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Dive into the research topics where Sultan Ahmed Khoso is active.

Publication


Featured researches published by Sultan Ahmed Khoso.


Langmuir | 2018

Adsorption Mechanism of 4-Amino-5-mercapto-1,2,4-triazole as Flotation Reagent on Chalcopyrite

Zhigang Yin; Yuehua Hu; Wei Sun; Chenyang Zhang; Jianyong He; Zhijie Xu; Jingxiang Zou; Changping Guan; Chenhu Zhang; Qingjun Guan; Shangyong Lin; Sultan Ahmed Khoso

A novel compound 4-amino-5-mercapto-1,2,4-triazole was first synthesized, and its selective adsorption mechanism on the surface of chalcopyrite was comprehensively investigated using UV-vis spectra, zeta-potential, Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy measurements (XPS), time-of-flight secondary ion mass spectrometry (ToF-SIMS), and first principles calculations. The experimental and computational results consistently demonstrated that AMT would chemisorb onto the chalcopyrite surface by the formation of a five-membered chelate ring. The first principles periodic calculations further indicated that AMT would prefer to adsorb onto Cu rather than Fe due to the more negative adsorption energy of AMT on Cu in the chalcopyrite (001) surface, which was further confirmed by the coordinationxa0reaction energies of AMT-Cu and AMT-Fe based on the simplified cluster models at a higher accuracy level (UB3LYP/Def2-TZVP). The bench-scale results indicated that the selective index improved significantly when using AMT as a chalcopyrite depressant in Cu-Mo flotation separation.


Frontiers in chemistry | 2018

Size-Tunable Natural Mineral-Molybdenite for Lithium-Ion Batteries Toward: Enhanced Storage Capacity and Quicken Ions Transferring

Feng Jiang; Sijie Li; Peng Ge; Honghu Tang; Sultan Ahmed Khoso; Chenyang Zhang; Yue Yang; Hongshuai Hou; Yuehua Hu; Wei Sun; Xiaobo Ji

Restricted by the dissatisfied capacity of traditional materials, lithium-ion batteries (LIBs) still suffer from the low energy-density. The pursuing of natural electrode resources with high lithium-storage capability has triggered a plenty of activities. Through the hydro-refining process of raw molybdenite ore, containing crushing–grinding, flotation, exfoliation, and gradient centrifugation, 2D molybdenum disulfide (MoS2) with high purity is massively obtained. The effective tailoring process further induce various sizes (5, 2, 1 and 90 nm) of sheets, accompanying with the increasing of active sites and defects. Utilized as LIB anodes, size-tuning could serve crucial roles on the electrochemical properties. Among them, MoS2-1 μm delivers an initial charge capacity of 904 mAh g−1, reaching up to 1,337 mAh g−1 over 125 loops at 0.1 A g−1. Even at 5.0 A g−1, a considerable capacity of 682 mAh g−1 is remained. Detailedly analyzing kinetic origins reveals that size-controlling would bring about lowered charge transfer resistance and quicken ions diffusion. The work is anticipated to shed light on the effect of different MoS2 sheet sizes on Li-capacity ability and provides a promising strategy for the commercial-scale production of natural mineral as high-capacity anodes.


Environmental Science and Pollution Research | 2018

An extensive review on restoration technologies for mining tailings

Wei Sun; Bin Ji; Sultan Ahmed Khoso; Honghu Tang; Runqing Liu; Li Wang; Yuehua Hu

Development of mineral resources and the increasing mining waste emissions have created a series of environmental and health-related issues. Nowadays, the ecological restoration of mining tailings has become one of the urgent tasks for mine workers and environmental engineers all over the world. Aim of the present paper is to highlight the previous restoration techniques and the challenges encountered during the restoration of mine tailings. As it is a common practice that, before restoring of tailings, the site should be evaluated carefully. Studies showed that the mine tailings’ adverse properties, including excessive heavy metal concentration, acidification, improper pH value, salinization and alkalization, poor physical structure and inadequate nutrition, etc., are the major challenges of their restoration. Generally, four restoration technologies, including physical, chemical, phytoremediation, and bioremediation, are used to restore the mining tailings. The working mechanism, advantages, and disadvantages of these techniques are described in detail. In addition, selection of the suitable restoration techniques can largely be carried out by considering both the economic factors and time required. Furthermore, the ecosystem restoration is perceived to be a more promising technology for mine tailings. Therefore, this extensive review can act as a valuable reference for the researchers involved in mine tailing restoration.


Applied Surface Science | 2018

Selective adsorption of benzhydroxamic acid on fluorite rendering selective separation of fluorite/calcite

Wei Jiang; Zhiyong Gao; Sultan Ahmed Khoso; Jiande Gao; Wei Sun; Wei Pu; Yuehua Hu


Separation and Purification Technology | 2019

A new approach for characterization of hydrophobization mechanisms of surfactants on muscovite surface

Hao Jiang; Ya Gao; Sultan Ahmed Khoso; Wanying Ji; Yuehua Hu


Powder Technology | 2018

Adsorption behaviors and mechanisms of dodecyltrimethyl ammonium chloride and cetyltrimethyl ammonium chloride on illite flotation

Hao Jiang; Ya Gao; Qinhong Yang; Sultan Ahmed Khoso; Guorong Liu; Longhua Xu; Yuehua Hu


Minerals Engineering | 2018

Comparison of the reduction of chemical oxygen demand in wastewater from mineral processing using the coagulation–flocculation, adsorption and Fenton processes

Xiangsong Meng; Jiangqiu Wu; Jianhua Kang; Jiande Gao; Runqing Liu; Yuesheng Gao; Ruolin Wang; Ruiying Fan; Sultan Ahmed Khoso; Wei Sun; Yuehua Hu


Minerals | 2018

Interpretation of Hydrophobization Behavior of Dodecylamine on Muscovite and Talc Surface through Dynamic Wettability and AFM Analysis

Hao Jiang; Ya Gao; Sultan Ahmed Khoso; Wanying Ji; Yuehua Hu


Minerals | 2018

Performance Analysis of Thiocarbonohydrazide as a Novel Selective Depressant for Chalcopyrite in Molybdenite-Chalcopyrite Separation

Changping Guan; Zhigang Yin; Sultan Ahmed Khoso; Wei Sun; Yuehua Hu


Journal of the American Ceramic Society | 2018

Simultaneous Control of Particle Size and Morphology of α‐Ca SO 4 ·½H 2 O with Organic Additives

Qingjun Guan; Wei Sun; Yuehua Hu; Zhigang Yin; Chenhu Zhang; Changping Guan; Xiangnan Zhu; Sultan Ahmed Khoso

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Yuehua Hu

Central South University

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Wei Sun

Central South University

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Changping Guan

Central South University

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Hao Jiang

Central South University

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Jiande Gao

Central South University

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Ya Gao

Central South University

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Zhigang Yin

Central South University

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Chen Chen

Central South University

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Chenhu Zhang

Central South University

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Chenyang Zhang

Central South University

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