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Alteration of the health effects of bioaerosols by chemical modification in the atmosphere:A review 被引量:1
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作者 Ailin Li Xinghua Qiu +5 位作者 Xing Jiang Xiaodi Shi Jinming Liu Zhen Cheng qianqian chai Tong Zhu 《Fundamental Research》 CAS CSCD 2024年第3期463-470,共8页
Bioaerosols are a subset of important airborne particulates that present a substantial human health hazard due to their allergenicity and infectivity.Chemical reactions in atmospheric processes can significantly influ... Bioaerosols are a subset of important airborne particulates that present a substantial human health hazard due to their allergenicity and infectivity.Chemical reactions in atmospheric processes can significantly influence the health hazard presented by bioaerosols;however,few studies have summarized such alterations to bioaerosols and the mechanisms involved.In this paper,we systematically review the chemical modifications of bioaerosols and the impact on their health effects,mainly focusing on the exacerbation of allergic diseases such as asthma,rhinitis,and bronchitis.Oxidation,nitration,and oligomerization induced by hydroxyl radicals,ozone,and nitrogen dioxide are the major chemical modifications affecting bioaerosols,all of which can aggravate allergenicity mainly through immunoglobulin E pathways.Such processes can even interact with climate change including the greenhouse effect,suggesting the importance of bioaerosols in the future implementation of carbon neutralization strategies.In summary,the chemical modification of bioaerosols and the subsequent impact on health hazards indicate that the combined management of both chemical and biological components is required to mitigate the health hazards of particulate air pollution. 展开更多
关键词 BIOAEROSOLS ALLERGENICITY Chemical modification AIRPOLLUTION Climate change
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MOFs衍生金属氧化物在催化VOCs完全氧化中的应用
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作者 彭涛 柴倩倩 +2 位作者 李传强 郑旭煦 李铃娟 《化学进展》 SCIE CAS CSCD 北大核心 2024年第1期81-94,共14页
大量挥发性有机化合物VOCs的排放对人类和环境造成了严重的影响。通过金属氧化物催化VOCs完全氧化为无毒害的二氧化碳和水是当前最有效的处理方式。为提高金属氧化物的催化性能,已开发了多种合成策略,如形貌工程、缺陷工程和掺杂工程等... 大量挥发性有机化合物VOCs的排放对人类和环境造成了严重的影响。通过金属氧化物催化VOCs完全氧化为无毒害的二氧化碳和水是当前最有效的处理方式。为提高金属氧化物的催化性能,已开发了多种合成策略,如形貌工程、缺陷工程和掺杂工程等。然而,这些合成工艺不仅繁琐,而且催化性能有待提升。相比之下,金属有机框架(MOFs)衍生的金属氧化物由于其形貌可调、大比表面积、高缺陷浓度和良好的掺杂分散性等优点,被广泛应用于催化VOCs的完全氧化。由于目前缺乏针对MOFs衍生金属氧化物在VOCs完全氧化应用上的总结,本文从衍生金属氧化物的调控策略出发,对MOFs的合成条件、掺杂方式和热解条件进行了综述。总结了这些调控方法、衍生金属氧化物的物理化学性质与VOCs完全氧化性能的关系,并探讨了其未来的发展和挑战。 展开更多
关键词 金属有机框架 金属氧化物 纳米材料 挥发性有机化合物 完全氧化
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Enhanced antibacterial activity of silica nanorattles with ZnO combination nanoparticles against methicillin-resistant Staphylococcus aureus 被引量:1
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作者 qianqian chai Qiong wu +5 位作者 Tianlong Liu Longfei Tan Changhui Fu Xiangling Ren Yue Yang Xianwei Meng 《Science Bulletin》 SCIE EI CAS CSCD 2017年第17期1207-1215,共9页
Silica nanorattles(SNs) with zinc oxide(ZnO) combination nanoparticles are reported to inhibit methicillin-resistant Staphylococcus aureus(MRSA) for the first time. SNs loaded with ZnO nanoparticles,which can produce ... Silica nanorattles(SNs) with zinc oxide(ZnO) combination nanoparticles are reported to inhibit methicillin-resistant Staphylococcus aureus(MRSA) for the first time. SNs loaded with ZnO nanoparticles,which can produce free radicals, can cause severe damage to bacteria. ZnO nanoparticles not only provide free radicals in the combined nanostructures, which can inhibit the growth of bacteria, but also form nanorough surfaces with an irregular distribution of spikes on the SNs, which can enhance their adhesion to bacteria. Nanorough silica shell surfaces maintain the high activity and stability of small-sized ZnO nanoparticles and gather ZnO nanoparticles together to enhance production, which improves the efficiency of free radicals against the cytomembranes of bacterial cells. The enhanced adhesion of ZnO@SN nanoparticles to MRSA cells shortens the effective touching distance between free radicals and MRSA, which also improves antibacterial activity. As we expected, the ZnO@SN nanoparticles exhibit a better antibacterial effect than free ZnO nanoparticles against MRSA in vitro and in vivo. We also demonstrate that SNs loaded with ZnO nanoparticles can accelerate wound healing in MRSA skin inflammation models. This method of multilevel functionalization will be potentially applicable to the antibacterial field. 展开更多
关键词 ZNO纳米粒子 氧化锌纳米颗粒 纳米二氧化硅 金黄色葡萄球菌 抗菌活性 纳米氧化锌 MRSA 自由基对
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