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27篇 您的检索式:作者名="Chidthaisong"
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1Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil 显示文摘CHIDTHAISONG A CONRAD R 2000FEMS Microbiology Ecology2000,31,1:1
2Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil 显示文摘Chidthaisong A Conrad R 2000FEMS Microbiology Ecology2000,31,:1
3Effects of Biochar Particle Size on Methane Emissions from Rice Cultivation显示文摘Biochar amendment is generally recognized as an effective mitigation option of methane(CH_(4))emissions from rice cultivation.Although its mitigation mechanisms are not well understood,the potential relevance of surface area and porosity of biochar has been discussed.This study aimed to evaluate the application of different biochar particle sizes on CH_(4) production,oxidation,and emissions from rice cultivation in a clay loam soil,based on the assumption that porosity and surface area of biochar are directly related to its mitigation effects.Rice was grown under greenhouse conditions for two growing seasons,either with 0.5–2 mm(small,SB)or with 2–4 mm(large,LB)biochar.The results show that both sizes of biochar increased soil pH and redox potential(Eh)during rice growth.Soil dissolved organic carbon(DOC),nitrate(NO^(−)_(3)),and sulfate(SO^(2−)_(4))also increased under both biochar amendments,but size effects were not observed.SB and LB suppressed the abundance of CH_(4) producers(methanogens)but stimulated the abundance of CH_(4) consumers(methanotrophs).The increase of soil Eh and electron acceptors(NO^(−)_(3)and SO^(2−)_(4))indicated the increase in soil oxidation capacity is a barrier to CH_(4) production by methanogens in both biochar treatments.Laboratory incubation experiments showed that CH_(4) production activity was significantly(p≤0.05)reduced by 18.5%using SB and by 11.3%using LB compared to the control.In contrast,the stimulation of methanotrophs promoted greater CH_(4) oxidation activity by 15.0%in SB and 18.7%in LB compared to the control.It shows that CH_(4) production was reduced more by larger surface area biochar(SB),while a greater increase in CH_(4) oxidation was found using larger pore volume biochar(LB).The effects on CH_(4) production were more pronounced than those on CH_(4) oxidation,resulting in a greater reduction of cumulative CH_(4) emissions by SB than LB(by 26.6%and 19.9%compared to control,respectively).Patikorn Sriphirom Amnat Chidthaisong Kazuyuki Yagi Nimaradee Boonapatcharoen Sudarut Tripetchkul Sirintornthep Towprayoon 2020Journal of Renewable Materials2020,8,10:1
4Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil显示文摘Chidthaisong A Conrad R 2000FEMS Microbiology Ecology2000,31,:1
5Effects of Elevated Ozone Concentrations on Thai Jasmine Rice Cultivars (Oryza Sativa L.)显示文摘W. Ariyaphanphitak A. Chidthaisong E. Sarobol V. N. Bashkin S. Towprayoon 2005Water Air and Soil Pollution (-)2005,,1:1
6Methane formation and emissionfrom flooded rice soil incorporated with 13C-labelled rice straw显示文摘CHIDTHAISONG A WATANABE I 1997SoilBiology and Biochemistry1997,29,:1
7Methane formation and emission from flooded rice soil incorporated with ^13C-labelled rice straw显示文摘CHIDTHAISONG A WATANABE Ⅰ 1997Soil Biology and Biochemistry1997,29,:1
8Methane formation and emission from flooded rice soil incorporated with 13C-labeled rice straw显示文摘Chidthaisong A Watanabe I 1997Soil Biology and Biochemistry1997,29,8:1
9Specificity of chloroform, 2-bro-moethanesulfonate and fluoroacetate to inhibit methanogenesis andother anaerobic processes in anoxic rice field soil显示文摘Chidthaisong A Conrad R 2000Soil Bid Biochem2000,32,7:1
10Specificity of chloroform, 2-bromoethanesulfonate and fluoroacetate to inhibit methanogenesis and other anaerobic processes in anoxic rice field soil 显示文摘Chidthaisong A Conrad R 2000Soil Biology and Biochemistry2000,32,:1
11Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil 显示文摘Chidthaisong A Conrad R 2000FEMS Microbiol Ecol2000,31,:1
12A comparison of isotope fractionation of carbon and hydrogen from paddy field rice roots and soil bacterial enrichments during CO2/H2 methanogenesis显示文摘CHIDTHAISONG A CHIN K J VALENTINGg D L 2002Geochimica et Cosmochimica Acta2002,66,6:1
13Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil 显示文摘Chidthaisong A Conrad R 2000FEMS Microbiology Ecology2000,31,:1
14Turnover of glucose and acetate coupled to reduction of nitrate, ferriciron and sulfate and to methanogenesis in anoxic rice field soil 显示文摘Chidthaisong A Conrad R 2000FEMS Microbiol Ecol2000,31,1:1
15Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic ricefield soil显示文摘CHIDTHAISONG A CONRAD R 2000FEMS Microbiology Ecology2000,31,1:1
16Production, composition and Pb^2+ adsorption characteristics of capsular polysaccharides extracted from a cyanobacterium Gloeocapsa gelatinosa显示文摘Raungsomboon S Chidthaisong A Bunnag B 2006Water Research2006,40,20:1
17Specificity of chloroform, 2- bromoethane sulfonate and fluoroacetate to inhibit metha-nogenesis and other anaerobic processes in anoxic rice field soil显示文摘Chidthaisong A Conrad R 2000Soil Biology and Biochemistry2000,,32:1
18Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil显示文摘CHIDTHAISONG A 2000FEMS Microbiology Ecology2000,31,1:1
19Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil 显示文摘Chidthaisong A Conrad R 2000FEMS Microbiology Ecology2000,31,1:1
20Carbon footprint of sugar produced from sugarcane in eastern Thailand 显示文摘Yuttitham M Gheewala S H Chidthaisong A 2011Journal of Cleaner Production2011,19,1718:1
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