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Wyszukujesz frazę "mine drainage" wg kryterium: Temat


Tytuł:
Employment of Ca2+-rich MgO nanoparticles for effective treatment of real acid mine drainage
Autorzy:
Mothetha, Matome
Kebede, Kefeni
Masindi, Vhahangwele
Msagati, Titus
Powiązania:
https://bibliotekanauki.pl/articles/24201027.pdf
Data publikacji:
2023
Wydawca:
Politechnika Wrocławska. Oficyna Wydawnicza Politechniki Wrocławskiej
Tematy:
dewatering of mine
acid mine waters
acid mine drainage
AMD
PHREEQC
odwadnianie kopalni
kwaśne wody kopalniane
Opis:
The efficacy of Ca2+-rich MgO nanoparticles for the effective treatment of real acid mine drainage (AMD) was evaluated. The optimized parameters include the feedstock dosage and contact time. The experimental results were underpinned using state-of-the-art analytical techniques and instruments such as FTIR, HR-FIB/SEM, EDS, XRF, and XRD. The pH REDOX equilibrium (in C language) (PHREEQC) model was also employed to complement experimental results. Optimum conditions were observed to be 45–60 min of mixing time, ≥10 000 mg/dm3 of feedstock dosage, i.e., Ca2+-rich MgO nanoparticles, and ambient temperature and pH. The metal content (Fe3+, Mn2+, Cr2+, Cu2+, Ni2+, Pb2+, Al3+, and Zn2+) embedded in AMD matrices was practically removed (≥99% removal efficacies) whilst the sulfate was also attenuated humongous (≥40%). The PHREEQC predicted metals to exist as multi-valent including carbonates and other chemical complexes. Chemical species in real AMD were predicted to precipitate as metals hydroxides, (oxy)-hydroxides, carbonates, and (oxy)-hydro-sulfates. Henceforth, the use of Ca2+-rich MgO nanoparticles was proved to be effective in the treatment of AMD from coal mining activities. However, a polishing technology will be required to further remove residual sulfates. This could be pursued to recover sulfate in valuable form and then reclaim drinking water for domestic purposes or other defined uses (end-use). This will then be the most effective closed-loop approach in the management of AMD under the circular economy (CE) concept.
Źródło:
Environment Protection Engineering; 2023, 49, 1; 25--44
0324-8828
Pojawia się w:
Environment Protection Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Investigating acid mine drainage potential and alteration properties of Zn-Pb wastes from Görgü (Malatya, Türkiye) region
Autorzy:
Sis, Hikmet
Başaran, Basri
Powiązania:
https://bibliotekanauki.pl/articles/24148654.pdf
Data publikacji:
2023
Wydawca:
Politechnika Wrocławska. Oficyna Wydawnicza Politechniki Wrocławskiej
Tematy:
degradation of waste ore
acid mine drainage
static test
pyrite
Opis:
Acid mine drainage (AMD) is one of the main causes of environmental threats resulting from mining activities, yet efficient characterization and prediction of AMD potential of wastes play an important role in preventing AMD. In this study, the chemical and mineralogical properties of fresh waste samples, collected from waste ponds of the Görgü (Malatya) zinc-lead ore processing plant, were determined and the results were used to explain its AMD potential. Alteration properties of the wastes in water was investigated by monitoring certain properties of the prepared suspension with respect time. Additionally, pyrite concentrate particles were added into the suspensions at certain proportions to evaluate its effect on the AMD generation and alteration. Analysis and test results showed that the raw waste was rich in carbonate and poor in pyritic sulfur, and hence did not have the AMD generation potential. The pH, electrical conductivity, and metal ions concentrations of the suspension medium were determined at regular intervals, and obtained data were found very beneficial to explain the time-dependent behavior of waste in water. After the depletion of liquid in the suspension, the remained solid residuals were chemically and mineralogically analyzed to compare with raw waste. It was concluded that sufficient aeration and stirring of suspension is required for noticeable alteration of the waste.
