《環(huán)境工程研究》(EER)由韓國環(huán)境工程師協(xié)會(KSEE)出版,每季一期。能譜分析涵蓋了廣泛的空氣、土壤和水管理的科學(xué)和技術(shù),同時強調(diào)工業(yè)化和城市化過程中遇到的環(huán)境問題的科學(xué)和工程解決方案。特別是考慮到環(huán)境污染的跨學(xué)科主題和多區(qū)域/全球影響(包括生態(tài)系統(tǒng)和人類健康)以及新技術(shù)的科學(xué)和工程方面。《日刊》的范圍包括以下領(lǐng)域,但不限于:1. 大氣環(huán)境與氣候變化:全球和地方氣候變化,溫室氣體控制,空氣質(zhì)量建模本專題涵蓋廣泛的大氣污染問題,包括全球氣候變化的監(jiān)測和建模、本地空氣污染的定量評估和解決方案、本地和全球空氣污染影響的相互作用、空氣污染物的減排以及碳中和過程的發(fā)展。2. 可再生能源和廢物管理:從廢物、焚燒、填埋和綠色能源中回收能源除了傳統(tǒng)的廢物處理和循環(huán)利用,本節(jié)還致力于以下具體領(lǐng)域更全面的科學(xué)和工程知識:可再生能源生產(chǎn)、廢物轉(zhuǎn)化為能源技術(shù)、廢物資源回收、零廢物、危險廢物處理、與廢物有關(guān)的土壤修復(fù)和生物炭。3.環(huán)境生物技術(shù)與生態(tài)學(xué):納米生物傳感器、環(huán)境基因組學(xué)、生物能源、環(huán)境生態(tài)工程環(huán)境生物技術(shù)領(lǐng)域包括微生物生理學(xué)、微生物群落、基因組/蛋白質(zhì)組學(xué)研究、生物膜、生物修復(fù)和生物技術(shù)的應(yīng)用。該領(lǐng)域正在處理的具體主題包括納米/生物傳感器和監(jiān)測環(huán)境有毒物質(zhì)的傳感系統(tǒng)。環(huán)境生態(tài)與生態(tài)工程領(lǐng)域包括:生態(tài)技術(shù);生境重建;恢復(fù)生態(tài)學(xué);生態(tài)系統(tǒng)保護(hù);生態(tài)系統(tǒng)恢復(fù);河流修復(fù);濕地恢復(fù);以及生態(tài)學(xué)的各個方面。4. 理化技術(shù):膜技術(shù)及高級氧化本節(jié)涵蓋與物理和/或化學(xué)方法有關(guān)的新環(huán)境技術(shù)的綜合主題。特別感興趣的主題包括膜過濾、高級氧化、吸附、顆粒過濾、消毒以及水處理的光電化學(xué)技術(shù)。以上主題的跨學(xué)科主題的文章被高度鼓勵。5. 環(huán)境系統(tǒng)工程:海水淡化、ICA(儀器、控制、自動化)、水回用本節(jié)強調(diào)應(yīng)用系統(tǒng)工程原理解決水資源管理、土壤和地下水污染、綜合環(huán)境管理等復(fù)雜的環(huán)境問題。具體的研究領(lǐng)域如下:理化和生物過程的優(yōu)化和發(fā)展,污染物的監(jiān)測和控制,污染物命運和運輸?shù)哪M和建模,以及海水淡化和水再利用系統(tǒng)。6. 環(huán)境健康與毒理學(xué):微污染物、有害物質(zhì)、生態(tài)毒性、環(huán)境風(fēng)險評估本節(jié)涉及環(huán)境健康與毒理學(xué)的跨學(xué)科科學(xué)領(lǐng)域,包括環(huán)境組學(xué)。環(huán)境健康與毒理學(xué)的各種主題的整合將為改善人類健康和生態(tài)系統(tǒng)的可持續(xù)性提供新的視角和系統(tǒng)的解決方案。特別感興趣的主題包括新興微污染物、健康危害、環(huán)境組學(xué)科學(xué)、生態(tài)毒性和環(huán)境風(fēng)險評估。
The Environmental Engineering Research (EER) is published quarterly by the Korean Society of Environmental Engineers (KSEE). The EER covers a broad spectrum of the science and technology of air, soil, and water management while emphasizing scientific and engineering solutions to environmental issues encountered in industrialization and urbanization. Particularly, interdisciplinary topics and multi-regional/global impacts (including eco-system and human health) of environmental pollution as well as scientific and engineering aspects of novel technologies are considered favorably. The scope of the Journal includes the following areas, but is not limited to:1. Atmospheric Environment & Climate Change: Global and local climate change, greenhouse gas control, and air quality modelingThis topical section covers a wide range of atmospheric pollution issues, including monitoring and modeling of global climate change, quantitative assessment and solutions of local air pollution, interactions of local and global air pollution impacts, emission reduction of air pollutants, and carbon neutral process development.2. Renewable Energy & Waste Management: Energy recovery from waste, incineration, landfill, and green energyIn addition to traditional waste treatment and recycling, this section is dedicated to more comprehensive scientific and engineering knowledge in the following specific areas: renewable energy production, waste-to-energy conversion technologies, resources recovery from wastes, zero waste, hazardous waste treatment, soil remediation related to waste, and biochar.3. Environmental Biotechnology & Ecology: Nano-biosensor, environmental genomics, bioenergy, and environmental eco-engineeringThe Environmental Biotechnology area covers microbial physiology, microbial community, genomic/proteomic studies, biofilm, bioremediation, and applied aspects of biotechnology. Specific topics being dealt with in this area include nano-/biosensors and sensing systems to monitor environmental toxic substances. The Environmental Ecology and Eco-engineering area covers the followings: ecotechnology; habitat reconstruction; restoration ecology; ecosystem conservation; ecosystem rehabilitation; stream and river restoration; wetland restoration; and aspects of ecology.4. Physical & Chemical Technology: Membrane technology and advanced oxidationThis section covers comprehensive topics in novel environmental technologies related to physical and/or chemical approaches. Specific topics of interest include membrane filtration, advanced oxidation, adsorption, granular filtration, and disinfection as well as photoelectrochemical technologies for water treatment. The articles dealing with interdisciplinary topics of above mentioned topics are highly encouraged.5. Environmental System Engineering: Seawater desalination, ICA (instrument, control, and automation), and water reuseThe section emphasizes the application of system engineering principles to solve complex environmental problems, such as water resources management, soil and groundwater pollution, and integrated environmental management. Specific areas of interest are as follows: optimization and development of physicochemical and biological processes, monitoring and control of contaminants, simulation and modeling for the fate and transport of pollutants, and desalination and water reuse systems.6. Environmental Health & Toxicology: Micropollutants, hazardous materials, ecotoxicity, and environmental risk assessmentThis section deals with an interdisciplinary scientific field in environmental health & toxicology including environmental OMICS. The integration of a variety of topics in environmental health & toxicology will provide novel perspectives and systematic solutions for the improvement of human health and ecosystem sustainability. Specific topics of interest include emerging micropollutants, health hazards, environmental OMICS sciences, ecotoxicity, and environmental risk assessment.
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