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29篇 您的检索式:作者名="Towprayoon"
    题名 作者 年代 出处 被引量
1Novel bulking agent from clay residue for food waste composting显示文摘Jolanun B Towprayoon S 2010Bioresource Technology2010,101,12:1
2Application of wasteinetal hydroxide sludge for adsorption of azo reactive dyes 显示文摘Netpradit S Thiravetyau P Towprayoon S 2003Water Research2003,37,4:1
3Mitigation of methane and nitrous oxide emissions from drained irrigated rice fields显示文摘Towprayoon S Smakgahn Poonkaew S 2005Chemosphere2005,,59:1
4The effects of leachate recirculation with supplemental water addition on methane production and waste decomposition in a simulated tropical landfill显示文摘Sanphoti N Towprayoon S Chaiprasert P 2006J Environ Manag2006,81,:1
5Effects 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
6Mitigation ofmethane and nitrous oxide emissions from drained irrigatedrice fields显示文摘Towprayoon S Smakgahn K Poonkaew S 2005Chemosphere2005,59,11:1
7Mitigation of methane and nitrous oxide emissions from drained irrigated flee fields显示文摘Towprayoon S Smakgahn K Poonkaew S 2005Chemosphere2005,,59:1
8Aeration improvement in fed batch composting of vegetable and fruit wastes 显示文摘Jolanun B Towprayoon S Chiemchaisri C 2008Environmental Progress2008,27,:1
9Application of 'waste~ metal hydroxide sludge for adsorption of azo reactive dyes 显示文摘Netpradit S Thiravetyan P Towprayoon S 2003Water Research2003,37,4:1
10Greenhouse gas mitigation in agriculture显示文摘Smith Pete Martino Daniel Cai Zucong Gwary Daniel Janzen Henry Kumar Pushpam McCarl Bruce Ogle Stephen O&apos Mara Frank Rice Charles Scholes Bob Sirotenko Oleg Howden Mark McAllister Tim Pan Genxing Romanenkov Vladimir Schneider Uwe Towprayoon Sirintornt 2007Philosophical Transactions of The Royal Society B2007,,1492:1
11Effects 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
12Mitigation of methane and nitrous oxide emissions from drained irrigated rice fields显示文摘Towprayoon S Smakgahn K Poonkaew S 2005Chemosphere2005,59,11:1
13Mitigation of methane and nitrous oxide emissions from drained irrigated rice fields 显示文摘TOWPRAYOON S SMAKGAHN K POONKAEW S 2005Chemosphere2005,59,:1
14Greenhouse gas mitigation in agriculture显示文摘Smith Pete Martino Daniel Cai Zucong Gwary Daniel Janzen Henry Kumar Pushpam McCarl Bruce Ogle Stephen O&apos Mara Frank Rice Charles Scholes Bob Sirotenko Oleg Howden Mark McAllister Tim Pan Genxing Romanenkov Vladimir Schneider Uwe Towprayoon Sirintorn 20072007 (1492)2007,,1492:1
15Policy and technological constraints to implementation of greenhouse gas mitigation options in agriculture显示文摘Pete Smith Daniel Martino Zucong Cai Daniel Gwary Henry Janzen Pushpam Kumar Bruce McCarl Stephen Ogle Frank O’Mara Charles Rice Bob Scholes Oleg Sirotenko Mark Howden Tim McAllister Genxing Pan Vladimir Romanenkov Uwe Schneider Sirintornthep Towprayoon 2006Agriculture, Ecosystems and Environment2006,,1:1
16Greenhouse gas mitigation in agriculture显示文摘Smith P Martino D Cai Z C Gwary D Janzen H Kumar P McCarl B Ogle S O'Mara F Rice C Scholes B Sirotenko O Howden M McAllister T Pan GX Romanenkov V Schneider U Towprayoon S Wattenbach M Smith J 2008Philosophical Transactions of the Royal SocietyB:Biological Sciences2008,363,:1
17Novel bulking agent from clay residue for food waste composting显示文摘Jolanun B Towprayoon S 0,,12:1
18Mitigation of meth- ane and nitrous oxide emissions from drained irrigated rice fields 显示文摘Towprayoon S Smakgahn K Poonkaew S 2005Chemosphere2005,59,11:1
19Mitigation of methane and nitrous oxide emissions from drained irrigated rice fields显示文摘Towprayoon S Smakgahn K Poonkacw S 2005Chemosphero2005,59,:1
20Using Geographical Information System For Monitoring of Urban Air Pollution in Bangkok Metropolis显示文摘Kozlov M Towprayoon S Kaeowjaroon T 1996Ecology of Industrial Regions1996,2,12:1
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