TY - JOUR A1 - Russina, M. A1 - Gunther, G. A1 - Grzimek, V. A1 - Schlegel, Moritz-Caspar A1 - Veziri, C. M. A1 - Karanikolos, G. N. A1 - Yamada, T. A1 - Mezei, Ferenc T1 - Nanoscale Dynamics and Transport in Highly Ordered Low-Dimensional Water JF - The Journal of Physical Chemistry Letters N2 - Highly ordered and highly cooperative water with properties of both solid and liquid states has been observed by means of neutron scattering in hydrophobic one-dimensional channels with van der Waals diameter of 0.78 nm. We have found that in the initial stages of adsorption water molecules occupy niches close to pore walls, followed later by the filling of the central pore area. Intensified by confinement, intermolecular water interactions lead to the formation of well-ordered hydrogen-bonded water chains and to the onset of cooperative vibrations. On the other hand, the same intermolecular interactions lead to two relaxation processes, the faster of which is the spontaneous position exchange between two water molecules placed 3.2-4 A from each other. Self-diffusion in an axial pore direction is the result of those spontaneous random exchanges and is substantially slower than the self-diffusion in bulk water. KW - Hydrophobic confinement KW - Neutron scattering KW - Water dynamics PY - 2019 DO - https://doi.org/10.1021/acs.jpclett.9b02303 VL - 10 IS - 20 SP - 6339 EP - 6344 PB - ACS Publications AN - OPUS4-49257 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlegel, Moritz-Caspar A1 - Akkerman, Floris T1 - One step back, two steps forward – Resource efficiency requirements within ecodesign T2 - ECEEE 2019 Summer Study Proceedings - eceee 2019 Summer Study on energy efficiency: Is efficient sufficient? N2 - Resource efficiency is a much discussed topic in terms of improving the sustainability of energy related and energy non-related products. Resource efficiency aspects such as the availability of spare parts, the ability to dismantle, etc. have been included in draft working documents in the revision of several already existing Ecodesign regulations as a first step. However, often these aspects are not consistent with the current technology and design of these products. A possible reason could be a lack of sufficient consultation or of a methodology which is sufficiently tailored for this topic. The established strategies and tools, used by policymakers, such as the Methodology for the Ecodesign of Energy-related Products (MEErP), do not seem to deal with these aspects appropriately. Draft requirements need to be very well developed before being discussed with member states and other related stakeholders, because including resource efficiency parameters could lead to additional, very wide-ranging effects on society. This topic cannot be covered well with legislative tools developed primarily for energy aspects. In this paper, a method is presented which can be used to combine products’ properties with crucial resource efficiency indicators. The method can be used to develop a set of draft legislative requirements and to pre-evaluate these requirements by target groups which would be affected by additional legal requirements. These include: market surveillance authorities, standardization organizations, manufacturers and their associations, environmental organizations and research facilities. The method incorporates stakeholders’ feedback to identify potential resource efficiency measures for materials and/or products, their impact on the European ecology, economy and society. Based on this it would help to develop legislative requirements which are feasible and desirable. The results can then be fed into the formal legislative process, probably speeding it up. T2 - ECEEE 2019 Summer Study on Energy Efficiency CY - Belambra Presqu'île de Giens, France DA - 03.06.2019 KW - Resources KW - Circular economy KW - Ecodesign KW - Energy policy PY - 2019 UR - https://www.eceee.org/library/conference_proceedings/eceee_Summer_Studies/2019/ SN - 978-91-983878-5-8 SN - 2001-7960 VL - 2019 SP - 1553 EP - 1562 AN - OPUS4-48341 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlegel, Moritz-Caspar A1 - Koch, Claudia A1 - Mirtsch, Mona A1 - Harrer, Andrea T1 - Smart Products Enable Smart Regulations—Optimal Durability Requirements Facilitated by the IoT JF - Sustainability N2 - The challenges and opportunities linked with IoT have been intensively discussed in recent years. The connectivity of things over their entire life cycle and the smart properties associated with it provide new functionalities and unprecedented availability of (usage) data. This offers huge opportunities for manufacturers, service providers, users, and also policymakers. The latter May impact policy areas such as the regulations on resource and materials efficiency under the Ecodesign Directive 2009/125/EC. With the general approach as it is practiced today, legal requirements are usually set for entire product groups without considering the products individually, including user behavior and environmental conditions. The increasing number of smart products and the growing availability of product data are sparking a discussion on whether these requirements could be more product and application-specific. This paper presents a method for calculating the economically and ecologically optimal durability of a product. It allows determining the point in time when a product should be replaced by combining consumer data with product design data. This novel Approach could contribute to making product regulation more flexible and possibly more efficient. In this context, fundamental challenges associated with smart products in policymaking are also discussed. KW - Ecodesign KW - Internet of Things KW - Connectivity KW - Resource efficiency KW - Policy making PY - 2021 UR - https://nbn-resolving.org/urn:nbn:de:kobv:b43-524924 DO - https://doi.org/10.3390/su13084395 VL - 13 IS - 8 SP - 4395 PB - MDPI CY - Basel AN - OPUS4-52492 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlegel, Moritz-Caspar T1 - Ökodesign: Mehr als nur „Licht aus!“ - Die Europäische Kommission und die Ressourceneffizienz N2 - - Bisherige und zukünftige gesetzliche Anforderungen an die Ressourcen- und Materialeffizienz - Entwicklungsstand der Normen zur Umsetzung des Circular Economy Action Plan (M/543) - Wann kommt das „Winterpaket“ und was beinhaltet es? T2 - ExFo 2018 – Global Environmental Compliance CY - Stuttgart, Germany DA - 13.11.2018 KW - Circular economy KW - Durability KW - Reparability KW - Recycability KW - Ecodesign PY - 2018 AN - OPUS4-46588 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlegel, Moritz-Caspar T1 - Gut Ding braucht Weile - Ressourceneffizienz im Ökodesign und das „Winterpaket“ N2 - Die Kreislaufwirtschaftsinitiative der Europäischen Kommission fordert klar grundlegende Aspekte der Kreislaufwirtschaft in bereits bestehende Rechtsrahmen einzubetten. Anforderungen zur gesetzlich vorgeschriebenen Lebensdauer, Reparierbarkeit und Recyclingfähigkeit von Produkten sollen zukünftig auf europäischer Ebene ins Leben gerufen werden. Ein geeignetes Spielfeld ist die Ökodesign-Richtlinie. Momentan regelt sie primär die Energieeffizienz von energieverbrauchsrelevanten Produkten, doch der Fokus wird aktuell um Anforderungen an den nachhaltigen Einsatz von Ressourcen erweitert. Bei den gegenwärtigen Aktivitäten im Ökodesign steht der Normungsauftrag M/543 im Zentrum. Es wurde 2015 von der Europäischen Kommission an CEN/CENELEC vergeben und später stieß auch ETSI dazu. Bislang sind acht generische EN-Normen und zwei Fachberichte (Technical Report (TR)) geplant. Sie sollen grundlegende Aspekte der Nachhaltigkeit von energieverbrauchsrelevanten Produkten, die von der Ökodesign-Richtlinie betroffen sind, abdecken. Trotz der zu erwartenden hohen Reichweite dieses Vorhabens scheinen die Inhalte und der eigentliche Zweck der zu erarbeitenden Normen vielen Marktakteuren noch nicht vollständig bekannt zu sein. Daher hat ein nationaler Zentralverband eingeladen zu berichten. In dem Vortrag werden Antworten auf folgende Fragen gegeben: Warum im Ökodesign? Was ist geplant? Was ist betroffen? Worum geht es in den Normen? T2 - AK-Sitzung CY - ZVEI, Frankfurt a. Main, Germany DA - 19.09.2018 KW - Normung KW - Ressourceneffizienz KW - Ökodesign KW - Kreislaufwirtschaft PY - 2018 AN - OPUS4-45992 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlegel, Moritz-Caspar A1 - Rockland, Ulrike T1 - Wer schließt eigentlich unsere "Kreis"laufwirtschaft? JF - Zeitschrift für deutsche-, europäische- und internationale Normung - DIN-Mitteilungen N2 - Die Ressourcen der Erde sind nicht nur endlich, sondern werden zudem ineffizient genutzt. Mit dem im Dezember 2015 verabschiedeten Aktionsplan zur Kreislaufwirtschaft fördert die Europäische Kommission den Übergang zur stärker kreislauforientierten Wirtschaft. So werden Anforderungen an Reparaturfähigkeit, Lebensdauer und Recyclingfähigkeit von Produkten zukünftig in der Ökodesign-Richtlinie gesetzt. Die Ökodesign-Richtlinie regelt momentan die Energieeffizienz von energieverbrauchsrelevanten Produkten. Um Anforderungen an den nachhaltigen Einsatz von Ressourcen zu formulieren, fehlen jedoch Normen und Definitionen. Diese Normen werden Momentan geschaffen - erst danach können gesetzliche Anforderungen folgerichtig umgesetzt