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    Technology Transfer Center Bremerhaven

    EST. 1987
    21论文总数
    238引用总数

    论文量&引用量时间轴

    机构学者

    排序
    Jaakko Paasi
    Jaakko Paasi
    VTT Technical Research Centre of Finland
    论文:5引用:0H-index:0
    Marie Shrestha
    Marie Shrestha
    Technology Transfer Center Bremerhaven
    论文:5引用:0H-index:0
    Sveinn Agnarsson
    Sveinn Agnarsson
    University of Iceland
    论文:3引用:0H-index:0
    Søren Qvist Eliasen
    Søren Qvist Eliasen
    Aalborg University
    论文:3引用:0H-index:0
    Hans Brix
    Hans Brix
    Department of Biology, Aarhus Universitet
    论文:3引用:0H-index:0
    Buchecker Kirsten
    Buchecker Kirsten
    University of Applied Sciences Bremerhaven
    论文:3引用:0H-index:0
    Jose L. Santiago
    Jose L. Santiago
    Confraria Pescadores La Anunciada
    论文:3引用:0H-index:0
    saga guðmundsdottir
    saga guðmundsdottir
    School of Business, University of Iceland
    论文:3引用:0H-index:0
    heather manuel
    heather manuel
    Fisheries and Marine Institute, Memorial University of Newfoundland
    论文:3引用:0H-index:0

    论文(21)

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    1Design, Implementation, and Evaluation of a Short Rotation Coppice System for Wastewater Treatment and Resource Recovery in India
    Mirko Haenel,Emil Jespersen, Aryan Upadhyay,Andres Acosta,Nadeem Khalil,Hans Brix,Carlos A. Arias

    Despite growing health concerns and increasing water scarcity, adequate wastewater treatment and reuse remains limited in India. Low-cost, decentralised, and nature-based on-site sanitation systems could play a key role in a circular water approach. This paper evaluates the performance of a Wastewater Fertigated Short Rotation Coppice (wfSRC) system based on willow, poplar, and bamboo species as a potential solution, offering low-cost, efficient water treatment, and high biomass production. Through a full-scale wfSRC pilot plant (250 m(3)day(-1) municipal wastewater on 6864 m(2)) established at Aligarh Muslim University, Uttar Pradesh, India, treatment capacities, biomass production rates, and contamination tolerance of different willow, poplar, and bamboo species were investigated. The chemical compositions of incoming wastewater, percolation water, soil, and biomass were monitored regularly. Despite the high load, all plant sections of the wfSRC system showed efficient removal of wastewater-originated pollutants. BOD5 and COD removal efficiencies were up to 99% and 95% respectively. Removal efficiencies for PO4-P reached 93% and for TN 91%. In general, total nitrogen and phosphate loads appear to be the limiting design parameters under the conditions at Aligarh to meet all discharge limits in India. Biomass production was projected to be >225 tDMha(-1)yr(-1) for bamboo, 65 tDMha(-1)yr(-1) for willow, and 206 tDMha(-1)yr(-1) for poplar. The pilot, conducted from March 2022 to June 2023, showcased how these densely planted agroforestry systems can effectively treat wastewater through natural processes such as oxidation, microbial degradation, and plant uptake. The findings demonstrate wfSRC's potential to serve as a nature-based, sustainable approach to wastewater treatment, particularly beneficial for suburban and rural areas in India and similar regions worldwide. This paper also provides recommendations for future implementation of wfSRC systems, emphasizing the need for careful planning regarding plant selection, system design, and operational strategies to maximize treatment efficiency and biomass production.

