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Prof. dr. L. (Lucas) Reijnders

Emeritus Professor
Faculty of Science
Institute for Biodiversity and Ecosystem Dynamics

Visiting address
  • Science Park 904
Postal address
  • Postbus 94240
    1090 GE Amsterdam
Contact details
  • Publications

    2020

    • Reijnders, L. (2020). Is the Production of Biofuels Environmentally Sustainable? In S. Hashmi, & I. A. Choudhury (Eds.), Encyclopedia of Renewable and Sustainable Materials (Vol. 3, pp. 545-550). (Reference Module in Materials Science and Materials Engineering). Amsterdam: Elsevier. https://doi.org/10.1016/B978-0-12-803581-8.11018-5 [details]
    • Reijnders, L. (2020). Life cycle assessment of micro algae-based processes and products. In E. Jacob-Lopes, M. M. Maroneze, M. I. Queiroz, & L. Queiroz Zepka (Eds.), Handbook of microalgae-based processes and products: Fundamentals and Advances in Energy, Food, Feed, Fertilizer, and Bioactive Compounds (pp. 823-840). Academic Press. https://doi.org/10.1016/B978-0-12-818536-0.00030-0 [details]
    • Reijnders, L. (2020). Safer-by-design for nanomaterials. In S. Rajendran, A. Mukherjee, T. A. Nguyen, C. Godugu, & R. K. Shukla (Eds.), Nanotoxicity: Prevention and Antibacterial Applications of Nanomaterials (pp. 215-237). Elsevier. https://doi.org/10.1016/B978-0-12-819943-5.00010-5 [details]

    2019

    2018

    • Reijnders, L. (2018). Biofuels from Microalgae: Biodiesel. In E. Jacob-Lopes, L. Queiroz Zepka, & M. I. Queiroz (Eds.), Energy from Microalgae (pp. 171-180). (Green Energy and Technology). Cham: Springer. [details]
    • Reijnders, L. (2018). Hazardous Waste Incineration Ashes and Their Utilization. In R. A. Meyers (Ed.), Encyclopedia of Sustainability Science and Technology (Living ed.). New York: Springer. https://doi.org/10.1007/978-1-4939-2493-6_97-3, https://doi.org/10.1007/978-1-4419-0851-3_97 [details]
    • Reijnders, L. (2018). Quality of recycling: conserving functionality of geochemically scarce elements associated with aluminum life cycles. In M. A. Holst, & T. M. Kjeldsen (Eds.), Recycling and Reuse of Materials (pp. 115-180). (Environmental Remediation Technologies, Regulations and Safety). New York: Nova Science Publishers. [details]
    • Reijnders, L. (2018). Sustainability-related indicators developed for governments. In S. Bell, & S. Morse (Eds.), Routledge Handbook of Sustainability Indicators (pp. 308-320). (Routledge International Handbooks). Abingdon: Routledge. [details]

    2017

    • Reijnders, L. (2017). Greenhouse gas balances of microalgal biofuels. In J. C. M. Pires (Ed.), Recent Advances in Renewable Energy: Microalgae as a Source of Bioenergy: Products, Processes and Economics (Vol. 1, pp. 391-401). Sharjah: Bentham eBooks. [details]
    • Reijnders, L. (2017). Life cycle assessment of greenhouse gas emissions. In W-Y. Chen, T. Suzuki, & M. Lackner (Eds.), Handbook of Climate Change Mitigation and Adaptation (2 ed., pp. 61-91). Cham: Springer. https://doi.org/10.1007/978-3-319-14409-2_2 [details]

    2016

    2015

    • Reijnders, L. (2015). Disposal and utilization of coal combustion, gasification and coking residues. In H. R. Riazi, & R. Gupta (Eds.), Coal Production and Processing Technology (pp. 413-434). Boca Raton: CRC Press. https://doi.org/10.1201/b19352-22 [details]
    • Reijnders, L. (2015). Life Cycle Assessment of Greenhouse Gas Emissions. In W. Y. Chen, T. Suzuki, & M. Lackner (Eds.), Handbook of Climate Change Mitigation and Adaptation New York: Springer. https://doi.org/10.1007/978-1-4614-6431-0_2-2 [details]

