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Lignite ammonia adsorption and surface chemistry after dewatering

机译:脱水后的褐煤氨吸附和表面化学

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Ammonia (NH3) emissions from intensive cattle feedlots can be significantly reduced by the application of lignite to the bedding materials. Unfortunately, the high-water content of lignite leads to high transportation costs that preclude the use of this otherwise low-cost and efficient NH3 absorbing material. Efficient dewatering of lignite is required so that its transportation from mining sites to feedlots is economically feasible. It is important that dewatering of lignite does not decrease the NH3 capture capacity or increase potential safety hazards. This work evaluates the effects of an aerobic drying on dewatering, NH3 adsorption capacity, risk of spontaneous combustion, and the underlying surface chemistry of lignite. We found that aerobic dewatering at 200 degrees C decreased the lignite water content from 61.6% to 4.2% with reduced risk of spontaneous combustion, while ammonium (NH4+) and NH3 adsorption by lignite increased significantly by 65.8% and 28.8%, respectively. Chemical characterization indicated that these enhancements originated from partial oxidation of the dried lignite surfaces. The linear correlation between NH4+ adsorption and the concentration of oxygen-containing functional groups provides insight into the surface chemistry of NH3 adsorption, which is critically important for designing efficient lignite-based feedlot bedding materials.
机译:通过将褐煤应用于床上用品,可以显着降低来自强化牛饲料的氨(NH3)排放。不幸的是,褐煤的高含水量导致高运输成本,这妨碍了这种否则的低成本和高效的NH3吸收材料。需要高效的褐煤脱水,使其从采矿部位到饲料的运输是经济上可行的。重要的是褐煤脱水不会降低NH3捕获能力或增加潜在的安全危险。这项工作评估了一种有氧干燥对脱水,NH3吸附能力,自燃风险的影响,以及褐煤的潜在表面化学。我们发现,200摄氏度的需氧脱水降低了61.6%至4.2%,随着自燃的风险降低,而褐煤吸附的氨基(NH4 +)和NH 3分别增加了65.8%和28.8%。化学表征表明,这些增强源于干燥的褐煤表面的部分氧化。 NH4 +吸附与含氧官能团浓度之间的线性相关性提供了对NH 3吸附的表面化学的洞察力,这对于设计有效的褐煤基饲料床上用品材料是至关重要的。

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