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- W3080297777 abstract "On-site in-vessel composting of sewage sludge is considered to be applied in Israel for peripheral wastewater treatment plants (WWTPs). Based on lab-scale simulations using municipal sewage sludge and green waste, this study identifies a prospective range of values related to biomass stabilization during short-term processing. Within two weeks, 26–30% of the initial organic carbon was released as CO 2 , potential heat formation was decreased by 73–82%, and odor emissions by 87–99.5%. This reduction was mainly associated with co-decrease of NH 3 , dimethyl disulfide, and dimethyl trisulfide. Phytotoxicity was reduced by 28–52% whereas some residual toxicity might be attributed to non-biodegradable inorganic compounds. Stabilization rates observed in flexibly controlled lab-scale simulations can represent closed and efficiently aerated large-scale industrial systems. These prospective ranges of stabilization parameters are critical for deciding on the necessity of a curing stage for on-site enclosed installations in WWTPs. • A series of composting simulations using municipal sewage sludge was studied. • 94% of odor activity values were contributed by dimethyl di- & trisulfide & NH 3 . • A rapid composting phase dramatically reduced odor emissions by up to 99.5%. • A rapid and efficient phase may eliminate the need for compost maturation. • Lab simulations can represent closed and efficiently aerated large-scale systems." @default.
- W3080297777 created "2020-09-01" @default.
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- W3080297777 date "2020-09-01" @default.
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- W3080297777 title "High-rate stabilization and associated air emissions prospected during on-site in-vessel sewage sludge composting" @default.
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- W3080297777 doi "https://doi.org/10.1016/j.biteb.2020.100543" @default.
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