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201.
Jiajun Liu Long Wang Yun Zhu Che-Jen Lin Carey Jang Shuxiao Wang Jia Xing Bin Yu Hui Xu Yuzhou Pan 《Frontiers of Environmental Science & Engineering》2019,13(1):2
202.
Pan Yongchun She Dongli Chen Xinyi Xia Yongqiu Timm Luís Carlos 《Environmental science and pollution research international》2021,28(31):41712-41725
Environmental Science and Pollution Research - Denitrification and NH3 volatilization are the main removal processes of nitrogen in coastal saline soils. In this incubation study, the effects of... 相似文献
203.
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
204.
Implications of genetics and current protected areas for conservation of 5 endangered primates in China 下载免费PDF全文
Christian Roos Ziming Wang ZuoFu Xiang Pingfen Zhu Boshi Wang Baoping Ren Fanglei Shi Huijuan Pan Ming Li 《Conservation biology》2015,29(6):1508-1517
Most of China's 24–28 primate species are threatened with extinction. Habitat reduction and fragmentation are perhaps the greatest threats. We used published data from a conservation genetics study of 5 endangered primates in China (Rhinopithecus roxellana, R. bieti, R. brelichi, Trachypithecus francoisi, and T. leucocephalus); distribution data on these species; and the distribution, area, and location of protected areas to inform conservation strategies for these primates. All 5 species were separated into subpopulations with unique genetic components. Gene flow appeared to be strongly impeded by agricultural land, meadows used for grazing, highways, and humans dwellings. Most species declined severely or diverged concurrently as human population and crop land cover increased. Nature reserves were not evenly distributed across subpopulations with unique genetic backgrounds. Certain small subpopulations were severely fragmented and had higher extinction risk than others. Primate mobility is limited and their genetic structure is strong and susceptible to substantial loss of diversity due to local extinction. Thus, to maximize preservation of genetic diversity in all these primate species, our results suggest protection is required for all sub‐populations. Key priorities for their conservation include maintaining R. roxellana in Shennongjia national reserve, subpopulations S4 and S5 of R. bieti and of R. brelichi in Fanjingshan national reserve, subpopulation CGX of T. francoisi in central Guangxi Province, and all 3 T. leucocephalus sub‐populations in central Guangxi Province. 相似文献
205.
206.
从1991年起连续三年在南京市的四个主要蔬菜基地采集了不同季节的20种常用蔬菜样品,测定了食用部位中氟、硫、氯3种元素的含量。统计分析结果表明,三元素平均含量均明显高于清洁对照点,叶菜类蔬菜与对照差异显著,其他大部分蔬菜与对照差异不明显;三元素中氟污染最重,氯次之,硫最轻,且硫、氯含量有逐年减小趋势;工业大气污染源对蔬菜品质有一定影响,应注意蔬菜基地的合理布局。 相似文献
207.
京杭运河徐州段底栖动物与水质的关系 总被引:7,自引:0,他引:7
本研究利用生物监测方法,探明了京杭运河徐州段大型底栖无脊椎动物的生物种群及其分布。运用污染生物指数(Goodnight)和生物多样性指数(Shannon)统计表达,对京杭运河徐州段进行生物综合评价,同时,指出了该水体污染,将给徐州的两个地面饮用水厂及国家南水北调工程带来威胁和危险。通过生物指标与理化指标对比,综合分析研究,冲破了理化指标的限制,说明生物指标对水体污染的评价更全面、可靠而直观。 相似文献
208.
人工神经网络方法用于城市环境空气质量综合评价 总被引:3,自引:0,他引:3
采用人工神经网络技术,建立了城市环境空气质量综合评价的ANN模型,并通过实例对建立的评价模型进行验证。结果证明,ANN模型用于区域环境空气质量评价,其评价结果比较直观。同时,对在建立和应用ANN模型时应注意的一些问题进行了讨论。 相似文献
209.
Biotreatment of H2S- and NH3-containing waste gases by co-immobilized cells biofilter 总被引:11,自引:0,他引:11
Gas mixture of H2S and NH3 in this study has been the focus in the research area concerning gases generated from the animal husbandry and the anaerobic wastewater lagoons used for their treatment. A specific microflora (mixture of Thiobacillus thioparus CH11 for H2S and Nitrosomonas europaea for NH3) was immobilized with Ca-alginate and packed inside a glass column to decompose H2S and NH3. The biofilter packed with co-immobilized cells was continuously supplied with H2S and NH3 gas mixtures of various ratios, and the removal efficiency, removal kinetics, and pressure drop in the biofilter was monitored. The results showed that the efficiency remained above 95% regardless of the ratios of H2S and NH3 used. The NH3 concentration has little effect on H2S removal efficiency, however, both high NH3 and H2S concentrations significantly suppress the NH3 removal. Through product analysis, we found that controlling the inlet ratio of the H2S/NH3 could prevent the biofilter from acidification, and, therefore, enhance the operational stability. Conclusions from bioaerosol analysis and pressure drop in the biofilter suggest that the immobilized cell technique creates less environmental impact and improves pure culture operational stability. The criteria for the biofilter operation to meet the current H2S and NH3 emission standards were also established. To reach Taiwan's current ambient air standards of H2S and NH3 (0.1 and 1 ppm, respectively), the maximum inlet concentrations should not exceed 58 ppm for H2S and 164 ppm for NH3, and the residence time be kept at 72 s. 相似文献
210.
Toxicity and bioaccumulation of copper in three green microalgal species 总被引:13,自引:0,他引:13
The effective concentrations of copper on the inhibition of the growth of Scenedesmus obliquus, Chlorella pyrenoidosa and Closterium lunula at 96 h (96 h EC50) were determined to be 50, 68 and 200 microg/l, respectively. The low initial bioaccumulation of Cu by C. lunula was found to be responsible for its tolerance to Cu. The amount of Cu accumulated by all three microalgae reached the maximum value and decreased quickly after the peak followed by a slow decrease over the next 6 d. Bioaccumulation of Cu by C. lunula was directly proportional to the initial Cu concentration. After reaching the first peak after 1 d, the bioconcentration factor of Cu by microalgae declined to its minimum value during the exponential growth phase but increased in the stationary growth phase again. This indicates that desorption of Cu from microalgae was higher during the exponential growth phase but lower in the stationary growth phase. Smaller microalgae with low 96 h EC50 values are more efficient in removing Cu from wastewater. 相似文献