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Synthesis, characterization and evaluation of biochar from agricultural waste biomass for use in building materials

机译:用于建筑材料的农业废弃物生物质的生物炭的合成,表征和评估

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Cement is a critical material for urbanization and its production is responsible for most of the CO2 emissions in the world. The use of substances capable of substituting the material responsible for greenhouse gases can reduce global warming, which is caused by the emission of greenhouse gases into the atmosphere, especially CO2. Among such materials is agricultural waste ash which has been found suitable to partially replace Portland cement in concrete production and can contribute to a decline of the environmental impact of cement production. The objectives of this study were to evaluate the effect of two agricultural wastes namely: rice husk and bagasse which were burnt in the absence of oxygen at 700 degrees C, in order to produce biochar, on the mechanical properties of concrete samples containing variable amounts of these substitutes. X-ray diffraction, BET and Scanning Electron Microscopy were applied for biochar characterization and investigation of its feasibility in concrete. A total of 0, 5 and 10% of the cement (by mass) was replaced by the agricultural waste biochar. For these mixtures, mechanical tests were conducted. The results were compared with those of concrete without biochar (control concrete), with compressive strength and splitting tensile strength. The results showed that the synthesized materials can be used as pozzolanic materials based on the XRD, SEM and BET methods. Concrete samples containing pretreated rice husk biochar (5%), unpretreated rice husk biochar (5%), pretreated bagasse biochar (5%), unpretreated bagasse biochar (5%), pretreated bagasse biochar (10%), and unpretreated bagasse biochar (10%) had a compressive strength of 36, 20.4, 54.8, 24.4, 21.1 and 23% higher than the control concrete, respectively. There was a 78% increase in tensile strength for concrete sample with 5% treated bagasse biochar compared to the concrete without any biochar. Overall, it has been concluded that rice husk and bagasse biochars are favorable substitutes and can be used in concrete without any adverse effect on the environment. (C) 2018 Elsevier Ltd. All rights reserved.
机译:水泥是城市化的关键材料,其生产是世界上大多数二氧化碳排放的原因。使用能够替代造成温室气体的物质的物质可以减少全球变暖,这是由于温室气体向大气中的排放,尤其是二氧化碳的排放所致。在这些材料中是农业废灰,已发现其适合部分替代混凝土生产中的波特兰水泥,并且可有助于降低水泥生产对环境的影响。这项研究的目的是评估两种农业废料:稻壳和甘蔗渣,它们在700摄氏度的无氧条件下燃烧以产生生物炭,对含有不同含量的有机废物的混凝土样品的机械性能产生影响。这些替代品。利用X射线衍射,BET和扫描电子显微镜对生物炭进行表征,并研究其在混凝土中的可行性。总共有0、5%和10%的水泥(按质量计)被农业废弃物生物炭替代。对于这些混合物,进行了机械测试。将结果与没有生物炭的混凝土(对照混凝土)的抗压强度和劈裂抗拉强度进行了比较。结果表明,基于XRD,SEM和BET方法,合成的材料可用作火山灰材料。包含预处理的稻壳生物炭(5%),未经预处理的稻壳生物炭(5%),预处理的蔗渣生物炭(5%),未经预处理的蔗渣生物炭(5%),预处理的蔗渣生物炭(10%)和未经预处理的蔗渣生物炭( 10%)的抗压强度分别比对照混凝土高36、20.4、54.8、24.4、21.1和23%。与没有任何生物炭的混凝土相比,采用5%处理过的蔗渣生物炭的混凝土样品的抗张强度提高了78%。总的来说,已经得出结论,稻壳和蔗渣生物炭是有利的替代品,可以在混凝土中使用而对环境没有任何不利影响。 (C)2018 Elsevier Ltd.保留所有权利。

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