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16篇 您的检索式:作者名="Sushree"
    题名 作者 年代 出处 被引量
1Adsorption of Co^2+,Ni^2+, Cu^2+and Zn^2+ onto amorphous hydrous manganese dioxide from simple (1-1) electrolyte solutions显示文摘Sukriti B K Sushree S T Santosh K M 2004Journal of Colloid and Interface Science2004,26,9:1
2Chlorination byproducts, their toxicodynamics and removal from drinking water显示文摘Krishna Gopal Sushree Swarupa Tripathy Jean Luc Bersillon Shashi Prabha Dubey 2006Journal of Hazardous Materials2006,,1:1
3Removal of Fluoride from Drinking Water by Adsorption onto Alumimpregoated Activated Alumina 显示文摘Sushree Swarupa Tripathy Jean - Luc Bersillon Krishna Gopal 2006Separation and Purification Technology2006,50,30:1
4Removal of fluoride from drinking water by adsorption onto alum-impregnated activated alumina显示文摘Sushree S T Jean-Luc B Krishna G 2006Separation and Purifiention Technology2006,50,:1
5Abatement of fuoride from water using manganese dioxide-coated activated alumina 显示文摘Sushree Swarupa Tripathy Ashok M Raichur 2008Journal of Hazardous Materials2008,153,3:1
6Chlorination byproducts, their toxicodynamics and removal from drinking water 显示文摘GOPAL Krishna TRIPATHY Sushree Swarupa BERSILLON Jean Luc 2007Journal of Hazardous Materials2007,140,12:1
7Removal of fluoride from drinking water by adsorption onto alum - impregnated activated alumina 显示文摘Sushree Swarupa Tripathy Jean - Luc Bersillon Krishna Gopal 2006Separation and Purification Technology2006,50,31:1
8Adsorption of Co, Ni, Cu, and Zn on hydrous manganese dioxide from complex electrolyte solutions resembling sea water in major ion content显示文摘Sukriti B K Sushree S T 2004Journal of Colloid and Interface Science2004,269,:1
9Abatement of fluoride from water using manganese dioxide-coated activated alumina显示文摘Sushree Swarupa Tripathy Ashok M. Raichur 2007Journal of Hazardous Materials2007,,3:1
10Chlorination byproducts, their toxieodynamics and removal from drinking water 显示文摘Krishna Gopal Sushree Swarupa Tripathy Jean Luc Bersillon 2007Journal of Hazardous Materials2007,,10:1
11Chlorination byproducts ,their toxicodynamics and removal from drinking water显示文摘Krishna Gopal Sushree Swarupa Tripathy Jean Luc Bersillon etal 2007Journal of Hazardous Materials2007,,10:1
12Analysis of cas-caded multilevel inverters for active harmonic filtering in distribu- tion networks 显示文摘Panda Anup Kumar Patnaik Sushree Sangita 2015International Journal of Electrical Power and Energy Systems2015,,66:1
13Removal of fluoride from drinking water by adsorption unto alum-impregnated activated alumina显示文摘Sushree Swarupa Tripathy Jean-Luc Bersillon Krishna Go- pal 2006Separation and Purification Technology2006,,50:1
14Removal of fluoride from drinking water by adsorption onto alum-impregnated activated alumina显示文摘Sushree Swarupa Tripathy Jean-Luc Bersillon Krishna Gopal 2005Separation and Purification Technology2005,,3:1
15Adsorption of Cd^2+ on Hydrous Manganese Dioxide from Aqueous Solutions 显示文摘Sushree Swarupa Tripathya 2006esalination2006,194,:1
16Effect of elevated [CO_2] and nutrient management on wet and dry season rice production in subtropical India显示文摘The present experiment was conducted to evaluate the effect of elevated [CO_2] with varying nutrient management on rice–rice production system. The experiment was conducted in the open field and inside open-top chambers(OTCs) of ambient [CO_2](≈ 390 μmol L-1) and elevated [CO_2] environment(25% above ambient) during wet and dry seasons in 2011–2013at Kharagpur, India. The nutrient management included recommended doses of N, P, and K as chemical fertilizer(CF), integration of chemical and organic sources, and application of increased(25% higher) doses of CF. The higher [CO_2] level in the OTC increased aboveground biomass but marginally decreased filled grains per panicle and grain yield of rice, compared to the ambient environment. However, crop root biomass was increased significantly under elevated [CO_2]. With respect to nutrient management, increasing the dose of CF increased grain yield significantly in both seasons. At the recommended dose of nutrients, integrated nutrient management was comparable to CF in the wet season, but significantly inferior in the dry season, in its effect on growth and yield of rice. The [CO_2] elevation in OTC led to a marginal increase in organic C and available P content of soil, but a decrease in available N content. It was concluded that increased doses of nutrients via integration of chemical and organic sources in the wet season and chemical sources alone in the dry season will minimize the adverse effect of future climate on rice production in subtropical India.Sushree Sagarika Satapathy Dillip Kumar Swain Surendranath Pasupalak Pratap Bhanu Singh Bhadoria 2015The Crop Journal2015,3,6:0
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