Vacuum Pneumatic Transport for Industrial and Utility Components
https://doi.org/10.21122/2227-1031-2021-20-2-142-149
Abstract
Waste generation in the life of people and enterprises is an inevitable process today. The level of utilization of municipal waste has increased on average to 23 % in Belarus. The paper provides an assessment of the existing systems for the collection and disposal of waste solid household items based on technological stages (preparation of waste for loading into a garbage collection vehicle; organization of temporary storage of waste in households, at enterprises; collection and removal of waste from the territories of households, organizations and enterprises; neutralization, processing and recycling of waste). The consequences of untimely collection of solid household and industrial waste are considered in the paper. The paper presents the factors that have a harmful effect on the human environment and the ecology of the territories of settlements and enterprises. An analysis of the effectiveness of the timely removal of such components in the systems of municipal services of cities and enterprises as an important component providing social, economic and environmental significance is given in the paper. At the present stage of the development of technology and available technologies, one of the most rational and economically justified ways of delivering waste to the areas for their sorting and processing is vacuum transportation using pipeline transport. Its application is justified for industrial zones and settlements with high and medium population density. Moreover, such a pipeline can be laid next to existing pipeline and other transport communications.
Keywords
About the Authors
A. N. PekhotaBelarus
Gomel
B. M. Khroustalev
Belarus
Address for correspondence: Khroustalev Boris M. – Belarusian National Technical University, 65, Nezavisimosty Ave., 220013, Minsk, Republic of Belarus. Tel.: +375 17 293-93-52 tgv_fes@bntu.by
V. D. Akeliev
Belarus
Minsk
A. A. Mikhalchenko
Belarus
Gomel
References
1. Mohany A., Sachedina K. (2018) A Review of Pipeline Monitoring and Periodic Inspection Methods. Pipeline Science and Technology, 2 (3), 187–201. https://doi.org/10.28999/2514-541x-2018-2-3-187-201.
2. Pavlou D. G. (2018) Design Aspects for Connections, Supports, and Expansion Loops in Pipelines Made from Composite Materials. Pipeline Science and Technology, 2 (2), 147–158. https://doi.org/10.28999/2514-541x-2018-2-2-147-158.
3. Beldeeva L. N., Lazutkina Yu. S., Komarova L. F. (2006) Environmentally Sound Management of Waste. Barnaul, Azbuka Publ. 179 (in Russian).
4. Dabaeva M. D., Fedorov I. I., Kulikov A. I. (2001) Eco-friendly Waste Disposal. Ulan-Ude, Publishing House of Buryat State Academy of Agriculture. 94 (in Russian).
5. Gonopol'skii A. M., Pokusaev B. G., Zinyakina E. V., Nekrasov D. A., Khramtsov D. P. (2016) Pulp Processing of Food Waste. Moscow, Pero Publ. 126 (in Russian).
6. Sokolov E. M., Moskvichev Yu. A., Frolova E. A., Yamanina N. S., Filippova O. P. (2006) Disposal of Production and Consumption Waste. Yaroslavl, Publishing House of Yaroslavl State Technical University. 388 (in Russian).
7. Тrofimenko Yu. V., Prosov S. N., Komkov V. I. (2007) Transport Management Model of Household Solid Waste. EkoReal, (2), 25–32 (in Russian).
8. Waste Disposal in Kruunuvuorenranta. Available at: http://www.metrotaifun.com/automatic_solid_waste_collection_system/ru/. (Accessed 3 October 2020) (in Russian).
9. Tsygankov A. P. (1985) Disposal of Solid Waste. Moscow, Stroyizdat Publ. 336 (in Russian).
10. Vorob'eva R. P., Merzlaya G. E., Dodolina V. T. [et al.] (2000) Environmentally Friendly Waste Management. Barnaul, Publishing House of Altai State University. 554 (in Russian).
11. Raclavský J. (2011) Problematika Navrhování Venkovních Podtlakových Systémů Stokových Sítí [Problems of Design of Vacuum Sewerage Systems Outside Buildings]. Brno, VITIUM. 35 (in Czech).
12. Khroustalev B. M., Kislov N. V. (1998) Pneumatic Transport. Minsk, LLC “Informatsionnaya Sluzhba Nedvizhimosti”. 452 (in Russian).
13. Nezdoyminov V. I., Rozhkov V. S., Grigorenko N. I., Zavorotnyi D. V. (2013) Mathematical Description of the Gas-Liquid Structure of a Flow in a System for Transporting Liquid under Vacuum. Motrol. Commision of Motorization and Energeticsin Agriculture. 15 (6), 125–132 (in Russian).
Review
For citations:
Pekhota A.N., Khroustalev B.M., Akeliev V.D., Mikhalchenko A.A. Vacuum Pneumatic Transport for Industrial and Utility Components. Science & Technique. 2021;20(2):142-149. (In Russ.) https://doi.org/10.21122/2227-1031-2021-20-2-142-149