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Verkerk Pieter J. Lindner Marcus Pérez-Soba Marta Paterson James S. Helming John Verburg Peter H. Kuemmerle Tobias Lotze-Campen Hermann Moiseyev Alexander Müller Daniel Popp Alexander Schulp Catharina J. E. Stürck Julia Tabeau Andrzej Wolfslehner Bernhard van der Zanden Emma H. 《Regional Environmental Change》2018,18(3):817-830
Regional Environmental Change - Plausible scenarios of future land use derived from model projections may differ substantially from what is actually desired by society, and identifying such... 相似文献
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H. Mattenberger G. Fraissler M. Jöller T. Brunner I. Obernberger P. Herk L. Hermann 《Waste management (New York, N.Y.)》2010,30(8-9):1622-1633
Ashes from monoincineration of sewage sludge suggest themselves as an ideal base for inorganic fertiliser production due to their relatively high phosphorus (P)-content. However, previously they need to be detoxified by reducing their heavy metal content. The core process considered in this paper consists of three steps: mixing of the ashes with suitable chlorine-containing additives, granulation of the mixture and thermochemical treatment in a rotary kiln. Here relevant heavy metal compounds are first transformed into volatile species with the help of the additives and then evaporated from the granules.In this study two chemically different ashes and their mixture were agglomerated to two different granulate types, briquettes and rolled pellets. The resulting six different materials were subjected to thermal treatment at different temperatures. The heavy metals examined were Cu and Zn due to their strong dependence on treatment conditions and their relevance concerning thermal treatment of sewage sludge ashes. Besides, the behaviour of Cl and K was monitored and evaluated.The experiments showed that ash type and temperature are more influential on Cl and heavy metal chemistry than granulate type. Temperature is a primary variable for controlling removal in both cases. Cu removal was less dependent on both ash and granulate type than Zn. The Cl utilization was more effective for Cu than for Zn. Depending on the treatment conditions some K could be retained, whereas always all P remained in the treated material. This satisfies the requirement for complete P recycling. 相似文献