Źródło:
Physicochemical Problems of Mineral Processing; 2023, 59, 5; art. no. 169357
1643-1049
2084-4735
Pojawia się w:
Physicochemical Problems of Mineral Processing
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Modernizacja systemu odprowadzenia wód opadowych z bezodpływowych niecek na terenie zlikwidowanej kopalni
The modernization of the rainwater drainage system from drainless basin in the area of a liquidated mine
Autorzy:
Chmiela, Andrzej
Czerwiński, Stefan
Kania, Jan
Wysocka, Małgorzata
Powiązania:
https://bibliotekanauki.pl/articles/27323735.pdf
Data publikacji:
2023
Wydawca:
STE GROUP
Tematy:
analiza wielokryterialna
restrukturyzacja zakładów górniczych
likwidacja kopalni
odprowadzenia wód opadowych
podejmowanie decyzji
multi-criteria analysis
restructuring of mining enterprises
liquidation of mine
rainwater drainage
decision-making
Opis:
Wieloletnie wydobycie węgla kamiennego wpływa na deniwelację powierzchni terenu. Analiza zmian warunków hydrogeologicznych i stanu zagrożeń wodnych w zakładach górniczych wymusiły pracę nad nowymi możliwościami oceny i zwalczania zagrożenia wodnego. Obecnie szczególnym przedmiotem zainteresowania są zmiany morfologii terenu, zmiany stosunków wodnych, których najczęściej spotykanym przejawem są zalania i podtopienia stref najbardziej obniżonych oraz zmiana kierunków i natężenia spływu wód powierzchniowych. W publikacji przeprowadzono analizę możliwości obniżenia kosztów likwidacji nieczynnej kopalni przez modernizację funkcjonującego systemu odprowadzenia wód opadowych z bezodpływowych niecek. Analiza ujawniła główne czynniki zakłócające przebieg procesu odwadniania i wynikające z nich najważniejsze problemy. Przy pomocy analizy wielokryterialnej z grupy zaproponowanych technicznych wariantów modernizacji wybrano warianty optymalne.
Many years of hard coal mining affect the leveling of the land surface. The analysis of changes in hydrogeological conditions and the state of water hazards in mining plants forced the mine to work on new ways of assessing and combating water threats. Currently, the special subject of interest is focused on changes in the morphology of the area, changes in water conditions, the most common manifestations of which are flooding and water damages of the most depressed zones as well as changing the direction and intensity of surface water runoff. The publication analyzes the possibility of reducing the costs of liquidation an inactive mine by modernizing the existing rainwater drainage system from drainless basins. The analysis revealed the main factors interferring the dewatering process and the crucial problems resulting from them. Using a multi-criteria analysis, the optimal variants were selected from the group of the proposed technical modernization variants.
Źródło:
Systemy Wspomagania w Inżynierii Produkcji; 2023, 12, 1; 109--119
2391-9361
Pojawia się w:
Systemy Wspomagania w Inżynierii Produkcji
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
The Forming of Acid Mine Drainage Based on Characteristics of Coal Mining, East Kalimantan, Indonesia
Autorzy:
Widayati Amy, Sri
Dani, Umar
Nu'man, Harits
Muslim, Dicky
Nasruddin, Dudi
Nuryahya, Himawan
Nurhasan, Rully
Agustin, Daryl Sarah
Powiązania:
https://bibliotekanauki.pl/articles/27323828.pdf
Data publikacji:
2023
Wydawca:
Polskie Towarzystwo Inżynierii Ekologicznej
Tematy:
coal
sulfur
acid mine drainage
NAPP
net acid production potential
Opis:
As one of the world’s coal producers, Indonesia continues to increase its coal production. The purpose of this study is to identify and analyze the characteristics of coal that has the potential to produce acid mine drainage. The research method is coal mapping and zoning based on formation, observation, and description of coal characteristics, coal sampling, ultimate and proximate testing, and analysis. The results of the study describe the characteristics of coal related to distribution in the early stages of evaluating the potential for acid mine formation, besides that it can be used as a basis for classifying the potential for acid mine drainage which has a high enough total sulfur based on the results of testing on 15 samples. To prevent the reaction to acid mine drainage, it can be based on the geochemical characteristics of coal by constructing a mine reservoir or making water drainage in a mine that is not close to the stockpile, because there is a possibility that water has the potential to form acid mine drainage (AMD) when it comes in contact with coal potential. So that coal does not have the potential to be a source of acid mine drainage.
