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101.
102.
Yingying Chen Ruiping Li Yan Gu Hailin Tian Yingping Huang Junsong Chen Yanfen Fang Changying Yang 《环境科学学报(英文版)》2021,33(2):203-215
Photocatalytic process represents a promising approach to overcome the pollution challenge associated with the antibiotics-containing wastewater. This study provides a green, efficient and novel approach to remove cephalosporins, particularly cefoperazone sodium (CFP). Bi4O5Br2 was chosen for the first time to systematically study its degradation for CFP, including the analysis of material structure, degradation performance, the structure and toxicity of the transformation products, etc. The degradation rate results indicated that Bi4O5Br2 had an excellent catalytic activity leading to 78% CFP removal compared with the pure BiOBr (38%) within 120 min of visible light irradiation. In addition, the Bi4O5Br2 presents high stability and good organic carbon removal efficiency. The effects of the solution pH (3.12 - 8.75) on catalytic activity revealed that CFP was mainly photocatalyzed under acidic conditions and hydrolyzed under alkaline conditions. Combined with active species and degradation product identification, the photocatalytic degradation pathways of CFP by Bi4O5Br2 was proposed, including hydrolysis, oxidation, reduction and decarboxylation. Most importantly, the identified products were all hydrolysis rather than oxidation byproducts transformed from the intermediate of β-lactam bond cleavage in CFP molecule, quite different from the mostly previous studies. Furthermore, the final products were demonstrated to be less toxic through the toxicity analysis. Overall, this study illustrates the detailed mechanism of CFP degradation by Bi4O5Br2 and confirms Bi4O5Br2 to be a promising material for the photodegradation of CFP. 相似文献
103.
Jilai Gong Long Chen Guangming Zeng Fei Long Jiuhua Deng Qiuya Niu Xun He 《环境科学学报(英文版)》2012,24(7):1165-1173
This study describes a new effective adsorbent for cadmium removal from aqueous solution synthesized by coating a shellac layer, a natural biodegradable and renewable resin with abundant hydroxyl and carboxylic groups, on the surface of iron oxide magnetic nanoparticles. Transmission Electron Microscopy (TEM) imaging showed shellac-coated magnetic nanoparticle (SCMN) adsorbents had a core-shell structure with a core of 20 nm and shell of 5 nm. Fourier Transform Infrared Spectroscopic analysis suggested the occurrence of reaction between carboxyl groups on the SCMN adsorbent surface and cadmium ions in aqueous solution. Kinetic data were well described by pseudo second-order model and adsorption isotherms were fitted with both Langmuir and Freundlich models with maximum adsorption capacity of 18.80 mg/g. SCMN adsorbents provided a favorable adsorption capacity under high salinity conditions, and cadmium could easily be desorbed using mild organic acid solutions at low concentration. 相似文献
104.
太湖流域典型河流沉积物重金属污染特征及生态风险评价 总被引:1,自引:4,他引:1
武宜运河位于太湖西部贯穿大部分太湖入湖河流,其重金属污染的研究,对太湖重金属污染来源,流域管理具有重要的意义。因此,2012年8月对武宜运河全程底质调查,分析了沉积物中Cu、Zn、Pb、Ni、Cr等元素,通过地累积指数评价、相关分析、潜在生态风险评价以及相关研究对比分析,得出以下结论:1)Cu、Zn、Pb、Ni、Cr污染浓度均值为129.38,207.74,52.13,28.26,77.06 mg/kg,其中Cu、Zn、Pb、Ni、Cr均超过毒性参考值(TRV),Cu超标达800%。Zn、Pb、Cr在世界湖泊沉积物中微量金属的范围(WCTMEL)内,Cu超出144%,Ni略低于WCTMEL;2)Ni-Cr、Zn-Pb具有较好的同源性。且Cu、Zn污染较高,达到"中—强"和"强"污染级别,Pb污染级别其次,Ni、Cr污染级别较低或无污染。可以排除武宜运河携带Ni、Cr污染物进入入湖河网的可能;3)Cu为武宜运河生态风险主要贡献因子。需加强工业园区地段重金属污染控制,减少污染来源,加大武宜运河对连同入湖水系的清水补充。 相似文献
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106.
研究了位于北京郊区的北运河中游9个断面的沉积物对磷的吸附行为,分析了沉积物组成及其理化性质与磷吸附特征的关系.实验结果表明,不同断面沉积物对磷的最大吸附量在0.11 ~9.45 mg/g之间,而各断面沉积物的临界平衡磷浓度(EPC0)范围在0.33~ 1.85 mg/L之间,统计分析显示EPC0与河水中的总磷和可溶性无机磷呈显著负相关,但与沉积物中的金属和有机质含量相关性较差;根据临界平衡磷浓度定义的推断,新华大街桥、玉带桥、运河大街桥、六环路桥、宋梁路桥、湿地和甘棠橡胶坝7个断面的沉积物表现为磷的“汇”,而丰子沟和减运沟2个点表现为磷的“源”,并且各点沉积物释放和吸附磷的趋势较大. 相似文献
107.
针对燃煤锅炉燃烧产生的低温烟气仍具有一定温度的现象,提出通过增设超导热管空气预热器对这部分低温烟气余热加以回收的设想,对锅炉送风进行预热,探讨烟气余热利用可达到的送风温度、节能效果及可能产生的经济效益。 相似文献
108.
109.
Guoying Wang Yves Iradukund Gaofeng Shi Pascaline Sang Xiuli Niu Zhijun Wu 《环境科学学报(英文版)》2021,33(1):324-335
The hydroxyl radical (?OH) has a crucial function in the oxidation and removal of many atmospheric compounds that are harmful to health. Nevertheless, high reactivity, low atmospheric abundance, determination of hydroxyl, and hydroperoxyl radical's quantity is very difficult. In the atmosphere and troposphere, hydroperoxyl radicals (HO2) are closely demanded in the chemical oxidation of the troposphere. But advances in technology have allowed researchers to improve the determination methods on the research of free radicals through some spectroscopic techniques. So far, several methods such as laser-induced fluorescence (LIF), high-performance liquid chromatography (HPLC), and chemical ionization mass spectroscopy have been identified and mostly used in determining the quantity of hydroxyl and hydroperoxyl radicals. In this systematic review, we have advised the use of scavenger as an advance for further researchers to circumvent some of these problems caused by free radicals. The primary goal of this review is to deepen our understanding of the functions of the most critical free radical (?OH, HO2) and also understand the currently used methods to quantify them in the atmosphere and troposphere. 相似文献
110.