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13篇 您的检索式:作者名="Kensuke Fukushi"
    题名 作者 年代 出处 被引量
1Comparison of sludge characteristics and PCR - DGGE based microbial diversity of nanofiltration and microfiltration membrane bioreactors显示文摘Jae-Hoon Choi Sang Hyon Lee Kensuke Fukushi 2007Chemosphere2007,67,8:1
2Effect of acid speciation on solid waste liquefaction in an anaerobic acid digester显示文摘Sandhya Babel Kensuke Fukushi Bunpot Sitanrassamee 2004Water Research2004,38,9:1
3Denitrification with methane as external carbon source显示文摘Oskar Modin Kensuke Fukushi Kazuo Yamamoto 2007Water Research2007,41,6:1
4Denitrification with methane as external carbon source 显示文摘Oskar Modin Kensuke Fukushi Kazuo Yamamoto 2007Water Research2007,41,6:1
5Stimulation of actived sludge cultures for enhanced heavy metal removal显示文摘CHANG D KENSUKE FUKUSHI 1995Water Environment Research1995,67,5:1
6Optimization of wastewater feeding for single-cell protein production in an anaerobic wastewater treatment process utilizing purple non-sulfur bacteria in mixed culture condition显示文摘Ryo Honda Kensuke Fukushi Kazuo Yamamoto 2006Journal of Biotechnology2006,,4:1
7Effect of acid speciation on solid waste liquefaction in an anaerobic acid digester 显示文摘Sandihya Babel Kensuke Fukushi Bunpot Sitanrassnmee 2004Water Resource2004,38,9:1
8A submerged nanofiltration membrane bioreactor for domestic wastewater treatment: the performance of cellulose acetate nanofiltration membranes for long-term operation显示文摘Jae-Hoon Choi Kensuke Fukushi Kazuo Yamamoto 2007Sep Purif Technol2007,52,3:1
9Redistribution of wastewater alkalinity with a microbial fuel cell to support nitrification of reject water显示文摘Oskar Modin Kensuke Fukushi Korneel Rabaey René A. Rozendal Kazuo Yamamoto 2011Water Research2011,,8:1
10A novel application of a submerged nanofiltration membrane bioreactor (NF MBR) for wastewater treatment显示文摘 Seok Dockko Kensuke Fukushi 2002Desalination2002,146,:1
11Comparison of sludge characteristics and PCR- DC_,GE based microbial diversity of nanofihration and microfiltration membrane bioreactors 显示文摘Jae-Hoon Choi Sang Hyon Lee Kensuke Fukushi 2007Chemo- sphere2007,67,8:1
12Comparative assessment of primary and secondary infection risks in a norovirus outbreak using a household model simulation显示文摘Diarrheal diseases can be transmitted via both primary infection due to exposures to contaminated materials from the environment and secondary infection due to personto-person contacts. Usually, the importance of secondary infection is empirically assessed by fitting mathematical models to the epidemic curves. However, these empirical models may not be applicable to other epidemic cases because they are developed only for the target epidemics and they don't consider the detail routes of infection. In our previous study, we developed a theoretical model taking into account the various routes of infection that commonly occur in households(e.g., shaking hands, food handling, and changing diapers).This model was made flexible and applicable to any epidemics by means of adjusting model parameters. In this study, we proposed a new index 'Vulnerability indicator to secondary infection(VISI)', which expressed a ratio of secondary infection to primary infection risks and calculated this index in a simulated norovirus(No V) epidemic that involved 10,000 households.The results demonstrated that households composed of more than three members including infant(s) had much higher levels of VISI(5–45) than two-member-households with VISI(0.1–4).These results concluded that the infants were likely to be a hub of secondary infections in highly dense families and therefore careful handling of diapers was deemed indispensible in such families to effectively control the secondary infections.Fuminari Miura Toru Watanabe Kozo Watanabe Kazuhiko Takemoto Kensuke Fukushi 2016Journal of Environmental Sciences2016,28,12:1
13Development of natural treatment system consisting of black soil and Kentucky bluegrass for the post-treatment of anaerobically digested strong wastewater显示文摘To develop a sound post-treatment process for anaerobically-digested strong wastewater,a novel natural treatment system comprising two units is put forward.The first unit,a trickling filter,provides for further reduction of biochemical oxygen demand and adjustable nitrification.The subsequent soil–plant unit aims at removing and recovering the nutrients nitrogen(N),phosphorus(P)and potassium(K).As a lab-scale feasibility study,a soil column test was conducted,in which black soil and valuable Kentucky bluegrass were integrated to treat artificial nutrient-enriched wastewater.After a long-term operation,the nitrification function was well established in the top layers,despite the need for an improved denitrification process prior to discharge.P and K were retained by the soil through distinct mechanisms.Since they either partially or totally remained in plant-available forms in the soil,indirect nutrient reuse could be achieved.As for Kentucky bluegrass,it displayed better growth status when receiving wastewater,with direct recovery of 8%,6% and 14% of input N,P and K,respectively.Furthermore,the indispensable role of Kentucky bluegrass for better treatment performance was proved,as it enhanced the cell-specific nitrification potential of the soil nitrifying microorganisms inhabiting the rhizosphere.After further upgrade,the proposed system is expected to become a new solution for strong wastewater pollution.Xiaochen Chen Kensuke Fukushi 2016Journal of Environmental Sciences2016,28,3:0
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