Źródło:
Journal of Ecological Engineering; 2023, 24, 7; 301--310
2299-8993
Pojawia się w:
Journal of Ecological Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Treatment of Acid Mine Drainage in a Bioelectrochemical System, Based on an Anodic Microbial Sulfate Reduction
Autorzy:
Angelov, Anatoliy
Bratkova, Svetlana
Ivanov, Rosen
Velichkova, Polina
Powiązania:
https://bibliotekanauki.pl/articles/27323817.pdf
Data publikacji:
2023
Wydawca:
Polskie Towarzystwo Inżynierii Ekologicznej
Tematy:
BES
bioelectrochemical system
MFC
microbial fuel cell
MEC
microbial electrolysis cell
ethanol stillage
microbial sulfate reduction
acid mine drainage
heavy metals
sulphate
Opis:
The possibilities of simultaneous removal of sulfates and heavy metals (Cu, Ni, Zn) from acid mine drainage have been investigated in two-section bioelectrochemical system (BES). The used BES is based on the microbial sulfate reduction (MSR) process in the anode zone and abiotic reduction processes in the cathodic zone. In the present study, the model acid mine drainage with high sulfate (around 4.5 g/l) and heavy metals (Cu2+, Ni2+ and Zn2+) content was performed. As a separator in the laboratory, BES used an anionic exchange membrane (AEM), and for electron donor in the process of microbial sulfate reduction in the bioanode zone – waste ethanol stillage from the distillery industry was employed. In this study, the possibility of sulfates removal from the cathodic zone was established by their forced migration through AEM to the anode zone. Simultaneously, as a result of the MSR process, the sulfate ions passed through AEM are reduced to H2S in the anode zone. The produced H2S, having its role as a mediator in electron transfer, is oxidized on the anode surface to S0 and other forms of sulfur. The applicability of waste ethanol stillage as a cheap and affordable organic substrate for the MSR process has also been established. Heavy metals (Cu2+, Ni2+ and Zn2+) occur in the cathode chamber of BES in different degrees of the removal. As a microbial fuel cell (MFC) operating for 120 hours, the reduction rate of Cu2+ reaches 94.6% (in waste ethanol stillage) and 98.6% (in the case of Postgate culture medium). On the other hand, in terms of Ni2+ and Zn2+, no significant decrease in their concentrations in the liquid phase is found. In the case of microbial electrolysis cell (MEC) mode reduction of Cu2+– 99.9%, Ni2+– 65.9% and Zn2+– 64.0% was achieved. For 96 hours, the removal of sulfates in MEC mode reached 69.9% in comparison with MFC mode – 35.2%.
Źródło:
Journal of Ecological Engineering; 2023, 24, 7; 175--186
2299-8993
Pojawia się w:
Journal of Ecological Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Active Physical Remediation of Acid Mine Drainage: Technologies Review and Perspectives
Autorzy:
Mulopo, Jean
Powiązania:
https://bibliotekanauki.pl/articles/2105273.pdf
Data publikacji:
2022
Wydawca:
Polskie Towarzystwo Inżynierii Ekologicznej
Tematy:
ion-exchange
acid mine drainage
electrochemical
adsorption
membrane process
active physical treatment
Opis:
The successful acid mine drainage (AMD) treatment needs site-specific installation and implementation, as well as the deployment of technology that is compatible with the pollutants contained in the AMD. If key by-products of the AMD can be recovered, the financial sustainability of the AMD remediation method may be greatly improved. Additional research into novel and innovative solutions is necessary to advance in this direction. To accomplish this, it is necessary to have a complete awareness of current remediation technologies that are available and accessible. Active physical treatment methods such as ion exchange, adsorption, electrochemistry, and membrane techniques were examined in this article. Membrane technology excels in terms of ease of use, versatility, and environmental effect but produces brine streams the management of which remains vital for future adoption of the technology. Liquid membranes (LM), Micellar Enhanced Ultra-Filtration (MEUF), and Polyelectrolyte Enhanced Ultra-Filtration (PEUF) are all innovative membrane technologies that may provide some possibilities for metal recovery from chemical sludge and/or brine streams. Electrochemical technologies are considered an attractive alternative for AMD treatment, because they require only electricity as a consumable and can treat AMD to high standards by removing metals via (co)precipitation and sulfate via ionic migration (when an anion-exchange membrane is used in the configuration), while producing significantly less sludge. However, the accepted shortcomings include membrane/electrode fouling produced by (co)precipitates on the active surfaces necessary for the process, a lack of understanding regarding the effective scaling up to industrial scale, and the relatively expensive capital expenditure (CAPEX) required. The removal of heavy metals from AMD effluents by adsorption has a number of technical and environmental benefits, including high efficiency, and environmental friendliness. Despite its benefits, this technique has certain hurdles, such as the production process for low-cost adsorbents.
