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Journal articles on the topic 'Vermiculture technology'

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1

Pordhiya, K. I. "A Scale to Measure Attitude of Farmers Towards Vermiculture Technology." Indian Research Journal of Extension Education 22, no. 2 (2022): 150–55. http://dx.doi.org/10.54986/irjee/2022/apr_jun/150-155.

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An attitude scale was constructed to measure the attitude of farmers towards vermiculture technology. Likert’s summated rating was followed for the development of the attitude scale. A total of 40 statements were screened after obtaining a relevancy score from expert’s judgment and given to vermiculture farmers of the non-sample area of Hamirpur district, Uttar Pradesh. Based upon ‘t’ value obtained for each statement, fi nally, 16 statements were chosen to have 8 positive and 8 negative statements. The reliability and validity of the scale indicate its precision and consistency of the results
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2

Senchuk, M., and V. Kharchyshyn. "Development of complex technology for the disposal of organic waste of an animal farm by vermicultivation." Tehnologìâ virobnictva ì pererobki produktìv tvarinnictva, no. 1(178) (May 25, 2023): 168–77. http://dx.doi.org/10.33245/2310-9289-2023-178-1-168-177.

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The article is about the complex technology of vermiculture on a livestock farm. Recommendations for the introduction of complex vermiculture technology for the processing of livestock farm waste have been developed. For intensive breeding of earthworms, it is necessary to provide conditions for their optimal development: - substrate temperature - 19-25 °C; - humidity of the substrate - 75-80 %; - carbon to nitrogen ratio - about 20; - medium reaction, pH - 6.5-7.5. The substrate from livestock farm waste must be fermented: in the warm period of the year for 2-3 months, and at low ambient temp
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3

Qi, Yinan. "Vermiculture Technology: Earthworms, Organic Wastes, and Environmental Management." International Journal of Environmental Studies 69, no. 1 (2012): 173–74. http://dx.doi.org/10.1080/00207233.2012.624327.

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4

Osipenko, I. S., and S. V. Merzlov. "Inclusion of vermiculture biomass grown on a substrate of accelerated fermentation into combined feeds for broiler chickens." Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies 25, no. 98 (2023): 34–39. http://dx.doi.org/10.32718/nvlvet-a9806.

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As the population increases, the problem of meat production will grow. An alternative method of solving this problem is growing broiler chickens; however, with this technology, the question of protein content and available amino acids in poultry feed remains open. Vermiculture biomass can be an inexhaustible source of protein for broiler chickens feeding. Under the vivarium of the Bila Tserkva National Agrarian University, worms were grown on a substrate containing poultry droppings with litter fermented by an accelerated method with the participation of a destructor. Therefore, the work aims
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5

S. Rehan, Ahmad. "Vermiculture Technology in India: It’s Scope, Challenges and Opportunities." International Journal of Zoological Investigations 7, no. 2 (2021): 462–70. http://dx.doi.org/10.33745/ijzi.2021.v07i02.021.

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6

Osipenko, I. S., and S. V. Merzlov. "BIOCHEMICAL AND CHEMICAL COMPOSITION OF VERMICULTURE BIOMASS GROWN ON POULTRY LITTER FERMENTED BY THE ACCELERATED METHOD." Scientific and Technical Bulletin оf State Scientific Research Control Institute of Veterinary Medical Products and Fodder Additives аnd Institute of Animal Biology 24, no. 1 (2023): 105–12. http://dx.doi.org/10.36359/scivp.2023-24-1.15.

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The intensive increase in the number of meat poultry, directly broiler chickens both in our country and in the most countries of the world, is accompanied by the accumulation of a large amount of waste (droppings with litter) of this technology in limited areas. According to a number of researchers, the utilization of this biomass must take into account environmental requirements and challenges. These requirements are met by the utilization of poultry droppings by means of vermiculture (growing worms). It is promising to prepare the droppings of broiler chickens with bedding for its use as a s
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7

Maksym, V., D. Solomonko, R. Lytvyn та O. Stepaniuk. "Economic efficiency of livestock organic waste processing into biонumus". Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies 23, № 98 (2021): 34–39. http://dx.doi.org/10.32718/nvlvet-e9805.

