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首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Effect of pH, Volatile Content, and Pyrolysis Conditions on Surface Area and O/C and H/C Ratios of Biochar: Towards Understanding Performance of Biochar Using Simplified Approach
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Effect of pH, Volatile Content, and Pyrolysis Conditions on Surface Area and O/C and H/C Ratios of Biochar: Towards Understanding Performance of Biochar Using Simplified Approach

机译:pH,挥发含量和热解条件对生物炭表面积和O / C和H / C比的影响:旨在使用简化方法了解生物炭的性能

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The objective of this study was to predict biochar properties [surface area and oxygen-to-carbon (O/C) and hydrogen-to-carbon (H/C) ratios] from pyrolysis conditions, volatile matter content, and pH using the k-nearest neighbor (KNN) algorithm. Such predictions were made for different types of biochar, derived from various sources, namely rice husks, rice straw, applewood chips, and oakwood. The relative significance of each parameter affecting the Brunauer-Emmett-Teller (BET) surface area, O/C ratio, and H/C ratio was reported. The BET surface area increased with an increase in temperature or pH but decreased with an increase in the volatile matter content. A relationship was identified between H/C ratio, biochar yield, volatile matter content, pH, temperature, and adsorption. According to the results obtained, volatile matter content was found to be the most significant parameter affecting H/C ratio, followed by temperature, adsorption, pH, and biochar yield but in the case of O/C ratio and surface area, adsorption was found to have the highest significance of all the parameters. Overall, this study is useful to estimate the performance of biochar (surface area, stability, and bonding ability). This will further help certain users (farmers, engineers, and soil and water remediation scientists) to refine the list of biochars suitable for their purpose without going through laborious and cost-intensive process of determining surface area and O/C and H/C ratios.
机译:本研究的目的是将生物炭特性从热解条件,挥发物质含量和pH值预测生物炭性能[表面积和氧 - 碳(O / C)和氢 - 碳(H / C)比率,并使用K - 最终邻居(knn)算法。这些预测是针对不同类型的生物炭制成的,来自各种来源,即稻壳,稻草,Applewood芯片和奥克伍德。报道了影响Brunauer-Emmett-exers(Bet)表面积,O / C比和H / C比的每个参数的相对重要性。 BET表面积随温度或pH的增加而增加,但随着挥发性物质含量的增加而降低。在H / C比,生物炭产率,挥发物质含量,pH,温度和吸附之间鉴定了一种关系。根据所得的结果,发现挥发性物质含量是影响H / C比的最显着参数,其次是温度,吸附,pH和生物炭产量,但在O / C比和表面积的情况下,发现吸附具有所有参数的最高意义。总体而言,该研究可用于估算生物炭的性能(表面积,稳定性和粘接能力)。这将进一步帮助某些用户(农民,工程师和土壤和水修复科学家),以优化适合其目的的生物和生物和成本密集的方法,无需确定表面积和o / c和h / c比率。

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