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Although a large proportion of building rubble is already being recycled, most recycling applications, e.g. in roadbed foundations, can be considered as downcycling. This study is aimed at improving the material properties of crushed concrete fines by wet treatment, using a jig for density separation. Trial runs in a pilot plant with a flow rate between 0.45 and 0.65 t/h were conducted with two different materials (A and B). The materials were separated into heavy fraction, light fraction and finest fraction. Laboratory tests and tests for building materials were carried out on the output fractions and on the input materials. Laboratory tests showed an improvement of material properties such as loss by washing and content of binder matrix as well as water absorption for both materials A and B. The tests for building materials on mortar specimens showed that strength properties of specimens containing crushed concrete fines (heavy fraction) of type A were improved by wet treatment, but not for test specimens of material type B. Strength tests on concrete showed that a replacement of natural aggregates with wet-treated concrete fines up to 50 % had little effect on compressive strength, while untreated material exhibited a clearly lower compressive strength.
Liquid adsorption chromatography at critical conditions (LACCC) in normal and in reversed-phase modes provides independent information on the molar mass distributions of both blocks of poly(methyl methacrylate)-block-poly(tert-butyl methacrylate), even if no information about the precursor is available. In addition, the amount of unreacted precursor can be determined, even if its molar mass is comparable to that of the total block copolymer. The reversal of elution order by changing of stationary and mobile phases makes it possible to independently characterize each block in the SEC mode of the LACCC system. Thus, complete structural information is obtained even without using two-dimensional chromatographic techniques.
Most lightweight aggregates (LWA) are produced by thermal Treatment of natural raw materials such as clay and shale. In addition to the high energy costs thereby incurred, the availability of suitable raw materials is limited. Other LWA manufactured from industrial by-products and wastes do not always meet the quality criteria for use in high-Quality lightweight concrete. A real alternative is the use of novel lightweight aggregates (referred to as LWA, aggregates and granules) made from mineral construction and demolition waste. An appropriate manufacturing technology has recently been developed in the framework of a German research project /1, 2/. Masonry rubble of variable grain size containing different amounts of brick material (25 to 70 %) serves as raw material. The LWA are obtained in a multistage manufacturing process by a thermal or hydrothermal treatment, which causes the expansion and the hardening of the material. The novel LWA meet the acceptance criteria for conventional lightweight aggregates. They are suitable for the production of lightweight concrete /2-6/. However to create tailor-made LWA from masonry rubble, the novel expanded materials and the influence of manufacturing conditions have to be understood in more detail. This paper reports on ongoing investigations of the chemico-mineralogical composition and microstructure of the novel LWA and focuses on the results of Chemical analyses, XRD, ESEM, TG/DTA and fusibility tests.
Bau- und Abbruchabfälle stellen den größten Abfallstrom in Deutschland dar. Die anfallenden Mengen und die erreichten Recyclingquoten sind in den seit 1996 erscheinenden Monitoring-Berichten der Arbeitsgemeinschaft Kreislaufwirtschaftsträger Bau dargestellt. In dem 2013 erschienenen Bericht [BV Baustoffe 2013] wird ausgewiesen, dass im Jahr 2010 53.1 Millionen Tonnen Bauschutt (ohne Straßenaufbruch) bestehend aus Beton- und Mauerwerkabbruch anfielen. Im Jahr 2010 fielen in Deutschland neben den rund 6 Mio. Tonnen reiner Ziegelabfalle mehr als 20 Mio. Tonnen ziegelhaltige Gemische als Bau- und Abbruchabfälle an [destatis 2012], Das in stationären oder mobilen Anlagen aufbereitete Material wird hauptsächlich im Tief- und Landschaftsbau eingesetzt. Ein Einsatz im Hochbau erfolgt nur vereinzelt. Hierbei werden rezyklierte grobe Gesteinskörnungen für Normalbeton aus Betonbruch gewonnen. Heterogener Mauerwerkbruch, der Wandbaustoffe, Mörtel, Putz, Fliesen und weitere Bestandteile enthält, oder die bei der Aufbereitung zwangsläufig entstehenden Feinfraktionen finden bisher keine Verwendung. Ursachen dafür sind die erhebliche Heterogenität in Bezug auf die Materialzusammensetzung und der große Feinkornanteil. Die Verwertung als Verfullmaterial und im Deponiebau oder die Deponierung selbst wird zukünftig durch die strikte Anwendung des Kreislaufwirtschaftsgesetzes bzw. den stetigen Rückgang von Deponiekapazitäten nicht mehr möglich sein.
