Physical and chemical characteristics of blast furnace, basic oxygen furnace, and electric arc furnace steel industry slags

被引:341
|
作者
Proctor, DM
Fehling, KA
Shay, EC
Wittenborn, JL
Green, JJ
Avent, C
Bigham, RD
Connolly, M
Lee, B
Shepker, TO
Zak, MA
机构
[1] ChemRisk McLaren Hart Inc, Irvine, CA 92606 USA
[2] Exponent, Oakland, CA 94612 USA
[3] ChemRisk McLaren Hart Inc, Pittsburgh, PA 15212 USA
[4] Collier Shannon Rill & Scott, Washington, DC 20007 USA
[5] N Star Steel, Centennial Lake Off Pk, Edina, NY USA
[6] Edw C Levy Co, Detroit, MI 48209 USA
[7] Int Mill Serv, Horsham, PA 19044 USA
[8] Struct Met, Seguin, TX 78156 USA
[9] WCI Steel, Warren, OH 44483 USA
[10] US Steel, Pittsburgh, PA 15219 USA
关键词
D O I
10.1021/es9906002
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Approximately 21 million tons of steel industry slag are produced each year in the United States, and many productive commercial uses of slag have been developed (e.g., road bed, fill material). However, because slag contains heavy metals at concentrations that are higher than in most soil, questions have been raised regarding the need to evaluate the potential human health and environmental hazards associated with current applications. To enhance general understanding of the physical and chemical characteristics of this material, slag samples from 58 active mills with blast furnaces, basic oxygen furnaces, and/or electric are furnaces were examined. This study profiles the major and minor constituents of slag from each furnace type and reports the leachability of metals from slag under neutral and acidic conditions. Particle size distributions and partitioning coefficients (K-d) are also reported. Although concentrations of metals in slag are elevated relative to concentrations in soil, the metals in slag are tightly bound to the slag matrix and not readily leached. This study represents the most complete characterization of steel industry slag currently produced in North America, encompassing mills that collectively produce over 47% of steel industry slag. These data provide insights that may be useful for evaluating the marketability of steel industry slag and for human and ecological health risk assessment of environmental applications.
引用
收藏
页码:1576 / 1582
页数:7
相关论文
共 50 条
  • [21] Numerical modelling of heat flows in the upper blast furnace of the electric arc furnace
    Lenhard, Richard
    Malcho, Milan
    Durcansky, Peter
    Kaduchova, Katarina
    [J]. XXII SLOVAK-POLISH SCIENTIFIC CONFERENCE ON MACHINE MODELLING AND SIMULATIONS 2017 (MMS 2017), 2018, 157
  • [22] ELECTRIC STEEL MAKING IN THE ARC FURNACE
    WISSMANN, C
    [J]. TRANSACTIONS OF THE ELECTROCHEMICAL SOCIETY, 1945, 88 : 143 - 150
  • [23] EFFECT OF COMPOSITION OF BLAST FURNACE SLAGS ON THEIR PHYSICAL PROPERTIES
    ZHILO, NL
    BOLSHAKO.LI
    [J]. RUSSIAN METALLURGY-METALLY-USSR, 1964, (04): : 23 - &
  • [24] Economic Analysis of an Integrated Steel Plant Equipped with a Blast Furnace or Oxygen Blast Furnace
    Song, Jiayuan
    Jiang, Zeyi
    Zhang, Yongjie
    Han, Zhicheng
    Lu, Yuanxiang
    Dong, Huiyao
    Zhang, Ying
    [J]. SUSTAINABILITY, 2023, 15 (15)
  • [25] CHARACTERISTICS OF BASIC OXYGEN FURNACE SLAGS USING PREPARED MOLTEN SLAG
    YUGOV, PI
    PAK, YA
    RYLNIKOVA, AG
    [J]. STEEL IN THE USSR, 1980, 10 (03): : 128 - 129
  • [26] Foaming behaviour of slags from stainless steel production in the electric arc furnace
    Juhart, M
    Peter, M
    Koch, K
    Lamut, J
    Rozman, A
    [J]. STAHL UND EISEN, 2001, 121 (09): : 35 - 41
  • [27] EFFECT OF TITANIA ON THE CHARACTERISTICS OF BLAST-FURNACE SLAGS
    DATTA, K
    SEN, PK
    GUPTA, SS
    CHATTERJEE, A
    [J]. STEEL RESEARCH, 1993, 64 (05): : 232 - 238
  • [28] TEST OF OXYGEN BLAST FURNACE PROCESS WITH EXPERIMENTAL BLAST FURNACE (DEVELOPMENT OF OXYGEN BLAST FURNACE PROCESS - III).
    Ohno, Yotaro
    Hotta, Hirohisa
    Matsuura, Masahiro
    Ariyama, Tatsuro
    Mitsufuji, Hiroyuki
    Saito, Hiroshi
    Kamoshida, Tomoo
    Saito, Norio
    Ito, Haruo
    [J]. Transactions of the Iron and Steel Institute of Japan, 1987, 27 (09)
  • [29] Thermal characteristics of aged granulated blast furnace slags
    Dubrawski, JV
    [J]. JOURNAL OF THERMAL ANALYSIS, 1997, 48 (01): : 63 - 72
  • [30] Thermal characteristics of aged granulated blast furnace slags
    J. V. Dubrawski
    [J]. Journal of thermal analysis, 1997, 48 : 63 - 72