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Process information maps elements

Albanese S., Cicchella D., Lima A., and De Vivo B. present a synthesis of the main considerations necessary to undertake urban mapping activities in terms of planning, sampling, chemical analyses, and data presentation. In this context, modem Geographical Information Systems (GIS) represent an indispensable tool for better understanding the distribution, dispersion, and interaction processes of some toxic and potentially toxic elements. [Pg.446]

As a final step, add any information to your map that might further illuminate the process. Some people add the element of time across the top of the map to show how long steps take. You can also attach documents or forms to certain steps doing so provides details that aide in the further development, testing, implementation, measurement, and monitoring of the process. [Pg.283]

In order to solve the first principles model, finite difference method or finite element method can be used but the number of states increases exponentially when these methods are used to solve the problem. Lee et u/.[8] used the model reduction technique to reslove the size problem. However, the information on the concentration distribution is scarce and the physical meaning of the reduced state is hard to be interpreted. Therefore, we intend to construct the input/output data mapping. Because the conventional linear identification method cannot be applied to a hybrid SMB process, we construct the artificial continuous input/output mapping by keeping the discrete inputs such as the switching time constant. The averaged concentrations of rich component in raffinate and extract are selected as the output variables while the flow rate ratios in sections 2 and 3 are selected as the input variables. Since these output variables are directly correlated with the product purities, the control of product purities is also accomplished. [Pg.215]


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