Źródło:
Journal of Ecological Engineering; 2022, 23, 6; 148--163
2299-8993
Pojawia się w:
Journal of Ecological Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
An innovative flotation technology for the lime-depressed pyrite recovery from copper sulphide ore via acid mine drainage (AMD) activation
Autorzy:
Yuan, Jiaqiao
Ding, Zhan
Bi, Yunxiao
Li, Jie
Wen, Shuming
Bai, Shaojun
Powiązania:
https://bibliotekanauki.pl/articles/2175438.pdf
Data publikacji:
2022
Wydawca:
Politechnika Wrocławska. Oficyna Wydawnicza Politechniki Wrocławskiej
Tematy:
copper sulfide ore
acid mine drainage (AMD)
lime-depressed-pyrite
activator
hydrophilic species
Opis:
In this study, an innovative flotation technology consisted of Cu differential flotation with high alkali lime and pyrite recovery with acid mine drainage (AMD) activation was investigated for the cleaner beneficiation of the copper sulfide ore. Flotation test results showed that H2SO4 -CuSO4 and AMD could effectively activate the pyrite flotation with SBX collector. Moreover, the recovery of S concentrate is increased by 5.33% in the AMD system. Adsorption amount results of SBX collector indicated that the hydrophilic species (Ca2+, CaOH+ and FeOOH) were formed on the pyrite surfaces in the high alkali lime craft (pH=11.3) and degraded the interaction between SBX and pyrite surfaces. AMD can effectively clear off the hydrophilic calcium species and the copper ions originated from the AMD absorb onto the pyrite surfaces, facilitating the SBX collector adsorption. Composition analysis results of tailings water confirmed that the tailing water obtained by the AMD flotation system was more desirable to be recycled in the Cu differential flotation due to its higher pH value (8.7). The present study provides a novel approach for the treatment of AMD, and has the vital practical significance for the emission reduction of AMD and the increase of beneficiation profits.
Źródło:
Physicochemical Problems of Mineral Processing; 2022, 58, 6; art. no. 152609
1643-1049
2084-4735
Pojawia się w:
Physicochemical Problems of Mineral Processing
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Distribution of Trace Elements, Rare Earth Elements and Ecotoxicity in Sediments of the Kosva Bay, Perm Region (Russia)
Autorzy:
Ushakova, Evgeniya
Menshikova, Elena
Blinov, Sergey
Vaganov, Sergey
Perevoshchikov, Roman
Powiązania:
https://bibliotekanauki.pl/articles/2086373.pdf
Data publikacji:
2022
Wydawca:
Polskie Towarzystwo Inżynierii Ekologicznej
Tematy:
trace element
rare earth elements
sedimentation
bottom sediment
ecotoxicity
acid mine drainage
Opis:
Over a long period of time, a huge amount of technogenic bottom sediments has been accumulating in the Kosva Bay with significant concentrations of amorphous iron and aluminium hydroxides, which, in turn, are active sorbents of pollutants. This study examines the distribution of trace elements and rare earth elements and their toxicity in the Kosva Bay of the Kama Reservoir (Perm Region, Russia). In the middle reach, the Kosva River crosses the Kizel coal basin, where acid mine water is discharged from closed mines. The average content of trace elements in the samples of bottom sediments of the bay varies from 0.10 mg/kg (Se) to 176.36 mg/kg (Ba). The amount of rare earth elements varies from 66.8 to 83.6 mg/kg. The ecological significance of trace elements and rare earth elements was studied using an element-by-element assessment (EF and Igeo), Potential Ecological Risk Index (RI), Mean Probable Effect Concentration Quotient (PECQ), and two bioassays (Daphnia magna Straus and Scenedesmus quadricauda (Turp.) Breb. The highest Hg enrichment was found at two sampling points. Taking into account the average value of Igeo, the pollution by Co, V, Nb, Hg, Sn, Zn, Sm, Ni, Cr, and Gd is the highest and corresponds to extremely contaminated category. The RI values indicate that pollution categories vary from moderate risk to considerable risk. According to mean PECQ values, bottom sediments of the bay have moderate potential toxicity towards biological communities. Results of chronic and acute toxicity on test objects D. magna and Scenedesmus quadricauda Breb show the water extract from bottom sediments having no effects on the test objects. The results of the study show that in order to assess the quality of bottom sediments, an integrated approach, combining chemical and ecotoxicological analyses, is needed.