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The processing of organic livestock waste into biohumus is one of the direction areas in agribusiness, which contributes to the efficient resource allocation involved while achieving a high level of greening of production. The article presents the results of the study of economic efficiency of extensive form of vermiculture, which is characterized by minimal start-up investment, ease of organization and accessibility for the vast majority of livestock producers, including small farms, as it does not involve additional premises. Compared to intensive technology, which requires indoor heated pre
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8

Antonova, Elena, Igor Titov, Irina Pashkova, and Devard Stom. "Vermiculture as a source of animal protein." E3S Web of Conferences 254 (2021): 08006. http://dx.doi.org/10.1051/e3sconf/202125408006.

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The paper presents a data analysis of the international scientific community on the issues of vermicultivation for the last 75 years. The authors considered terminology, the biochemical contents of earthworms’ tissues, production technology; distinguished 4 stages, 8 methods and biological aspects of their safety. The paper covers economic production characteristics. The results on the practical use of dry and paste vermiproducts have been summarized: feed additives in fishing (6 examples), poultry farming (8 examples), mammal breeding (3 examples), growth media for microorganisms (1 example).
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9

Senchuk, N. "Introduction of mechanized vermicomposting for utilization of vegetable waste of horticultural farms." Agrobìologìâ, no. 2(167) (December 9, 2021): 137–45. http://dx.doi.org/10.33245/2310-9270-2021-167-2-137-145.

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The article deals with the expediency of using vermicomposting technologies in horticulture. Recommendations for the introduction of vermiculture technology in horticulture have been developed. Before the introduction of vermiculture technology, it is necessary to prepare the substrate. It is recommended to use the following composition of the substrate: plant tops; sawdust; tree leaves; peat, lime (up to 2 % by weight of the substrate). The substrate must undergo fermentation for at least 3 months, 3–5 months in winter. Storage of the substrate can last 8–10 months at a humidity of 70–80 %. T
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10

Bajsa, O., J. Nair, K. Mathew, and G. E. Ho. "Vermiculture as a tool for domestic wastewater management." Water Science and Technology 48, no. 11-12 (2004): 125–32. http://dx.doi.org/10.2166/wst.2004.0821.

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Organic waste management is a growing issue due to the unsustainable practices of its disposal. Sewage treatment plants are designed to treat wastewater to produce a safe effluent. However, one of the by-products, the sewage sludge which is disposed off in landfill or used as fertilizer in agricultural operation is high in pathogens. Sustainability can be achieved by Vermicomposting of organic matter which involves accelerated cycling of nutrients though a closed cycle whereby waste products are put to productive end use. Vermicomposting and vermifiltration are natural waste management process
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11

JAT, MAYA KUMARI, and B. C. BOCHALYA. "Knowledge of vermiculture technology among the rural women: A case of Rajasthan." AGRICULTURE UPDATE 12, no. 3 (2017): 371–75. http://dx.doi.org/10.15740/has/au/12.3/371-375.

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12

Vyas, Latika. "Innovation - Decision Behaviour Of Tribal Women Of Udaipur District Regarding Vermiculture Technology." WORK: A Journal of Prevention, Assessment & Rehabilitation 41, S1 (2012): 5009–18. https://doi.org/10.3233/wor-2012-0046-5009.

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13

Torri, Silvana Irene, and Maria Mabel Puelles. "Use of vermiculture technology for waste management and environmental remediation in Argentina." International Journal of Global Environmental Issues 10, no. 3/4 (2010): 239. http://dx.doi.org/10.1504/ijgenvi.2010.037269.

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14

Kharchyshyn, V., V. Bityutskyy, O. Melnychenko, S. Tsekhmistrenko, V. Herasymenko, and L. Onyshchenko. "Ways of balanced use of vermiculture biotechnology in the conditions of anthropogenic load on the environment." Tehnologìâ virobnictva ì pererobki produktìv tvarinnictva, no. 2 (182) (November 23, 2023): 108–15. http://dx.doi.org/10.33245/2310-9289-2023-182-2-108-115.

