Transformation of mineral matter during pyrolysis, gasification and combustion of biosolid chars

Alexander Y Ilyushechkin, San Shwe Hla, L. Schoeman
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Abstract

During thermochemical processing of biosolids in sewage sludge, different forms of phosphor-containing compounds are generated in biosolid chars (biochars). This paper describes how biochar-processing conditions affect the mineral compounds formed under pyrolysis, gasification and combustion of biosolids, and the key factors that influence the kinetics of phase formation. Our results show identified phase transformations through experiments in a laboratory tube furnace followed by X-ray diffraction analysis. Laboratory processing samples were verified and in situ phase transformations were observed through a synchrotron powder diffraction study. It was found that under a neutral atmosphere, crystalline oxide phases formed at lower temperatures and much faster than iron phosphide formed, while gasification and combustion conditions led to the formation of crystalline phases in phosphate forms. These forms of phosphor compounds in by-products of biosolids thermochemical treatment can be used as agricultural fertilizers.
生物固体炭热解、气化和燃烧过程中矿物的转化
在对污水污泥中的生物固体进行热化学处理的过程中,生物固体炭(生物炭)中会产生不同形式的含磷化合物。本文介绍了生物炭处理条件对生物固体热解、气化和燃烧过程中形成的矿物化合物的影响,以及影响相形成动力学的关键因素。我们的结果表明,通过实验室管炉实验和x射线衍射分析,确定了相变。对实验室加工样品进行了验证,并通过同步加速器粉末衍射研究观察到原位相变。结果表明,在中性气氛下,氧化铁结晶形成的温度比磷化铁低,形成速度比磷化铁快得多,而在气化和燃烧条件下形成磷化铁结晶。生物固体热化学处理副产物中的这些形式的磷化合物可以用作农业肥料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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