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91.
Coking wastewater has caused serious health risk in coal-producing areas of China, however its toxic effects have not been well understood. The genotoxicity induced by coking wastewater on mice in vivo and its possible oxidative mechanisms were investigated via observing the induction of micronuclei in polychromatic erythrocytes of mouse bone marrow, and subsequently determining the antioxidative enzyme activities (superoxide dismutase Cu, Zn-SOD, Se-dependent glutathione peroxidase, and catalase), thiobarbituric acid reactive substance contents and protein carbonyl levels in brains and livers of mice. Results showed that the tested coking wastewater caused a significant increase of micronucleus frequencies in a concentration-dependent manner. Also, the sample increased lipid peroxidation and protein oxidation levels, which was accompanied by changes in antioxidative status. Interestingly, pre-treatment with an antioxidant (vitamin C) led to a statistical reduction in the micronucleus frequency caused by coking wastewater. This implies that coking wastewater induces evident genetic damage in mammalian cells, and exposure to polluted areas might pose a potential genotoxic risk to human beings; in the process, oxidative stress played a crucial role.  相似文献   
92.
Environmental Science and Pollution Research - The sun is the primary source of life on the earth. The heating effect of the sun provides a more fruitful environment for mankind. In addition, solar...  相似文献   
93.
Environmental Science and Pollution Research - Manganese activated carbon (Mn-AC) was successfully prepared by the incipient wetness method and characterized by SEM, XRD, and FTIR. This study chose...  相似文献   
94.
李晓东  杨清  刘惠秋  巢欣  杨胜娴  巴桑 《环境科学》2023,44(9):4941-4953
河流生态健康评价是保护河流生物多样性、遏制河流水环境恶化趋势的前提,为探究雅鲁藏布江中游河流生态系统健康状态及其对水环境因子响应机制,于2021年的7月和10月在雅鲁藏布江中游进行浮游植物样品的采集和水环境因子的测定,鉴定浮游植物物种并计算其细胞丰度和生物量,构建浮游植物完整性指数评价该河段河流生态健康状态,分析水环境因子和浮游植物群落时空分布特征、P-IBI值和群落参数与水环境因子的相关性.结果表明,水环境因子在时间上差异不明显,在空间上有显著的差异;浮游植物平均细胞丰度和平均生物量大小为:丰水期>枯水期以及干流>支流,硅藻在群落中占绝对优势,pH和WT是驱动浮游植物时空分布的主要水环境因子;雅鲁藏布江中游生态健康状态整体为"健康-亚健康",河流健康状态枯水期优于丰水期、支流优于干流,EC、TUR、WT、NO3--N和NH4+-N是影响该河段生态健康状态的主要水环境因子,可通过影响水体中浮游植物群落演替的方向和速率,参与和影响河流生态系统的物质循环和能量流动过程,驱动了雅鲁藏布江中游河流生态健康状态.  相似文献   
95.
Indoor air quality (IAQ) directly affects the health of occupants. Household manufacturing equipment (HME) used for hobbies or educational purposes is a new and unexplored source of air pollution. In this study, we evaluated the characteristics of particulate and gaseous pollutants produced by a household laser processing equipment (HLPE). Various target materials were tested using a commercial HLPE under various operating conditions of laser power and sheath air flow rate. The mode diameters of the emitted particles gradually decreased as laser power increased, while the particle number concentration (PNC) and particle emission rate (PER) increased. In addition, as the sheath air flow rate quadrupled from 10 to 40 L/min, the mode diameter of the emitted particles decreased by nearly 25%, but the effect on the PNC was insignificant. When the laser induced the target materials at 53 mW, the mode diameters of particles were <150 nm, and PNCs were >2.0 × 104 particles/cm3. Particularly, analyses of sampled aerosols indicated that harmful substances such as sulfur and barium were present in particles emitted from leather. The carcinogenic gaseous pollutants such as acrylonitrile, acetaldehyde, 1,3-butadiene, benzene, and C8 aromatics (ethylbenzene) were emitted from all target materials. In an actual indoor environment, the PNC of inhalable ultrafine particles (UFPs) was >5 × 104 particles/cm3 during 30 min of HLPE operation. Our results suggest that more meticulous control methods are needed, including the use of less harmful target materials along with filters or adsorbents that prevent emission of pollutants.  相似文献   
96.
97.
Formaldehyde (HCHO) is toxic to the human body and is one of the main threats to the indoor air quality (IAQ). As such, the removal of HCHO is imperative to improving the IAQ, whereby the most useful method to effectively remove HCHO at room temperature is catalytic oxidation. This review discusses catalysts for HCHO room-temperature oxidation, which are categorized according to their preparation methods, i.e., gas-phase reduction and liquid-phase reduction methods. The HCHO oxidation performances, structural features, and reaction mechanisms of the different catalysts are discussed, and directions for future research on catalytic oxidation are reviewed.  相似文献   
98.
Environmental Geochemistry and Health - Although particulate matter (PM) is composed of various chemicals, investigations regarding the toxicity that results from mixing the substances in PM are...  相似文献   
99.
Journal of Material Cycles and Waste Management - Although waste-to-energy (WtE) may reduce the amount of waste disposed and recover the heat in the form of electricity or steam, it has limitations...  相似文献   
100.
起重机械事故在冶金企业工伤事故中占很大的比例。从人和物的原因着手分析了若干起起重机械事故,并提出了对策措施。  相似文献   
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