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The high energy potential of organic waste allows its use in bioconversion technologies, where waste from one production cycle is a raw material for further production to produce environmentally friendly fertilizers, energy carriers and feed additives. The article presents the results of experimental studies on the environmental efficiency of vermiculture on organic waste from livestock, crop production, gardening and forestry under anthropogenic load. It is proved that due to the biological characteristics of vermiculture, which allows to consume a large amount of organic residues, enrich the
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15

FOMICHENKO, Mykhailo. "NEW METHODS OF MANURE DISPOSAL AND USE OF PROCESSING PRODUCTS IN PIG BREEDING." Scientific and Technical Bulletin of the Institute of Animal Science NAAS of Ukraine, no. 133 (April 20, 2025): 4–18. https://doi.org/10.32900/2312-8402-2025-133-4-18.

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The research was conducted in the laboratory of innovative technologies and experimental facilities of Institute of Pig Breeding and AIP NAAS and in the conditions of LIGA COJIAP LLC. In the course of the research, they evaluated and improved the “stepping technology” of vermiculture, developed a method of extracting young dungworms from compost, determined the possibility of vermiculture in large-sized packages of the “Big-Bag” type, and the expediency of using vermighumus and “Nanoverm” in the rations of young pigs. Vermihumus was obtained by utilizing manure in a continuous reactor to obtai
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16

Dyudyayeva, O., and O. Rutta. "Ecologisation of the food industry through the introduction of vermiculture technology in agriculture." Ecological Sciences, no. 2 (53) (2024): 22–28. http://dx.doi.org/10.32846/2306-9716/2024.eco.2-53.3.

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17

Sidashenko, O., I. Myronova, and K. Tymchyi. "Composition of microflora of biofertilizers obtained using vermicomposting and composting technologies." Collection of Research Papers of the National Mining University 78 (September 2024): 186–96. https://doi.org/10.33271/crpnmu/78.186.

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Purpose. Investigation of the microbiological composition of vermicompost in comparison with compost obtained from solid organic biomass after methane fermentation using vermicompostsing and composting technologies. Research methodology. The study of the comparative composition of the ecological and trophic groups of microorganisms of vermicompost and compost was carried out by standard bacteriological methods of sowing on Petri dishes with subsequent colony counting to determine the number of colony-forming units (CFU/ml). The research results were calculated by MS Office Exel. Research resul
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18

Ro, Sophoanrith, Vimean Long, Rathana Sor, Sambo Pheap, Raby Nget, and Jared William. "Alternative Feed Sources for Vermicompost Production." Environment and Natural Resources Journal 20, no. 4 (2022): 1–7. http://dx.doi.org/10.32526/ennrj/20/202200009.

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Locally-available materials could be used to address soil fertility constraints. Vermicomposting is a promising technology where various organic materials are converted into processed compost by earthworms. This study evaluated local feed sources and their potential for vermicompost production. The vermicompost production was carried out in the plastic container under a roofed and net-sided production house. The plot design was laid out in Completely Randomized Design (CRD) with nine replications. Vermiculture feedstock treatments were cow manure (CM) and three cow manure and alternative feed
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19

Golembovskii, Vladimir, Andrey Korovin, and Natalia Sergeeva. "PROSPECTS OF IMPLEMENTING BIOTECHNOLOGY FOR ORGANIC WASTE CONVERSION BY VERMICULTURE." Bulletin of KSAU, no. 4 (April 25, 2025): 3–15. https://doi.org/10.36718/1819-4036-2025-4-3-15.

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The aim of the study is to investigate the agrochemical composition of agricultural waste and sludge from municipal wastewater treatment plants, as well as vermicompost obtained on their basis. The studies were conducted in 2023 at VNIIOK – a branch of the North Caucasus Federal Scientific Center. In the production of vermicompost for 2 months at a substrate moisture content of 60–80 % and an ambient temperature of 18–25 °C, worms of the Lumbricidae family were used: Dendrobaena Veneta and Eisenia fetida, which have proven themselves well as vermicompost producers and are adapted to the weathe
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20

Abhay Bisen, Vinamarta Jain, and Joginder Singh. "Strategic approaches of precision farming technology for improvement of fruit production." International Journal of Agricultural Invention 9, no. 2 (2024): 221–26. https://doi.org/10.46492/ijai/2024.9.2.33.

