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4423篇 您的检索式:期刊名="Journal of Environmental Engineering"
    题名 作者 年代 出处 被引量
1Effectiveness of a Subsurface Constructed Wetland on the Treatment of Saline Wastewater显示文摘Yushan Zhang Jing Wang Jinquan Qiu 2010Journal of Environmental Science and Engineering2010,4,1:7
2Preparation of New Poly Silicate Iron Coagulants and Their Coagulation Property on Micro-polluted Water显示文摘L.P. Wang X.F. Yan X. XU A.B. Xu H. Qi Z.D. Zou N.Y. Gao 2011Journal of Environmental Science and Engineering2011,5,1:6
3Experimental Study on Hydrothermal Drying for Sewage Sludge in Large-Scale Commercial Plant显示文摘Z.L. Jiang D.W. Meng H.Y. Mu K. Yoshikawa 2011Journal of Environmental Science and Engineering2011,5,7:6
4Assessment of the Acute Effects of DEE (Diesel Exhaust Emitted) on Blood Parameters in Guinea Pigs Cavia porcellus显示文摘Ayoub Bazzaz Nahid Nassir A1-Manea 2012Journal of Environmental Science and Engineering(A)2012,1,5:5
5Microwave Extraction Followed by Solid-phase Extraction for the Determination of Phthalate Esters in Fish Samples by Gas Chromatography显示文摘X. Zhang J. Wang R.H. Zhu 2010Journal of Environmental Science and Engineering2010,4,3:5
6Evaluation of Climate Suitability for Rubber (Hevea brasifiensis) Cultivation in Peninsular Malaysia显示文摘Adzemi Mat Arshad Mustika Edi Armanto Ahmad Fadhli Adzemi 2013Journal of Environmental Science and Engineering(A)2013,2,5:5
7Research on Ecological Water Cycle and Purification in Rural Landscape——Take Zhangjia Village Ecological Wastewater Treatment Project in Henan Province as an Example显示文摘Rural landscape is not only a natural landscape,but also a cultural landscape.The improvement of rural environment in Lushi County is carried out under the background of“Building Beautiful Villages”.Through the plan of environmental improvement,the appearance of villages in rural areas will be significantly improved,and the gap between urban and rural areas will be shortened.This research addresses the problems of scarce water resources,imperfect rainwater collection facilities,and increased environmental pollution in rural areas,and explores a flexible,effective,and integrated landscape ecological water treatment system that integrates with natural ecosystems.The practice has shown that the flexible combination of different technical measures according to local conditions and the construction of ecological water self-circulation and self-purification systems can reduce maintenance costs and achieve sustainable landscape.The virtuous cycle of the revetment’s micro-ecology greatly improves the environmental carrying capacity of the landscape.Reasonable water management system is more flexible in dealing with unexpected problems.The thesis proposes landscape design strategies for water circulation and water purification in rural areas,and applies them to actual design cases.It attempts to introduce a combined treatment system to achieve a more diverse landscape concept and further explore the healthy and sustainable development of rural water environment.Mengmeng Li Mei Yang Min Zhang Tao Xu 2020Journal of Environmental Science and Engineering(A)2020,9,5:5
8Comparative Study on Spatial Forms of Ancient Waterside Towns Based on Google Earth Pro-Taking the Example of Qingmuchuan,Fenghuang and Houliu in Southern Shaanxi,China显示文摘The purpose of this study is to address the problem of ancient towns dying out in developing countries,particularly China.Intensifying conflicts between human settlements and the natural environment are described,and guidelines are proposed for the development of waterside ancient towns in China’s southern Shaanxi Province in the interest of conserving cultural and natural heritage.The towns of Qingmuchuan,Fenghuang and Houliu were selected as representative examples due to their strong reputation among tourists.They have the characteristics of traditional southern Shaanxi towns,but each has a completely different layout,space and structure.The comparative findings of this research provide a point of reference for establishing guidelines to preserve the integrity of ancient towns worldwide.In this paper,we compare the geographical conditions with the layout and texture of the streets by Google Earth Pro.And we analyze the details of spaces along the river zones,architectural styles and building decorations in order to research the relationship between the natural environment and the human settlement conditions.We note the unfortunate common trend of commercial development steadily taking over the natural environment,particularly the rivers and unique elements of the old towns.Finally,we summarize the similarities and differences of the spatial forms among these towns and put forward proposals for the further development of ancient towns.This research is important for all regions which stand to lose their national treasures.Consequently,measures should be to taken to curtail hyper development before we lose our historicscenery.Mei Yang Zhaoyang Feng 2020Journal of Environmental Science and Engineering(B)2020,9,1:5
9Studies and Characterisations of Activated Carbons Used for Carbon/Carbon Supercapacitors显示文摘R.Q. Wang 2011Journal of Environmental Science and Engineering2011,5,7:4
10The Main Ecological Issues of Water-Level -Fluctuating Zone and The strategies in Three Gorges Reservoir Area显示文摘Weici Su Jinping Liu Hua Yang Junyi Zhang 2010Journal of Environmental Science and Engineering2010,4,1:4
11Methane Generation and Capture of U.S.Landfills显示文摘Analysis of the U.S.EPA(Environmental Protection Agency)database of 2,549 MSW(Municipal Solid Waste)landfills showed that there were 1,164 operating landfills in which 348 million short tons(316 million metric tons)of waste were landfilled in 2017.In total,these landfills occupy about 370 million square meters of land so it is not possible to monitor the generation of LFG(Landfill Gas)generation accurately,or collect most of the LFG generated.This study was based on the hypothesis that,on the average,methane generation is proportional to the tonnage of wastes landfilled annually.The Landfill Methane Outreach Program of the EPA(EPA-LMOP)compiles annual operating data of all methane-capturing landfills.Our analysis of the 2018 data for 396 LMOP operating landfills showed that 210 million short tons of wastes were deposited and 5.06 million short tons of methane were captured,i.e.,an average capture of 0.024-ton CH4/ton waste.On the basis of the anaerobic reaction of the DOC(Degradable Organic Carbon)in landfilled wastes,the average rate of methane generation from all operating U.S.landfills was estimated to be 0.05 ton of CH4 per ton of annual capacity;this number corresponds to bioreaction of about one half of the total organic carbon in MSW.On this basis,the average rate of CH4 emission from the 396 LMOP landfills was estimated to be 0.026-ton CH4 per annual ton of deposition and the average efficiency of LFG capture,48%.Adding up all 1,164 operating landfills,their total emission of methane was estimated at 11.9 million metric tons of CH4.At CH4/CO2 equivalence of 25,this number corresponds to CO2-eq emissions of 270 million metric tons,i.e.,5.1%of the U.S.energy related carbon dioxide emissions.Nickolas J.Themelis A.C.(Thanos)Bourtsalas 2021Journal of Environmental Science and Engineering(A)2021,10,6:4
12Study on the Sulfur Nutrition of the Sugarcane and Balance of Sulfur in Soil for Sugarcane Planting Areas显示文摘H.W. Tan L.Q. Zhou R.L. Xie M.F. Huang 2010Journal of Environmental Science and Engineering2010,4,9:4
13The Adsorption of Copper from Aqueous Solutions Using Acrylamide-Grafted Cellulose显示文摘M.M. Shahri M.B. Ahmad M.J. Haron M.Z.A. Rahman 2010Journal of Environmental Science and Engineering2010,4,3:4
14The Use of Drones in Forestry显示文摘Tiberiu Paul Banu Gheorghe Florian Borlea Constantin Banu 2016Journal of Environmental Science and Engineering(B)2016,5,11:4
15Test Bench for the Mechanical Distribution of Predators to Control Insect Pests显示文摘M. Khelifi F. Pare M. Aider 2011Journal of Environmental Science and Engineering2011,5,11:4
16Synthesis of Foliar Fertilizer and Ca-S-Si Compound Fertilizer from Titanium-bearing Blast Furnace Slag显示文摘Y. Zhang, X.X. Xue H. Yang 2010Journal of Environmental Science and Engineering2010,4,2:4
17Removal of Cu^2+ Ions from Aqueous Solutions by Adsorption on Libyan Soil显示文摘A.Y. Okasha H.G. Ibrahim 2010Journal of Environmental Science and Engineering2010,4,10:3
18The concept, connotation and method of representation of watershed water environment carrying capacity (WWECC)显示文摘MENG Qing-bin ZHANG Xue SHEN Zhen-yao 2009Journal of Environmental Science and Engineering2009,3,3:3
19Partitioning and First Flush of Metals in Urban Roadway Storm Water显示文摘John J. Sansalone Steven G. Buchberger 1997Journal of Environmental Engineering1997,,2:3
20Removal of Chromium from Chromium(VI) Solutions by Adsorption and Reduction Using Immobilized Persimmon Gel显示文摘Takehiko Tsuruta Tomonobu Hatano 2015Journal of Environmental Science and Engineering(A)2015,4,10:3
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