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Open image in new window Fig. 14 Percentage of industrial yield of NaOH NaOCl-textured large-area (125 mm × 125 mm) c-Si solar cell OpeNaOH NaOCl-texturedow Fig. 15 Percentage of industrial yield of NaOH-IPA-textured large-area (125 mm × 125 mm) c-Si solar cell Open image in new window Fig. 15 FTIR analysis of NaOH–NaOCl-textured c-Si solar cell.
The multiplicative index TBH, which combines SFBY, JE, SB and allows the estimation of sweet sorghum industrial yield, exhibited the highest value between the soft to hard dough stages, with an average of 9.40 t °Brix ha−1.
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However, it is believed that this methodology is not suitable for this purpose, since these strategies have resulted in unsatisfactory industrial yields.
A 5-lump kinetic scheme for catalytic cracking of vacuum gas oils is used to test this approach; prediction obtained for industrial yields is very accurate.
The sweet sorghum BRS 511 harvest time is comprehended between the soft to hard dough stages, in which were found the highest industrial yields parameters.
The conclusion from this work is that correct predictions of industrial yields can only be made by including a highly activated step of nitrogen dissociation from the gas phase.
This type of sequential statistical approach, which is commonly undertaken for the optimization of industrial production yields and the design and analysis of "-omics" experiments, had never been used to characterize the bioenergetic plasticity of photosynthetic cells.
Solar cell of conversion efficiency 14.5 15.8 % on CZ Si substrate of area 125 mm × 125 mm was successfully fabricated using a novel texturing approach in industrial production line with yield >85%%.
Although still below industrial exploitable yields, this yield is higher than that reported for other fungi grown on pre-treated agricultural waste (Deshpande et al. 1986; Mizuno et al. 2009; Karimi et al. 2006; Okamoto et al. 2011a, b; Goshadrou et al. 2011).
Gangopadhyay et al. [22] obtained 14.0 14.5 % efficiency in an industrial production line with a yield >95%% by using mc-Si substrates of large size and textured them in a solution of NaOH-NaOCl at 80 °C to restrict the step height to <5 μm.
This could be a major factor contributing to yield loss because industrial production of microalgae uses sunlight as an energy source and is therefore subjected to the influence of day and night cycles.
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