Heterogene und feinkörnige Bauabflle aus Mauerwerkbruch lassen sich heute nur auf einem sehr geringen Qualittsniveau verwerten. Um diese Situation zu überwinden, wird deren Verwendung als Ausgangsstoff für die Herstellung von leichten Gesteinskörnungen vorgeschlagen, die hnlich wie Blhtone und Blhschiefer in einem thermischen Prozess erzeugt werden. Dafür wurde zunchst die grundstzliche Eignung von Mauerwerkbruch bewertet. Es folgten experimentelle Untersuchungen, in welchen nachgewiesen werden konnte, dass Leichtgranulate mit definierten, einstellbaren Eigenschaften aus Mauerwerkbruch herstellbar sind. Sie sind in ihren Eigenschaften den leichten Gesteinskörnungen aus natürlichen Rohstoffen mindestens ebenbürtig. Die daraus hergestellten, gefügedichten Leichtbetone erzielen durchweg vergleichbare Werte wie die Leichtbetone mit herkömmlichem Blhton. Leichtgranulate aus Mauerwerkbruch stellen ein Produkt dar, dessen Herstellung nahezu ohne Primrrohstoffe auskommt. Das Verfahrensprinzip scheint außerdem prdestiniert für die hochwertige Verwertung auch anderer mineralischer Reststoffe zu sein.---------------------------------------------------------------------------------------------------------------------------------------------------
Production of lightweight aggregate from masonry rubble. At present, heterogeneous and fine-grained masonry rubble can only be recycled at very low quality. To overcome this limitation, the material was employed as feedstock for the production of lightweight aggregates in a thermal process similar to that used in the manufacture of expanded clay and expanded slate. To that end, the fundamental suitability of masonry rubble as a raw material was evaluated. Experiments were carried out which indicated that lightweight granules with defined, modifiable proper-ties on a par with to those of natural-material- based aggregates could be manufactured from masonry rubble. Structural lightweight concretes produced with these secondary aggregates achieved comparable performance to lightweight concretes produced with conventional expanded clay. Lightweight recycled building material aggregates represent a product that hardly requires any primary resources in its manufacture. In principle, the technique also seems to be well suited for high-quality recycling of other mineral waste materials.
Laser beam oscillation, applied one- or two-dimensional to the actual welding process, influences the welding process in terms of compensation of tolerances and reduction of process emissions like spatter and melt ejections that occur in industrial applications, such as in body-in-white manufacturing. If the welding process could be adapted to these tolerances by the momentarily demanded melt pool width to generate sufficient melt volume or to influence melt pool dynamics, e.g. for a better degassing, laser welding would become more robust. However, beam oscillation results are highly dependent on the natural frequency of the melt pool, the used spot diameter and the oscillation speed of the laser beam. The conducted investigations with an oscillated 300 μm laser spot show that oscillation strategies which are adjusted to the joining situation can bridge gaps to approximately 0.6 mm at metal sheet thickness of 0.8 mm. However, the complex behaviour of the melt pool has to be considered to generate proper welding results. This work puts emphasis on showing aspects of beam oscillation in fillet welding in lap joints.
In todays automotive frame-and-body construction, laser welds are typically carried out as square butt welds in lap joints. These welds are increasingly produced by remote laser welding optics with working distances of 500 mm and more. This enables simple path programming because clamping devices are traversed over and therefore low cycle times with improved productivity is achieved. However, workpiece tolerances lead to part displacements and varying joint positions over time. These displacements have to be acted against by appropriate flange length that contain for positioning deviations. Using this concept, aspired light-weight optimisations, e.g. reducing flange length, are difficult to achieve. By using seam tracking sensors, part tolerances are automatically detected and counteracted for. In addition, joint edge detection allows constructive changes on the type of weld. Fillet welds reduce flange lengths', improve force flow and open up possibilities for visual quality monitoring. Apart from that, vertical displacements in the form of height tolerances still occur. This needs consideration by adapting the set of welding parameter to the current welding situation. In this respect, one main welding parameter is the lateral beam offset to the upper sheet. Since body-in-white welding applications mainly comprise of zinc-coated steel sheets, special requirements for the welding process are given. Especially zero-gap-welding and welding of joints with gaps larger than 0.2 mm are critical. Using a laser beam oscillation process can stabilise these situations. Approaches to finding parameter sets are presented in this paper.
