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12篇 您的检索式:作者名="PARAT C"
    题名 作者 年代 出处 被引量
1Photodynamic effects of hypericin on lipid peroxidation and antioxidant status in melanoma cells显示文摘HADJUR C RICHARD M J PARAT M O 1996Photochem Photobiol1996,64,2:1
2The relationship between copper accumulated in vineyard calcareous soils and soil organic matter and iron显示文摘Parat C Chaussod R Leveque J 2002European Journal of Soil Science2002,,53:1
3Assessment and man- agement of blood-pressure variability 显示文摘Parat G Ochoa JE Lombard C 2013Nat Rev Cardiol2013,10,3:1
4The relationship between copper accumulated in vineyard calcareous soils and soil organic matter and iron显示文摘Parat C Chaussod R L6vque J Dousset S Andreux F 2002European Journal of Soil Science2002,5,:1
5Determination of labile trace metals with screen-printed electrode modified by a crown-ether based membrane 显示文摘Parat C Betelu S Authier L 2006Analytiea Chimica Acta2006,57,:1
6Determination of labile trace metals with screen-printed electrode modified by a crown-ether based membrane 显示文摘Parat C Betelu S Authier L 2006Analytica Chimica Acta2006,57,:1
7Long-term effects of met- al-containing farmyard manure and sewage sludge on soil organic matter in a fluvisol 显示文摘Parat C Chaussod R Leveque J 2005Soil Biology & Biochemistry2005,37,4:1
8Multilocular peritoneal inclusion cysta case report显示文摘Nayak S Parate R C Bobhate S 2005Indian J Pathol Microbiol2005,48,2:1
9The relationship between copper accumulated in vineyard calcareous soils and soil organic matter and iron显示文摘PARAT C CHAUSSOD R LEVEQUE J 2002European Journal of Soil Science2002,,53:1
10Photodynamic effects of hypericin on lipid peroxidation and antioxidant status in melanoma cells 显示文摘Hadjur C Richard M J Parat MO 1996Photo chem Photobiol1996,64,2:1
11The relationship between copper accumulated in vineyard calcareous soils and soil organic matter and iron显示文摘Parat C Chaussod R Leveque J 2002Europe Journal of Soil Science2002,53,4:1
12Experimental characterization of the removal efficiency and energy effectiveness of central air cleaners显示文摘This study assessed six commercially available in-duct air cleaning devices which are designed to be mounted in the central ventilation system of offices or commercial buildings.The selected devices use different air cleaning technologies:mechanical filtration,electrostatic precipitation,gas filtration,ionization/cold plasma,photocatalytic oxidation(PCO)and catalysis under UV light.They were tested against particles,a mixture of volatile organic compounds containing acetone,acetaldehyde,toluene,heptane and formaldehyde,and two bio-contaminants:Aspergillus brasiliensis(fungus)and Staphylococcus epidermidis(bacteria).Two different test rigs were used.The single pass efficiency of each device was determined for three airflow rates,corresponding to face velocities ranging from 0.9 to 2.7 m/s,and two sets of temperature and humidity that are representative of indoor air conditions in wintertime and summertime.The concentration of the chal-lenge volatile organic compounds was also varied in the 30 to 100μg/m^(3)range as a way to characterize their influence on efficiency at realistic concentration levels for non-industrial buildings.Measurements of ozone and formaldehyde concentration downstream of the air cleaners were carried out to determine the emission rate of by-products into the air stream.Finally,the energy issue was addressed by measuring the electric power drawn and pressure loss of the devices.The results showed that two devices,namely a radiant catalytic ionizer and a plasma ionizer,had a very low single pass efficiency against all the challenge pollutants.The association of the plasma ionizer and the electrostatic precipitator did not produce a synergetic effect between the two technologies either,contrary to what their manufacturer claims.Finally,three of the six devices tested were effective in terms of pollutant removal,but only two had an acceptable energy effectiveness in view of their use in low or zero energy buildings.Their energy effectiveness ranged from a few thousand m^(3)/kWh for VOCs at the highest airflow rate(3600 m^(3)/h),to more than 60000 m^(3)/kWh for particles and bio-contaminants at 1200 or 1600 m^(3)/h.These results are at least one order of magnitude higher than the majority of stand-alone air cleaners.Moreover,they suggest that optimal IAQ and energy conditions can be achieved if variable air volume control methods are used to maintain indoor temperature and humidity.Patrice Blondeau Marc Olivier Abadie Alexandra Durand Pascal Kaluzny Sylvie Parat Alain Ginestet Dominique Pugnet Céline Tourreilles Thierry Duforestel 2021Energy and Built Environment2021,2,1:0
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