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废弃物热解:在广泛的矿物质含量和热解温度范围内的吸附潜力的特性化和预测。

Pyrolysis of waste materials: Characterization and prediction of sorption potential across a wide range of mineral contents and pyrolysis temperatures.

机构信息

University of Vienna, Department of Environmental Geosciences and Environmental Science Research Network, Althanstrasse 14, UZA2, 1090 Vienna, Austria.

University of Vienna, Department of Environmental Geosciences and Environmental Science Research Network, Althanstrasse 14, UZA2, 1090 Vienna, Austria.

出版信息

Bioresour Technol. 2016 Aug;214:225-233. doi: 10.1016/j.biortech.2016.04.091. Epub 2016 Apr 20.

Abstract

Sewage sludge (50% mineral), manure (29%) and wood (<1%) were pyrolyzed at 200, 350 and 500°C with the aim to study the characteristics and sorption potential of materials undergoing pyrolysis across a wide range of mineral contents. A commercial plant-derived biochar (41% mineral) was also considered. The materials were extensively characterized and tested for their sorption towards the model sorbates benzene, naphthalene and pyrene. Plant-derived materials, regardless of their mineral content, developed micropores causing size exclusion of pyrene. Changes in properties and sorption behavior upon pyrolysis were generally consistent for the manure and wood series. A single regression equation developed on our data (including the sorbate hydrophobicity and sorbent polarity) provided excellent prediction of previously reported changes in sorption upon pyrolysis across a wide range of mineral content (up to 500°C). The sewage sludge series, however, followed a particular behavior, possibly due to very high mineral content (up to 67%).

摘要

污泥(50%矿物质)、粪肥(29%)和木材(<1%)在 200、350 和 500°C 下进行热解,目的是研究在广泛的矿物质含量范围内经历热解的材料的特性和吸附潜力。还考虑了一种商业植物衍生的生物炭(41%矿物质)。对材料进行了广泛的表征,并测试了它们对模型吸附质苯、萘和芘的吸附性能。无论矿物质含量如何,植物衍生材料都会形成微孔,从而阻止芘的尺寸排除。在热解过程中,性质和吸附行为的变化对于粪肥和木材系列通常是一致的。我们的数据(包括吸附质疏水性和吸附剂极性)上开发的单个回归方程提供了对在广泛的矿物质含量范围内(高达 500°C)热解过程中吸附变化的出色预测。然而,污泥系列则表现出特殊的行为,可能是由于矿物质含量非常高(高达 67%)。

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