Źródło:
Journal of Ecological Engineering; 2022, 23, 4; 1--16
2299-8993
Pojawia się w:
Journal of Ecological Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Modification of Calcium Oxide from Green Mussel Shell with Iron Oxide as a Potential Adsorbent for the Removal of Iron and Manganese Ions from Acid Mine Drainage
Autorzy:
Purwaningrum, Widia
Hasanudin, Hasanudin
Rachmat, Addy
Riyanti, Fahma
Hariani, Poedji Loekitowati
Powiązania:
https://bibliotekanauki.pl/articles/2202252.pdf
Data publikacji:
2022
Wydawca:
Polskie Towarzystwo Inżynierii Ekologicznej
Tematy:
CaO/Fe3O4
green mussel shell
adsorption
iron
manganese
acid mine drainage
Opis:
Acid mine drainage (AMD) has the characteristics of high heavy metal ion content and low pH. This study aimed to synthesize the CaO/Fe3O4 composite for the adsorption of iron and manganese ions from acid mine drainage. CaO was synthesized from the shells of green mussels (Perna viridis). The CaO/ Fe3O4 composites were characterized using XRD, BET surface area, SEM-EDS, and VSM. The functional groups of the composite before and after adsorption were analyzed using FTIR. The adsorption of Fe(II), Fe(III), and Mn(II) ions was carried out with the batch method to determine the effect of pH, contact time, and initial concentration of metal ions. The CaO/ Fe3O4 composite has magnetic properties, as indicated by the saturation magnetization value of 65.49 emu/g. The Langmuir and Freundlich isotherm models were used to describe the adsorption isotherm of the composite for Fe(II), Fe(III), and Mn(II) ions. Investigations were also conducted on adsorption kinetics, including pseudo-first-order and pseudo-second-order, as well as adsorption thermodynamics comprising free energy, enthalpy, and entropy. Pseudo-first-order and Langmuir isotherms are suitable to describe the adsorption of Fe(II), Fe(III), and Mn(II) ions with adsorption capacities of Fe(III) > Fe(II) > Mn(II). Moreover, the adsorption of all ions using the composite occurred spontaneously. The removal effectiveness for Fe and Mn ions from AMD using CaO/ Fe3O4 composite, reached 90.41 and 97.59%, respectively, in volume 100 mL AMD, composite mass 0.4 g, and a contact time of 60 minutes.
Źródło:
Journal of Ecological Engineering; 2022, 23, 11; 188--201
2299-8993
Pojawia się w:
Journal of Ecological Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Wstępna ocena możliwości pozyskiwania pierwiastków wartościowych z wód kopalnianych oraz wód termalnych i leczniczych w Polsce
Preliminary assessment of possibility of recovering valuable minerals from mine, thermal and therapeutic waters in Poland
Autorzy:
Razowska-Jaworek, Lidia
Pasternak, Marcin
Karpiński, Marcin
Będkowski, Zbigniew
Kaczorowski, Zbigniew
Wysocka, Irena
Drzewicz, Przemysław
Powiązania:
https://bibliotekanauki.pl/articles/20021631.pdf
Data publikacji:
2022
Wydawca:
Państwowy Instytut Geologiczny – Państwowy Instytut Badawczy
Tematy:
wody gruntowe
wody kopalniane
pierwiastki chemiczne
odzyskiwanie minerałów z wód
drenaż kopalni
groundwaters
mine waters
chemical elements
recovery of minerals from waters
mine drainage
Opis:
Chemical components in groundwater from mine drainage or used in geothermal installations are a potential source of valuable minerals. At the Polish Geological Institute - National Research Institute, a study was carried out to identify the content of elements in mine waters, wells exploiting natural gas and oil as well as geothermal and therapeutic waters in Poland. The aim of the research was to recognize the concentration of potentially useful minerals in groundwater and the possibility of their recovery. It was the first project that focused on the recovery of elements from groundwater on a national scale in Poland. For this purpose, 67 sites were selected, in which 75 water samples were taken and the content of65 chemical components was determined. Then, the amount of minerals that could be recovered from