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causing a significant challenge to any treatment process that is to provide water of a reliably high quality; and secondly, most of the conventional sewage treatment works have the capacity to treat industrial wastewater at a cost that is considered reasonable simply by blending with domestic water, which leads to the significant dampening of the effects of the broad temporal variation in industrial wastewater quality (Judd and Jefferson, 2003). These two mitigating factors are not likely to be a problem in water effluents from a potato crisps/chips manufacturing plant (which is the focus of this research), where there is little variation in process operations and in which water is mainly used for physical processes, such as the washing application, with little contamination level. Hence, the direct closed loop industrial water reclamation process will be considered in this research. 2.1.2.1 Industrial Water Use Industry is believed to account for about a quarter of all water consumption (Judd and Jefferson, 2003). Water is to fish as it is to an industry, meaning that there is virtually no industry that does not require large volumes of water. There are various sources through which industries can obtain water in order to meet their high demand. This mainly depends on the location of the industry, and sometimes the statutory regulations in existence where the industry is located. Some industries abstract water from rivers and boreholes; however, the majority still get their water from public water supplies (especially in developed countries where there is an adequate pipe-borne water supply) which has been treated to potable quality standards. Despite the high potable standard, some industries require further treatment of the water in order to reduce the mineral and organic material content, according 49

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