The aim of the joint project ViPQuali (Virtual Product Qualification) was to describe a components ageing behaviour in a given environment, by numerical simulation.
Having chosen polypropylene (PP) as the material, which does not show sensitivity to moisture, the relevant weathering parameters of the doseresponse functions could be limited to spectral irradiance and temperature.
In artificial irradiation tests, for PP plates of varied stabiliser content, spectral sensitivity as well as temperature dependence of irradiation-caused crack formation was quantified. For that purpose, samples were exposed both to artificial weathering tests at various constant temperatures and to spectrally resolved irradiation. The temperature dependence could be modelled by an Arrhenius fit. For fitting the spectral sensitivity, a plateau function was chosen. Subsequently, the stabiliser content was parameterised and extrapolated.
The formed dose–response functions were incorporated into a Computational Fluid Dynamics (CFD) software program, simulating the environment of a sample within a Phoenix-exposed IP/DP (Instrument Panel/Door Panel box) box, based on sun position and weather conditions, including radiation interactions. Observed local effects as well as the general ageing advance of PP hats are compared with respect to simulation and experiment.
Resulting from this project, for this most simple example of PP of varied stabiliser content, the time to failure can be estimated for each weathering exposure environment with known time-resolved irradiance and temperature conditions.
Laser beam oscillation opens up new possibilities of influencing the welding process in terms of compensation of tolerances and reduction of process emissions that occur in industrial applications, such as in body-in-white manufacturing. The approaches are to adapt the melt pool width in order to generate sufficient melt volume or to influence melt pool dynamics, e.g. for a better degassing. Welding results are highly dependent on the natural frequency of the melt pool, the used spot diameter and the oscillation speed of the laser beam. The conducted investigations with an oscillated 300 µm laser spot show that oscillation strategies, which are adjusted to the joining situation improve welding result for zero-gap welding as well as for bridging gaps to approximately 0.8 mm. However, a complex set of parameters has to be considered in order to generate proper welding results. This work puts emphasize on introducing them.
Heterogene und feinkörnige Bauabfälle aus Mauerwerkbruch lassen sich heute nur auf einem sehr geringen Qualitätsniveau verwerten. Um diese Situation zu überwinden, wurde das Material als Rohstoff für die Herstellung von leichten Gesteinskörnungen verwendet, die ähnlich wie Blähtone und Blähschiefer in einem thermischen Prozess erzeugt werden. Auf der Grundlage einer Literaturübersicht wurde zunächst die grundsätzliche Eignung von Mauerwerkbruch bewertet. Es folgten experimentelle Untersuchungen, in welchen nachgewiesen werden konnte, dass Leichtgranulate mit definierten, einstellbaren Eigenschaften aus Mauerwerkbruch herstellbar sind. Sie sind in ihren Eigenschaften den leichten Gesteinskörnungen aus natürlichen Rohstoffen mindestens ebenbürtig. -----------------------------------------------------
At present heterogeneous and fine-grained masonry rubble is recycled at a very low level. To overcome this situation the material is used as feedstock for the generation of lightweight aggregates, produced by a thermal process similar to the manufacturing of expanded clays and shales. On the basis of a literature review the suitability of masonry rubble as raw material is evaluated generally. Then materials from different recycling plants were experimentally tested. The results show, that expanded granules with defined, adjustable properties can be produced from masonry rubble. The properties of these secondary lightweight aggregates are at least equivalent to the properties of the known expanded clay aggregates.