mine waters and geothermal brines was calculated based on the amount of water pumped in each facility. The calculations involved the approximate efficiency and working time of the recovery installation. As a result of this research, it was found that the mine waters and geothermal brines in Poland contain resources of valuable elements in very different amounts. In more than half of the examined sites, the estimated resources of minerals are present in amounts that are not prospective. However, in 29 sites, mine waters and geothermal brines contain elevated concentrations of several elements, including - B, Br, I, K, Li, Mg and Mn. If they were successfully recovered, they could represent a potential additional income for the mining and geothermal industries. Dębieńsko Desalination Plant of mine waters in Upper Silesia is the most promising potential source of recovery of minerals from mine waters, where the total resources of minerals to be recovered from concentrated brine have been estimated as the highest. Rudna Copper Mine in Lower Silesia is in second place, with one of the highest resources and the largest amount of minerals to be recovered from groundwater. Other sites are: the SOLINO Salt Mine, “Olza” mine water collector, mine waters pumped from abandoned coal mines in the Upper Silesia (in Zabrze, Siemianowice Śląskie, Czeladź, Gliwice), and plants producing geothermal energy in Stargard, Pyrzyce and Bańska. Total amount of mineral resources that can be recovered from waters pumped from the most promising sites is over72 000 tonnes annually. Taking into account both the ecological aspect and the potential economic benefits of recovering minerals from mine waters and geothermal brines, it is necessary to continue the studies on the recovery of minerals from highly mineralized waters in Poland.
Źródło:
Przegląd Geologiczny; 2022, 70, 6; 435-448
0033-2151
Pojawia się w:
Przegląd Geologiczny
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zmiany natężenia przepływu w rzece Sztole (rejon olkuski) w warunkach drenażu górniczego
Changes in the flow rate of the Sztoła River (Olkusz area) under mining drainage conditions
Autorzy:
Cień, Damian
Motyka, Jacek
d’Obyrn, Kajetan
Powiązania:
https://bibliotekanauki.pl/articles/20197023.pdf
Data publikacji:
2022
Wydawca:
Państwowy Instytut Geologiczny – Państwowy Instytut Badawczy
Tematy:
rzeka Sztoła
piaskownica Szczakowa
kopalnia cynku i ołowiu Olkusz-Pomorzany
odwadnianie górnicze
Sztoła River
Szczakowa sand pit
Olkusz-Pomorzany zinc and lead mine
mining drainage
Opis:
The Sztoła River is a left-bank tributary of the Biała Przemsza River, into which it flows on the outskirts of the Jaworzno city. Mining of the Quaternary backfilling sands in the Szczakowa sand pit, which is located near the estuary of the Szoła River, began in the mid-1950s. At the beginning of the 1960s, the excavations of the underground Olkusz mine of zinc and lead ores, which was built to the east of the upper part of the Sztoła River, began to be drained. The excavations occurred in Triassic carbonate rocks. The gravity drainage system of the Szczakowa sand pit was moving east, up the river, and at the same time the difference between the drainage affected and the natural groundwater level in the Sztoła Riverbasin increased. At the end of the1960s the level and length of the main drainage excavations in the Olkusz mine were already stabilized. The changing range of the Szczakowa sand pit drainage and the quasi-fixed drainage range of the Olkusz mine had an impact on the supply conditions of the Sztoła River, which was recharged by underground water from the Olkusz-Pomorzany mine. The paper presents the results of the analysis of the drainage impact of both mines on changes in the flow rate of the Sztoła River in the years 1959-2021 and an estimated forecast of the river condition after shutting down the drainage of the Olkusz area mines in December 2021.
