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Novel framework of GIS based automated monitoring process on environmental biodegradability and risk analysis using Internet of Things

机译:基于GIS的自动化监测过程的新颖框架利用互联网的环境生物降解性和风险分析

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A proper method on real-time monitoring of organic biomass degradation and its evaluation for safeguarding the ecosystem is the need of the hour. The work process designed in this study is to demarcate the anaerobic digestion potential using kinetic modelling and web GIS application methods. Wastewater source that causes pollution are identified through satellite maps such as solid earth, drain system, surface of earth structure, land filling and land use. The grabbed data are utilized for identifying the concentration of sludge availability. Based on literature resource multi influencing factor techniques are introduced along with overlay method to differentiate digestion potential of sludge source. This study optimizes the biodegradation potential of domestic sewage at different sludge concentrations in a pilot model operated with the samples identified through topographical drainage survey. The materialization of devices is using the Internet of Things (IoTs), that is pragmatic to be the promising tendency. Kinetic study, methanogenic assay test are performed with three different cation binding agents to find its solubilization potential and methane evolution, which is further subjected to digestion potential in anaerobic conditions for possible application in the field of environmental science. Risk analysis reveals that land filling method will have highest impact on maintaining sustainable environment. The results outcome on natural biodegradation may be used for individual house hold wastewater management for the locality.
机译:有机生物质降解实时监测的适当方法及其保护生态系统的评估是时机的需要。本研究中设计的工作过程是使用动力学建模和网GIS应用方法划分厌氧消化潜力。通过卫星地图(如固体地球,排水系统,地球结构),土地填充和土地使用等卫星地图识别导致污染的废水源。抓取数据用于识别污泥可用性的浓度。基于文献资源多重影响因子技术与覆盖方法引入,以区分污泥源的消化电位。该研究优化了通过地形排水调查确定的样本在运营的试验模型中的不同污泥浓度的生物降解潜力。设备的实现是使用物联网(物质),这是务实的倾向。动力学研究,用三种不同的阳离子结合剂进行甲状腺学测定试验,以找到其溶解电位和甲烷进化,这进一步对环境科学领域可能应用的厌氧条件下进一步进行消化潜力。风险分析表明,土地填充方法对维持可持续环境产生最高影响。对天然生物降解的结果结果可用于各个房屋对本地的污水管理。

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