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Chloride content of street cleaning waste and its potential environmental impact

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
According to the data of the Central Statistical Office for 2017, the average amount of municipal waste generated per capita is 486 kg. Poland ranks last but one in terms of the amount of municipal waste generated. About 56% of municipal waste is processed, but still about 40% is landfilled. They may contain chlorides, especially those from the winter period, result- ing from the use of deicing agents. Chlorides cause salinity of surface and ground waters and soil salinity, which in turn leads to deterioration of water purity and a decrease in biodiversity of aquatic organisms, changes in the microbiological structure and increased toxicity of metals. Chlorides also damage road surfaces and bridges, corrosion of plumbing pipes. Once the chlorine-containing sweepers are deposited in a landfill, this waste may contribute to an increase in chemical aggressiveness, which is important in the design of anti-filtration barriers, and in the rehabilitation of contaminated land and soil. The level of water and soil salinity has a significant impact on the critical infrastructure, especially in terms of water supply - the risk of corrosion of pipes and their decline in species biodiversity. An important role in the critical infrastructure is played by the storage of dust muds - the risk of failure of security measures in storage yards. Therefore, it is very important to determine the salinity level in this stored waste. The salinity level of street sweeping waste from different street locations is not commonly studied. Therefore, such a study was conducted for a midsized city. The study shows that the highest chloride concentrations in street and sidewalk sweeping waste are found around manholes and the lowest concentrations are found on sidewalks. The aim of the research is to determine the amount of chlorides in sweepings in the annual cycle to determine the potential risk associated with their impact on selected aspects of the environment.
Rocznik
Strony
85--90
Opis fizyczny
Bibliogr. 32 poz.
Twórcy
  • The John Paul II Catholic University of Lublin, Faculty Natural Sciences and Health, ul. Konstantynów 1 H, 20-708 Lublin, Poland,
Bibliografia
  • [1] European Waste Catalogue 2014/955/EU: Commission Decision of 18 December 2014 amending Decision 2000/532/EC on a list of wastes pursuant to Directive 2008/98/EC of the European Parliament and of the Council Text with EEA relevance (OJ L 370, 30.12.2014, 44-86)
  • [2] Kryłów, M., & Generowicz, A. (2019). Impact of Street Sweeping and Washing on the PM10 and PM2.5 Concentrations in Cracow (Poland). Rocznik Ochrony Środowiska, 21, 691-711.
  • [3] Norman, M.,&Johansson, C. (2006). Studies of some measures to reduce road dust emissions from paved roads in Scandinavia. Atmos Environ., 40, 6154-6164.
  • [4] Ciuła, J. (2021). Modeling the migration of anthropogenic pollution from active municipal landfill in groundwaters. Architecture Civil Engineering Environment, 14(2), 81-90, DOI: 10.21307/ACEE-2021-017.
  • [5] Chow, J.C., Watson, J.G., Egami, R.T., Frazier, C.A., &Lu, Z. (1990). Evaluation of regenerative air vacuum stret sweeping on geological contributions to PM10. Journal of Air and Waste Management, 40, 1134-1142.
  • [6] Vaze, J., &Chiew, FHS.(2002). Experimental study of pollutant accumulation on an urban road surface. Urban Water, 4, 379-389.
  • [7] Aldrin, M., HobækHaff, I., & Rosland, P. (2008). The effect of salting with magnesium chloride on the concentration of particular matter in a road tunnel. Atmospheric Environment, 42, 1762-1776.
  • [8] Chang, Y-M., Chou, C-M., Su, K-T., &Tseng, C-H. (2005). Effectiveness of street sweeping and washing for controlling ambient TSP. Atmosphere Environment, 39, 1891-902.
  • [9] Amato, F., Querol, X., Alastuey, A., Pandolfi, M., Moreno, T., Gracia, J., & Rodriguez, P. (2009). Evaluating urban PM10 pollution benefit induced by street cleaning activities. Atmospheric Environment, 43, 4472-4480.
  • [10] Amato, F., Querol, X., Johansson, C., Nagl, C., Alastuey, A., & Alastuey A. (2010). A review on the effectiveness of street sweeping, washing and dust suppressants as urban PM control methods. Science of the Total Environment, 408, 3070-3084.