Neue leichte Gesteinskörnungen werden durch rohstoffliches Recycling aus heterogenem und feinkörnigem Mauerwerkbruch hergestellt. Die Erprobung dieser Aufbaukörnungen im Leichtbeton liefert Aussagen zu ihrer Qualität und Eignung. Nach einer kurzen Charakterisierung der für die Betonherstellung ausgewählten Aufbaukörnungen werden die entworfene Betonrezeptur vorgestellt und einige Ergebnisse der Festbetonuntersuchungen diskutiert.----------------------------------------------------------------------------------------------------------
New lightweight aggregates are produced by feedstock recycling from heterogeneous and fine-grained masonry rubble. Testing of these tailor-made expanded aggregates in lightweight concrete provides information about their quality and performance. Following a brief characterization of the tailor-made expanded aggregates used in concrete production, the concrete mix design is presented and some results of the tests of hardened concrete are discussed.
The material properties of recycled concrete aggregates (RCA) are
correlated to the sorting accuracy of the former demolition waste. Impurities like
wood, clay bricks or gypsum can lead to inferior building material properties. Harmful
substances like heavy metals or organic pollutants should be minimised as well.
Hence the non-concrete materials have to be separated from the concrete material
stream. This can be done during the demolition process by using selective
dismantling techniques. Alternatively a variety sorting and classifying techniques to
purify the crushed concrete can be utilized.
A research project, funded by the Federal Ministry for the Environment, Nature
Conservation and Nuclear Safety, investigated the possibilities of gaining recycled
concrete aggregates of a high quality for the reuse in the production of concrete. The
work focuses especially on how gypsum respectively sulphates in the crushed
concrete can be reduced. Sulphates can impair the setting behaviour of concrete
and also damage set concrete by causing expansion. Therefore the content of
sulphates in RCA is restricted by guidelines and standards in Germany.
Generally, gypsum in construction waste originates from interior fittings like gypsum
walls, floor screeds, plaster boards and also plaster. Most of these materials can be
reconstructed using selective dismantling techniques. This can be achieved either by
manual labour or by using mechanical equipment e.g. to remove floor screeds by
milling. Depending on the specific deconstruction site it can be more effective and/or
more environmentally compatible to remove sulphates by treating the crushed
concrete. Applicable treatments for sulphate reduction include dry processes like
manual sorting of gypsum wall blocks as well as wet treatments e.g. jigging.
In addition this research project an environmental performance evaluation was
undertaken to assess different techniques for reducing sulphates in recycled
concrete aggregates.
Aufgrund der großen Massenströme ist das Recycling von Baurestmassen von besonderer Bedeutung
für die Schonung von natürlichen Ressourcen. Eine wichtige Voraussetzung für ein hochwertiges
Recycling, wie z.B. eine Wiederverwertung von aufbereitetem Bauschutt/Altbeton als rezyklierte
Gesteinskörnung im Hochbau, ist die Einhaltung von Grenzwerten für Stör- und Schadstoffe. Dabei
steht der Sulfatgehalt im Eluat von Bauschutt besonders im Fokus. In der vorliegenden Studie wird
untersucht, wie durch die Optimierung von Abbrucharbeiten und Bauschuttaufbereitung hochwertige
Gesteinskörnungen aus Altbeton gewonnen werden können. Anhand von Literatur- und
Datenrecherchen werden zunächst Sulfatquellen in Gebäuden sowie verfügbare Abbruch- und
Aufbereitungstechniken zusammengestellt. Am Beispiel von unterschiedlichen Gebäudetypen werden
Szenarien für selektiven und nicht selektiven Abbruch (Schwerpunkt: Sulfatentfachtung) in Hinblick auf
ihre Umweltwirkungen ökobilanziell bewertet. Ergänzt werden diese Bewertungen durch
Untersuchungen an realen Bauschuttmaterialien und Abbruchprojekten. Auf dieser Basis werden
Handlungsempfehlungen für die Gewinnung von hochwertigen RC-Gesteinskörnungen erarbeitet und
diskutiert.-----------------------------------------------------------------------------------------
Due to the large-scale mass flow of construction and demolition wastes, the recycling of those
residues is of particular importance for the conservation of natural resources. An important
requirement for recycling on a high level, like the reuse of crushed concrete as recycled concrete
aggregate, is the observation of limits for hazardous substances and impurities. This study is focusing
on the reduction of sulphates in the eluate of crushed concrete. An investigation of possibilities to
optimize demolition and dismantling as well as treatment of crushed concrete with the objective of
gaining recycled concrete aggregates of high quality. Based on a literature research and a data review
the origins of sulfates in buildings and also the availability of techniques for demolition and treatment
of crushed concrete are listed and evaluated. Using the examples of different building types scenarios
for selective dismantling and non-selective demolition (focused on reducing suphates) are evaluated in
terms of affecting the environment. In addition samples from real demolition construction sites and
plants for treatment of construction rubble were investigated. Based on these results
recommendations for the production of high quality recycled concrete aggregates are worked out.
