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  • 1
    Keywords: Industrial microbiology. ; Biotechnology. ; Microbial populations. ; Refuse and refuse disposal.
    Description / Table of Contents: Chapter 1: Evolution and current status of mineral bioprocessing technologies -- Chapter 2: Design, Construction and Modelling of Bioheaps -- Chapter 3: Engineering Designs and Challenges of Stirred Tank Systems -- Chapter 4: Bioprocessing of Refractory Gold Ores: The BIOX, MesoTHERM and ASTER Processes -- Chapter 5: Biomining Microorganisms: Diversity and Modus Operandi -- Chapter 6: Biomolecular and Cultivation Tools -- Chapter 7: Microbial ecology of bioheaps, stirred tanks and mine wastes -- Chapter 8: Biomining in China: history and current status -- Chapter 9: Copper Bioleaching Operations in Chile: Towards New Challenges and Developments -- Chapter 10: Heap bioleaching of an enargite-dominant ore body: Minera Yanacocha, Péru -- Chapter 11: Bio-oxidation of gold ores in Russia and Kazakhstan -- Chapter 12: Biomining in Finland: Commercial Application of Heap and Tank Bioleaching Technologies for Nickel Recovery -- Chapter 13: Mineral Bioleaching in Brackish and Saline Environments -- Chapter 14: Metal Recovery from E-wastes -- Chapter 15:Reductive Mineral Bioprocessing -- Chapter 16: Biological Removal and Recovery of Metals from Waste Streams and Process Waters -- Chapter 17: The Future of Biomining: Towards Sustainability in a Metal-demanding World.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(XII, 314 p. 1 illus.)
    Edition: 1st ed. 2023.
    ISBN: 9783031053825
    Language: English
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  • 2
    Keywords: Industrial microbiology. ; Biotechnology. ; Microbial populations. ; Refuse and refuse disposal. ; Aufsatzsammlung ; Urban Mining ; Recycling
    Description / Table of Contents: This book describes emerging and established industrial processes of biomining technologies used for the recovery of metals of economic interest from, e.g. mineral ores, mining and electronic wastes using microbiological technologies. Multiple chapters focus on engineering design and operation of biomining systems. Several industrial case studies from China, Chile, Peru, Russia/Kazakhstan and Finland are included, which emphasises the practical approach of the book. The reader not only learns more about the biology, diversity and ecology of microorganisms involved in biomining processes, but also about microbial biomolecular and cultivation tools used in the biomining industry. Special emphasis is put on emerging biotechnologies enabling the use of biomining for recycling metals from e-wastes, waste streams and process waters. Finally, the future impacts and direction of biomining towards sustainability in a metal-demanding world are also highlighted. The book is aimed at an interdisciplinary audience involving operators and researchers working across disciplines including geology, chemical engineering, microbiology and molecular biology. This is reflected by the content of this book, as well as by its authors, who are all leading practitioners and authorities in their fields.
    Type of Medium: Book
    Pages: XII, 314 Seiten , Illustrationen, Diagramme
    ISBN: 9783031053818
    Language: English
    Note: Literaturangaben , Chapter 1: Evolution and current status of mineral bioprocessing technologies -- Chapter 2: Design, Construction and Modelling of Bioheaps -- Chapter 3: Engineering Designs and Challenges of Stirred Tank Systems -- Chapter 4: Bioprocessing of Refractory Gold Ores: The BIOX, MesoTHERM and ASTER Processes -- Chapter 5: Biomining Microorganisms: Diversity and Modus Operandi -- Chapter 6: Biomolecular and Cultivation Tools -- Chapter 7: Microbial ecology of bioheaps, stirred tanks and mine wastes -- Chapter 8: Biomining in China: history and current status -- Chapter 9: Copper Bioleaching Operations in Chile: Towards New Challenges and Developments -- Chapter 10: Heap bioleaching of an enargite-dominant ore body: Minera Yanacocha, Péru -- Chapter 11: Bio-oxidation of gold ores in Russia and Kazakhstan -- Chapter 12: Biomining in Finland: Commercial Application of Heap and Tank Bioleaching Technologies for Nickel Recovery -- Chapter 13: Mineral Bioleaching in Brackish and Saline Environments -- Chapter 14: Metal Recovery from E-wastes -- Chapter 15:Reductive Mineral Bioprocessing -- Chapter 16: Biological Removal and Recovery of Metals from Waste Streams and Process Waters -- Chapter 17: The Future of Biomining: Towards Sustainability in a Metal-demanding World.
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  • 3
    Publication Date: 2022-05-25
    Description: Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here by permission of Koninklijke Brill for personal use, not for redistribution. The definitive version was published in Journal of Crustacean Biology 34 (2014): 671-673, doi:10.1163/1937240X-00002268.
    Description: A northern range extension is presented here for the marsh fiddler crab Uca pugnax. In summer 2014, adult crabs were found as far north as Hampton, New Hampshire (42.924428, -70.820517), which is 80 km north of its previously established northern limit determined in 2003. Thus, the mean annual northern movement of U. pugnax is currently 7.2 km y-1. I hypothesize that crabs recruited to the most northern sites during 2012 or 2013 when ocean temperatures were up to 1.3 C higher than the average of the previous decade. In a scenario of continued warming oceans associated with climate change, the range of U. pugnax is thus predicted to continue to extend northward. Given that fiddler crabs are ecosystem engineers affecting coastal wetland productivity, biogeochemistry and sediment structure, the introduction of this species into northern salt marshes may have consequences for marsh structure and function.
    Description: This work was funded by NSF 1354494 and 1238212.
    Keywords: Marine invasion ; Climate velocity ; Decapod ; Uca
    Repository Name: Woods Hole Open Access Server
    Type: Preprint
    Format: application/pdf
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  • 4
    Publication Date: 2022-05-25
    Description: Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here by permission of Koninklijke Brill for personal use, not for redistribution. The definitive version was published in Journal of Crustacean Biology 35 (2015): 105-110, doi:10.1163/1937240X-00002293.
    Description: Worldwide, climate-change is shifting species distributions poleward. Here I present recent (2012-2014) observations of the blue crab, Callinectes sapidus, in the Gulf of Maine (GoM), north of its historical range of Cape Cod, Massachusetts. To test the hypothesis of a climate-driven range expansion, I examined near-surface ocean temperatures. On average, ocean temperatures in the GoM in summer 2012 and 2013 were up to 1.3°C higher than the average of the previous decade, suggesting that warmer waters may have promoted the recruitment of C. sapidus to the GoM. Previous ephemeral populations of C. sapidus in the Gulf of Maine have been reported since the 1860's. Recent observations and continued warming in the northwest Atlantic may signal a permanent poleward expansion of C. sapidus into the GoM. If so, then a key goal for ecologists and managers will be to understand the effect of C. sapidus on GoM food-webs and fisheries.
    Description: This work was funded by NSF Grants No. 1354494 and 1238212. Additional support from the Northeast Climate Science Center, Grant No. DOI G12AC00001.
    Keywords: Callinectes ; Climate velocity ; Decapod ; Marine invasion
    Repository Name: Woods Hole Open Access Server
    Type: Preprint
    Format: application/pdf
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