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首页> 外文期刊>Journal of the Iranian Chemical Society >Pre-treatment of landfill leachate by biochar for the reduction of chemical oxygen demand: the effect of treatment time, temperature and biochar dose
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Pre-treatment of landfill leachate by biochar for the reduction of chemical oxygen demand: the effect of treatment time, temperature and biochar dose

机译:通过BioChar预处理垃圾填埋场渗滤液,减少化学需求:治疗时间,温度和生物炭剂量的影响

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摘要

Landfill leachate is the liquid formed by the decomposition of waste in the landfill and infiltration of water through that waste. It contains high concentrations of ammonia and organic contaminants (measured in terms of chemical oxygen demand, COD). Biochar, produced from woody residues separated from municipal waste, was used for the reduction of COD of the leachate. The produced biochar was characterized by scanning electron microscopy, Raman spectroscopy, Brunauer-Emmett-Teller surface area analysis and x-ray photoelectron spectroscopy. By following response surface methodology and specifically the Box-Behnken design, the optimum conditions and effects of time, temperature and biochar dosage were determined. It was stated that biochar dosage was the most influential factor, whereas adsorption time and temperature had a lesser effect on the process. The optimum conditions for COD removal from the leachate were the following: treatment time 140 min, temperature 31 degrees C and biochar dosage of 1.95 g, where a 75.5% COD removal was achieved. At these conditions, the NH4+-N concentration was reduced by 23%. The spent biochar sample was regenerated by successively washing it with HF, ethanol and NaOH, and the regenerated sample achieved COD removal rates of 71%, indicating the potential for multiple uses.
机译:垃圾填埋场渗滤液是垃圾在填埋场中分解,水通过垃圾渗透而形成的液体。它含有高浓度的氨和有机污染物(以化学需氧量(COD)衡量)。生物炭是从城市垃圾中分离出来的木质残留物中产生的,用于降低渗滤液的COD。通过扫描电子显微镜、拉曼光谱、Brunauer-Emmett-Teller比表面积分析和x射线光电子能谱对所制备的生物炭进行了表征。通过响应面法,特别是Box-Behnken设计,确定了最佳条件以及时间、温度和生物炭用量的影响。结果表明,生物炭用量是影响吸附过程的最主要因素,而吸附时间和温度对吸附过程的影响较小。从渗滤液中去除COD的最佳条件如下:处理时间140 min,温度31℃,生物炭用量1.95 g,COD去除率为75.5%。在这些条件下,NH4+-N浓度降低了23%。通过连续使用HF、乙醇和NaOH对废生物炭样品进行洗涤,再生样品的COD去除率达到71%,表明其具有多种用途的潜力。

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