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Gas production data indicate accelerated waste decomposition from leachate recirculation at one landfill.
Ambiguities in gas production data precluded a definitive conclusion that leachate recirculation accelerated waste decomposition at the four other landfills.
Bioreactor or enhanced leachate recirculation (ELR) landfills are designed and operated for accelerated waste stabilization, accelerated decomposition, and an increased rate of gas generation.
A bioreactor landfill is designed to manage municipal solid waste, through accelerated waste biodegradation, and stabilisation of the process by means of the controlled addition of liquid, i.e. leachate recirculation.
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An increasing number of landfills are operated to accelerate waste decomposition through liquids addition (e.g., leachate recirculation) as a wet landfill.
First of all it may accelerate wasting by increasing any energy deficit already present due to anorexia.
Of note, the accelerated muscle wasting due to hypermetabolism is bound to involve respiratory muscles.
An important central carbon metabolism branch point flux, pyruvate dehydrogenase reaction, reached its maximum throughput at μ = 0.42 h-1 with concomitant slight increase in glycolysis fluxes resulting in accelerated carbon wasting into by-products.
On the other hand, pyruvate dehydrogenase flux reached its maximum at μ = 0.42 h-1 with concomitant slight increase in glycolysis fluxes that subsequently resulted in accelerated carbon wasting.
Although our fiber estimates cannot be extrapolated to very aged or diseased rat models with accelerated muscle wasting or, to a lesser extent, middle-aged female rats, our results suggest that the reliability of mean FCSA estimates based on a subset of <150 fibers would be poor due to heterogeneity in fiber size.
Because epidemiological studies have indicated accelerated muscle wasting after the fifth decade with an approximately 2% reduction in muscle mass per year [ 22], we have undertaken a top-down differential proteomic approach to determine potential changes after the fifth decade of life and to identify novel biomarkers of muscle ageing.
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