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411.
采用高通量分析方法对长江干流重庆段11个流域断面、2个市政污水处理厂进水和6个养殖场废水的潜在抗生素进行筛查,并结合抗生素使用调查探讨其来源。结果表明,(1)共检出83种抗生素,其中流域内检出36种,污水处理厂和养殖场废水中检出70种;磺胺间甲氧嘧啶检出率最高,在流域水体和废水的检出率分别为91%和55%,喹诺酮类是检出抗生素的主要类型;(2)长江干流重庆段下游检出抗生素数量高于上游检出抗生素;(3)有20种抗生素可能由上游携带和重庆市内排放2种方式进入流域,7种抗生素可能由上游携带入境,9种抗生素可能由重庆市内排放引入长江。 相似文献
412.
Zheng Hu-Li Guo Ze-Li Wang Mei-ling Yang Chuan An Shu-Yi Wu Wei 《Environmental science and pollution research international》2021,28(39):54299-54316
Environmental Science and Pollution Research - The new severe acute respiratory syndrome coronavirus 2 was initially discovered at the end of 2019 in Wuhan City in China and has caused one of the... 相似文献
413.
Tesfaye Fitsum Liu Xiaoyu Zheng Jufeng Cheng Kun Bian Rongjun Zhang Xuhui Li Lianqing Drosos Marios Joseph Stephen Pan Genxing 《Environmental science and pollution research international》2021,28(26):34108-34120
Environmental Science and Pollution Research - As one of the most important nutrients for plant growth, phosphorus was often poorly available in soil. While biochar addition induced improvement of... 相似文献
414.
Adsorption of Ammonium by Graphene Oxide-Based Composites Prepared by UV Irradiation and Using as Slow-Release Fertilizer 总被引:1,自引:0,他引:1
Chengyi Wu Xu Zhang Cong Li Chao Cheng Yin Zheng 《Journal of Polymers and the Environment》2018,26(12):4311-4320
A novel sodium alginate-grafted poly(acrylic acid)/graphene oxide (NaAlg-g-PAA/GO) composite hydrogel was prepared via ultraviolet irradiation, and characterized by infrared spectroscopy spectrometer. X-ray diffraction, X-ray photoelectron spectroscopy and scanning electron microscopy. It was employed to adsorb NH4+ from aqueous solution and used as slow-release nitrogen fertilizers (SNFs). Result indicated that the adsorption process for NH4+ reached equilibrium within 50 min, with the adsorption capacity of 6.6 mmol g?1 even if 30 wt% GO was incorporated. The results of adsorption kinetic and isotherm were well described by the pseudo-second-order and Freundlich model. The thermodynamics analysis showed the adsorption process was spontaneous. The study indicated excellent water-holding ratio of soil with 2 wt% SNFs was 81.2%, and nitrogen release was up to 55.1% within 40 days in soil. Overall, NaAlg-g-PAA/GO could be considered as an efficient adsorbent for the recovery of nitrogen with the agronomic reuse as a fertilizer. 相似文献
415.
Zheng Xuebo Yang Zhiman Xu Xiaohui Shi Xiaoshuang Dai Meng Guo Rongbo 《Environmental science and pollution research international》2018,25(15):14563-14574
Environmental Science and Pollution Research - The aim of this work was to explore the potential application of biochar from distillers’ grains anaerobic digestion residue pyrolyzed at... 相似文献
416.
Feng Shi-Jin Li An-Zheng Zheng Qi-Teng Cao Ben-Yi Chen Hong-Xin 《Environmental science and pollution research international》2019,26(15):15229-15247
Environmental Science and Pollution Research - Aeration by airflow technology is a reliable method to accelerate waste biodegradation and stabilization and hence shorten the aftercare period of a... 相似文献
417.
Yang Huan Yu Haiying Tang Hao Huang Huagang Zhang Xizhou Zheng Zicheng Wang Yongdong Li Tingxuan 《Environmental science and pollution research international》2021,28(31):41736-41745
Environmental Science and Pollution Research - The disparity of tolerance in plants in response to Cd stress is associated with multiple physiological processes. A pot experiment was conducted to... 相似文献
418.
419.
Investigation on the interaction between triclosan and bovine serum albumin by spectroscopic methods
Jiali Gu Siyao Zheng Heng Zhao 《Journal of environmental science and health. Part. B》2020,55(1):52-59
AbstractMulti-spectroscopic and molecular docking methods were used to study the interaction between triclosan (TCS) and bovine serum albumin (BSA). The results indicated that the fluorescence quenching of BSA by TCS was due to the formation of TCS–BSA complex through static quenching. This result was also demonstrated by time-resolved fluorescence experiment. The binding constants and number of binding sites between TCS and BSA were 1.30?×?105 M?1 and 1.17 at 298?K, respectively. The thermodynamic parameters were studied in detail which suggested that hydrophobic forces and hydrogen bond played major roles in the TCS–BSA interaction. Moreover, the site marker competitive experiments and docking studies revealed that TCS could bind BSA into site I in subdomain IIA. All the results of UV–vis spectrophotometry, circular dichroism spectroscopy and synchronous fluorescence spectroscopy showed that interaction between TCS and BSA induced conformation changes of BSA. 相似文献