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Precision farming is one of the most scientific and modern approaches to sustainable agriculture that has gained momentum towards the end of 20th century. Precision farming involves the application of technologies and principles to manage spatial and temporal variability associated with all aspects of horticultural production for improving crop performance and environment quality. Precision farming calls for an efficient management of resources through location specific hi-tech interventions. Hi-tech horticultureencompasses a variety of interventions such as micro irrigation, fertigation, prot
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21

HONCHARUK, INNA, IRINA FURMAN, and OLEH DMYTRUK. "COMPREHENSIVE PROCESSING OF SOLID WASTE RECYKLING AS A WAY FOR SOLVING ECOLOGICAL PROBLEMS OF THE ILLINETSK TERRITORIAL COMMUNITY." "EСONOMY. FINANСES. MANAGEMENT: Topical issues of science and practical activity", no. 1(59) (April 28, 2022): 7–20. http://dx.doi.org/10.37128/2411-4413-2022-1-1.

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The article examines the approaches to solving the problems of efficient solid householdwaste management (SHW) in Ukraine and the world. The prevalence of solid householdwaste incineration in the leading countries of the world is determined. Insufficiently the developed system of sorting, processing and utilization of household waste in Ukraine is stated. The formation of a set of measures in the field of ensuring the processing and utilization of household waste was studied on the example of Illintsi territorial community. The analysis of the efficiency of the waste sorting complex on the ter
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22

Sinha, Rajiv K., Sunita Agarwal, Krunal Chauhan, Vinod Chandran, and Brijal Kiranbhai Soni. "Vermiculture Technology: Reviving the Dreams of Sir Charles Darwin for Scientific Use of Earthworms in Sustainable Development Programs." Technology and Investment 01, no. 03 (2010): 155–72. http://dx.doi.org/10.4236/ti.2010.13019.

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23

Babenko, Andrei, Dmitrij Bezrukov, Saulet Karimova, Akmaral Mametova, and Ludmila Zakonnova. "Vermiculture as a biotechnological method of recultivation of disturbed lands in the post-mining system." E3S Web of Conferences 315 (2021): 02008. http://dx.doi.org/10.1051/e3sconf/202131502008.

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The article shows the prospects of using the technology of vermicomposting for the biological re-cultivation of disturbed mining areas. The valuable properties of vermicompost as a component of soil-substituting mixtures for use in the re-cultivation of disturbed areas are considered. The expediency of using plant waste for the preparation of soil-substituting substrates is shown. The presence of special agrochemical properties of vermicompost obtained during the processing of plant waste (leaf litter) by the Eisenia fetida Savigny culture is experimentally established. The pH values and the c
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Stranishevskaya, Elena, Vladimir Gavrish, and Julia Shagova. "Testing of bio-organic fertilizer based on organic waste to improve the productivity of vineyards." E3S Web of Conferences 273 (2021): 01024. http://dx.doi.org/10.1051/e3sconf/202127301024.

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The authors developed an environmentally safe technology for obtaining liquid organic fertilizer. The technology includes obtaining compost by applying microflora containing actinomycetes and microscopic fungi, populating the compost with vermiculture Eisenia foetida and obtaining biohumus. In 2018-2020 fertilizers obtained from organic waste were used on industrial plantings of technical variety Bastardo Magarachsky (planting scheme: 3 × 1.5 m, formation - double-shouldered cordon, rootstock - Kober 5 BB, non-irrigated culture) as foliar dressing. Climatic zone and place of experiment: South
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Chachina, S., and E. Chachina. "The efficiency of complex application of vermiculture and biological products Baikal, Vostok, Tamir for soil purification from fuel oil." Bulletin of Science and Practice 4, no. 10 (2018): 133–39. https://doi.org/10.5281/zenodo.1461881.

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A technology has been developed for the recultivation of soils contaminated with fuel oil in Western Siberia using microbiological preparations and earthworms. Earthworms have great potential for removing hydrocarbons from the soil. The results allow evaluating the effectiveness of bioremediation of polluted soils. The method of cleaning and restoring the ecological functions of substrates contaminated with fuel oil and other petroleum products was that the substrate was treated with biologics, spent soil treatment was carried out and steamed for one month, then the earthworms were applied. In
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Chachina, S., E. Verba, and Yu. Salykina. "Biological reclamation of soils contaminated with fuel oil, using vermiculture earthworms Dendrobena veneta and microbiological preparations Baikal-EM, Tamir, Vostok." Bulletin of Science and Practice 4, no. 10 (2018): 125–32. https://doi.org/10.5281/zenodo.1461877.

