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Dynamic characteristics and stability analysis of municipal solid waste in bioreactor landfills.

机译:生物反应器垃圾填埋场生活垃圾的动态特性和稳定性分析。

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摘要

Bioreactor landfills are operated to enhance refuse decomposition, gas production, and waste stabilization. The major aspect of bioreactor landfill operation is the recirculation of generated leachate back through the refuse mass. Due to the accelerated decomposition and settlement of solid waste, bioreactor landfills are gaining popularity as an alternative to the conventional landfill designed under Subtitle D regulations. However, recirculation of leachate or addition of water to accelerate the waste decomposition changes the biodegradation and geotechnical characteristics of waste mass. Our understanding of changes in engineering characteristics of solid waste with accelerated decomposition is limited. There is a need to understand and explain the changes in characteristics associated with stability analysis of landfills.; The objective of this research is to study the changes in strength characteristics of municipal solid waste (MSW) in bioreactor landfills with time and decomposition. In order to understand the changes in strength properties of MSW in bioreactor landfills with time and decomposition an experimental program was developed. Eight small scale reactors, representative of bioreactor landfill, were built in laboratory, and samples were prepared to represent different phases of decomposition. The state of decomposition was quantified by methane yield, pH, and volatile solids.; The geotechnical testing program (CD triaxial test and resonant column tests) was performed to determine shear strength and dynamic characteristics of MSW in bioreactor landfill. The test results indicated that the measured shear strength and dynamic properties of MSW are significantly affected by the degree of decomposition. The friction angle of MSW decreased from 26.7° in Phase I to 19° in Phase IV. The shear modulus increased from 2.11 MPa in Phase I to 12.56 MPa in Phase IV. The change in shear strength and dynamic properties of MSW was attributed to the breakdown in fibrous nature of solid waste particles with degradation.; Based on the measured experimental results, stability analyses were conducted. The finite element program PLAXIS and limit equilibrium program STABL was used to analyze the stability of MSW in bioreactor landfills. The stability was evaluated at both under normal and those during earthquake conditions. The factor of safety estimated using PLAXIS and GSTABL under both the conditions decreased as the solid waste degraded with time. The results indicates that the stability of bioreactor landfills should be evaluated using the strength characteristics determined as a function of time and decomposition rather than using average values.
机译:生物反应器垃圾填埋场的运作可增强垃圾分解,气体生产和废物稳定化。生物反应器垃圾填埋场运营的主要方面是通过垃圾堆将产生的渗滤液再循环回去。由于固体废物的加速分解和沉降,生物反应器垃圾填埋场已成为由字幕D法规设计的常规垃圾填埋场的替代方案而日益普及。然而,渗滤液的再循环或添加水以加速废物的分解改变了废物团的生物降解和岩土特征。我们对具有加速分解作用的固体废物工程特性变化的理解是有限的。有必要了解和解释与垃圾填埋场稳定性分析有关的特征变化。这项研究的目的是研究生物反应器垃圾填埋场中城市固体废物(MSW)的强度特性随时间和分解的变化。为了了解生物反应器垃圾填埋场中垃圾的强度特性随时间和分解的变化,开发了一个实验程序。在实验室中建立了八个代表生物反应堆填埋场的小型反应器,并准备了代表不同分解阶段的样品。分解状态通过甲烷收率,pH和挥发性固体定量。进行了岩土测试程序(CD三轴测试和共振柱测试)来确定生物反应器垃圾填埋场中的MSW的剪切强度和动态特性。测试结果表明,MSW的剪切强度和动态特性受分解程度的影响很大。 MSW的摩擦角从第一阶段的26.7°降至第四阶段的19°。剪切模量从第一阶段的2.11 MPa增加到第四阶段的12.56 MPa。 MSW的剪切强度和动态特性的变化归因于固体废物颗粒的纤维性质的降解。基于测量的实验结果,进行了稳定性分析。有限元程序PLAXIS和极限平衡程序STABL用于分析生物反应器垃圾填埋场中城市固体废弃物的稳定性。在正常和地震条件下均评估了稳定性。随着固体废物随时间降解,在两种情况下使用PLAXIS和GSTABL估算的安全系数均降低。结果表明,应该使用确定为时间和分解函数的强度特性而不是平均值来评估生物反应堆填埋场的稳定性。

著录项

  • 作者

    Haque, Mohamed Adil.;

  • 作者单位

    The University of Texas at Arlington.$bCivil & Environmental Engineering.;

  • 授予单位 The University of Texas at Arlington.$bCivil & Environmental Engineering.;
  • 学科 Engineering Civil.; Engineering Sanitary and Municipal.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 167 p.
  • 总页数 167
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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