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Preliminary laboratory production and characterization of biochars from lignocellulosic municipal waste

机译:木质纤维素市政垃圾中生物炭的实验室初步生产和表征

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Converting lignocellulosic municipal waste to biochar represents a carbon sequestration mechanism and a production route that diverts potentially useful feedstocks from landfills. In this preliminary investigation, slow pyrolysis to 480 C was used to produce biochars from 18 different wastes which were characterized by proximate analysis to determine ash, volatile matter and fixed carbon content. Desirable soil amendment properties such as cation exchange and gas adsorption capacities and pH were also measured. Pristine wood and several closely related products exhibited low ash and high fixed carbon content while paper and cardboard products were found to have higher ash and volatile matter content. Cation exchange capacity (CEC) values were comparable to activated carbon (AC) and within a similar range for most feedstock biochars, with grass and cardboard biochars having the highest CEC. All biochars were found to have similar gas adsorption capacities (GAC) that were lower than AC while newsprint biochar had a GAC twice as high as other samples. All biochars showed neutral to slightly alkaline pH values. In general, lignocellulosic municipal waste biochars exhibited a diverse range of potentially beneficial properties and should be further investigated as prospective soil amendments.
机译:将木质纤维素市政废物转化为生物炭代表了碳固存机制和生产路线,可将可能有用的原料从垃圾填埋场转移出去。在此初步研究中,将缓慢热解至480°C的温度从18种不同的废物中生产生物炭,并通过直接分析来确定其灰分,挥发性物质和固定碳含量。还测量了所需的土壤改良剂性质,例如阳离子交换,气体吸附能力和pH。原始木材和几种密切相关的产品显示出较低的灰分和较高的固定碳含量,而纸和纸板产品则具有较高的灰分和挥发性物质含量。阳离子交换容量(CEC)值可与活性炭(AC)相比,并且在大多数原料生物炭中处于类似范围内,其中草木和纸板生物炭具有最高CEC。发现所有生物炭具有相似的气体吸附能力(GAC),低于AC,而新闻纸生物炭的GAC则是其他样品的两倍。所有生物炭均显示中性至弱碱性的pH值。通常,木质纤维素市政垃圾生物炭表现出各种潜在的有益特性,应作为潜在的土壤改良剂进行进一步研究。

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