Źródło:
Przegląd Geologiczny; 2022, 70, 10; 761-769
0033-2151
Pojawia się w:
Przegląd Geologiczny
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Analysis of Exploitation Parameters in Drainage Boreholes of the Longwall Demethylation System. Case Study
Autorzy:
Badura, Henryk
Łukaszczyk, Zygmunt
Powiązania:
https://bibliotekanauki.pl/articles/2064617.pdf
Data publikacji:
2021
Wydawca:
STE GROUP
Tematy:
hard coal mine
degasification
methane concentration
drainage boreholes
Opis:
In hard coal mines with methane, there is often a need to apply demethylation in order to keep the methane concentration not exceeding 2% in the ventilation air. The basic demethylation method in longwall areas is through drainage boreholes made in the roof rocks of the coal bed, from top gate, in front of the longwall. The drainage boreholes are usually made in bundles, in a fan-shaped arrangement, with several boreholes in each bundle. The paper presents the results of measurements and tests of the efficiency of a bundle of four drainage boreholes drilled approximately 100 m in front of the longwall face. The efficiency of individual boreholes was analyzed in time and depending on the distance of borehole outlets from the longwall face. It was found that there is a large variation in the extraction of air-methane mixture by individual drainage boreholes, as well as large differences in the efficiency of individual drainage boreholes during the longwall extraction process.
Źródło:
Multidisciplinary Aspects of Production Engineering; 2021, 4, 1; 23--39
2545-2827
Pojawia się w:
Multidisciplinary Aspects of Production Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of Single-Phase Voltage Loss and Load Carrying Mode on Mine Drainage Pump Motor in Vietnam
Autorzy:
Do, Nhu Y.
Ngo, Xuan Cuong
Powiązania:
https://bibliotekanauki.pl/articles/2020166.pdf
Data publikacji:
2021
Wydawca:
Polskie Towarzystwo Przeróbki Kopalin
Tematy:
mine drainage pump
single-phase voltage loss
asynchronous motor
harmonics
górnictwo
pompy
drenaż
Opis:
Mine drainage pump is the most important load in mining which requires high reliability when operating. Currently, the power supply of a mine drainage pump is connected to the same power line with many nonlinear loads, and is equipped with power electronic converters, which makes the power supply nonsinusoidal. During the working process of a mine drainage pump, the load-carrying factor often changes, and many types of failures occur, among which single-phase voltage loss is the most common problem. In the case of a nonsinusoidal power supply, if a single-phase voltage loss occurs in different load modes, it will greatly affect the working mode of the mine drainage pump leading to influences on the working efficiency, the life of the pump, and sometimes it is necessary to recalculate the protection parameters. This paper studies the influence of single-phase voltage loss and load carrying mode on the working mode of mine drainage pump motor in case the of nonsinusoidal power supply. Research results show that, in the case of nonsinusoidal power supplied with single-phase voltage loss, copper losses in the rotor and stator circuits increase with increases in voltage total harmonic distortion (THD) and load-carrying factor, 5th order reverse harmonic increases copper loss in asynchronous motor the most, and higher harmonic components have less effect on copper loss in the motor. At the same time, the speed ripple decreases with the increase of the motor load factor and decreases in the presence of the 5th order negative sequence harmonic, and increases significantly in the presence of the 7th order positive sequence harmonic. 5th order negative sequence harmonic increases, the torque ripple increases, while the 7th order positive sequence harmonic reduces the torque ripple in the case of single-phase voltage loss. The results of the paper will help improve the operational efficiency of the mine drainage pump in Vietnam's mines.
Źródło:
Inżynieria Mineralna; 2021, 2; 341--352
1640-4920
Pojawia się w:
Inżynieria Mineralna
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
A lab study of mineral scale buildup on lined and traditional PE water pipes for acid mine drainage treatment applications
Autorzy:
Pezzuto, Amanda
Sarver, Emily
Powiązania:
https://bibliotekanauki.pl/articles/1839046.pdf
Data publikacji:
2020
Wydawca:
Główny Instytut Górnictwa
Tematy:
mineral scale
water conveyance
water pipe
acid mine drainage
kamień mineralny
transport wody
wodociąg
kwaśny drenaż kopalniany
Opis:
Plastic, especially polyethylene (PE), pipe material is increasingly used in mining applications due to its inert nature, flexibility, low density, and low cost. Though resistant to chemical corrosion, it is susceptible to abrasion. To combat this problem, an abrasion-resistant liner is in development. However, it is not yet known how the liner will perform with regards to other common problems that affect pipe systems, such as mineral scale buildup. In mining applications, scale buildup occurs due to the very high contents of suspended and dissolved solids in water or slurry. For example, in systems transporting raw or treated acid mine drainage (AMD), scale can form on pipe surfaces due to sedimentation or the diffusion of particles onto the surface, or precipitation of solids directly onto the surface. In this study, pipe-loop experiments were conducted in the laboratory under three idealized AMD treatment scenarios (i.e., untreated, passively treated and actively treated) to compare mineral scale buildup on traditional versus lined PE pipe materials.
Źródło:
Journal of Sustainable Mining; 2020, 19, 1; 33-45
2300-1364
2300-3960
Pojawia się w:
Journal of Sustainable Mining
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Combination of Chemical and Biological-Chemical Methods for Elimination of Metals from Acid Mine Drainage
Połączenie chemicznych i biologiczno-chemicznych metod eliminacji metali z kwaśnego drenażu kopalnianego
Autorzy:
Luptakova, Alena
Macingova, Eva
Ubaldini, Stefano
Luptak, Miloslav
Powiązania:
https://bibliotekanauki.pl/articles/318062.pdf
Data publikacji:
2020
Wydawca:
Polskie Towarzystwo Przeróbki Kopalin
Tematy:
acid mine drainage
sulphate-reducing bacteria
metal sulphides
selective sequential precipitation
kwaśny drenaż kopalniany
bakterie redukujące siarczany
siarczki metali
selektywne sekwencyjne wytrącanie
Opis:
Each acid mine drainage has a specific composition, but always contains sulphuric acid, dissolved heavy metals, sulphates, iron precipitates and their pH can be very low. The elimination of metals form the acid mine drainage is a severe environmental problem and has been a long-standing major concern to scientists, engineers, industry and governments. Various methods are used for the metals removal from waters, but any of them have been applied under commercial-scale conditions. Mostly studied are chemical and biological-chemical methods. Main aim of the paper was to interpret the combination of chemical and biological-chemical methods for the heavy metals elimination from the synthetic solution of acid mine drainage, coming from the zinc mine located in Tùnel Kingsmill outlet of the Rio Yaulì (district of Yauli – Perù). The metals selective precipitation as hydroxides (chemical method) and sulphides (biological-chemical method) at the various values of pH acid mine drainage is the fundamental of the examined process. For the hydrogen sulphide production the sulphate-reducing bacteria of genus Desulfovibrio was used. The selective sequential precipitation process reaches the selective precipitation of chosen metals with 97–99% efficiency – Fe, As, Al and Mn in the form of metal hydroxides, Cu and Zn as metal sulphides.
Każdy kwaśny drenaż kopalniany ma określony skład, ale zawsze zawiera kwas siarkowy, rozpuszczone metale ciężkie, siarczany, osady żelaza, a jego pH może być bardzo niskie. Eliminacja metali z kwaśnego drenażu kopalnianego jest poważnym problemem środowiskowym i od dawna stanowi poważny problem dla naukowców, inżynierów, przemysłu i rządów. Różne metody są stosowane do usuwania metali z wód, ale żadna z nich została zastosowana w warunkach komercyjnych. Przeważnie badane są metody chemiczne i biologiczno-chemiczne. Głównym celem pracy była interpretacja połączenia chemicznych i biologiczno-chemicznych metod eliminacji metali ciężkich z syntetycznego roztworu kwaśnego drenażu kopalnianego pochodzącego z kopalni cynku zlokalizowanej w wylocie Tùnel Kingsmill w Rio Yaulì (dzielnica Yauli – Peru). Podstawą badanego procesu jest selektywne wytrącanie metali w postaci wodorotlenków (metoda chemiczna) i siarczków (metoda biologiczno-chemiczna) przy różnych wartościach pH kwaśnego drenażu kopalnianego. Do produkcji siarkowodoru wykorzystano bakterie redukujące siarczany z rodzaju Desulfovibrio. Proces selektywnego sekwencyjnego wytrącania osiąga selektywne wytrącanie wybranych metali z wydajnością 97–99% – Fe, As, Al i Mn w postaci wodorotlenków metali, Cu i Zn jako siarczków metali.
Źródło:
Inżynieria Mineralna; 2020, 2, 1; 83-87
1640-4920
Pojawia się w:
Inżynieria Mineralna
Dostawca treści:
Biblioteka Nauki
Artykuł

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