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The technology of soil remediation contaminated with fuel oil at a concentration of 150 g/kg of soil for one year in Western Siberia using microbiological preparations and earthworms was developed. Earthworms have great potential for removing hydrocarbons from the soil, even at high concentrations up to 100 g/kg. Method of remediation of oil–contaminated soils with fuel oil content up to 150 g/kg by microorganisms (lactic acid, nitrogen–fixing, photosynthetic bacteria) and earthworms Dendrobaena veneta. A method for cleaning and restoring the environmental functions of substrates c
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Kasatkin, V. V., N. Yu Kasatkina, S. P. Ignatyev, and A. A. Litvinyuk. "Recycling of animal waste." IOP Conference Series: Earth and Environmental Science 949, no. 1 (2022): 012112. http://dx.doi.org/10.1088/1755-1315/949/1/012112.

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Abstract The growth of the number of farm animals and poultry contributes to the growth of environmental problems. Recycling of animal waste will solve these problems, as well as obtain organic fertilizers and additional energy sources. The purpose of the research is to develop technological solutions that allow organic waste from agricultural production to be involved in the production of secondary marketable products and energy resources. At the initial stage of processing, organic waste is sent to methane fermentation in the methane tank. The resulting biogas is used to obtain the thermal e
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Perfecto, Ivette. "The transformation of Cuban agriculture after the cold war." American Journal of Alternative Agriculture 9, no. 3 (1994): 98–108. http://dx.doi.org/10.1017/s0889189300005762.

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AbstractCuba's agriculture after the 1959 revolution had been based on large-scale, capital intensive monoculture, which made Cuba heavily dependent on the socialist bloc for subsidized agrichemical inputs and for set prices of agricultural exports. However, with the collapse of the Soviet Union and its Eastern European allies in 1989–90, Cuba's inputs of fertilizer, pesticides, and petroleum dropped by more than half Cuba responded with a dramatic shift in its agricultural development model that featured appropriate technology, alternative organization of labor, alternative planning, and envi
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Morand, Philippe, Paul Robin, Anne-Marie Pourcher, et al. "Design of an integrated piggery system with recycled water, biomass production and water purification by vermiculture, macrophyte ponds and constructed wetlands." Water Science and Technology 63, no. 6 (2011): 1314–20. http://dx.doi.org/10.2166/wst.2011.109.

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Since 2001 the swine experimental station of Guernévez has studied biological treatment plants for nutrient recovery and water recycling, suited to the fresh liquid manure coming out of flushing systems. An integrated system with continuous recycling was set up in 2007, associated with a piggery of 30 pregnant sows. It includes a screen, a vermifilter, and macrophyte ponds alternating with constructed wetlands. The screen and the vermifilter had a lower removal efficiency than in previous studies on finishing pigs. A settling tank was then added between the vermifilter and the first lagoon to
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S.B., CHachina, and Verba E.YUr. "Biological recultivation of soils contaminated with fuel oil, using vermiculture earthworms Dendrobena veneta and microbiological preparations «Baikal-Em», «Tamir», «East»." Ekologiya i stroitelstvo 3 (2018): 27–35. http://dx.doi.org/10.35688/2413-8452-2018-03-004.

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The technology of soil remediation contaminated with fuel oil at a concentration of 150 g/kg of soil for one year in Western Siberia using microbiological preparations and earthworms was developed. Earthworms have great potential for removing hydrocarbons from the soil, even at high concentrations up to 100 g/kg. The introduction of microbiological preparations increased the survival and reproductive potential of worms in oil-contaminated soils and contributed to a significant reduction in the concentration of hydrocarbons of fuel oil for 20–22 weeks in the laboratory and field experiment. The
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31

Tjandraatmadja, G., S. Burn, M. McLaughlin, and T. Biswas. "Rethinking urban water systems – revisiting concepts in urban wastewater collection and treatment to ensure infrastructure sustainability." Water Supply 5, no. 2 (2005): 145–54. http://dx.doi.org/10.2166/ws.2005.0031.

