Submit an Article
Become a reviewer

Search articles for by keywords:
wastewater

Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-01-31
  • Date accepted
    2024-06-03
  • Date published
    2024-07-04

Rationale for a possibility of using humic preparations production waste for wastewater purification from metals (Cd2+, Zn2+, Mg2+, Cu2+) aimed at developing efficient measures on environmental rehabilitation

Article preview

Results of studying optimal conditions and parameters for afterpurification of underspoil waters from metal ions using humic acids production waste are presented with a view to develop the efficient measures on environmental rehabilitation of ecosystems disturbed by the development of copper pyrite deposits. The influence of contact time and waste dosage on the purification process was analysed, changes in the pH of wastewater and its impact on the growth and development of plants were studied. The key factors were identified allowing to achieve the efficiency of the purification process – the optimal contact time in the range from 120 to 180 min and waste dosage of 10 g/l. The study showed that the use of waste resulted in a neutral pH value of 7.03 compared to the initial pH value of 5.95. It was ascertained that the use of iron-magnesium production waste in combination with waste from humic preparations production made it possible to achieve the MPC of commercial fishing importance (with the exception of magnesium). Wastewater after the afterpurification process with high magnesium concentrations did not have a stimulating effect on the growth and development of Lepidium sativum L. plants. From biotesting results it can also be stated that there is no negative impact on the growth and development of Lepidium sativum L. The results obtained indicate a potentiality of using afterpurified wastewater for watering plants in the process of initiating the environmental rehabilitation of the disturbed ecosystems.

How to cite: Antoninova N.Y., Sobenin A.V., Usmanov A.I., Gorbunov A.A. Rationale for a possibility of using humic preparations production waste for wastewater purification from metals (Cd2+, Zn2+, Mg2+, Cu2+) aimed at developing efficient measures on environmental rehabilitation // Journal of Mining Institute. 2024. Vol. 267. p. 421-432. EDN NYTBJH
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-05-02
  • Date accepted
    2024-06-03
  • Date published
    2024-07-04

Iron ore tailings as a raw material for Fe-Al coagulant production

Article preview

The paper presents the results of experimental research into the recovery of Fe-Al coagulant from iron ore tailings (IOTs). The variables investigated in the laboratory tests included sulphuric acid concentration, temperature, leaching time, solid/liquid phase ratio (S:L) and the presence of stirring. The experiment determined the composition of the coagulant and the solid residue after leaching. The maximum iron content in the solution after leaching was obtained using 40 % H2SO4 at a temperature of 100 °C (or with stirring at 75 °C) and a contact time of 60 minutes. In this case, the iron yield was at the level of 25 % of the total content in the iron ore tailings. Chemical analysis of the solution obtained after leaching showed Fe and Al sulphate contents of 11 and 2 % respectively. In the next step, the efficiency of the coagulant was evaluated on model solutions of colour. The experimental results showed that the coagulant obtained from the iron ore tailings can be used for wastewater treatment in a wide pH range from 4 to 12 pH units. The solid residue after leaching is a fine-grained powder rich in silica, which can potentially be used as an artificial raw material in the construction industry. The research carried out in this thesis has shown that the extraction of coagulants from iron ore tailings can be considered as a way to extend the production chain of iron ore mining and to minimise the amount of tailings to be stored in tailing ponds. The technical solution presented in this work allows to comprehensively solve the problem of environmental protection by creating new target products for wastewater treatment from IOTs.

How to cite: Matveeva V.A., Chukaeva M.A., Semenova A.I. Iron ore tailings as a raw material for Fe-Al coagulant production // Journal of Mining Institute. 2024. Vol. 267. p. 433-443. EDN ASOYNX
Editorial
  • Date submitted
    2024-07-04
  • Date accepted
    2024-07-04
  • Date published
    2024-07-04

Environmental safety and sustainable development: new approaches to wastewater treatment

Article preview

In 2015, the UN member states adopted the 2030 Agenda for Sustainable Development. Despite significant progress, billions of people – one in three people – do not have access to safe, clean drinking water. Modern wastewater treatment methods include a wide range of biological, chemical and physical processes, each having its own advantages and applications. This thematic volume considers the latest achievements in wastewater treatment technologies, wastewater purification and treatment as well as their potential applications at the local level. The problem of surface water pollution is relevant for all regions of the world. One of the largest sources of pollutants is mining and processing industry. The first stage in the development of wastewater treatment technologies is monitoring of anthropogenically modified water bodies.

