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dc.contributor.authorMuoma, John
dc.date.accessioned2023-10-05T12:56:49Z
dc.date.available2023-10-05T12:56:49Z
dc.date.issued2016-12-14
dc.identifier.urihttps://www.researchgate.net/profile/John-Muoma-3/publication/312158982_Production_of_Organic_Compost_from_Water_Hyacinth_Eichhornia_crassipes_Mart_Solms_in_the_Lake_Victoria_Basin_A_Lake_Victoria_Research_Initiative_VicRes/links/5873238008ae329d621bc6b2/Production-of-Organic-Compost-from-Water-Hyacinth-Eichhornia-crassipes-Mart-Solms-in-the-Lake-Victoria-Basin-A-Lake-Victoria-Research-Initiative-VicRes.pdf
dc.identifier.urihttp://ir-library.mmust.ac.ke:8080/xmlui/handle/123456789/2332
dc.description.abstractThe Lake Victoria Basin (LVB) supports one of the poorest and most populous rural populations in the East Africa region. The dipping fsh population has forced the community around the Lake Victoria to turn to farming for food crops to meet its daily food demands. Chemical fertilizer which is readily available has been the alternative source of improving soil condition which has led to eutrophication of the lake waters causing the temperature to rise in the process affecting most freshwater animals and plants. This process also encourages large volumes of algae and other biomass such as water hyacinth to fourish. The use of the algae bloom and water hyacinth to provide an alternative ecologically friendly and sustainable source of soil nutrients is imperative. This study utilized water hyacinth (H) to develop compost as a potential soil improvement source. Using four different composting treatments of water hyacinth biomass (H only control, H+ cattle manure, H+EM, H+ Molasses) there was no signifcant difference in the assessed nutrients at P<0.05 in the various treatment. There was though a higher increase in P at a non-signifcant level at P<0.05 in H control, H+ cattle manure, H+EM compared with the H+ Molasses treatment. H+ Cattle Manure and H control treatment also generated high K levels and relative to the other treatments. Overall the project exhibited high level of P, N and exchangeable K in the four hyacinth compost treatment with an alkaline pH of between 7.38-8.13. The project also determined the optimal composting conditions with highest temperature of about 38o C observed at day 5 to 20 from the onset of the decomposition all the treatments. The temperature stabilized at about 24o C till the 58th day. Resulting in increase of essential elements in Water Hyacinth Organic compost makes it an important source for control of acidic soil pH and soil nutrient replenisheren_US
dc.language.isoenen_US
dc.publisherJournal of Agriculture and Allied Sciencesen_US
dc.subjectProduction of Organic Compost from Water Hyacinth (Eichhornia crassipes [Mart.] Solms) in the Lake Victoria Basin: A Lake Victoria Research Initiative (VicRes)en_US
dc.titleProduction of Organic Compost from Water Hyacinth (Eichhornia crassipes [Mart.] Solms) in the Lake Victoria Basin: A Lake Victoria Research Initiative (VicResen_US
dc.title.alternativeA Lake Victoria Research Initiative (VicRes)en_US
dc.typeArticleen_US


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