维普中文期刊产品整合服务
950篇 您的检索式:作者名="Kuba"
    题名 作者 年代 出处 被引量
1Identification of Oxidative Stress and Toll-like Receptor 4 Signaling as a Key Pathway of Acute Lung Injury显示文摘Yumiko Imai Keiji Kuba G. Greg Neely Rubina Yaghubian-Malhami Thomas Perkmann Geert van Loo Maria Ermolaeva Ruud Veldhuizen Y.H. Connie Leung Hongliang Wang Haolin Liu Yang Sun Manolis Pasparakis Manfred Kopf Christin Mech Sina Bavari J.S. Malik Peiris Ar 2008Cell2008,,2:4
2Phosphorus and nitrogen removal with minimal COD requirement by integration of denitrifying dephosphatation and nitrification in a two-sludge system显示文摘T. Kuba M.C.M. van Loosdrecht J.J. Heijnen 1996Water Research1996,,7:3
3Spatio-temporal Variability of Soil Water at Three Seasonal Floodplain Sites: A Case Study in Tarim Basin,Northwest China显示文摘The floodplain vegetation of the Tarim River in Northwest China is strongly influenced by irrigated agriculture. The abstraction of river water disturbs the natural dynamics of the floodplain ecosystem. The human impact on the hydrological system by bank dams and the irrigation of cotton plantings have caused adverse changes of the Tarim River and its floodplains, so the current stocks of the typical Tugai vegetation show significant signs of degradation. Field studies of soils and statistical analysis of soil moisture data have shown that the vitality of the Tugai vegetation is primarily determined by its position to the riverbank and the groundwater. There exist complex interactions between soil hydrological conditions and the vitality of the vegetation. But the availability of water is not only influenced by the groundwater level and seasonal flood events. The spatial distribution of stocks at different states of vitality seems also to be decisively influenced by physical soil properties. Our results show that the water supply of plant communities is strongly influenced by the soil texture. Spatial differences of soil moisture and corresponding soil water tensions may be the decisive factors for the zonation of vegetation. Physical soil properties control the water retention and rising of capillary water from deeper soil layers and the phreatic zone and may supply the root systems of the phreatophytic vegetation with water.Sven GRASHEY-JANSEN Martin KUBA Bernd CYFFKA müt HALIK Tayierjiang AISHAN 2014Chinese Geographical Science2014,24,6:3
4Phosphorus removal from wastewater by anaerobic-anoxic sequencing batch reactor显示文摘Kuba T Van Loosdrecht M C M Smolders G 1993War Sci Tech1993,27,56:2
5Phosphorus and nitrogen removal with minimal COD requirement by integration of nitrification in a two-sludge system显示文摘Kuba T Van Loosdrech M C M Heijnen J J 1996Wat Res1996,42,12:2
6A sludge characterization assay for aerobic and denitrifying phosphorus removing sludge显示文摘A. Wachtmeister T. Kuba M.C.M. Van Loosdrecht J.J. Heijnen 1997Water Research1997,,3:2
7Occurrence of denitrifying phosphorus removing bacteria in modified UCT-type wastewater treatment plants显示文摘T. Kuba M.C.M. Van Loosdrecht F.A. Brandse J.J. Heijnen 1997Water Research1997,,4:2
8Oxidative stress responses of submerged macrophyte Vallisneria asiatica to different concentrations of cyanobacteria显示文摘In a 10-day aquarium experiment,this investigation examines macrophyte restoration in eutrophic Lake Taihu,the physiological effects of different plant biomass levels and of increasing natural cyanobacterial concentrations on a submerged macrophyte,Vallisneria asiatica. Cyanobacterial stress suppressed the superoxide dismutase(SOD) activity of the plant's leaves and induced the catalase(CAT) and peroxidase(POD) activities of its roots. The soluble protein content in V. asiatica decreased with an increase in natural cyanobacterial concentrations,whereas the malonaldehyde(MDA) increased significantly at chlorophylla(Chl a) concentrations of 222 and 262 μg/L in water. V. asiatica adapted to the stress caused by cyanobacterial concentrations by adjusting its antioxidant defense system to remove the excessive reactive oxygen species when the algal Chl a concentration was >109 μg/L. Additionally,high biomass of V. asiatica(2 222 g FW/m 2) can inhibit the reproduction of cyanobacteria more significantly than low biomass(1 111 g FW/m2). High biomass of V. asiatica increased the oxidative stress in an individual plant when the initial Chl a concentration in the water reached 222 and 262 μg/L,as expressed by the increased MDA in leaves,compared with low biomass of V. asiatica. This provides a basis for controlling cyanobacterial concentrations and V. asiatica biomass for the recovery of V. asiatica in eutrophic Lake Taihu.康彩霞 KUBA Takahiro 郝爱民 ISERI Yasushi 李春杰 张振家 2015Chinese Journal of Oceanology and Limnology2015,33,2:2
9A sludge characterization assay for aerobic and denitrif- ying phosphorus removing sludge显示文摘Wachtmeister A Kuba T van Loosdrecht M C M 1997Water Res1997,31,3:1
10The influence of starvation phase on the properties and the development of aerobic granules显示文摘Li Z H Kuba T Kusuda T 2006Enzyme and Microbial Technology2006,38,:1
11Phosphorus and nitrogen removal with minimal COD requirement by integration of nitrification in a two-sludge system 显示文摘Kuba T Van Loosdrecht M C M 1996Wat Res1996,42,12:1
12A metabolic model for the biological phosphorus removal by denitrifying organisms显示文摘Kuba T Murnleitner E Van Loosdrecht M C M 1996Biotechnology and Bioengineering1996,52,:1
13Effect of nitrate on phosphorus release in biological phosphorus systems显示文摘Kuba T Murnleitner E van Loosdrecht M C M etal 1994Wat Sci Tech1994,30,6:1
14Effects of soy isoflavone consumption on bone structure and milk mineral concentra-tion in a rat model of lactation-associated bone loss显示文摘Peterson C A Schnell J D Kubas K L 2009EuropeanJournal of Nutrition2009,48,2:1
15Phosphorus and nitrogen removal with minimal COD requirement by integration of denitrifying dephosphatation and nitrification in a two sludge system 显示文摘KUBA T van LOOSDRECHT M C M HEIJNEN J J 1996Water Research1996,30,7:1
16Focal nodu larhyperp lasia and hepatic aden oma: a review 显示文摘LIZARDIC- ERVERA J CUELLAR- GAMBOA L MOTO LA- KUBA D 2006Ann Hepato2006,53,3:1
17A sludge characterization assay for aerobic and denitrifying phosphorus removing sludge显示文摘Wachtmeister A Kuba T Van Loosdrecht M 1997Water Research1997,31,3:1
18Phosphorus and nitrogen removal with minimal COD requirement by integration of denitrifying dephosphatation and denitrification in a two-sludge system 显示文摘KUBA T van LOOSDRECHT M HEIUNEN J J 1996Water Res1996,30,7:1
19A Metabolic model for biological phosphorus removal by denitrifying organisms 显示文摘Kuba T Murnleitner E van Loosdrecht M C M 1996Biotechnol Bioeng1996,52,6:1
20A metabolic model for biological phosphorus removal by denitrifying organisms 显示文摘Kuba T Murnleitner E van Loosdrecht M C M 1996Biotechnology Bioengineering1996,52,6:1
返回顶部 每页显示:
共48页 首页 上一页 第1页 下一页 末页 /48 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费