id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
hjic-51	Vaklieva-Bancheva, N. G.; Shopova, E. G.; Ivanov, B. B.	Application of Fourier Transformation for Waste Minimization in Batch Plants. 2. Process-Units Assignment	2003	9	.pdf	application/pdf	5040	243	62	I – number of products; ID – units/tasks identification matrix L – number of production tasks; %MC – casein content in the skim-milk; MI – amount of material input to the task [kg]; %ML –lactose content in the skim-milk; MO – amount of material output from the task [kg]; %MP –protein content in the skim-milk; N – number of key components in used materials NB – number of batches; P – number of plant units Q – production demand [kg]; Q-I, Q-II – names of production demands used in the example; R – waste processed in the task [kg]; RC – recovery factor for casein; RF – recovery factor for milkfat; RS – solids recovery factor; %SC – solids content in curds; T – processing time [h]; TC – cycle time [h]; Ts – starting time of task with regard to the cycle beginning; V – apparatus volume [m3]; WL% – inherent loss of whey; X – vector of the key components; m – mass of waste processed from the production task per 1 kilogram target product The mass wl))n,i(X(m of the pollutant - w , for products i , can be determined from the pollutants mass balance of the production recipes as it is proposed in [5, 6]: ,)i(C.)i(MO))n,i(X(R)i(C.)i(MI ))n,i(X(Y 1))n,i(X(m lj l'j wjjwlwjjwl       −+= ∑ ∑ ∈ ∈ Ii,i,Ll,l,Ww,w,Nn,n ii ∈∀∈∀∈∀∈∀ (12) where: )i(MI and )i(MO note the amount of materials input into processing task l of product i by the flows j and output by the flows; )i(C is the composition of pollutant )i(C w is the relevant flow; ))n,i(X(R is the waste produced in the task l .	cache/hjic-51.pdf	txt/hjic-51.txt
