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5篇 您的检索式:作者名="Pulimi"
    题名 作者 年代 出处 被引量
1Batch and Contin- uous Flow Studies of Adsorptive Removal of Cr (VI) by A- dapted Bacterial Consortia Immobilized in Alginate Beads 显示文摘SAMUEL M PULIMI M PAUL M L 2013Bioresource Technology2013,128,:1
2Ethnic variation in certain hematological and biochemical reference intervals in a south Indian healthy adult population显示文摘M. Sundaram J. Mohanakrishnan K.G. Murugavel E.M. Shankar S. Solomon C.N. Srinivas S.S. Solomon S. Pulimi E. Piwowar-Manning S. Dawson E. Livant N. Kumarasamy P. Balakrishnan 2007European Journal of Internal Medicine2007,,1:1
3Potential drug targets in Mycobacterium tuberculosis through metabolic pathway analysis显示文摘Sharmila Anishetty Mrudula Pulimi Gautam Pennathur 2005Computational Biology and Chemistry2005,,5:1
4Increased vascular access complications in patients with renal dysfunction undergoing percutaneous coronary procedures using arteriotomy closure devices 显示文摘Aziz E F Pulimi S Coleman C 2010J Invasive Cardiol2010,22,1:1
5In situ formation of bimetallic FeNi nanoparticles on sand through green technology:Application for tetracycline removal显示文摘In this study,FeNi nanoparticles were green synthesized using Punica granatum(pomegranate)peel extract,and these nanoparticles were also formed in situ over quartz sand(GS-FeNi)for removal of tetracycline(TC).Under the optimized operating conditions,(GS-FeNi concentration:1.5%w/v;concentration of TC:20 mg/L;interaction period:180 min),99±0.2%TC removal was achieved in the batch reactor The removaT capacity was 181±1 mg/g.A detailed characterization of the sorbent and the solution before and after the interaction revealed that the removal mechanism(s)involved both the sorption and degradation of TC.The reusability of reactant was assessed for four cycles of operation,and 77±4%of TC removal was obtained in the cycle.To judge the environmental sustainability of the process,residual toxicity assay of the interacted TC solution was performed with indicator bacteria(Bacillus and Pseudomonas)and algae(Chlorella sp.),which confirmed a substantial decrease in the toxicity.The continuous column studies were undertaken in the packed bed reactors using GS-FeNi.Employing the optimized conditions,quite high removal efficiency(978±5 mg/g)was obtained in the columns.The application of GS-FeNi for antibiotic removal was further evaluated in lake water,tap water,and ground water spiked with TC,and the removal capacity achieved was found to be 781±5,712±5,and 687±3 mg/g,respectively.This work can pave the way for treatment of antibiotics and other pollutants in the reactors using novel green composites prepared from fruit wastes.Ravikumar KVG Debayan Ghosh M rudula Pulimi Chandrasekaran Natarajan Amitava Mukherjee 2020Frontiers of Environmental Science & Engineering2020,14,1:0
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