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Technology and economic development has led to the growth of megacities and urban centres with populations in the millions. Such population expansion and densification increases the strain on wastewater collection and treatment infrastructure, which has been largely based on an end-of-line centralised model. However, in megacities new challenges arise, because provision of suitable sanitation is expensive and it requires infrastructure expansion through construction of extensive sewer networks and larger capacity wastewater treatment plants, which consume more energy. Alternative disposal tech
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Maslov, V. I., V. O. Lymar, V. O. Ivanov, and A. O. Onishchenko. "DISPOSAL OF MANURE AT THE PIGGERY USING BIODESTRUCTORS OF DIFFERENT ORIGIN." Scientific and Technical Bulletin of the Institute of Animal Science NAAS of Ukraine, no. 130 (2023): 157–66. http://dx.doi.org/10.32900/2312-8402-2023-130-157-166.

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The development of biotechnological methods of disposal of pig waste products is relevant at the current stage. However, the high cost of investment and operation of such technologies limits their application. Therefore, owners of pig farms are constantly looking for compromise solutions that would, on the one hand, ensure compliance with technological requirements for manure removal, and on the other hand, not pollute the environment. The purpose of the work is to improve existing technologies and develop innovative approaches to biotechnological methods of manure disposal. Scientific researc
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Kristiana, R., J. Nair, M. Anda, and K. Mathew. "Monitoring of the process of composting of kitchen waste in an institutional scale worm farm." Water Science and Technology 51, no. 10 (2005): 171–77. http://dx.doi.org/10.2166/wst.2005.0364.

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Vermicomposting provides an alternative method of managing waste that is ecofriendly and cost-effective. The Environmental Technology Centre (ETC) at Murdoch University and St. John of God Hospital (SJOG) signed a Memorandum of Understanding (MOU) to install a vermiculture system in SJOG to treat some of the organic waste generated by the on site kitchen facility. This is an effort made by SJOG to reduce the amount of organic waste sent to landfill each year and to treat the waste on site as part of a recycling/reuse program. The study is aimed at scientifically monitoring vermicomposting proc
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Nsiah-Gyambibi, Rapheal, Emmanuel Acheampong, Elizabeth Von-Kiti, and Christian Larbi Ayisi. "Performance evaluation of developed macrophyte-assisted vermifiltration system designed with varied macrophytes and earthworm species for domestic wastewater treatment." PLOS ONE 18, no. 3 (2023): e0281953. http://dx.doi.org/10.1371/journal.pone.0281953.

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Development of sustainable technology to treat domestic wastewater with added advantages of cost reduction and improved handling efficiency is crucial in developing countries. This is because, domestic wastewater from households are stored in septic tanks and are poorly treated prior discharge. This study developed a macrophyte-assisted vermifiltration (MAV) system to treat domestic wastewater. The MAV system is an integrated approach of macrophytes and earthworms in a vermifiltration and complex physicochemical mechanism processes. The use of different macrophyte and earthworm species was hyp
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Romero-Arenas, Omar, Maribel Martínez Carrera, Gerardo Landeta-Cortés, Victor Rodríguez-Hernández, Nemesio Villa-Ruano, and Antonio Rivera. "Pilot Study of Diet Supplemented with Sold-Out Substrate of Pleurotus ostreatus in the Feeding of Backyard Broilers." Applied Sciences 13, no. 13 (2023): 7428. http://dx.doi.org/10.3390/app13137428.

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There are several by-products obtained in agricultural systems that can contribute to small-scale production systems within backyards, in this sense, the production of oyster mushrooms (Pleurotus ostreatus) has been integrated into the rural family economy in Mexico. After harvesting the fruiting bodies, the remainder is known as sold-out substrate, this by-product has been destined for other agricultural uses such as: medium for seedlings, vermiculture or fertilizer; however, there are studies where it has been used in the diet of bovine cattle. In this study, the effects of sold-out substrat
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36

Ndung’u, S., V. Ogema, M. Thiga, and P. Wandahwa. "Factors influencing the adoption of climate smart agriculture practices among smallholder farmers in Kakamega County, Kenya." African Journal of Food, Agriculture, Nutrition and Development 23, no. 10 (2023): 24759–82. http://dx.doi.org/10.18697/ajfand.125.23400.

