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1.
• Physical and chemical properties and application of peracetic acid solution. • Determination method of high concentration peracetic acid. • Determination method of residual peracetic acid (low concentration). Peroxyacetic acid has been widely used in food, medical, and synthetic chemical fields for the past several decades. Recently, peroxyacetic acid has gradually become an effective alternative disinfectant in wastewater disinfection and has strong redox capacity for removing micro-pollutants from drinking water. However, commercial peroxyacetic acid solutions are primarily multi-component mixtures of peroxyacetic acid, acetic acid, hydrogen peroxide, and water. During the process of water treatment, peroxyacetic acid and hydrogen peroxide (H2O2) often coexist, which limits further investigation on the properties of peroxyacetic acid. Therefore, analytical methods need to achieve a certain level of selectivity, particularly when peroxyacetic acid and hydrogen peroxide coexist. This review summarizes the measurement and detection methods of peroxyacetic acid, comparing the principle, adaptability, and relative merits of these methods.  相似文献   
2.
Environment, Development and Sustainability - Due to rapid socioeconomic development, seeking the coordination of resources exploitation and the ecological environment has become an objective...  相似文献   
3.
使用一种简单煅烧三聚氰胺的方法制备了类石墨相氮化碳(g-C_3N_4),研究了不同光波长对g-C_3N_4催化降解盐酸莫西沙星的影响.通过高分辨透射电子显微镜(TEM)、X射线衍射(XRD)和X射线光电子能谱仪(XPS)对材料的形貌、晶型、元素组成进行表征,证实了g-C_3N_4的成功合成.此外,通过XPS-价带谱和紫外可见漫反射(UV-DRS)图谱得到所合成g-C_3N_4的带隙(E_g=2.81 eV)和价带(E_(VB)=2.49 eV).通过不同光波长(包括365、385、420、450、485、520、595、630 nm及可见光)下g-C_3N_4对莫西沙星的降解速率来评估光催化性能.结果表明,g-C_3N_4的光催化活性依赖于辐照波长,也即速率常数(k_1)随光波长的增大而降低.活性氧(ROS)淬灭实验表明,超氧自由基(·O~-_2)在莫西沙星的光催化降解中起主导作用.  相似文献   
4.
• US tin use decreases as the GDP value added by manufacturing sector increases. • Global and China’s tin use increases as the GDP added by manufacturing increases. • A sigmoid curve can fit the US tin use data well. • US tin use patterns is not due to the finite tin reserves or resources. • Policies, substitutions, etc. play key roles in the changing tin use patterns. Tin is of key importance to daily life and national security; it is considered an essential industrial metal. The United States (US) is the world’s largest economy and consumer of natural resources. Therefore, the analysis of historical tin use in the US is helpful for understanding future tin use trends in the world as a whole and in developing countries. Time series analysis, regression analysis with GDP or GDP/capita, and historical data fitted with logistic and Gompertz models are employed in this study. Historical tin use in the US shows three stages—increase-constant-decrease, as GDP per capita has increased. Tin use in the US is negatively correlated with the GDP value added by the manufacturing sector, while the use of tin worldwide and in China continues to increase along with the GDP value added by the manufacturing sector. Although a sigmoid curve can fit the US tin use data well, that use is not directly related to the limited tin reserves or resources. Rather, policies, economic restructuring, substitutions, new end-use markets, etc. have played key roles in the changing tin use patterns. This work contributes to understanding future tin use at both the global and national levels: tin use will continue to increase with GDP at the global level, but use patterns of tin at the national level can be changed through human intervention.  相似文献   
5.
随着时代进步,科技发展,中国的环境问题尤其是水污染日益严重,而饮用水质量紧密关系着人们的健康,所以保证饮用水的水质安全,是给水厂重要的使命与责任.膜分离技术由于兼有分离、浓缩、纯化和精制的功能,又有高效、节能、环保、分子级过滤及过滤过程简单、易于控制等特征具有自身独特的优势.给水厂的常规处理工艺已然不能满足水质的要求,深度处理虽能大大提高水质,但是国内逐渐发展起来的超滤技术在去除水中致病微生物方面效果显著.简要介绍膜分离技术的种类及在给水处理中的应用.  相似文献   
6.
