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- W3130894028 abstract "In conclusion and implication, in-situ jute retting is a worthwhile alternative to the traditional ex-situ retting. This technology is a definitive strategy of jute retting with agronomic, environmental, economic and human health benefits by integrating few component enterprises of farming system. It fits well within the traditional rural farming systems favouring the existing socio-economic, cultural and environmental conditions of the jute growing region. Obviously, limitations of the location of the pond, its size and health risks of waste water for this micro-pond based new IFS model, exceptionally disfavours integration of livestock component of usual homestead pond based IFS. Barring the retting period of 1½-2 months, production of selective annual crops, vegetables, fruits and short period fish farming, particularly air-breathing cat fishes, are suitable. It minimizes water requirement for jute retting (1:1.20) over conventional method (1:20) and addresses the problem of water scarcity during retting, reduces drudgery and transport cost of jute bundles to distant water bodies, assures retting to produce quality jute fibre with higher price (Rs. 300 q-1) and creates a moderately hygienic condition of fibre extraction than conventional method. It reduce transitory pollution load on natural water bodies and conserve retted wastewater and rich solid organic matter (10-15) bags per season per acre for agronomic use and fishery. Water use efficiency in micro-pond retting is much higher (> 90%) over conventional retting. It will be of immense help to the jute farmers for light textured soil and in drought condition (under deficit rainfall or water scarcity situation), in particular. Additionally, a well-developed network of in-situ jute retting tanks in Indo-Bangla subcontinent can function as percolation tanks to improve groundwater recharge, water reservoir for lifesaving irrigations, land surface catchment to harvest surface run off for saving field crops (jute, sesame, green gram and black gram) from early waterlogging stress under changing climatic scenario and in-situ composting pits during dry months." @default.
- W3130894028 created "2021-03-01" @default.
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- W3130894028 date "2020-11-10" @default.
- W3130894028 modified "2023-09-24" @default.
- W3130894028 title "Sustainable In-situ Jute Retting Technology in Low Volume Water using Native Microbial Culture to Improve Fibre Quality and Retting Waste Management" @default.
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- W3130894028 doi "https://doi.org/10.20546/ijcmas.2020.911.126" @default.
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