How to cite: Pashkevich M.A., Danilov A.S., Matveeva V.A. Environmental safety and sustainable development: new approaches to wastewater treatment // Journal of Mining Institute. 2024. Vol. 267. p. 341-342.
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-04-22
  • Date accepted
    2024-06-13
  • Date published
    2024-07-04

Comprehensive utilization of urban wastewater sludge with production of technogenic soil

Article preview

The article presents the analysis of the existing approach to wastewater sludge treatment and justifies the selection of the most promising management technology that allows maximum use of wastewater sludge resource po-tential. To obtain a useful product (biocompost) suitable for use as part of technogenic soil, experimental studies of aerobic stabilization of organic matter of dehydrated urban wastewater sludge with the addition of other waste by using passive composting technology were carried out. The technology is included in the list of best available technologies (BAT). The selection of the most optimal components for the mixture was based on the results of determining the C and N content, humidity and pH of the components used that ensured the composting of organic waste. The results of laboratory studies of the obtained biocompost according to the main agrochemical and sanitary-epidemiological indicators are presented. Testing was carried out according to the criterion of toxicity of the biocompost’s aqueous extract. The assessment of the technogenic soil was performed when using biocompost in its composition for compliance with existing hygienic requirements for soil quality in the Russian Federation. Based on the results of the vegetation experiment, optimal formulations of the technogenic soil were determined, i.e., the ratio of biocompost and sand, under which the most favorable conditions for plant growth are observed according to a combination of factors such as the number of germinated seeds, the maximum height of plants and the amount of biomass. The conducted research makes it possible to increase the proportion of recycled urban wastewater sludge in the future to obtain soils characterized by a high degree of nutrient availability for plants and potentially suitable for use in landscaping, the biological stage of reclamation of technogenically disturbed lands, as well as for growing herbaceous plants in open and protected soil.

How to cite: Bykova M.V., Malyukhin D.M., Nagornov D.O., Duka A.A. Comprehensive utilization of urban wastewater sludge with production of technogenic soil // Journal of Mining Institute. 2024. Vol. 267. p. 453-465. EDN IAYJKS
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2023-03-20
  • Date accepted
    2023-09-20
  • Date published
    2023-10-27

Experimental simulation of a system of swamp biogeocenoses to improve the efficiency of quarry water treatment

Article preview

Mining activities were producing large quantities of wastewater contaminated with nitrogen compounds and metals. With insufficient treatment, these pollutants are released into the environment and have a toxic effect on living organisms. Constructed wetlands are now widely adopted as wastewater treatment systems because of the combination of physical, chemical and biological processes for the removal of contaminants. In this study, an experimental system was modeled to improve the efficiency of the quarry wastewater treatment of a mining enterprise by sharing the higher aquatic vegetation: broad-leaved cattail (Typha latifolia L.), common water-plantain (Alisma plantago-aquatica L.), jointed rush (Juncus articulatus L.) and lower aquatic vegetation (Chlorella sp.). Concentrations of nitrogen compounds and metal were analyzed both in the model and in the treated solution of quarry wastewater for calculation of treatment efficiency. Concentrations of the pollutants in the tissues of the higher aquatic vegetation were analyzed to assess the accumulation capacity and efficiency of translocation of the pollutants. The results of the experimental study showed the practical applicability of the constructed integrated treatment system to reduce the concentration of pollutants in quarry wastewater, as well as increasing the efficiency of treatment by introducing lower aquatic vegetation into the system

How to cite: Pashkevich M.A., Korotaeva A.E., Matveeva V.A. Experimental simulation of a system of swamp biogeocenoses to improve the efficiency of quarry water treatment // Journal of Mining Institute. 2023. Vol. 263. p. 785-794. EDN QJYDIH
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2022-10-31
  • Date accepted
    2023-03-02
  • Date published
    2023-12-25

Lightweight ash-based concrete production as a promising way of technogenic product utilization (on the example of sewage treatment waste)

Article preview

The study is devoted to the development of a method for the technogenic raw materials utilization. Special attention is paid to the prospect of involving products based on them in the production of new building materials. The results of Russian and foreign studies on the reuse of wastes, such as phosphogypsum, metallurgical slag, waste from municipal and industrial wastewater treatment, etc., in the building materials industry are considered. It has been established that the use of incinerated sewage sludge ash in construction is a promising direction in terms of environmental and economic efficiency. The research confirmed the compliance of the lightweight ash-based concrete components to the regulatory documentation requirements for a number of indicators. As a result of the research, the composition of the raw mixture for the lightweight concrete production with incinerated sewage sludge ash as a replacement for a part of the cement has been developed. In terms of parameters, the developed concrete corresponds to standard lightweight concrete, marked in accordance with the regulatory documents of the Russian Federation as D1300 (density not less than 1.3 g/cm3), Btb2 (flexural strength not less than 2 MPa), M200/B15 (compressive strength not less than 15 MPa). Lightweight ash-based concrete is suitable for use in construction, repair of roads and improvement of urban areas.

