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51.
Liu Lina Li Na Tao Chunyang Zhao Yubo Gao Jingqing Huang Zhenzhen Zhang Jingshen Gao Jianlei Zhang Jinliang Cai Ming 《Environmental science and pollution research international》2021,28(13):15909-15922
Environmental Science and Pollution Research - In this study, the degradation performance of nutrients in zeolite trickling filter (ZTF) with different influent C/N ratios and aeration conditions... 相似文献
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Su Wei Li Xinyan Zhang Hongshuo Xing Yi Liu Ping Cai Changqing 《Environmental science and pollution research international》2021,28(35):47838-47855
Environmental Science and Pollution Research - The pollution of heavy metals (HMs) in the soil has become one of the important factors affecting the national environment and human health.... 相似文献
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Tao Lei Wang Langlang Zhou Yangjie Hu Ningmeng Cai Jun Chen Xiaoyu Wang Xueqian Ning Ping 《Environmental science and pollution research international》2021,28(35):48417-48426
Environmental Science and Pollution Research - The abatement of SO2 and the utilization of copper tailings are identified as two attention-attracting environmental issues in the copper smelter. In... 相似文献
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Electrochemical and spectroscopic characteristics of dissolved organic matter in a forest soil profile 总被引:2,自引:0,他引:2
Dissolved organic matter (DOM) represents one of the most mobile and reactive organic compounds in ecosystem and plays an important role in the fate and transport of soil organic pollutants, nutrient cycling and more importantly global climate change. Electrochemical methods were first employed to evaluate DOM redox properties, and spectroscopic approaches were utilized to obtain information concerning its composition and structure. DOM was extracted from a forest soil profile with five horizons. Differential pulse voltammetry indicated that there were more redox-active moieties in the DOM from upper horizons than in that from lower horizons. Cyclic voltammetry further showed that these moieties were reversible in electron transfer. Chronoamperometry was employed to quantify the electron transfer capacity of DOM, including electron acceptor capacity and electron donor capacity, both of which decreased sharply with increasing depth. FT-IR, UV-Vis and fluorescence spectra results suggested that DOM from the upper horizons was enriched with aromatic and humic structures while that from the lower horizons was rich in aliphatic carbon, which supported the findings obtained by electrochemical approaches. Electrochemical approaches combined with spectroscopic methods were applied to evaluate the characteristics of DOM extracted along a forest soil profile. The electrochemical properties of DOM, which can be rapidly and simply obtained, provide insight into the migration and transformation of DOM along a soil profile and will aid in better understanding of the biogeochemical role of DOM in natural environments. 相似文献
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Jingzhou Zhao Hang Li Hongseok Choi Wayne Cai Jeffrey A. Abell Xiaochun Li 《Journal of Manufacturing Processes》2013,15(1):136-140
Real-time monitoring and control of temperature in ultrasonic joining of battery tabs and coupons are important for the quality improvement and cost reduction of battery assembly. However, there have always been difficulties in accurate and real-time measurement of temperature by conventional sensors for practical implementation. In this study, an innovative method is developed to provide an enabling technology for the in situ transient temperature monitoring, which could provide reliable feedback signals for potential control of ultrasonic joining processes. Micro thin film thermocouples (TFTCs) were fabricated on thin silicon substrates, which were then inserted in the welding anvil as a permanent feature so that the sensors were always located about 100 μm directly under the welding spot during joining of multilayer Ni-coated Cu thin sheets for battery assembly. Good repeatability was demonstrated while a temperature rise of up to 650 °C was obtained due to the closeness of the sensors to the welding spot. The inserts with thin film sensors remained functional after welding experiments. This method has a great potential for in situ transient temperature monitoring, and thus the control of ultrasonic joining processes to realize a practical smart joining system. 相似文献
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臭氧是一种存在于地球臭氧层和近地面的气体,它对人类和环境是否有益取决于大气中存在的位置。高空臭氧层使人类免受紫外线伤害,而近地面臭氧是光化学烟雾产生的主要污染物,损害农作物、树木和其他植物生长,危害人体健康诱发儿童哮喘等疾病。本文结合2013年8月12日常州市出现的臭氧污染天气,利用气象和空气自动监测数据,对污染过程、变化特征和成因进行了分析。结果表明,在连续高温、太阳辐射强度大、风速低、大气扩散条件差等气象因素和臭氧前体物(NMHC)较高等不利条件下,易形成臭氧污染天气,导致空气质量下降。 相似文献