toxic effects on bone tissue and soft tissue at high concentrations. These negative effects include but not limited to cytotoxicity, immunotoxicity, blood toxicity, and oxidative damage. Apoptosis plays an important role in fluoride-induced toxicity of kidney, liver, spleen, thymus, bursa of Fabricius, cecal tonsil, and cultured cells. Here, apoptosis activated by high level of fluoride has been systematically reviewed, focusing on three pathways: mitochondrion-mediated, endoplasmic reticulum (ER) stress-mediated, and death receptor-mediated pathways. However, very limited reports are focused on the death receptor-mediated apoptosis pathways in the fluoride-induced apoptosis. Therefore, understanding and discovery of more pathways and molecular mechanisms of fluoride-induced apoptosis may contribute to designing measures for preventing fluoride toxicity. 相似文献
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Quan Zhang Cui Wang Wanpeng Liu Jiapeng Qu Ming Liu Yanming Zhang Meirong Zhao 《Environmental science and pollution research international》2014,21(1):652-659
Quinestrol has shown potential for use in the fertility control of the plateau pika population of the Qinghai–Tibet Plateau. However, the environmental safety and fate of this compound are still obscure. Our study investigated degradation of quinestrol in a local soil and aquatic system for the first time. The results indicate that the degradation of quinestrol follows first-order kinetics in both soil and water, with a dissipation half-life of approximately 16.0 days in local soil. Microbial activity heavily influenced the degradation of quinestrol, with 41.2 % removal in non-sterile soil comparing to 4.8 % removal in sterile soil after incubation of 10 days. The half-lives in neutral water (pH 7.4) were 0.75 h when exposed to UV light (λ?=?365 nm) whereas they became 2.63 h when exposed to visible light (λ?>?400 nm). Acidic conditions facilitated quinestrol degradation in water with shorter half-lives of 1.04 and 1.47 h in pH 4.0 and pH 5.0 solutions, respectively. Moreover, both the soil and water treatment systems efficiently eliminated the estrogenic activity of quinestrol. Results presented herein clarify the complete degradation of quinestrol in a relatively short time. The ecological and environmental safety of this compound needs further investigation. 相似文献
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