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Author

Song Yan

Bio: Song Yan is an academic researcher from Institut national de la recherche scientifique. The author has contributed to research in topics: Biodiesel & Biodiesel production. The author has an hindex of 27, co-authored 76 publications receiving 3483 citations.


Papers
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TL;DR: This review marginalizes various studies conducted so far about EPS nature-production-recovery, properties, environmental applications and moreover, critically examines future research needs and advanced application prospective of the EPS.

709 citations

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TL;DR: The benefits of ultrasonication of sludge, the effect of sonication parameters, impact ofSludge characteristics on sludge disintegration, and thereby the increase in biogas production in anaerobic digester are summarized.

654 citations

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TL;DR: The available microbes and their predicted nanoparticle biosynthesis mechanism, the conditions to control the size/shape and monodispersity of particles, and microbiological reaction rate enhancement using nanoparticles as catalysts are presented.

339 citations

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TL;DR: Extracellular polymeric substances (EPS) produced by sludge microorganisms play a definite role in sludge flocculation and biopolymers produced by individual strains substantially improved dewaterability.

296 citations

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TL;DR: Whey characteristics, and its transformation processes for proteinaceous products such as bioproteins, functional/nutritional protein and bioactive peptides are covered in this review.

281 citations


Cited by
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Journal ArticleDOI
TL;DR: This review presents a complete picture of current knowledge on ultrasound-assisted extraction in food ingredients and products, nutraceutics, cosmetic, pharmaceutical and bioenergy applications, and applications from laboratory to industry, security, and environmental impacts.

1,657 citations

Journal ArticleDOI
TL;DR: The potential uses of various biological sources for nanoparticle synthesis and the application of those nanoparticles are explored and the recent milestones achieved are highlighted by controlling critical parameters, including the choice of biological source, incubation period, pH, and temperature.

1,049 citations

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TL;DR: A critical assessment of the current understanding of silver nanoparticle toxicity is provided and a set of pointers and guidelines for experimental design of future studies to assess the environmental and biological impacts of nanosilver are provided.
Abstract: Nanosilver, due to its small particle size and enormous specific surface area, facilitates more rapid dissolution of ions than the equivalent bulk material; potentially leading to increased toxicity of nanosilver. This, coupled with their capacity to adsorb biomolecules and interact with biological receptors can mean that nanoparticles can reach sub-cellular locations leading to potentially higher localized concentrations of ions once those particles start to dissolve or degrade in situ. Further complicating the story is the capacity for nanoparticles to generate reactive oxygen species, and to interact with, and potentially disturb the functioning of biomolecules such as proteins, enzymes and DNA. The fact that the nanoparticle size, shape, surface coating and a host of other factors contribute to these interactions, and that the particles themselves are evolving or ageing leads to further complications in terms of elucidating mechanisms of interaction and modes of action for silver nanoparticles, in contrast to dissolved silver species. This review aims to provide a critical assessment of the current understanding of silver nanoparticle toxicity, as well as to provide a set of pointers and guidelines for experimental design of future studies to assess the environmental and biological impacts of silver nanoparticles. In particular; in future we require a detailed description of the nanoparticles; their synthesis route and stabilisation mechanisms; their coating; and evolution and ageing under the exposure conditions of the assay. This would allow for comparison of data from different particles; different environmental or biological systems; and structure-activity or structure-property relationships to emerge as the basis for predictive toxicology. On the basis of currently available data; such comparisons or predictions are difficult; as the characterisation and time-resolved data is not available; and a full understanding of silver nanoparticle dissolution and ageing under different conditions is observed. Clear concerns are emerging regarding the overuse of nanosilver and the potential for bacterial resistance to develop. A significant conclusion includes the need for a risk-benefit analysis for all applications and eventually restrictions of the uses where a clear benefit cannot be demonstrated.

865 citations

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TL;DR: According to the overall situation of China, "thickening-anaerobic digestion-dewatering-land application" is the priority technical route of sludge treatment and disposal and good changes, current challenges and future perspectives of this technical route in China were analyzed and discussed in details.

807 citations