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AuthorRehrah D.
AuthorBansode R.R.
AuthorHassan O.
AuthorAhmedna M.
Available date2019-10-06T09:38:35Z
Publication Date2018
Publication NameInternational Journal of Environmental Science and Technology
ResourceScopus
ISSN1735-1472
URIhttp://dx.doi.org/10.1007/s13762-017-1470-4
URIhttp://hdl.handle.net/10576/12082
AbstractQatar economy has been growing rapidly during the last two decades during which waste generation and greenhouse gas emissions increased exponentially making them among the main environmental challenges facing the country. Production of biochar from municipal solid organic wastes (SOWs) for soil application may offer a sustainable waste management strategy while improving crop productivity and sequestering carbon. This study was conducted to (1) investigate the physicochemical parameters of biochars for SOW, (2) select the best-performing biochars for soil fertility, and (3) evaluate the potential benefits of these biochars in lowering greenhouse gases (GHGs) during soil incubation. Biochars were produced from SOW at pyrolysis temperatures of 300–750 °C and residence times of 2–6 h. Biochars were characterized before use in soil incubation to select the best-performing treatment and evaluation of potential GHG-lowering effect using CO2 emission as proxy. Here, soil–biochar mixtures (0–2%w/w) were incubated in greenhouse settings for 120 days at 10% soil moisture. Soil properties, such as pH, EC, TC, and WHC, were significantly improved after soil amendment with biochar. Two biochars produced from mixed materials at 300–500 °C for 2 h and used at 0.5–1% application rate performed the best in enhancing soil fertility parameters. A significant decrease in CO2 emission was observed in vials with soil–biochar mixtures, especially for biochars produced at 500 °C compared the corresponding raw materials which exhibited an exponential increase in the CO2 emission. Hence, application of biochar to agricultural soils could be beneficial for simultaneously improving soil fertility/crop productivity while sequestering carbon, thereby reducing anthropogenic emissions of GHGs.
SponsorThis research project was made possible by grant # NPRP -5 - 1020 - 4 – 011 from the Qatar National Research Fund (a member of Qatar Foundation). The statements made herein are solely the responsibility of the authors. The authors would like to express sincere gratitude to the Central Labs Team, Qatar University, for providing assistance with the characterization of biochar and soil samples analysis.
Languageen
PublisherCenter for Environmental and Energy Research and Studies
SubjectBiochar
Greenhouse gas emission
Municipal organic solid waste
Principal components analysis
Qatari sandy soil
TitleShort-term greenhouse emission lowering effect of biochars from solid organic municipal wastes
TypeArticle
Pagination1093-1102
Issue Number5
Volume Number15


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