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Research data supporting the PhD dissertation: Landfill Response to in-situ Stabilization

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4TU.ResearchData2025-11-25 更新2026-04-23 收录
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<strong>Research data supporting the dissertation Landfill Response to in situ Stabilization</strong> The research data proposed for sharing in a public repository correspond to Chapters 3 to 5 of the dissertation.<br><strong>Chapter 3.</strong> Spatial Variability of Gas Composition and Flow in a Landfill under In Situ AerationThis chapter is based on data from the Braambergen landfill pilot.Datasets to be shared Landfilled waste compositionGas round, March 2020. locations of aeration wells, gas composition, and flowGas generation estimates per compartment using the NV Afvalzorg Multiphase Landfill Gas ModelGas rounds 2017 to 2021. pressure, gas velocity, temperature, and gas compositionInline gas sensor data 2017–2021. flow, pressure, temperature, and gas compositionWater levels, March 2020Carbon removal per compartment 2017 to 2021Temperature data, Silixa Ultima XT DTS, January to August 2020Settlement 2018 to 2020 <strong>Chapter 4.</strong> Comparing Modelled, Recovered, and Generated Carbon in Three Landfill Pilots under In Situ StabilizationThis chapter is based on data from the Braambergen, Wieringermeer, and Kragge landfill pilots.Datasets to be shared Inline gas sensor data 2017 to 2024. atmospheric pressure, gas flow, gas pressure, gas temperature, and gas composition Monthly gas rounds for Kragge 2017 to 2024. gas composition and gas velocitiesLandfilled waste compositionExcavated waste analysis. water content, electrical conductivity, total carbon, total organic carbon, total inorganic carbon, organic matter, hydrogen index, oxygen index, R index, and I indexGas generation under aerobic and anaerobic conditions over time, including experimental data and fitted parameters of exponential decay modelsGas generation estimates using the NV Afvalzorg Multiphase Landfill Gas Model <strong>Chapter 5. </strong>Carbon and Nitrogen Balancing to Identify Processes and Assess Progress of Landfill In Situ StabilizationThis chapter is also based on data from the Braambergen, Wieringermeer, and Kragge landfill pilots.Datasets to be shared Inline gas sensor data 2017 to 2024. atmospheric pressure, gas flow, gas pressure, gas temperature, and gas compositionMonthly gas rounds for Kragge 2017 to 2024. gas composition and gas velocitiesLeachate 2017 to 2024. cumulative volume, ammonium-N, nitrate-N, nitrite-N, total Kjeldahl nitrogen, chloride, bicarbonate, carbonate, dissolved organic carbon, pH, total inorganic carbonExcavated waste analysis. water content, total carbon, total organic carbon, and total nitrogenExperimental data on ammonium adsorption to the solid phase in excavated wasteGas generation estimates using the NV Afvalzorg Multiphase Landfill Gas Model <br>

<strong>支撑《填埋场原位稳定化响应》学位论文的研究数据</strong> 拟于公共仓储库中共享的本研究数据对应学位论文的第3至第5章。<br><strong>第3章</strong> 原位曝气条件下填埋场气体组分与渗流空间变异性<br>本章基于布拉姆贝根(Braambergen)填埋场中试试验数据。<br>拟共享数据集如下:<br>1. 填埋垃圾组分<br>2. 2020年3月气体监测巡检数据:曝气井位置、气体组分与渗流速率<br>3. 基于NV Afvalzorg多相填埋气体模型(NV Afvalzorg Multiphase Landfill Gas Model)估算的各分区产气量<br>4. 2017至2021年气体监测巡检数据:压力、气体流速、温度与气体组分<br>5. 2017至2021年在线气体传感器数据:流量、压力、温度与气体组分<br>6. 2020年3月水位数据<br>7. 2017至2021年各分区碳去除量数据<br>8. 2020年1月至8月Silixa Ultima XT分布式温度传感系统(DTS)温度数据<br>9. 2018至2020年沉降监测数据<br><strong>第4章</strong> 原位稳定化条件下3个填埋场中试的模拟、回收与生成碳量对比<br>本章基于布拉姆贝根(Braambergen)、维灵厄梅尔(Wieringermeer)与克拉格(Kragge)3个填埋场中试试验数据。<br>拟共享数据集如下:<br>1. 2017至2024年在线气体传感器数据:大气压力、气体流量、气体压力、气体温度与气体组分<br>2. 2017至2024年克拉格填埋场月度气体监测巡检数据:气体组分与气体流速<br>3. 填埋垃圾组分<br>4. 开挖垃圾分析数据:含水率、电导率、总碳、总有机碳、总无机碳、有机质、氢指数、氧指数、R指数与I指数<br>5. 好氧与厌氧条件下随时间变化的产气量数据,包含指数衰减模型的试验数据与拟合参数<br>6. 基于NV Afvalzorg多相填埋气体模型(NV Afvalzorg Multiphase Landfill Gas Model)的产气量估算数据<br><strong>第5章</strong> 碳氮平衡分析以识别填埋场原位稳定化过程并评估其进展<br>本章同样基于布拉姆贝根(Braambergen)、维灵厄梅尔(Wieringermeer)与克拉格(Kragge)3个填埋场中试试验数据。<br>拟共享数据集如下:<br>1. 2017至2024年在线气体传感器数据:大气压力、气体流量、气体压力、气体温度与气体组分<br>2. 2017至2024年克拉格填埋场月度气体监测巡检数据:气体组分与气体流速<br>3. 2017至2024年渗滤液数据:累积体积、氨氮、硝态氮、亚硝态氮、凯氏总氮、氯化物、碳酸氢盐、碳酸盐、溶解性有机碳、pH值与总无机碳<br>4. 开挖垃圾分析数据:含水率、总碳、总有机碳与总氮<br>5. 开挖垃圾固相氨吸附试验数据<br>6. 基于NV Afvalzorg多相填埋气体模型(NV Afvalzorg Multiphase Landfill Gas Model)的产气量估算数据<br>
提供机构:
Heimovaara, Timo
创建时间:
2025-11-25
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