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An evaluation of the physical and chemical properties of high-calcium fly ashes in Iowa.

机译:爱荷华州高钙粉煤灰的理化性质评估。

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摘要

Iowa coal fired power plants currently produce about 400,000 tons of high-calcium (ASTM Class C) fly ash each year. Most of the plants are of modem design and burn low-sulfur, sub-bituminous coal from the Powder River Basin near Gillette, Wyoming. The ashes produced from these plants are self-cementitious and exhibit 28-day paste compressive strengths ranging from about 500 to 7000 psi. Past research had indicated that the paste strength of ash from a given power plant was highly variable over time. Standard ASTM test data of these same ashes, however, did not indicate any obvious differences in the ash being produced. This research was conducted in an attempt to determine the cause of the paste strength variability, and to develop test methods to more adequately reflect fly ash physical and chemical characteristics.;An extensive sampling and testing program was developed and initiated which incorporated fly ash from several Iowa power plants. Power plant design and operating data were collected. Results of ASTM physical and chemical testing showed little variation with time, irrespective of fly ash source. Part of the reason for this was directly attributed to the ASTM composite method of sampling which tends to mask actual variability. The ASTM available alkali test underestimates the amount of alkalis that can be released from Iowa high-calcium fly ashes. The paste strength and other physical properties of fly ash can change dramatically within short periods of time. This variability was linked to power plant maintenance schedules and to sodium carbonate coal pretreatment. Fly ash physical and chemical properties can change drastically immediately before and after a maintenance outage. The concentration of sulfate bearing minerals in the fly ash increases sharply during shutdown. Chemical, mineralogical, and physical testing indicated that the sodium, sulfate bearing minerals, lime and tricalcium aluminate contents of the fly ashes play important roles in the development of hydration reaction products in fly ash pastes. The weak pastes always contained ettringite as the major reaction product. The strong pastes contained straetlingite and monosulfoaluminate as the major reaction products along with minor amounts of ettringite.
机译:爱荷华州的燃煤发电厂目前每年产生约40万吨高钙(ASTM C类)飞灰。大多数工厂采用现代设计,并从怀俄明州吉列附近的粉末河盆地燃烧低硫,亚烟煤。这些植物产生的灰烬是自粘结的,并具有28天的糊料抗压强度,范围从约500到7000 psi。过去的研究表明,给定电厂的灰浆糊强度会随时间变化很大。然而,这些灰烬的标准ASTM测试数据并未表明所产生的灰分有任何明显差异。进行这项研究的目的是确定糊状强度变化的原因,并开发测试方法以更充分地反映粉煤灰的物理和化学特性。爱荷华州发电厂。收集了电厂的设计和运行数据。无论粉煤灰来源如何,ASTM物理和化学测试结果均显示随时间变化很小。造成这种情况的部分原因直接归因于ASTM复合抽样方法,这种方法往往掩盖了实际的可变性。 ASTM可用的碱测试低估了爱荷华州高钙粉煤灰可释放的碱量。粉煤灰的浆糊强度和其他物理特性可能会在短时间内发生巨大变化。这种变化与电厂维护计划和碳酸钠煤预处理有关。在维护中断前后,粉煤灰的物理和化学性质可能会发生巨大变化。在停机期间,粉煤灰中含硫酸盐矿物的浓度急剧增加。化学,矿物学和物理测试表明,粉煤灰中含钠,硫酸盐的矿物,石灰和铝酸三钙的含量在粉煤灰浆中水合反应产物的形成中起着重要作用。弱浆料始终包含钙矾石作为主要反应产物。强浆糊中有主要的反应产物是闪锌矿和单硫酸铝酸盐,以及少量的钙矾石。

著录项

  • 作者

    Schlorholtz, Scott Micahel.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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