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11.
Ozonation and ionizing radiation are both advanced oxidation processes (AOPs) without chemical addition and secondary pollution. Also, the two processes'' efficiency is determined by different pH conditions, which creates more possibilities for their combination. Importantly, the combined process of ozonation and ionizing radiation could be suitable for treating wastewaters with extreme pH values, i.e., textile wastewater. To find synergistic effects, the combined process of ozonation and ionizing radiation mineralization was investigated for degradation of polyvinyl alcohol (PVA) at different pH levels. A synergistic effect was found at initial pH in the range 3.0–9.4. When the initial pH was 3.0, the combined process of ozonation and ionizing radiation gave a PVA mineralization degree of 17%. This was 2.7 times the sum achieved by the two individual processes, and factors of 2.1 and 1.7 were achieved at initial pH of 7.0 and 9.4, respectively. The combined process of ozonation and ionizing radiation was demonstrated to be a feasible strategy for treatment of PVA-containing wastewater. 相似文献
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The Przewalski's gazelle, Procapra przewalskii, is now isolated in four local populations on the east and northwest shores of Qinghai Lake. We have been being conducting field surveys in the Qinghai Lake region since 1994. Based on the information we gathered from those surveys, we carried out a Population Viability Analysis (PVA) on the Przewalski's gazelle. We discovered that the Przewalski's gazelle would be extinct within 200 years if no management measures were taken. Since the local population size of the gazelle is small, the most effective measures are to control the wolf density and to reduce the impact of climatic catastrophes. In order to increase the population of the gazelle, we should also take measures to increase primary production of the grassland, to establish a habitat corridor, and to increase the rate of migration of individuals among different local populations. 相似文献
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Steven R. Beissinger Jason G. Bragg David J. Coates J. Gerard B. Oostermeijer Paul Sunnucks Nathan H. Schumaker Meredith V. Trotter Andrew G. Young 《Conservation biology》2015,29(3):755-764
We examined how ecological and evolutionary (eco‐evo) processes in population dynamics could be better integrated into population viability analysis (PVA). Complementary advances in computation and population genomics can be combined into an eco‐evo PVA to offer powerful new approaches to understand the influence of evolutionary processes on population persistence. We developed the mechanistic basis of an eco‐evo PVA using individual‐based models with individual‐level genotype tracking and dynamic genotype–phenotype mapping to model emergent population‐level effects, such as local adaptation and genetic rescue. We then outline how genomics can allow or improve parameter estimation for PVA models by providing genotypic information at large numbers of loci for neutral and functional genome regions. As climate change and other threatening processes increase in rate and scale, eco‐evo PVAs will become essential research tools to evaluate the effects of adaptive potential, evolutionary rescue, and locally adapted traits on persistence. 相似文献
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PVA-SbQ固定叶绿体及其生物传感器在检测除草剂中的应用 总被引:6,自引:0,他引:6
聚乙烯-苯乙烯吡啶(PVA-SbQ)是一种新的光敏聚合物,在紫外光诱导下形成大分子网状结构,电镜照片显示PVA-SbQ固定的新鲜菠菜叶绿体-20℃贮存6mo后,内,外膜结构完整,类囊体膜排列整齐,还原DPIP的能力保留50%,将叶绿体膜固定在铂电极上,制成生物传感器,在含0.035H2O2的50mmol L^-1,pH7.4Tris-HCl缓冲液中,25℃条件下用示差脉冲伏安法检测除草剂,在0-1.0 μg/L浓度范围,百草枯,敌草隆,扑草净和阿特闰津具有较好的线性关系。图6参29 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
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改进的硫酸盐-聚乙烯醇法包埋藻菌脱氮除磷研究 总被引:1,自引:0,他引:1
采用改进的硫酸盐-PVA固定化法将藻与菌混合固定。在三种不同藻菌比的情况下,固定化系统对氮去除均可达100%,但是去除速度与固定的细菌量有关,细菌量越大,对氮的去除速度越快;对磷的去除随实验进行,最大去除率逐步下降,其下降速度与固定藻的量有关,藻量越大,下降速度越慢。由此说明脱氮的主要贡献者是细菌,而藻对除磷起了主要作用。为达到有效的脱氮除磷,应适当提高固定化藻的浓度,藻菌比应大于2:1。透射电镜照片显示,在聚乙烯醇载体上,藻类的生长没有受到限制。 相似文献
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