AI Article Synopsis

  • This study addresses environmental issues from coal gasification slag by producing a Si-Fe-Al-Ca alloy using low-carbon fine slag and petroleum coke in a plasma furnace with an alternating current magnetic field.* -
  • Increasing the strength of the magnetic field enhanced the alloy yield from 25.46% to 58.19% and improved the recovery ratios of elements like silicon, iron, and aluminum.* -
  • The better smelting outcomes are attributed to resistive heat, Lorentz force from induced current, and the skin effect, which increases reaction temperatures and promotes effective carbothermal reduction.*

Article Abstract

It is of great significance to solve the environmental problems caused by the unreasonable treatment of coal gasification slag. This study successfully produced Si-Fe-Al-Ca alloy from low-carbon fine slag with petroleum coke as reducing agent in a plasma furnace with an alternating current magnetic field, which solved the problem of the high reactivity requirement of carbon reductant for plasma smelting. The optimum carbon content of the mixed low-carbon fine slag and petroleum coke is 105% of the theoretical value. As the strength of the alternating current magnetic field increased (from 0% to 100% of the maximum power), the yield of the alloy (from 25.46% to 58.19%) and the recovery ratios of each element (Si, Fe, Al, Ca, Ti) increased. In addition, as the magnetic field strength increased, the pores inside the alloy became smaller, the composition of the alloy became more homogeneous, and a better separation of the alloy from the slag was observed. The main composition of the alloy at the strongest alternating current magnetic field is Si: 51.14 wt%, Fe: 28.41 wt%, Al: 9.14 wt%, Ca: 7.15 wt%, Ti: 2.03 wt%. We attribute the enhanced smelting effect of the alternating current magnetic field to the resistive heat and Lorentz force produced by the induced current. In addition, the skin effect concentrated the induced current on the surface of the oxide particles and carbon particles, which increased the temperature of the reaction interface and promoted the carbothermal reduction reaction.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jenvman.2024.120760DOI Listing

Publication Analysis

Top Keywords

magnetic field
24
alternating current
20
current magnetic
20
fine slag
12
si-fe-al-ca alloy
8
coal gasification
8
plasma smelting
8
smelting alternating
8
low-carbon fine
8
slag petroleum
8

Similar Publications

Our study aims to assess the robustness of myocardial radiomic texture features (RTF) to segmentation variability and variations across scanners with different field strengths, addressing concerns about reliability in clinical practices. We conducted a retrospective analysis on 45 pairs of CMR T1 maps from 15 healthy volunteers using 1.5 T and 3 T Siemens scanners.

View Article and Find Full Text PDF

Cells perceive external and internally generated forces of different kinds, significantly impacting their cellular biology. In the relatively nascent field of mechanobiology, the impact of such forces is studied and further utilized to broaden the knowledge of cellular developmental pathways, disease progression, tissue engineering, and developing novel regenerative strategies. However, extensive considerations of mechanotransduction pathways for biomedical applications are still broadly limited due to a lack of affordable technologies in terms of devices and simple magnetic actuatable materials.

View Article and Find Full Text PDF

Background: Several factors can impair image quality and reliability of liver magnetic resonance elastography (MRE), such as inadequate driver positioning, insufficient wave propagation and patient-related factors.

Purpose: To report initial results on automatic classification of liver MRE image quality using various deep learning (DL) architectures.

Study Type: Retrospective, single center, IRB-approved human study.

View Article and Find Full Text PDF

Magnetic resonance imaging (MRI) is a cornerstone of non-invasive diagnostics and treatment monitoring, particularly for diseases of the central nervous system. Although 1.5- and 3 Tesla (T) field strengths remain the clinical standard, the advent of 7 T MRI represents a transformative step forward, offering superior spatial resolution, contrast, and sensitivity for visualizing neuroanatomy, metabolism, and function.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!