Die Ressourcenverknappung und steigende Preise rücken nachhaltiges Wirtschaften und die Wiederverwertung von Abfällen in den Blickpunkt der Forschung. Bauabfälle sind in Deutschland – mit 72,4 Mio.t im Jahr 2004 – der größte Abfallstrom. Es wird ein Überblick über den Stand der Technik zur Aufarbeitung und Verwertung von Bauabfällen gegeben und die Anforderungen an Bauabfälle, die als Sekundärrohstoff eingesetzt werden sollen, diskutiert. Die Forschung im Baustoffrecycling bezieht sich sowohl auf neue Aufbereitungstechniken als auch auf die Charakterisierung der Recyclingmaterialien sowie auf deren Einfluss auf die Betonqualität. Die Eignung und Verwertung von Bauabfällen als Sekundärrohstoffe für Baustoffe wird anhand ihrer chemischen Zusammensetzungen mit Hilfe von ternären Diagrammen diskutiert.----------------------------------------------------------------------
An overview about quantity of construction and demolition waste (CDW) and a state of the art of the reuse is given. The technology is described, which is applied for the processing of CDW in a stationary plant. The requirements on recycled aggregates, which shall be used in road construction or in manufacturing of concrete, can be divided in such related to the material and physical properties and such related to the environmental properties. The rules give guidance on the composition with the aim of excluding the constituents with unfavourable features. The environmental standards which yet in discussion are give threshold of the leachable components in recycled aggregates. The material potential of building waste is discussed. Information on the chemical composition of recycled materials is compared with the composition of pure materials. With the aid of ternary charts such building materials are identified, in which the recycled materials can be used as recycled feedstock.
Im Forschungsprojekt „Aufbaukörnungen“ wird eine Technologie zur Herstellung hochwertiger Leichtgranulate aus sekundären Rohstoffen auf der Basis von heterogenen und teilweise feinkörnigen Bau- und Abbruchabfallen entwickelt. Im Mittelpunkt der Untersuchungen steht der Mauerwerkbruch, der größere Verwertungsdefizite als Betonbruch aufweist, Im Jahr 2010 fielen in Deutschland neben den rund 6 Mio. Tonnen reiner Ziegelabfälle mehr als 20 Mio. Tonnen ziegelhaltige Gemische als Bau- und Abbruchabfälle an. Der Verwertungsstrategie liegt die Idee des rohstofflichen Recyclings zu Grunde. Das heißt, nicht die physikalischmechanischen Eigenschaften des Mauerwerkbruchs, sondern sein Rohstoffpotenzial wird genutzt. Das Recycling baut auf der chemisch-mineralogischen Zusammensetzung des Ausgangsmaterials auf. Die Leichtgranulate(Aufbaukörnungen) werden am Ende eines mehrstufigen Herstellungsprozesses durch thermische oder hydrothermale Erhärtung produziert.
Im vorliegenden Beitrag werden der Herstellungsprozess beschrieben und die Ergebnisse zu den chemischen und physikalischen Eigenschaften der hergestellten Leichtgranulate denen von vergleichbaren handelsüblichen Blähtönen gegenübergestellt. Entscheidend für die Eignung einer leichten Gesteinskörnung ist jedoch letztlich ihre Leistungsfähigkeit im Beton. Daher wurden Betone mit den neuartigen Leichtgranulaten hergestellt. Über die Festbetoneigenschaften wird ebenfalls berichtet.
Recycling materials from building construction can currently not be adequately recycled. Reasons for this are their considerable heterogeneity in terms of materials composition and high fine partide content. Recycling as filling material and in the construction of waste disposal facilities, or as landfill, will in future no longer be possible in view of the stringent application of the German law of lifecyde management and/or the steady decrease of waste-disposal capacities. In this context, the joint research project “lightweight aggregates,” supported by the German Federal Ministry for Education and Research, a technology for manufacturing lightweight aggregates was developed.
Effects of wet processed crushed concrete fines as secondary aggregates in building materials
(2008)
Aufbaukörnungen - Heterogener Bauschutt als Rohstoff für die Herstellung von Leichtgranulaten
(2011)
At present, heterogeneous and fine-grained masonry rubble can only be recycled at very low level. To overcome this limitation, the material was employed as feedstock for the production of lightweight aggregates in a thermal process similar to that used in the manufacture of expanded clay and expanded slate. To that end, the fundamental suitability of masonry rubble as a raw material was evaluated. Experiments were carried out which indicated that lightweight granules with defined, adjustable properties similar to those of natural-material-based aggregates could be manufactured from masonry rubble. Structural lightweight concretes produced with these secondary aggregates achieved comparable performance to lightweight concretes produced with conventional expanded clay. Lightweight recycled building material aggregates represent a product that hardly requires any primary resources in its manufacture. In principle, the technique also seems to be well suited for high-quality recycling of other mineral waste materials.
Controlling thickness and tightness of surface passivation shells is crucial for many applications of core–shell nanoparticles (NP). Usually, to determine shell thickness, core and core/shell particle are measured individually requiring the availability of both nanoobjects. This is often not fulfilled for functional nanomaterials such as many photoluminescent semiconductor quantum dots (QD) used for bioimaging, solid state lighting, and display technologies as the core does not show the applicationrelevant functionality like a high photoluminescence (PL) quantum yield, calling for a whole nanoobject approach. By combining high-resolution transmission electron microscopy (HR-TEM) and X-ray photoelectron spectroscopy (XPS), a novel whole nanoobject approach is developed representatively for an ultrabright oleic acid-stabilized, thick shell CdSe/CdS QD with a PL quantum yield close to unity. The size of this spectroscopically assessed QD, is in the range of the information depth of usual laboratory XPS. Information on particle size and monodispersity were validated with dynamic light scattering (DLS) and small angle X-ray scattering (SAXS) and compared to data derived from optical measurements. In addition to demonstrating the potential of this novel whole nanoobject approach for determining architectures of small nanoparticles, the presented results also highlight challenges faced by different sizing and structural analysis methods and method-inherent uncertainties.
REALight ‐ Leichtgranulate und REA‐Gips aus feinkörnigen sulfatbelasteten Bau‐ und Abbruchabfällen
(2023)
Ziel des Projekts REALight ist die Entwicklung einer Referenzanlage zur Herstellung von Leichtgranulaten (leichte Gesteinskörnungen) aus Bau‐ und Abbruchabfällen und zur Gipsrückgewinnung. Als Rohstoffe werden bisher ungenutzte oder auf niedrigem Niveau eingesetzte Bau‐ und Abbruchabfälle und industrielle Nebenprodukte verwendet. Als Produkte werden leichte Gesteinskörnungen hergestellt. Die Sulfatabtrennung durch eine thermische Zersetzung bildet die Grundlage für die zusätzliche Gewinnung von Rauchgasentschwefelungs‐Gips (REA‐Gips). Das Projekt wird im Rahmen der Fördermaßnahme „Ressourceneffiziente Kreislaufwirtschaft – Bauen und Mineralische Stoffkreisläufe (ReMin)” gefördert. ReMin ist eine Maßnahme zur Umsetzung des BMBF‐Forschungskonzepts „Ressourceneffiziente Kreislaufwirtschaft” als Teil der BMBF Strategie „Forschung für nachhaltige Entwicklung – FONA”. Ziel der Förderung ist es, den Ausbau der Kreislaufwirtschaft voranzutreiben. Im Mittelpunkt steht dabei die Bauwirtschaft mit ihrer hohen Nachfrage nach Rohstoffen und gleichzeitig großen Mengen an anfallenden mineralischen Abfällen. Am Projekt REALight sind 12 Partner aus verschiedenen Bereichen der Baustoffherstellung und ‐anwendung, Abfallaufbereitung, Verfahrenstechnik sowie Forschung und Entwicklung beteiligt.