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The Effects of Flue Gas Desulphurization Gypsum on the Properties of Dissolved Organic Matter and Bacterial Community During Composting

机译:烟气脱硫石膏对堆肥过程中溶解性有机质和细菌群落的影响

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Composting is a process that converts organic materials including solid wastes into humus-like substances. Additives play an important role in regulating composting performances. This work investigated the influences of flue gas desulphurization gypsum (FGDG) on the properties and evolution of dissolved organic matter (DOM) during the co-composting of dairy manure, sugarcane leaf and pressmud (the sludge from sugar factory effluent) with the combination techniques of elemental analysis, particle size, zeta potential, UV-Vis spectroscopy and FT-IR technology. The results revealed that FGDG amendment reduced carbon loss and facilitated nitrogen emission in compost DOM, increased the aromaticity of DOM and compost maturity, enhanced the absorbance of -OH, -CHO, -COOH and C-O in polysaccharides. Additionally, the adding of FGDG was an inhibitive factor to the whole bacterial diversity during composting. These findings provided new insights into the evolution and properties of DOM and the microbial community during the composting process with FGDG amendment.
机译:堆肥是将包括固体废物在内的有机材料转化为腐殖质的过程。添加剂在调节堆肥性能中起重要作用。这项工作通过联合技术研究了乳化肥,甘蔗叶和压泥(糖厂废水中的污泥)的共同堆肥过程中烟气脱硫石膏(FGDG)对溶解性有机物(DOM)的性质和演变的影响。元素分析,粒度,ζ电位,UV-Vis光谱学和FT-IR技术。结果表明,FGDG改性剂减少了堆肥DOM中的碳损失并促进了氮的排放,增加了DOM的芳香性和堆肥成熟度,增强了多糖中-OH,-CHO,-COOH和C-O的吸收。此外,添加FGDG是堆肥过程中整个细菌多样性的抑制因子。这些发现为利用FGDG修正堆肥过程中DOM和微生物群落的演化和特性提供了新的见解。

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