Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste Fractions

Composting is a nature’s way of recycling soil conditioners and nutrients, and the value of the resulting compost depends on the efficiency of the composting process. This study sets out to investigate the effectiveness of co-composting feacal sludge (FS) and selected fractions of yard waste (YW)....

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Main Author: G. J. Mhina
Format: Article
Language:English
Published: Joint Coordination Centre of the World Bank assisted National Agricultural Research Programme (NARP) 2023-12-01
Series:Journal of Applied Sciences and Environmental Management
Subjects:
Online Access:https://www.ajol.info/index.php/jasem/article/view/261664
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author G. J. Mhina
author_facet G. J. Mhina
author_sort G. J. Mhina
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description Composting is a nature’s way of recycling soil conditioners and nutrients, and the value of the resulting compost depends on the efficiency of the composting process. This study sets out to investigate the effectiveness of co-composting feacal sludge (FS) and selected fractions of yard waste (YW). Laboratory-scale aerobic composting batch experiments were designed and operated according a predefined schedule for mixing and aerating (turning) the substrates for co-composting. To measure the effectiveness of the co-composting process, evolution of temperature, moisture content, pH, organic matter and nutrients were monitored through direct measurement and laboratory analysis. A maximum temperature of 63℃ (lasting for 74hours) was attained by a treatment with substrates mixed at 1:3 (FS: YW) in the first ten days of composting. The analysis of the results indicated that a mix of FS and selected yard waste fractions that forms an average initial moisture content of 63.2% and C-N ratio of 14.1 can efficiently decompose to reduce the mass of the composting substrates by at least 26% in 30 days. The results indicated further that the concentration of nutrients (N and P) and organic matter content in the co-composting substrates decreased with composting time while the measured values of C-N ratio and non-volatile solids (NVS) were increasing with increase in composting duration. Based on the physicochemical quality attained in the current study, the compost resulting from co-composting of feacal sludge and selected fractions of yards waste has a promising potential for soil conditioning.
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spelling doaj.art-8ea6de6e796741aeb723bbfef6a6d9712024-03-28T19:46:17ZengJoint Coordination Centre of the World Bank assisted National Agricultural Research Programme (NARP)Journal of Applied Sciences and Environmental Management2659-15022659-14992023-12-012712Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste FractionsG. J. Mhina Composting is a nature’s way of recycling soil conditioners and nutrients, and the value of the resulting compost depends on the efficiency of the composting process. This study sets out to investigate the effectiveness of co-composting feacal sludge (FS) and selected fractions of yard waste (YW). Laboratory-scale aerobic composting batch experiments were designed and operated according a predefined schedule for mixing and aerating (turning) the substrates for co-composting. To measure the effectiveness of the co-composting process, evolution of temperature, moisture content, pH, organic matter and nutrients were monitored through direct measurement and laboratory analysis. A maximum temperature of 63℃ (lasting for 74hours) was attained by a treatment with substrates mixed at 1:3 (FS: YW) in the first ten days of composting. The analysis of the results indicated that a mix of FS and selected yard waste fractions that forms an average initial moisture content of 63.2% and C-N ratio of 14.1 can efficiently decompose to reduce the mass of the composting substrates by at least 26% in 30 days. The results indicated further that the concentration of nutrients (N and P) and organic matter content in the co-composting substrates decreased with composting time while the measured values of C-N ratio and non-volatile solids (NVS) were increasing with increase in composting duration. Based on the physicochemical quality attained in the current study, the compost resulting from co-composting of feacal sludge and selected fractions of yards waste has a promising potential for soil conditioning. https://www.ajol.info/index.php/jasem/article/view/261664Fecal sludge; compost quality; soil fertility; organic fertilization; humification
spellingShingle G. J. Mhina
Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste Fractions
Journal of Applied Sciences and Environmental Management
Fecal sludge; compost quality; soil fertility; organic fertilization; humification
title Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste Fractions
title_full Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste Fractions
title_fullStr Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste Fractions
title_full_unstemmed Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste Fractions
title_short Advancing Composting Needs and Options: Assessing the Co-composting Potential of Feacal Sludge and Selected Yard Waste Fractions
title_sort advancing composting needs and options assessing the co composting potential of feacal sludge and selected yard waste fractions
topic Fecal sludge; compost quality; soil fertility; organic fertilization; humification
url https://www.ajol.info/index.php/jasem/article/view/261664
work_keys_str_mv AT gjmhina advancingcompostingneedsandoptionsassessingthecocompostingpotentialoffeacalsludgeandselectedyardwastefractions