首页> 外文期刊>Environmental progress >Recycling Technology-Artificial Lightweight Aggregates Synthesized from Sewage Sludge And Its Ash at Lowered Comelting Temperature
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Recycling Technology-Artificial Lightweight Aggregates Synthesized from Sewage Sludge And Its Ash at Lowered Comelting Temperature

机译:回收技术-降低彗星温度下的污水污泥及其灰分合成的轻质人造骨料

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摘要

Currently, Taiwan's major source of gravel for construction purposes is its river systems; however, over exploitation could potentially deplete this source. To address this problem and reduce dependence on natural aggregate exploitation, this article investigates artificial lightweight aggregates (ALWAs) synthesized from industrial waste such as sewage sludge and sewage-sludge-derived ash. The ALWAs were synthesized from the sewage sludge and ash using Na_2CO_3 The sodium carbonate helps produce the required viscous glassy phase (needed for ALWA sintering) at a lower co-melting temperature than would otherwise be possible. Water absorption, apparent porosity, bulk density and compressive strength of the ALWAs were tested to assess resource-recycling feasibility. The required dosages of Na_2CO_3 were 16 and 22 wt % for conditioned sludge and ash, respectively. The dosed sludge sample required preheating at 400℃ for 0.5 h, followed by sintering at 900℃ for 5 min. The ash sample required sintering only at 900℃ for 15 min. The sludge-derived ALWAs gave the following percentages 2.84%, 331%, 1-20 g/cm~3, and 13.0 MPa for water absorption, apparent porosity, bulk density, and compressive strength, respectively. The corresponding values for ash-derived ALWAs were: 4.85%, 6.55%, 1.41 g/cm~3, and 87.3 MPa, respectively. The characteristics of ALWAs derived in this study were then compared to those of commercially available lightweight aggregates-Lytag and Arlita F7. The characteristics mentioned above of the former were superior than those of the latter except that the value of density was an interval value between Lytag and Arlita.
机译:目前,台湾用于建筑目的的碎石主要来源是河流系统。但是,过度开发可能会耗尽这一资源。为了解决此问题并减少对天然骨料开采的依赖,本文研究了由工业废料(如污水污泥和污水污泥衍生的灰分)合成的人造轻质骨料。 ALWA是使用Na_2CO_3由污水污泥和灰分合成的。碳酸钠有助于以比可能的更低的共熔温度生产所需的粘性玻璃态相(ALWA烧结所需)。测试了ALWA的吸水率,表观孔隙率,堆积密度和抗压强度,以评估资源回收的可行性。对于条件污泥和灰分,Na_2CO_3的所需剂量分别为16 wt%和22 wt%。定量的污泥样品需要在400℃下预热0.5小时,然后在900℃下烧结5分钟。灰分样品仅需在900℃烧结15分钟。污泥衍生的ALWAs的吸水率,表观孔隙率,堆积密度和抗压强度分别为2.84%,331%,1-20 g / cm〜3和13.0 MPa。灰分ALWA的相应值分别为:4.85%,6.55%,1.41g / cm〜3和87.3 MPa。然后将本研究中衍生的ALWAs的特征与市售轻质骨料-Lytag和Arlita F7的特征进行比较。前者的上述特征优于后者的特征,除了密度的值是Lytag和Arlita之间的间隔值。

著录项

  • 来源
    《Environmental progress》 |2013年第3期|740-748|共9页
  • 作者单位

    Department of Environmental Resources Management, Dahan Institute of Technology, Hualien 971, Taiwan;

    Department of Materials Science and Engineering, National Dong Hwa University, Hualien 974, Taiwan;

    Department of Materials Science and Engineering, National Dong Hwa University, Hualien 974, Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sewage sludge; lightweight aggregate; Na-2CO-3;

    机译:污水污泥;轻骨料;钠-2CO-3;
  • 入库时间 2022-08-17 13:28:32

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