How to cite: Litvinova T.E., Suchkov D.V. Lightweight ash-based concrete production as a promising way of technogenic product utilization (on the example of sewage treatment waste) // Journal of Mining Institute. 2023. Vol. 264. p. 906-918. EDN LMZCWZ
Editorial
  • Date submitted
    2023-04-25
  • Date accepted
    2023-04-25
  • Date published
    2023-04-25

Ecological security and sustainability

Article preview

In 2015, UN Member States adopted the 2030 Agenda for Sustainable Development, aimed at balancing initiatives by the world community and individual countries in the environmental, social, and economic spheres. The global sustainable development goals are to promote the well-being of the world population, preserve the planet’s resources, and maintain ecological security, which is vital in the age of the rapid industrial growth and ever-increasing anthropogenic pressure on the environment. For the successful achievement of sustainability goals in the manufacturing sector, integrated measures should be undertaken for monitoring and assessing the technogenic impact of industrial facilities. Additionally, it is necessary to develop environmentally-friendly technologies in the fields of gas and water treatment, land reclamation, and waste disposal. Therefore, fundamental and applied research in these related spheres is of particular importance. Currently, environmental monitoring of all components of the environment, along with anthropogenic objects and processes, receives considerable attention, which is determined by the vector of development in science and technology. In this regard, the latest innovations in green technology in this area are becoming increasingly significant.

How to cite: Pashkevich M.A., Danilov A.S. Ecological security and sustainability // Journal of Mining Institute. 2023. Vol. 260. p. 153-154.
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2022-10-28
  • Date accepted
    2023-03-02
  • Date published
    2023-04-25

Assessment of the possibility of using iron-magnesium production waste for wastewater treatment from heavy metals (Cd2+, Zn2+, Co2+, Cu2+)

Article preview

Relevant problems associated with treatment of industrial wastewater from heavy metal ions are considered. Due to industrial development, the amount of wastewater increases as well as the risks of heavy metals getting into surface and groundwater, accumulating in water bodies and becoming aggressive environmental pollutants, which affect the animal and human organisms. To assess the possibility of extracting metal ions (Cd 2+ , Zn 2+ , Co 2+ , Cu 2+ ) from industrial wastewater and their further treatment, studies were carried out on redistribution of heavy metals in the “wastewater – waste” system using iron-magnesium production waste. Samples of the investigated waste weighing 0.1; 0.2; 0.5; 1; 1.5; 2 g were taken for wastewater volume of 50 ml per each subsample. Contact time varied from 5 to 180 min, waste fraction was 1 mm. The interaction process showed that the waste efficiently removes metal ions (Cd 2+ , Zn 2+ , Co 2+ , Cu 2+ ) from industrial wastewater. The efficiency of removing a pollutant from the solution depends on the weight of the waste subsample, initial concentration of metal ions, and contact time.

How to cite: Antoninova N.Y., Sobenin A.V., Usmanov A.I., Shepel K.V. Assessment of the possibility of using iron-magnesium production waste for wastewater treatment from heavy metals (Cd2+, Zn2+, Co2+, Cu2+) // Journal of Mining Institute. 2023. Vol. 260. p. 257-265. DOI: 10.31897/PMI.2023.34
Geoecology and occupational health and safety
  • Date submitted
    2014-10-27
  • Date accepted
    2014-12-24
  • Date published
    2015-08-25

Application of morphological analysis to policy formulation for wastewater treatment

Article preview

Wastewater treatment, water protection and conservation, and rational water use are impor-tant elements of water management. The goals of water management are achieved by implementation of a set of appropriate policy measures creating a coherent policy. However; policy formulation is a complex decision-making problem involving a large number of stakeholders and many possible measures. The objective of this work is to implement a method for facilitating decision-making and identify suitable policy measures for the location and operation of wastewater treatment facilities. This type of problem is very complex and is usually formulated with many contradictory requirements. It is an example of a socalled wicked problem, for which the application of traditional multi-objective decision-making approaches has clear limitations. In this paper, Morphological Analysis (MA), an approach applicable to wicked problems, is used to structure policy measures relevant to the problem of the location and operation of waste-water treatment facilities. The application of MA enables identification and selection of stake-holders, decision-making criteria and policy measures to tackle legal, financial, technical, social and environmental aspects of wastewater treatment.

How to cite: Buzuku S., Kraslawski A. Application of morphological analysis to policy formulation for wastewater treatment // Journal of Mining Institute. 2015. Vol. 214. p. 102-108.