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Laboratory study of PH buffering system of landfill leachate contaminated aquifer materials

机译:垃圾渗滤液污染含水层材料PH缓冲系统的室内研究

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Introduction of landfill leachate into an aerobic aquifer leads to a variety of pH buffering reactions between dissolved chemical species and aquifer sediments, which play profound effects on the behaviors of contaminants beneath and down gradient from the landfill. The specific objectives of this study were to determine the spatial and temporal variations of pH and redox buffering capacity of landfill leachate polluted aquifer sediments; to identify contributions of the principal oxidized or reduced species to the pH and redox buffering capacity. The experimental results indicated that the calculated pH buffering capacity (pHBC) of uncontaminated aquifer material were 212.5 mmol/kg·pH−1, therein, carbonate buffering capacity (CBC), silicate buffering capacity (SBC), cation ions exchange buffering capacity (CIEBC), aluminum buffering capacity (ABC) and ferric hydroxides buffering capacity (FHBC) was account for 3.1%, 8.85%, 13.6%, 23.01% and 51.44% of total pHBC, respectively. The total pHBC was decreasing with the progressive development of the pollution.
机译:将垃圾填埋场渗滤液引入需氧含水层中会导致溶解的化学物质与含水层沉积物之间发生各种pH缓冲反应,这会对垃圾填埋场下方和下方的污染物的行为产生深远的影响。这项研究的具体目标是确定垃圾渗滤液污染的含水层沉积物的pH和氧化还原缓冲能力的时空变化。以确定主要的氧化或还原物种对pH和氧化还原缓冲能力的贡献。实验结果表明,未经污染的含水层材料的pH缓冲能力(pHBC)为212.5 mmol / kg·pH -1 ,其中碳酸盐缓冲能力(CBC),硅酸盐缓冲能力(SBC),阳离子交换缓冲能力(CIEBC),铝缓冲能力(ABC)和氢氧化铁缓冲能力(FHBC)分别占总pHBC的3.1%,8.85%,13.6%,23.01%和51.44%。随着污染的逐步发展,总pHBC在下降。

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