Development of Management Systems for Sustainable Municipal Waste Management Systems

4 Pub Date : 2023-12-15 DOI:10.46632/tfe/1/4/5
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引用次数: 0

Abstract

Waste Management Systems. are designed to efficiently handle and process waste materials generated by human activities. These systems are crucial for minimizing environmental impacts, promoting sustainability, and protecting throughout its lifecycle, from its generation to its final disposal or recycling. Here is an overview of the key components and processes involved in waste management: Waste Generation: Waste can be generated from various sources, including residential areas, commercial establishments, industries, and construction sites. It encompasses solid waste (such as household waste and packaging materials), liquid waste (such as wastewater and sewage), and hazardous waste (such as chemicals and medical waste). Waste Collection: its source. This involves the placement of collection bins or containers at strategic locations, regular pick-up schedules, and specialized collection vehicles for different types of waste. Waste Segregation: After collection, waste is often sorted and segregated based on its type and characteristics. This helps in the efficient management of different waste streams, enabling appropriate treatment or disposal methods. Segregation can be done at the source (e.g., separating recyclables from non-recyclables) or at dedicated facilities. Future vehicular organizations are supposed to send more limited distances the car employer. Client-server methods revel in decrease execution regardless of standard abnormal network. Another one the worldview of shared content dispersion over the Web is arising with swarm conventions. The objective of Web amassing conventions is to lessen the heap on satisfied servers. Waste Treatment: Waste treatment involves various processes aimed at reducing the volume and toxicity of waste, as well as recovering valuable resources. Common treatment methods include composting, incineration, landfilling, and biological or chemical treatment of wastewater. Advanced technologies, such as anaerobic digestion and plasma gasification, are also used for waste conversion. Recycling and Resource Recovery: Recycling plays a crucial role in waste management systems. Materials like paper, plastics, glass, metals, and electronic waste can be recycled and sent to landfills or incinerators. Resource recovery also involves the extraction of energy from waste, such as through waste-to-energy (WTE) facilities. GWP Uppsala WMS,GWP Uppsala CS, GWP Alvdalen WMS, GWP Alvdalen CS, AP Uppsala WMS. IncAll, Inc90%, BioBus, RecPl. From the result it is seen that GWP Uppsala CSis got the first rank where as is the GWP Alvdalen CSis having the lowest rank. GWP Uppsala CSis ranked first and industrial building is ranked lowest.
为可持续城市废物管理系统开发管理系统
废物管理系统旨在有效处理和加工人类活动产生的废料。这些系统对于最大限度地减少对环境的影响、促进可持续发展以及保护从产生到最终处置或回收的整个生命周期至关重要。以下是废物管理的关键组成部分和流程概览:废物产生:废物的来源多种多样,包括住宅区、商业机构、工业和建筑工地。它包括固体废物(如生活垃圾和包装材料)、液体废物(如废水和污水)以及有害废物(如化学品和医疗废物)。废物收集:其来源。这包括在战略要地放置收集箱或容器、制定定期收集计划,以及为不同类型的废物配备专门的收集车辆。垃圾分类:收集后,通常会根据废物的类型和特性对其进行分类和分隔。这有助于对不同的废物流进行有效管理,从而采用适当的处理或处置方法。分类可以在源头进行(如将可回收物与不可回收物分开),也可以在专用设施进行。未来的车辆组织应该向汽车雇主发送更有限的距离。客户端-服务器方法的启示是,无论标准异常网络如何,执行力都会下降。网络共享内容传播的另一个世界观是以蜂群方式出现的。网络集群协议的目标是减少服务器上的堆叠。废物处理:废物处理包括各种旨在减少废物数量和毒性以及回收宝贵资源的过程。常见的处理方法包括堆肥、焚烧、填埋以及废水的生物或化学处理。厌氧消化和等离子气化等先进技术也用于废物转化。循环利用和资源回收:回收利用在废物管理系统中发挥着至关重要的作用。纸张、塑料、玻璃、金属和电子废物等材料可以回收利用,然后送往垃圾填埋场或焚化炉。资源回收还包括从废物中提取能源,如通过废物变能源(WTE)设施。GWP Uppsala WMS、GWP Uppsala CS、GWP Alvdalen WMS、GWP Alvdalen CS、AP Uppsala WMS。IncAll、Inc90%、BioBus、RecPl。从结果可以看出,GWP 乌普萨拉 CS 排名第一,而 GWP Alvdalen CS 排名最低。乌普萨拉的 GWP CSis 排名第一,而工业建筑排名最低。
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