    2024Ecological Engineering(2024)引用:2
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    2Application Potential of Wastewater Fertigated Short Rotation Coppice Systems in a Selected Region (aligarh, UP, India)
    Mirko Haenel,Ganbaatar Khurelbaatar,Emil Jespersen, Aryan Upadhyay,Andres Acosta,Nadeem Khalil,Hans Brix,Carlos A. Arias

    In many Indian regions, increased wastewater is both a threat to public health and the environment, but it also presents an opportunity as a source of water and nutrients. With less than one-third of India’s wastewater treated and an alarming water scarcity situation, efficient wastewater treatment and reuse schemes are needed to face impending water and fertiliser shortages. This study explores the application potential of wastewater fertigated Short Rotation Coppice systems (wfSRC) as a cost-efficient and promising solution for treating and reusing wastewater in a specific region (400 km2, 184 settlements) of Aligarh (UP), India. Based on real data from a local wfSRC pilot site using bamboo, willow, and poplar, we analysed the system’s treatment performance, nutrient recovery, carbon sequestration potential, land requirements, biomass production potential, and cost–benefit, under various scenarios. The results show that the pilot wfSRC system is efficiently treating 250 m3/day of domestic wastewater on 6864 m2 of land, and serving 2500 people. The land requirements for wfSRC systems vary depending on local conditions (e.g., climate, soil type, wastewater composition) and user demands (e.g., water reuse efficiency, type, and amount of biomass). The calculated areas ranged from 2.75 to 25.7 m2/PE, which equates to a required land area in the whole study region of between 108 and 1006 ha in 2036. This would produce up to 100 DM t/ha/year of valuable biomass. Early local stakeholder involvement and the monitoring of pollutants are recommended as priorities during the planning process for the large-scale implementation of wfSRC systems in India.

    2023RECYCLING(2023)引用:2
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    3Wastewater-Fertigated Short-Rotation Coppice, a Combined Scheme of Wastewater Treatment and Biomass Production: A State-of-the-Art Review
    Mirko Hanel,Darja Istenic,Hans Brix,Carlos A. Arias

    Vegetated filters based on short-rotation coppice (SRC) can be used to treat various industrial and municipal wastewater while producing valuable biomass in an economical and sustainable way, showing potential in the field of pollution control and bio-based circular economy. This study provides an overview of the state of the art in wastewater-fertigated SRC systems (wfSRCs) worldwide. Different designs, wastewater sources, tree species and varieties, planting schemes, geographic locations, and climates for wfSRC implementation were identified after conducting a literature review. The performance review includes standard water quality parameters, BOD5, COD, nitrogen, phosphorous, and potassium, as well as the extent of pathogen and emergent contaminant removal and biomass production rates. Identified knowledge gaps and important factors to support the practical implementation of wfSRCs are highlighted. Europe leads the research of wfSRC, followed by North America and Australia. The available publications are mainly from developed countries (73%). The most applied and studied tree species in wfSRC systems are willows (32%), followed by eucalyptus (21%) and poplars (18%). Most of the reviewed studies used domestic wastewater (85%), followed by industrial wastewater (8%) and landfill leachate (7%). Most data show high BOD5 and COD removal efficiencies (80%). There are large differences in the documented total nitrogen and total phosphorus removal efficiencies (12%–99% and 40%–80%, respectively). Enhanced biomass growth in wfSRC systems due to wastewater fertigation was reported in all reviewed studies, and biomass production varied from 3.7 to 40 t DM/ha/yr. WfSRCs seem to have high potential as viable and cost-effective wastewater treatment alternatives to conventional treatment technologies.

    2022FORESTS(2022)引用:6
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    4Consumer views about the Next Generation proteins for food in Europe
    Anne Arvola,Minna Kulju,Kyösti Pennanen,Imke Matullat,Kolbrún Sveinsdóttir, Helgi Briem,Jaakko Paasi
    2021Zenodo (CERN European Organization for Nuclear Research)(2021)引用:1
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    5Report on Stakeholder Attitudes on the Use of Next Generation Proteins in Food and Feed in Europe
    Jaakko Paasi, Hannamaija Tuovila,Imke Matullat,Serena Busti
    2021Zenodo (CERN European Organization for Nuclear Research)(2021)
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    合作机构(34)

    VTT 技术研究中心 of Finland合作论文 5
    纽芬兰纪念大学合作论文 3
    斯特林大学合作论文 3
    冰岛大学合作论文 3
    Centro Tecnológico del Mar合作论文 3
    根特大学合作论文 2
    哥德堡大学合作论文 2
    不来梅大学合作论文 2
    Hirose Electric Group合作论文 2
    Nha Trang University合作论文 2

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