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17篇 您的检索式:作者名="FARRAS O"
    题名 作者 年代 出处 被引量
1显示文摘PINEDA O FARRAS J MACCARI L 2004Bioorganic & Medicinal Chemistry Letters2004,19,14:1
2Ideal hierarchical secret sharing schemes 显示文摘Farras O Padro C 2012IEEE Transactions on Information Theory2012,58,5:1
3Ideal hierarchical secret sharing schemes显示文摘Farras O Padro C 2012IEEE Transaction on Information Theory2012,58,5:1
4Ideal Multipartite secret sharing schemes显示文摘Farras O Farre J M Padro C 2012Journal of Cryptology2012,25,3:1
5Ideal hierarchical secret sharing schemes 显示文摘FARRAS O PADRO C 2012IEEE Transactions on Information Theory2012,58,5:1
6Multipartite secret sharing schemes 显示文摘Farras O Martf-Farre J PadroIdeal C 2012Journal of Cryptology2012,25,3:1
7Generalization-based privacy preservation and discrimination prevention in data publishing and mining显示文摘Hajian S Domingo-Ferrer J Farras O 2014Data Mining and Knowledge Discovery2014,28,5:1
8Proteinmeasurementwith the folin phenol reagent显示文摘Lowry O H Rosebrough N J FarrA L 1951J Biol Chem1951,193,:1
9Ideal hierarchical secret sharing schemes显示文摘FARRAS O PADRO C 2012IEEE Transactions on Information Theory2012,58,5:1
10Protein measure- ment with the Folin phenol reagent 显示文摘Lowry O H Rosebrough N J FarrA L et ol 1951The Journal of Biological Chemistry1951,153,2:1
11Outcome of atrial fibrillation after mitral valverepair显示文摘Obadia J F el Farra M Bastien O H Lievre M Martelloni Y Chassignolle J F 1997J Thorac Cardiovasc Surg1997,114,:1
12Protein measurementwith the Folin Phenol Reagent显示文摘Loery O H Rosebrough N J FarrA L et a l 1951J Biol Chem1951,193,:1
13Outcome of atrial fibrillation after mitral valve repair显示文摘Obadia J F el Farra M Bastien O H Lievre M Martelloni Y Chassignolle J F 1997J Thorac Cardiovasc Surg1997,114,:1
14Protein measurementwith the Folin Phenol Reagent 显示文摘Loery O H Rosebrough N J FarrA L 1951J Biol Chem1951,,193:1
15Protein measurement with the Folin phenol regent显示文摘LOWRY O H ROSCBROUGH N J FARRA 1951Biol Chem1951,193,:1
16Ideal Hierarchical Secret Sharing Schemes显示文摘Farras O Padro C 2012IEEE Transactions on Information Theory2012,58,5:1
17Microbial electrosynthesis of acetate from CO_(2)in three-chamber cells with gas diffusion biocathode under moderate saline conditions显示文摘The industrial adoption of microbial electrosynthesis(MES)is hindered by high overpotentials deriving from low electrolyte conductivity and inefficient cell designs.In this study,a mixed microbial consortium originating from an anaerobic digester operated under saline conditions(∼13 g L^(−1)NaCl)was adapted for acetate production from bicarbonate in galvanostatic(0.25 mA cm^(−2))H-type cells at 5,10,15,or 20 g L^(−1)NaCl concentration.The acetogenic communities were successfully enriched only at 5 and 10 g L^(−1)NaCl,revealing an inhibitory threshold of about 6 g L^(−1)Na^(+).The enriched planktonic communities were then used as inoculum for 3D printed,three-chamber cells equipped with a gas diffusion biocathode.The cells were fed with CO_(2)gas and operated galvanostatically(0.25 or 1.00 mA cm^(−2)).The highest production rate of 55.4 g m^(−2) d^(−1)(0.89 g L^(−1)d^(−1)),with 82.4%Coulombic efficiency,was obtained at 5 g L^(−1)NaCl concentration and 1 mA cm^(−2)applied current,achieving an average acetate production of 44.7 kg MWh−1.Scanning electron microscopy and 16S rRNA sequencing analysis confirmed the formation of a cathodic biofilm dominated by Acetobacterium sp.Finally,three 3D printed cells were hydraulically connected in series to simulate an MES stack,achieving three-fold production rates than with the single cell at 0.25 mA cm^(−2).This confirms that three-chamber MES cells are an efficient and scalable technology for CO_(2)bio-electro recycling to acetate and that moderate saline conditions(5 g L^(−1)NaCl)can help reduce their power demand while preserving the activity of acetogens.Paolo Dessì Claribel Buenano-Vargas Santiago Martínez-Sosa Simon Mills Anna Trego Umer ZIjaz Deepak Pant Sebastia Puig Vincent O'Flaherty Pau Farras 2023Environmental Science and Ecotechnology2023,,4:0
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