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Most of Kenya’s population’s livelihoods and agri-food systems rely on rain-fed agriculture making them vulnerable to climate change. The adverse effects of climate change on agricultural production have necessitated the promotion of Climate-Smart Agriculture (CSA) technologies. Climate-Smart Agriculture (CSA) technologies help guide actions needed to transform and reorient agricultural systems to effectively support development and ensure food security by increasing farmers’ resilience to climate change. This study sought to ascertain the current state of CSA practices among Kakamega County's
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37

Boag, Brian. "Vermiculture Technology. Earthworms, Organic Wastes and Environmental Management. By C. A. Edwards, N. Q. Aarancon and R. Sherman. Boca Raton, FL, USA: CRC Press (2010), pp. 601, £76.99. ISBN 978-1-4398-0987-7." Experimental Agriculture 48, no. 1 (2011): 148–49. http://dx.doi.org/10.1017/s0014479711000925.

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Nilsson, Jon. "Vermiculture Technology: Earthworms, Organic Wastes, and Environmental Management. Edited by Clive A. Edwards, Norman Q. Arancon, and Rhonda Sherman. Boca Raton (Florida): CRC Press (Taylor & Francis Group). $119.95. xxi + 601 p.; ill.; author and subject indexes. ISBN: 978‐1‐4398‐0987‐7. 2011." Quarterly Review of Biology 86, no. 4 (2011): 358–59. http://dx.doi.org/10.1086/662465.

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39

Merzlov, S. V., and P. V. Kovtun. "BODY WEIGHT OF CHERAX QUADRICARINATUS AND INDICATORS OF HS-GROUPS IN THEIR LIVER AFTER INCLUSION OF DIFFERENT DOSES OF VERMICULTURE BIOMASS IN THE DIETS." Naukovì Dopovìdì Nacìonalʹnogo Unìversitetu Bìoresursiv ì Prirodokoristuvannâ Ukraïni 2024, no. 1/107 (2024). http://dx.doi.org/10.31548/dopovidi.1(107).2024.016.

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Crustacean products have a positive dynamic demand among the population of the country. Crayfish meat is an effective source of essential amino acids and other biologically active substances for the human body. An important element in the technology of crayfish farming is their feeding. The growth rate of crayfish Сherax quadricarinatus depends on the content and origin of protein in their diets. An effective source of protein for crayfish can be the biomass of a hybrid of red California worms. However, the issue of determining the effectiveness of using vermiculture biomass grown on a substra
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Rukhiran, Meennapa, and Paniti Netinant. "IoT Architecture based on Information Flow Diagram for Vermiculture Smart Farming Kit." TEM Journal, November 27, 2020, 1330–37. http://dx.doi.org/10.18421/tem94-03.

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IoT technology is widely applied to many areas, including agriculture. The smart farming design and implementation deal with farm operations and management effectively. The aim of this research enables supporting a vermiculture smart farming kit based on IoT technology. The layered architecture design is represented to support the deployment of sensors, networks, monitoring systems, data collections, and watering decision system. Information flow diagram is proposed to improve how the web application of our smart kit system can implement based on the system requirements. The evaluations of the
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"Genetic features of the formed population of the genus Eisenia worms." Biointerface Research in Applied Chemistry 10, no. 3 (2020): 5548–51. http://dx.doi.org/10.33263/briac103.548551.

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It is known that molecular genetic methods can provide researchers with new, more accurate means for differentiating species of earthworms and determining phylogenetic distances among them. Therefore, using neutral molecular markers, ISSR (Inter-Simple Sequence Repeat) examined the internal genetic polymorphism of genus Eisenia rainworms from the vermiculture array of the Biotechnology Department of the Ukrainian State Chemical Technology University, the parent forms of which were irradiated with an LGN-208B laser for different temporary exposures and cultivated on different organic substrates
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Dyudyayeva, O. "WAYS TO IMPROVE THE ENVIRONMENT AND FOOD SECURITY THROUGH THE IMPLEMENTATION OF INNOVATIVE TECHNOLOGIES." Norwegian Journal of development of the International Science 156 (May 12, 2025). https://doi.org/10.5281/zenodo.15397777.

