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Yin Jiechen Jian Zihai Zhu Guangcan Yu Xiaojin Pu Yuepu Yin Lihong Wang Dayong Bu Yuanqing Liu Ran 《Environmental science and pollution research international》2021,28(2):1443-1453
Environmental Science and Pollution Research - As a persistent organic pollutant, perfluorooctane sulfonate (PFOS) and perfluorooctanoic acid (PFOA) have gained increasing research attention over... 相似文献
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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
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丛枝菌根对盐胁迫的响应及其与宿主植物的互作 总被引:1,自引:0,他引:1
丛枝菌根真菌(Arbuscular Mycorrhizae Fungi,AMF)作为陆地生态系统的组成部分之一,在促进宿主植物对土壤养分和水分的吸收、提高植物生物量生产、调节种群和群落的结构、维持生态系统的稳定性等方面发挥了重要作用。其中,盐渍化是自然生态系统中广泛存在的一种胁迫生境条件,全球盐渍化土地约占耕地总面积的10%,因而探讨AM菌根在此胁迫生境下对宿主植物生长的影响具有重要意义。从以下几个方面,围绕盐胁迫条件、AM菌根和宿主植物三者之间的关系对当前国际上相关领域的研究进展进行了综述:1)AM真菌对盐胁迫的响应,包括菌根共生体形成、菌根侵染率、AM真菌的分布、菌丝体生长发育、孢子的形成和分布等;2)盐胁迫条件下AM菌根对宿主植物的效应,包括AM菌根促进宿主植物对P、N等元素的吸收、降低植物体内Na 的含量、提高光合作用能力,进而提高植物的生物量和对植物的群落结构产生影响等;3)AM菌根提高宿主植物耐盐性的机理,分别从植物根系形态的改变、水分吸收能力的加强、细胞内营养物质的平衡,以及细胞生理代谢的调节等方面对AM菌根促进植物抗盐性的机理进行了剖析。 相似文献
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在严格厌氧条件下,研究了驾琼盆地东方1-1-1井垂直剖面不同沉积层地质样品中的厌氧纤维素分解菌.结果表明:厌氧纤维素分解菌在各样品中都存在,但其分布有很大随机性,与样品埋藏深度无相关性,与样品中一些有机物含量,如纤维素、半纤维素也无相关性,厌氧纤维素分解菌数量高的样品,其在生物模拟产甲烷实验中的单位有机质产气量也较高,有显著的相关性.菌体形态主要为杆菌和球菌. 相似文献
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一株能产生聚乙烯醇降解酶的委内瑞拉链霉菌 总被引:1,自引:0,他引:1
以聚乙烯醇(PVA)为唯一碳源,从土壤中筛选到1株能产生胞外PVA降解酶的放线菌GY1.根据扩增出的该菌株的16SrDNA全序列在GenBank中的比较结果,结合生理生化实验、细胞化学成分及菌落形态分析,确定该菌为委内瑞拉链霉菌(Stretopmycesvenezuelae).GY1菌株以PVA为唯一碳源时,产生的PVA降解酶活性达到120UL-1,是以葡萄糖或可溶性淀粉为唯一碳源时的10倍.当在PVA培养基中添加1gL-1至3gL-1的葡萄糖时,该菌株细胞量和PVA降解酶总酶活随着葡萄糖添加量的增加而增加,最大细胞量是未添加葡萄糖时的2.4倍,最高总酶活是未添加葡萄糖时的2.6倍,而单位质量细胞产生PVA降解酶的能力提高不大.但当添加的葡萄糖浓度从3gL-1增至10gL-1时,总酶活随着细胞量的增加出现下降趋势,同时单位质量细胞产生PVA降解酶的能力也大大降低.在相同PVA聚合度下,高醇解度PVA比低醇解度PVA更有利于GY1菌株的生长及产生PVA降解酶.图5表1参16 相似文献
179.
X.G. Lin R. Yin H.Y. Zhang J.F. Huang R.R. Chen Z.H. Cao 《Environmental geochemistry and health》2004,26(2):119-128
A survey was done recently in Jiaxing city of Zhejiang Province in the Yangtze River Delta to compare the differences of soil microbiological properties among paddy soils with different land use including continuous open-field vegetable cultivation (OFVC), plastic-greenhouse vegetable cultivation (PGVC) and traditional rice–wheat rotation (RWR). The soil types included are percolating, permeable and waterlogged paddy soils. The results indicate that the microbial flora was markedly changed as the land use changed for all the three soil types. In continuous vegetable cultivation soils, especially in PGVC soils, the bacteria amounts decreased dramatically, but the fungal and actinomyce amounts increased as compared with RWR soils. The dehydrogenase activities decreased significantly in vegetable soils, especially in PGVC soils as compared with RWR soils. The microbial biomass C and the total phospholipid contents (TPL) in vegetable cultivation soil greatly decreased as compared with RWR soils. Biolog analysis indicated that the kinds of carbon sources that could be metabolized by native microbes in PGVC soils greatly decreased as compared with OFVC soils and RWR soils, revealing that microbial diversity had decreased since land use change. The activities of some soil enzymes including urease, invertase and phosphase were all lower in OFVC soils than those in RWR soils, and those in PGVC soils were the lowest. The degradation of microbiological activities in continuous vegetable cultivation soils, especially in PGVC soils, as compared with RWR soils might have been caused by soil acidification and accumulation of salts due to overuse of both organic and inorganic fertilizers in vegetable cultivation. 相似文献
180.