在高层建筑火灾中,玻璃幕墙的破裂受到环境风和室内火灾的共同影响。研究了600 mm×600 mm×6mm的浮法玻璃幕墙在点支承安装方式下受到热辐射荷载和风荷载情况下的响应规律。分析了不同工况下玻璃表面的温度变化、风荷载的大小与玻璃破裂时间的关系、玻璃破裂与温差之间的关系、玻璃裂纹扩展及其与风速之间的关系。结果表明在玻璃两侧分别受到热辐射和风荷载共同作用时,风荷载的增加会加速玻璃的破裂。研究结果可为玻璃幕墙的工程应用提供技术支撑。  相似文献   
7.
净化PH3和H2S气体改性活性炭的制备与表征   总被引:6,自引:1,他引:5  
以工业4号活性炭为载体、制备了金属阳离子改性活性炭,考察了改性活性炭的制备工艺条件对黄磷尾气中PH3和H2S的净化效果的影响;对空白炭、改性炭和吸附饱和活性炭做BET、XPS、TG/DTA分析.结果表明,250℃条件下制备的改性活性炭具有最佳的净化效果;孔径为1×10-9~8×10-9m有利于改性活性炭对磷、硫的吸附;改性过程中引入的二价铜离子可以净化PH3和H2S并将其转化为磷酸和硫.  相似文献   
8.
Meng  Qingchen  Liu  Hongbo  Zhang  Haodong  Xu  Suyun  Lichtfouse  Eric  Yun  Yunbo 《Environmental Chemistry Letters》2022,20(3):1745-1762

About 1.6 billion tons of food are wasted worldwide annually, calling for advanced methods to recycle food waste into energy and materials. Anaerobic digestion of kitchen waste allows the efficient recovery of energy, and induces low-carbon emissions. Nonetheless, digestion stability and biogas production are variables, due to dietary habits and seasonal diet variations that modify the components of kitchen waste. Another challenge is the recycling of the digestate, which could be partly solved by more efficient reactors of anaerobic digestion. Here, we review the bottlenecks of anaerobic digestion treatment of kitchen waste, with focus on components inhibition, and energy recovery from biogas slurry and residue. We provide rules for the optimal treatment of the organic fraction of kitchen waste, and guidelines to upgrade the anaerobic digestion processes. We propose a strategy using an anaerobic dynamic membrane bioreactor to improve anaerobic digestion of kitchen waste, and a model for the complete transformation and recycling of kitchen waste, based on component properties.

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9.
为了更为有效地治理酸雨污染,根据南充市环境监测中心站提供的2009—2017年降水监测数据,对南充市城区酸雨污染情况进行了分析及源解析。结果表明:2009—2017年,南充市降水pH从4.60波动上升至5.6以上,酸雨频率波动下降,酸雨污染情况有所改善;[SO4^2-]/[NO3^-]从4.92下降至0.86,酸雨污染类型从硫酸型转变为硝酸-硫酸型。同时,对比分析2014—2016年大气污染物排放源可知,NOx排放源中,工业污染源占比由14%降至11%,生活污染源由2%上升至5%;SO2排放源中,工业污染源占比由62%降至43%,生活污染源由38%上升至57%,表明南充市SO2污染已从以工业污染源为主转变为工业污染源与生活污染源并重。  相似文献   
10.
通过钢瓶配气模拟和气相色谱GC-14C测定的方法,研究了改性活性炭吸附净化黄磷尾气中PH3的相关问题。得到了吸附反应的最佳吸附温度、氧含量、气体流量、改性液浓度、活性炭粒径和焙烧温度。再生方法可行,可通过再生液回收磷酸。热重差热分析和孔径分布初步证明吸附质为磷和磷氧化物。  相似文献   
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