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<strong>Abstract</strong> Food safety and the state of the environment are two interrelated problems of today. Traditional technologies used in agriculture and the processing industry, in particular, lead to the ingress of harmful impurities and substances into food products or the ingress of them and production waste into the environment. The food industry has a negative impact on the environment, polluting atmospheric air, water and land resources with harmful emissions and production waste, leading to soil degradation. At the same time, the food industry is a link in the food chain and, due
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Sinha, Rajiv K., George Hahn, Pancham K. Singh, Ravindra K. Suhane, and Allam Anthonyreddy. "Organic Farming by Vermiculture: Producing Safe, Nutritive and Protective Foods by Earthworms (Charles Darwin's Friends of Farmers)." September 9, 2011. https://doi.org/10.5281/zenodo.8106.

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Agrochemicals which ushered in the &lsquo;green revolution&rsquo; in the 1950-60&rsquo;s, boosted food productivity, but at the cost of environment and society. It increased food production but also destroyed the &lsquo;physical, chemical and the biological properties&rsquo; of soil over the years of use. It killed the beneficial soil organisms and also impaired the power of &lsquo;biological resistance&rsquo; in crops making them more susceptible to pests and diseases. No farmland of world is free of toxic pesticides today. Over the years it has worked like a &lsquo;slow poison&rsquo; for the
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Medina, Melissa. "Assessment of the Growth and Yield of Radish (Raphanus sativus) under the Influence Varying Levels of Vermicast." QUEST: Journal of Multidisciplinary Research and Development 3, no. 1 (2024). http://dx.doi.org/10.60008/thequest.v3i1.136.

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The study was to determine the influence of different volumes of Vermicast on the growth performance of radish. The treatments comprised different quantities of Vermicast – IF, Vermi-2T, Vermi-4T, Vermi-6T, and Vermi-0T. This study implemented a Randomized Complete Block Design (RCBD) comprising three (3) blocks and five (5) treatments. The research was conducted at the Gabaldon Campus of Nueva Ecija University of Science and Technology, located in Gabaldon, Nueva Ecija. In terms of growth, Vermi-4T has the longest length of leaves and the highest number of leaves, while Vermi-2T has the short
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Sagdeeva, О., G. Krusir, A. Tsykalo, Т. Shpyrко, and H. Leuenberger. "COMPOSTING OF ORGANIC WASTE WITH THE USE OF MINERAL ADDITIVES." Food Science and Technology 12, no. 1 (2018). http://dx.doi.org/10.15673/fst.v12i1.842.

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Aerobic composting is one of the best available technologies for an integrated waste management system in terms of minimizing the anthropogenic impact on the environment, complying with the latest domestic and foreign developments, economic and practical acceptance of the technology. Organic production is rapidly spreading in the world as a holistic system of rational nature management that becomes the basis for the use of modern composting technologies for organic raw materials to obtain a quality product of processing. But composting is characterized by relatively low popularity in compariso
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Козенко, К. Ю. "ТЕОРЕТИЧЕСКИЕ И МЕТОДОЛОГИЧЕСКИЕ АСПЕКТЫ РАЗВИТИЯ ЗЕЛЕНОЙ ЭКОНОМИКИ В МАЛЫХ ГОРОДАХ И СЕЛЬСКИХ ПОСЕЛЕНИЯХ ЮГА РОССИИ". Бизнес. Образование. Право, № 3(52) (8 серпня 2020). https://doi.org/10.25683/volbi.2020.52.319.

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В статье рассмотрены генезис и эволюция понятия зеленой экономики с 1989 г. по настоящее время, особенности его трактовки в научных источниках и документах международных организаций. Рассмотрен зарубежный опыт выработки интегральных показателей для измерения развития зеленой экономики, в частности Green Revenues Index Series британской компании FTSE Russell, детализирующих зеленую экономическую деятельность на уровне корпоративных финансов, и Global Green Economy Index американской компании Dual Citizen LLC, рассматривающих показатели на уровне национальных экономик. Выявлено, что традиционные
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