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Effect of carbonization temperatures on biochar formation of bamboo leaves

机译:碳化温度对竹叶生物炭形成的影响

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Bamboo is a typical plant native in Asia, been used in many sectors, which also produces a large volume of leaves which goes waste and not find its application for any useful purposes; is often considered as a bio-waste and normally incinerated or dumped; as its applications are not yet fully explored. However, some research work done on bamboo fibers for use as a reinforcement in making polymer matrix composite. In the present piece of research work, the influence of burning/carbonization of bamboo leaves (at different temperatures) have been studied and characterized. Proximate analysis gave the fixed carbon content (of ~nearly21%). X-Ray diffraction results revealed the presence of various phases viz. cristobalite (SiO2), Calcite (Ca2O3) etc. accompanied with changes in crystal structures. Fourier transform infrared spectroscopy results showed various modes of vibrations viz. 0-H stretching bending of other bonds; (for aromatic benzene derivatives) etc. Scanning Electron Microscopic observation (of morphology) showed irregular stacking arrangements between the randomly spaced lamellae structure, with variation in carbonizing temperature. Results revealed the advantages of pyrolysis process in biochar production/formation. It appears that, the bamboo biochar can have suitable properties for its use as an alternative energy source and also for agricultural applications. Its high porosity and carbon content suggest its application as activated carbon also; after physical or chemical treatments. The present research focuses on extending the frontiers of use of bamboo leaves from being an unutilized biowaste to its conversion into a value added product, which can be compassed in terms of sustainable applications.
机译:竹子是亚洲原产的典型植物,在许多部门中使用,这也产生了大量的叶子,这些叶子会浪费,而不是找到其适用于任何有用目的的缺陷;通常被认为是生物废物,通常焚烧或倾倒;由于其申请尚未完全探索。然而,在竹纤维上完成了一些研究工作,用作制备聚合物基质复合材料的增强。在目前的研究工作中,已经研究了竹叶燃烧/碳化(在不同温度下)的影响。近似分析得到固定碳含量(〜近21%)。 X射线衍射结果显示出各种阶段的存在。 Cristobalite(SiO2),方解石(CA2O3)等伴随着晶体结构的变化。傅里叶变换红外光谱结果显示了各种振动模式。 0-h拉伸其他键的弯曲; (对于芳族苯衍生物)等。扫描电子显微镜观察(形态学)在随机间隔的薄片结构之间显示出不规则的堆叠布置,具有碳化温度的变化。结果揭示了生物炭生产/地层热解过程的优点。似乎,竹生物炭可以具有适当的性能,以其用作替代能源源以及农业应用。其高孔隙率和碳含量也表明其应用是活性炭;经过物理或化学处理。本研究重点介绍,延长了竹叶的使用前沿,将不利的Biowaste转化为其转换成增值产品,这可以根据可持续应用方针指控。

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