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Titlebook: Reviews of Environmental Contamination and Toxicology Volume 233; David M. Whitacre Book 2015 Springer International Publishing Switzerlan

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Environmental Applications of Chitosan and Its Derivatives,ed in large tonnages worldwide (Chang et al. 2007). Chitin is economical and is the second most abundant bio-waste material after cellulose (Shahidi et al. 1999). Annual worldwide chitin production from arthropods (e.g., crustaceans and insects), molluscs (e.g., squid and cuttlefish) and fungi is es
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Mechanisms of Hexavalent Chromium Resistance and Removal by Microorganisms,s that range from +2 to +6. The most stable forms are Cr(VI) and Cr(III), although they significantly differ in biological, geochemical and toxicological properties. Cr(III) occurs naturally in the environment at a narrow concentration range and is considered to be less toxic than Cr(VI). Hexavalent
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Street Dust: Implications for Stormwater and Air Quality, and Environmental Management Through Stre (Yeung et al. 2003). These materials are commingled with larger debris, including discarded trash, lawn clippings, fallen leaves and branches, and other detritus (Fig. 1). The nature and composition of street dust is expected to vary widely based on local climate, geology, population and traffic de
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Environmental Applications of Chitosan and Its Derivatives, the major source of commercial products such as chitin and chitosan (Hayes 2012). The increasing consumption of krill oil and mushrooms has also been an additional source for commercial chitin (Nicol and Hosie 1993; Vetter 2007).
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The Construction of Identity in Interaction,sible to strengthen or weaken the pillars of active ageing (health, security, participation and lifelong learning). We propose a model for intervention in active ageing based on the optimum adaptation of the specific characteristics of outdoor green spaces to the capacities and preferences of elderl
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