TY - CHAP A1 - Rabin, Ira A1 - Cohen, Zina ED - Corazzol, Giacomo ED - Fargeon, Sarah T1 - Black inks in medieval Jewish manuscripts N2 - Our aim was to obtain information about the use of different black inks in medieval Hebrew manuscripts, focusing on the question of possible preferences in the use of certain inks by different scribes. We present here an overview of the inks detected in a selection of Hebrew documents penned in the Middle East in the period from the 11th century to the 13th century. KW - Historic ink KW - Ink KW - Hebrew manuscripts KW - XRF KW - NIR PY - 2025 UR - https://books.openedition.org/ephe/2673?lang=en DO - https://doi.org/10.4000/13sug SP - 13 EP - 30 CY - Paris AN - OPUS4-65349 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CHAP A1 - Hahn, Oliver ED - Corbach, A. ED - Suchenwirth, R. H. R. T1 - Arsen im Papier - Materialwissenschaftliche Untersuchungen von Bibliotheksgut N2 - Materialwissenschaftliche Analysen werden an Bibliotheksgut durchgeführt, um kulturhistorische, restauratorische oder konservatorische Fragestellungen zu beantworten. Sie ermöglichen somit auch die Bestimmung von Art und Zusammensetzung arsenhaltiger Komponenten und erlauben Rückschlüsse darüber, ob diese durch Alterung und Korrosion freigesetzt werden können. Hier kann jedoch nur eine erste Einschätzung des Gefährdungspotenzials erfolgen; genaue Rückschlüsse auf die Konzentrationen in Raumluft oder Staub sind nur durch weiterführende Untersuchungen möglich. Es besteht ein Unterschied zwischen der Feststellung arsenhaltiger Substanzen in Bibliotheksgut und der Frage, ob diese auch tatsächlich freigesetzt werden. Dies wird am Beispiel der beiden Pigmente Smalte und Auripigment diskutiert. KW - Bibliotheksgut KW - Arsen KW - Zerstörungsfreie Prüfung PY - 2025 UR - https://nbn-resolving.org/urn:nbn:de:kobv:b43-652376 SN - 978-3-447-12463-8 DO - https://doi.org/10.13173/WIF.6.037 VL - 6 SP - 37 EP - 45 PB - Harrassowitz CY - Wiesbaden AN - OPUS4-65237 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CHAP A1 - Lessovaia, S.N. A1 - Gerrits, Ruben A1 - Gorbushina, Anna A1 - Polekhovsky, Y.S. A1 - Dultz, S. A1 - Kopitsa, G.G. ED - Frank-Kamenetskaya, O.V. ED - Vlasov, D. ED - Panova, E.G. ED - Lessovaia, S.N. T1 - Modeling Biogenic Weathering of Rocks from Soils of Cold Environments N2 - Morphologically simple and microbially dominated ecosystems termed “biofilms” have existed on Earth for a long period of biosphere evolution. A model biofilm combining one heterotroph and one phototroph component was used in a laboratory experiment to simulate biogenic weathering with two different specimens of basic rock samples from the soil profiles. The rocks fragments from the regions of cold environments of Eurasia,where abiotic physical processes, including rock disintegration initiated by freezing–thawing cycles, represent the most probable Scenario of rock weathering, were subjected to biological colonization. The rock Fragments were represented by dolerite and metagabbro amphibolites. Polished sections of the rock samples were inoculated with the model microbiological consortium of the oligotrophic fungus and the phototrophic cyanobacteria (biofilm). After 3 month runtime of the experiment the progress of rock weathering was derived from the growth of the biofilm on the rock surfaces. The model biofilm visualization on the rock surface of polished sections illustrated their stronger development namely on dolerite in comparison with metagabbro amphibolite. The findings confirmed the higher sensitivity of dolerite to biogenic weathering due to (i) mineral association, in which quartz was absent and (ii) porosity providing higher specific surface area for biotic—abiotic interaction influenced by the occurrence of micro-porosity in the rock. KW - Biogenic weathering KW - Rock leaching KW - Fractal structure KW - Biofilm formation KW - Internal pores PY - 2020 DO - https://doi.org/10.1007/978-3-030-21614-6_27 SP - 501 EP - 515 PB - Springer AN - OPUS4-51442 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CHAP A1 - Schumacher, Julia ED - Scott, B. ED - Mesarich, C. T1 - Role of light in the life cycle of Botrytis cinerea N2 - The fungus Botrytis cinerea (Botryotinia fuckeliana) infects more than 500 plant species and causes a wide range of symptoms: soft rots, accompanied by collapse and water-soaking of tissues followed by the appearance of gray masses of conidia on leaves and soft fruits (gray mold), and spots that may turn brown to full-scale soft rotting on flower petals (Botrytis blight). In general, B. cinerea is responsible for severe economic losses that are either due to the damage of growing plants in the field or the rot of harvested fruits, flowers, and vegetables during storage under cold and humid conditions. B. cinerea has adapted to the plant host and its environment by evolving strategies to use plant tissues for proliferation in terms of a necrotrophic lifestyle, and to survive biotic stresses (host responses) as well as abiotic factors of the host’s environment such as sunlight and concomitant stresses. B. cinerea maintains a complex regulatory network of light-sensitive proteins and signal transduction pathways to use light for coordinating stress responses, virulence, and reproduction. Different light-controlled reproduction cycles enable B. cinerea to live in moderate climate zones by infecting and propagating in summer and resting in winter when green host tissues are unavailable. KW - Gray mold fungus KW - Plant pathogen KW - Light KW - Photoreceptors KW - Development PY - 2023 DO - https://doi.org/10.1007/978-3-031-16503-0_14 VL - 5 SP - 329 EP - 346 PB - Springer, Cham AN - OPUS4-56724 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -