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In contrary to other pretreatment processes, this method does not require any chemicals or catalysts that subsequently inhibit fungal growth.
By eliminating any chemical or etching processes, this method has potential for excellent integration with semiconductor technologies.
For many separation processes, this method has been reported which include extraction of phthalate esters (Cai et al. 2007), removal and recovery of several metal chelates (Casas Ferreira et al. 2014; Matkovich and Christian 1974), determination of carbonyl compounds (Gupta et al. 2009), and determination of pharmaceutical compounds (Razmara et al. 2011).
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Considering the poor results obtained for the suspensions prepared by the ball milling process, this method was no longer tested, and other techniques were preferred.
Compared with the conventional RD-WETS process, this method used alcohol in place of water because the alcohol in agarose mold has a higher absorptivity than water [21].
Thanks to the low-costed starting materials and facile process, this method was an effective way to prepare at a large scale.
Due to the changes that occur during this process, this method is also called 'auto hydrolysis.' Steam pretreatment is typically a combination of mechanical forces (pressure drop) and chemical effects (autohydrolysis of acetyl groups of hemicellulose).
A new approach based on a single-reference-station mode has been published by Kim and Langley (2007) that nullifies the effect of the differential ionosphere in an ambiguity search process; this method provides a number of interesting results.
HPLC has been utilized to monitor the fermentation process This method has the advantage of being able to monitor not only the production of ethanol, but also the reaction substrates and byproducts (Hall and Reuter2007).
Further the results show that due to the generation of high hoop stresses in the bearing by the freeze fitting process, this method can extremely decrease the loading capacity of the laminated composite journal bearings compared to adhesive bonding method.
While when the TiO2 powders can stably suspend in the required base fluid by changing the bulk fluid without drying process, this method will be promising under the condition that the new liquid environment parameters such as acidity or alkalinity and electrolyte concentration are close to original fluid for preparation.
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