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SK/ SK Limiting data for water minimization for a specialty chemical production process are shown in Table 1. Freshwater in this case has zero impurity.

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SK/ SK Limiting data for water minimization for a specialty chemical production process are shown in Table 1. Freshwater in this case has zero impurity. Table 1 : Limiting data for specialty chemical production process Sinks F(t/h) c (ppm) Singeing 2.67 0 Mercerizing 22.77 Scouring and bleaching 18.17 47 Sources F (t/h) (ppm) Singeing 2.67 47 Mercerizing 22.77 476 Scouring and bleaching 18.17 3218 75 SRI SRI a) Construct Material Recovery Pinch Diagram (MRPD) and determine pinch-causing source and its allocated flowrates to the high quality region (HQR) and low quality region(LQR). b) Using MRPD constructed in part (a), determine the minimum flowrates of freshwater and wastewater for the process. C) Synthesize water networks for the specialty chemical production process by using Nearest Neighbour Algorithm (NNA). d) Discuss the impact of insufficient or excess freshwater resources to the process SK/ SK Limiting data for water minimization for a specialty chemical production process are shown in Table 1. Freshwater in this case has zero impurity. Table 1 : Limiting data for specialty chemical production process Sinks F(t/h) c (ppm) Singeing 2.67 0 Mercerizing 22.77 Scouring and bleaching 18.17 47 Sources F (t/h) (ppm) Singeing 2.67 47 Mercerizing 22.77 476 Scouring and bleaching 18.17 3218 75 SRI SRI a) Construct Material Recovery Pinch Diagram (MRPD) and determine pinch-causing source and its allocated flowrates to the high quality region (HQR) and low quality region(LQR). b) Using MRPD constructed in part (a), determine the minimum flowrates of freshwater and wastewater for the process. C) Synthesize water networks for the specialty chemical production process by using Nearest Neighbour Algorithm (NNA). d) Discuss the impact of insufficient or excess freshwater resources to the process

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