werden. KW - Kreislaufwirtschaft KW - Circular economy KW - Normung KW - Ökodesign KW - Lebensdauer KW - Reparierbarkeit KW - Recyclingfähigkeit KW - Durability KW - Reparability KW - Recyclability PY - 2018 VL - 11 SP - 21 EP - 23 PB - Beuth Verlag CY - Berlin AN - OPUS4-46884 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlegel, Moritz-Caspar A1 - Grzimek, V. A1 - Günther, G. A1 - Svetogorov, R. A1 - Veziri, C. M. A1 - Kapsi, M. A1 - Karanikolos, G. N. A1 - Prokhnenko, O. A1 - Bewley, R. A1 - Russina, M. T1 - Explaining water adsorption in one-dimensional channels in AlPO4-5 on molecular scale JF - Microporous and Mesoporous Materials N2 - The adsorption of water in one-dimensional channels in porous aluminophosphate material AlPO4-5 has been studied by a combination of gravimetric Analysis techniques, neutron and X-ray diffraction and Neutron spectroscopy. Molecular structure of AlPO4-5 consists of 12-membered rings of alternating, corner-sharing AlO4 and PO4 tetrahedra connected by oxygen bridges into sheets in the (a, b) plane. The sheets are connected by oxygen bridges along the c crystal axis and form onedimensional channels of which the largest, formed by the 12-membered rings, have a van der Waals Diameter of about 8.3 Å. Gradually increasing the amount of adsorbed water we could follow the evolution of the confined water mobility in a systematic way and identify the molecular mechanism of water adsorption. We focused particularly on the range of low and medium relative pressures up to p/p0=0.32, where a Change from a hydrophobic behavior to a steep, capillary condensation like water intake has been observed. At the Initial adsorption stages water occupies positions close to the pore walls causing the contraction of channels in the (a, b) plane and the prolongation of the channels along c axis in AlPO4-5. With the progressing intake water molecules form chains along the main channels. The cooperative interactions between water molecules lead to the onset of phonon-like cooperative modes and, surprisingly, to the increase of diffusive-like motion, which slow down only in the final adsorption stages when AlPO4-5 channels are completely filled. KW - AlPO4-5 KW - Water adsorption KW - Confined water KW - 1-dimensional, KW - Diffusion PY - 2018 DO - https://doi.org/10.1016/j.micromeso.2018.11.025 SN - 1387-1811 VL - 304 SP - 109201 PB - Elsevier Inc. AN - OPUS4-46798 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlegel, Moritz-Caspar T1 - Elektro"älter"geräte N2 - Inhalte: (i) Gründe für Ressourceneffizienzanforderungen im Ökodesign. (ii) Bisherige und zukünftige gesetzliche Anforderungen an die Ressourcen-/Materialeffizienz (iii) Entwicklungsstand der Normen zur Umsetzung des Circular Economy Action Plan – M/543 T2 - VDI Wissensforum CY - Dusseldorf, Germany DA - 05.12.2018 KW - Kreislaufwirtschaft KW - Ökodesign KW - Ressourceneffizienz KW - Normung KW - Europäische Kommission PY - 2018 AN - OPUS4-46921 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlegel, Moritz-Caspar T1 - Nicht nur „unter Strom“ - Ressourceneffizienz im Ökodesign N2 - Zusammenfassung des aktuellen Standes der Entwicklungen im Ökodesign mit dem Schwerpunkt auf zukünftige Geltungsbereiche. T2 - Abteilungskolloquium Abetilung S CY - BAM AH, Berlin, Germany DA - 28.06.2018 KW - Ressourceneffizienz KW - Kreislaufwirtschaft KW - Ökdoesign KW - Rechtssetzung PY - 2018 AN - OPUS4-46156 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlegel, Moritz-Caspar A1 - Giegerich, J. A1 - Dworak, C. T1 - Neue Trendlinien für das Ökodesign - Materialeffizienz von energieverbrauchsrelevanten Produkten (M/543) N2 - Die Kreislaufwirtschaftsinitiative der Europäischen Kommission fordert eine grundlegende Erweiterung bestehender Rechtsrahmen. Anforderungen zu einer gesetzlich vorgeschriebenen Lebensdauer, Reparierbarkeit, Recyclingfähigkeit, etc. von Produkten sollen unter der Ökodesign-Richtlinie geregelt werden. Bei diesem Vorhaben steht der Normungsauftrag M/543 im Zentrum. Es wurde 2015 von der Europäischen Kommission vergeben und bislang sind acht horizontale bzw. generische EN-Normen geplant. Trotz der zu erwartenden hohen Reichweite dieses Vorhabens scheinen die Inhalte und der eigentliche Zweck der zu erarbeitenden Normen vielen Marktakteuren noch nicht vollständig bekannt zu sein, daher sollen im Rahmen des Webinars diese Inhalte kurz vorgestellt werden. T2 - DIN-Akademie CY - Webinar DA - 30.04.2019 KW - Kreislaufwirtschaft KW - Circular economy KW - Lebensdauer KW - Reparierbarkeit KW - Recyclinkgfähigkeit KW - Ökodesign KW - Rechtssetzung PY - 2019 AN - OPUS4-47905 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -