Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption Capacity

A promising line in development of reagent consumption automatic control systems is applying data on measuring collector concentration in the pulp aqueous phase. For effective using data on the concentration of the nonionic collector – allyl ester of amylxanthogenic acid – in the process of flotatio...

Full description

Bibliographic Details
Main Authors: V. V. Morozov, Erdenezul Jargalsaikhan, I. V. Pestryak
Format: Article
Language:English
Published: National University of Science and Technology MISiS 2020-09-01
Series:Горные науки и технологии
Subjects:
Online Access:https://mst.misis.ru/jour/article/view/238
_version_ 1819112845314359296
author V. V. Morozov
Erdenezul Jargalsaikhan
I. V. Pestryak
author_facet V. V. Morozov
Erdenezul Jargalsaikhan
I. V. Pestryak
author_sort V. V. Morozov
collection DOAJ
description A promising line in development of reagent consumption automatic control systems is applying data on measuring collector concentration in the pulp aqueous phase. For effective using data on the concentration of the nonionic collector – allyl ester of amylxanthogenic acid – in the process of flotation, the studies were carried out and the method for analyzing its residual concentration in the flotation pulp liquid phase was developed. The developed spectral technique for measuring the concentration of amylxanthogenic acid allyl ester in the pulp aqueous phase showed stable results in the temperature range of 10 to 25 °С, pH range of 8.5 to 11.0. This allowed applying the technique to measuring residual concentration of AeroMX- 5140 collector in the operation of bulk sulphide flotation in copper-molybdenum ore beneficiation. The laboratory tests allowed determining connection between the indicators of residual concentration with the main indicators of copper-molybdenum flotation. The studies showed that increasing the residual concentration of the non-ionic collector occurs with increasing its consumption and pH of the pulp aqueous phase. It is shown that significant increase in metal recoveries is observed at similar residual collector concentrations: for copper, in the range of 0.25 to 0.5 mg/l, and for molybdenum and pyrite iron, at the concentrations from 0.25 to 1 mg/l. The possibility of using the nonionic collector residual concentration as the informational indicator of the flotation process has been substantiated. It is proposed to use the ore absorption capacity in relation to the collector applied as an indicator of the ore grade. It is shown that using this indicator reduces relative variance for the dependences of the yields of individual ore types and increases the accuracy of determining the composition of the processed ore as a mixture of typical ore grades. An algorithm for automated control of the consumption of flotation reagents based on the advanced control of the processed ore elemental and mineral composition was developed and tested at Erdenet GOK processing plant, with the calculation of the pulp absorption capacity in relation to the nonionic collector, including the beneficiation process indicators determination using an economically-oriented optimization criterion. The expected economic effect from the reduction of metal losses amounted to USD 145 thous.
first_indexed 2024-12-22T04:19:59Z
format Article
id doaj.art-f981807c4e7744b38d8310770a0e65f8
institution Directory Open Access Journal
issn 2500-0632
language English
last_indexed 2024-12-22T04:19:59Z
publishDate 2020-09-01
publisher National University of Science and Technology MISiS
record_format Article
series Горные науки и технологии
spelling doaj.art-f981807c4e7744b38d8310770a0e65f82022-12-21T18:39:19ZengNational University of Science and Technology MISiSГорные науки и технологии2500-06322020-09-015318820010.17073/2500-0632-2020-3-188-200Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption CapacityV. V. Morozov0Erdenezul Jargalsaikhan1I. V. Pestryak2National University of Science and Technology MISiS (NUST MISiS), Russian Federation, MoscowNational University of Science and Technology MISiS (NUST MISiS), Russian Federation, Moscow; "ERDENET" GOK, MongoliaNational University of Science and Technology MISiS (NUST MISiS), Russian Federation, MoscowA promising line in development of reagent consumption automatic control systems is applying data on measuring collector concentration in the pulp aqueous phase. For effective using data on the concentration of the nonionic collector – allyl ester of amylxanthogenic acid – in the process of flotation, the studies were carried out and the method for analyzing its residual concentration in the flotation pulp liquid phase was developed. The developed spectral technique for measuring the concentration of amylxanthogenic acid allyl ester in the pulp aqueous phase showed stable results in the temperature range of 10 to 25 °С, pH range of 8.5 to 11.0. This allowed applying the technique to measuring residual concentration of AeroMX- 5140 collector in the operation of bulk sulphide flotation in copper-molybdenum ore beneficiation. The laboratory tests allowed determining connection between the indicators of residual concentration with the main indicators of copper-molybdenum flotation. The studies showed that increasing the residual concentration of the non-ionic collector occurs with increasing its consumption and pH of the pulp aqueous phase. It is shown that significant increase in metal recoveries is observed at similar residual collector concentrations: for copper, in the range of 0.25 to 0.5 mg/l, and for molybdenum and pyrite iron, at the concentrations from 0.25 to 1 mg/l. The possibility of using the nonionic collector residual concentration as the informational indicator of the flotation process has been substantiated. It is proposed to use the ore absorption capacity in relation to the collector applied as an indicator of the ore grade. It is shown that using this indicator reduces relative variance for the dependences of the yields of individual ore types and increases the accuracy of determining the composition of the processed ore as a mixture of typical ore grades. An algorithm for automated control of the consumption of flotation reagents based on the advanced control of the processed ore elemental and mineral composition was developed and tested at Erdenet GOK processing plant, with the calculation of the pulp absorption capacity in relation to the nonionic collector, including the beneficiation process indicators determination using an economically-oriented optimization criterion. The expected economic effect from the reduction of metal losses amounted to USD 145 thous.https://mst.misis.ru/jour/article/view/238copper-molybdenum oresflotationcollector concentrationuv spectrophotometryabsorption capacityregulationoptimization
spellingShingle V. V. Morozov
Erdenezul Jargalsaikhan
I. V. Pestryak
Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption Capacity
Горные науки и технологии
copper-molybdenum ores
flotation
collector concentration
uv spectrophotometry
absorption capacity
regulation
optimization
title Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption Capacity
title_full Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption Capacity
title_fullStr Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption Capacity
title_full_unstemmed Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption Capacity
title_short Increasing Efficiency of Copper-Molybdenum Ore Flotation using Measurement of Pulp Absorption Capacity
title_sort increasing efficiency of copper molybdenum ore flotation using measurement of pulp absorption capacity
topic copper-molybdenum ores
flotation
collector concentration
uv spectrophotometry
absorption capacity
regulation
optimization
url https://mst.misis.ru/jour/article/view/238
work_keys_str_mv AT vvmorozov increasingefficiencyofcoppermolybdenumoreflotationusingmeasurementofpulpabsorptioncapacity
AT erdenezuljargalsaikhan increasingefficiencyofcoppermolybdenumoreflotationusingmeasurementofpulpabsorptioncapacity
AT ivpestryak increasingefficiencyofcoppermolybdenumoreflotationusingmeasurementofpulpabsorptioncapacity