  • [11] Acosta, J.A., Gabarrón, M., Faz, A., Martínez- Martínez, S., Zornoza, R., & Arocena, J.M. (2015). Influence of population density on the concentration and speciation of metals in the soil and street dust from urban areas. Chemosphere, 13, 328-337
  • [12] Gaska, K., Generowicz, A., Lobur, M., Jaworski, N., Ciuła, J., & Mzyk, T. (2019). Optimization of Biological Wastewater Treatment Process by Hierarchical Adaptive Control. Vth International Conference Perspective Technologies and Methods in Mems Design, MEMSTECH, 119-122, DOI: 10.1109/MEMSTECH.2019.881.
  • [13] Zdybek, I. (2005). Effect of chloride ions on the efficiency of biological defosfation of wastewater. Environmental Protection, 27(2), 13-17.
  • [14] Gronba-Chyła, A., & Generowicz A. (2020). Municipal waste fraction below 10 mm and possibility of its use in ceramic building materials. Przemysł Chemiczny, 99/9, 1000-1003.
  • [15] Zhou,Y., Huang, M., Deng, Q., & Cai, T. (2017). Combination and performance of forward osmosis and membrane distillation (FO-MD) for treatment of high salinity landfill leachate. Desalination, 420, 99-105.
  • [16] https://www.gddkia.gov.pl/pl/3013/Winter-maintenance-road (accessed 19.04.2021)
  • [17] Ordinance of the Minister of Environment of 27 October 2005 on the types and conditions of using means that can be used on public roads, streets and squares (Journal of Laws of 2005, No. 230, item 1960)
  • [18] Generowicz, N., Kulczycka, J., Partyka, M., & Saługa, K. (2021). Key Challenges and Opportunities for an Effective Supply Chain System in the Catalyst Recycling Market-A Case Study of Poland. Resources, 10(2),13, https://doi.org/10.3390/resources10020013.
  • [19] Mazur, N. (2015). Effects of road deicing salt on the natural environment. Engineering and Environmental Protection, 18(4), 449-458.
  • [20] Bäckström, M., Karlsson, S., Bäckman, J., Folkeson, L., &Lind, B. (2004). Mobilisation of heavy metals by deicing salts in a roadside environment.Water Research, 38, 720-732.
  • [21] Regulation of the Minister of Maritime Affairs and Inland Navigation of 11 October 2019 on the criteria and method of assessing the status of groundwater bodies (Dz.U.2019.2148).
  • [22] Regulation of the Minister of Environment of 21 July 2016 on the method of classification of the state of surface water bodies and environmental quality standards for priority substances (Journal of Laws 2016, item 1187).
  • [23] Safdar, H., Amin, A., Shafiq, Y., Ali, A., Yasin, R., Shoukat, A., Hussan, M., &Sarwar, M.I. (2019). A review: Impact of salinity on plant growth. Nature and Science17(1), 34-38.
  • [24] Kuosa, H., Ferreira, R.M., Holt, E., Leivo, M., & Vesikar, E. (2014). Effect of coupled deterioration by freeze-thaw, carbonation and chlorides on concrete service life. Cement and Concrete Composites, 47, 32-40.
  • [25] Generowicz, A., Kowalski, Z., Banach, M., & Makara, A. (2012). A Glance at the World. Waste Management, 32(2), 349-350.
  • [26] Sławiński, J., Gołąbek, E., Senderak, G. (2014). Influence of transport pollution on soil and cultivated vegetation of the wayside. Ecological Engineering,40, 137-144.
  • [27] Polish Standard PN-93/Z-15008/01 Municipal solid waste. Testing of fuel properties. General provisions.
  • [28] Polish Standard PN-93/C-87071 Final (laboratory) sample. General guidelines.
  • [29] Polish Standard PN-ISO 9297:1994 Water quality - Determination of chlorides - Method of titration with silver nitrate in the presence of chromate as indicator (Mohr method).
  • [30] Hajduga, G., Generowicz, A., & Kryłów, M. (2019). Human health risk assessment of heavy metals in road dust collected in Cracow. 11th Conference on Interdisciplinary Problems in Environmental Protection and Engineering, EKO-DOK 2019, Vol. 100, Art. No 00026; DOI: 10.1051/e3sconf/201910000026.
  • [31] Ciula, J., Kozik, V., Generowicz, A., Gaska, K., Bak, A., Pazdzior, M., & Barbusinski, K. (2020). Emission and Neutralization of Methane from a Municipal Landfill-Parametric Analysis. Energies 13(23), DOI: 10.3390/en13236254.
  • [32] Generowicz, N. (2020). Analysis of emission of pollutants from selected heat sources for a single-family building. Przemysł Chemiczny 99/9, 1309-1311, DOI: 10.15199/62.2020.9.7.
Uwagi
PL
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-27b6bc47-c944-4089-879b-05990fe896ec
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