The structural and technical solution for precipitation moisture reducing

One of the main problems in Russia is an acute shortage of free land for the disposal of solid domestic waste and sewage sludge. The treatment and removal of precipitation is a major problem in wastewater treatment. Urban sewage treatment plants were built on model projects in the 1970s, in which na...

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Main Authors: Dzhumagulova Nazira, Smetanin Vladimir, Dinh Dap Nguyen
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/17/e3sconf_tpacee2019_04002.pdf
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spelling doaj-5b6ba3dfc5dc445ba18533b11bcad0552021-02-02T08:44:27ZengEDP SciencesE3S Web of Conferences2267-12422019-01-01910400210.1051/e3sconf/20199104002e3sconf_tpacee2019_04002The structural and technical solution for precipitation moisture reducingDzhumagulova NaziraSmetanin Vladimir0Dinh Dap Nguyen1Rusian State Agrarian University - Moscow Timiryazev Agricultural AcademyMoscow State University of Civil EngineeringOne of the main problems in Russia is an acute shortage of free land for the disposal of solid domestic waste and sewage sludge. The treatment and removal of precipitation is a major problem in wastewater treatment. Urban sewage treatment plants were built on model projects in the 1970s, in which natural dehydration on silt areas was provided. Sludge dehydration on silt areas of sewage treatment plants of medium and high capacity is impossible due to the lack of free land areas. The major drawback of this method is the rejection of significant land areas, contamination of the geo-environment, the release of pollutants into the air, as well as the loss of land resources. In sludge processing and utilization, it is necessary to achieve minimum damage to the environment and to increase the possibility of using it on behalf of the national economy. The adoption of new technology and processing of sediments allowed to reduce the initial amount of precipitation by 4 times and to reduce the humidity from 97% to 83%, the amount of sludge formed at the treatment facilities will decrease by 6 times (from 300 m3/day to 50 m3/day) as a result of dehydration of the filter presses, the will be a reduction in the surface concentrations of pollutants in the atmosphere from 5,4 tons per year to 2,9 tons per year.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/17/e3sconf_tpacee2019_04002.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Dzhumagulova Nazira
Smetanin Vladimir
Dinh Dap Nguyen
spellingShingle Dzhumagulova Nazira
Smetanin Vladimir
Dinh Dap Nguyen
The structural and technical solution for precipitation moisture reducing
E3S Web of Conferences
author_facet Dzhumagulova Nazira
Smetanin Vladimir
Dinh Dap Nguyen
author_sort Dzhumagulova Nazira
title The structural and technical solution for precipitation moisture reducing
title_short The structural and technical solution for precipitation moisture reducing
title_full The structural and technical solution for precipitation moisture reducing
title_fullStr The structural and technical solution for precipitation moisture reducing
title_full_unstemmed The structural and technical solution for precipitation moisture reducing
title_sort structural and technical solution for precipitation moisture reducing
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description One of the main problems in Russia is an acute shortage of free land for the disposal of solid domestic waste and sewage sludge. The treatment and removal of precipitation is a major problem in wastewater treatment. Urban sewage treatment plants were built on model projects in the 1970s, in which natural dehydration on silt areas was provided. Sludge dehydration on silt areas of sewage treatment plants of medium and high capacity is impossible due to the lack of free land areas. The major drawback of this method is the rejection of significant land areas, contamination of the geo-environment, the release of pollutants into the air, as well as the loss of land resources. In sludge processing and utilization, it is necessary to achieve minimum damage to the environment and to increase the possibility of using it on behalf of the national economy. The adoption of new technology and processing of sediments allowed to reduce the initial amount of precipitation by 4 times and to reduce the humidity from 97% to 83%, the amount of sludge formed at the treatment facilities will decrease by 6 times (from 300 m3/day to 50 m3/day) as a result of dehydration of the filter presses, the will be a reduction in the surface concentrations of pollutants in the atmosphere from 5,4 tons per year to 2,9 tons per year.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/17/e3sconf_tpacee2019_04002.pdf
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