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Optimization of Phosphoric Acid Treatment Biochar using Response Surface Method

机译:响应面法优化磷酸处理生物炭的工艺

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Biochar is derived from the crop residue as a multifunctional materials for agricultural applications and as a soil enhancer to improve soil fertility. The physical and chemical properties of biochar are improved via phosphoric acid treatment. The aim of this study is to optimize the acid treatment of biochar for two factor; 1) concentration of phosphoric acid and 2) heating temperature via Response Surface Methodology (RSM) by using Design Expert 10 software. A set of 11 experiments were carried out based on Central Composite Design (CCD) with three repetitions at center point. Hence, the responses were set in two factors; 1) pH and 2) negative surface charge. The biochar produced from slow pyrolysis process of rubber wood sawdust (RWSD) in a horizontal tube furnace heated at 5?C/minute from room temperature to maximum temperature of 400?C with holding time of 1 hour. Characterization of treated biochar was performed using Scanning Electron Microscopy (SEM) and SEM with EDX. Analysis of variance of the pH and negative surface charge indicated that the selected quartic model was significant with p-value of <0.05. Predicted parameters to obtain the maximum negative surface charge were 1 Mol of acid concentration and 85?C of heating temperature with desirability of 98%.
机译:生物炭源于农作物残渣,是农业应用中的多功能材料,也是土壤改良剂,可提高土壤肥力。生物炭的物理和化学性质通过磷酸处理得到改善。这项研究的目的是针对两个因素优化生物炭的酸处理。 1)磷酸浓度和2)使用Design Expert 10软件通过响应表面方法(RSM)进行加热。基于中央复合设计(CCD)进行了11个实验,其中三个重复在中心点进行。因此,将响应设置为两个因素: 1)pH和2)负表面电荷。在水平管式炉中,橡胶木屑(RWSD)的缓慢热解过程产生的生物炭,从室温以5?C /分钟的速度加热到最高温度为400?C,保持时间为1小时。使用扫描电子显微镜(SEM)和带有EDX的SEM对经过处理的生物炭进行表征。 pH和负表面电荷的方差分析表明,选择的四次模型具有显着性,p值<0.05。获得最大负表面电荷的预测参数为1摩尔的酸浓度和85℃的加热温度,期望值为98%。

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