    2014

    • Provoost, J., Reijnders, L., Bronders, J., Van Keer, I., & Govaerts, S. (2014). Probabilistic risk assessment for six vapour intrusion algorithms. Environment and Pollution, 3(2), 1-22. https://doi.org/10.5539/ep.v3n2p1 [details]
    • Reijnders, L. (2014). Phosphorus resources, their depletion and conservation, a review. Resources, conservation and recycling, 93, 32-49. https://doi.org/10.1016/j.resconrec.2014.09.006 [details]
    • Reijnders, L. (2014). Safe recycling of materials containing persistent inorganic and carbon nanoparticles. In J. Njuguna, K. Pielichowski, & H. Zhu (Eds.), Health and environmental safety of nanomaterials: polymer nanocomposites and other materials containing nanoparticles (pp. 222-250). (Woodhead publishing series in composites science and engineergin; No. 49). Oxford: Elsevier / WP, Woodhead Publishing. [details]
    • Reijnders, L. (2014). Sustainability of bioenergy systems. In L. Wang (Ed.), Sustainable bioenergy production (pp. 115-132). Boca Raton: CRC Press. [details]
    • Reijnders, L. (2014). The safety of emerging inorganic and carbon nanomaterials. In I. Colbeck, & M. Lazardis (Eds.), Aerosol science: technology and applications (pp. 327-344). Chichester: Wiley. https://doi.org/10.1002/9781118682555.ch13 [details]

    2013

    • Mohr, N. J., Meijer, A., Huijbregts, M. A. J., & Reijnders, L. (2013). Environmental life cycle assessment of roof-integrated flexible amorphous silicon/nanocrystalline silicon solar cell laminate. Progress in Photovoltaics: Research and Applications, 21(4), 802-815. https://doi.org/10.1002/pip.2157 [details]
    • Provoost, J., Reijnders, L., & Bonders, J. (2013). Accuracy and conservatism of vapour intrusion algorithms for contaminated land management. Environment and Pollution, 2(2), 71-78. https://doi.org/10.5539/ep.v2n2p71 [details]
    • Reijnders, L. (2013). Health hazards, recycling and life cycle assessment of nanomaterials and their composites. In S. Thomas, K. Joseph, S. K. Malhotra, K. Goda, & M. S. Sreekala (Eds.), Polymer somposites. - Volume 2: nanocomposites (pp. 279-294). Weinheim: Wiley-VCH. https://doi.org/10.1002/97883527652372 [details]
    • Reijnders, L. (2013). Lipid-based liquid biofuels from autotrophic microalgae: energetic and environmental performance. Wiley Interdisciplinary Reviews: Energy and Environment, 2(1), 73-85. https://doi.org/10.1002/wene.29 [details]
    • Reijnders, L. (2013). Sustainability of soil fertility and the use of lignocellulosic crop harvest residues for the production of biofuels: a literature review. Environmental Technology, 34(13-14), 1725-1734. https://doi.org/10.1080/09593330.2013.826252 [details]
    • Reijnders, L. (2013). The environmental impact of a nanoparticle-based reduced need of cleaning product and the limitation thereof. In W. A. Daoud (Ed.), Self-cleaning materials and surfaces: a nanotechnology approach (pp. 313-346). Chichester: Wiley. https://doi.org/10.1002/9781118652336.ch11 [details]

    2012

    • Loureiro, S. M. C., Dias-Sardinha, I. M., & Reijnders, L. (2012). The effect of corporate social responsibility on consumer satisfaction and perceived value: the case of the automobile industry sector in Portugal. Journal of cleaner production, 37, 172-178. https://doi.org/10.1016/j.jclepro.2012.07.003 [details]
    • Reijnders, L. (2012). Foreword: the production of algal biofuels. In R. Gordon, & J. Seckbach (Eds.), The science of algal fuels: phycology, geology, biphotonics, genomics and nanotechnology (pp. xiii-xix). (Cellular origin, life in extreme habitats and astrobiology; No. 25). Dordrecht: Springer. https://doi.org/10.1007/978-94-007-5110-1 [details]
    • Reijnders, L. (2012). Hazards of TiO2 and amorphous SiO2 nanoparticles. In H. A. Kahn, & I. A. Arif (Eds.), Toxic effects of nanomaterials (pp. 85-96). Oak Park, Ill.: Bentham Science. https://doi.org/10.2174/97816080528371120101 [details]
    • Reijnders, L. (2012). Human health hazards of persistent inorganic and carbon nanoparticles. Journal of materials science, 47(13), 5061-5073. https://doi.org/10.1007/s10853-012-6288-3 [details]
    • Reijnders, L. (2012). Life cycle assessment of greenhouse gas emissions. In W. Y. Chen, J. Seiner, T. Suzuki, & M. Lackner (Eds.), Handbook of climate change mitigation (pp. 13-41). (Springer reference). New York: Springer. https://doi.org/10.1007/978-1-4419-7991-9_2 [details]
    • Reijnders, L. (2012). Photocatalytic degradation of poorly biodegradable water pollutants using titania (TiO2) nanoparticles. In T. Dey (Ed.), Nanotechnology for water purification (pp. 117-124). Boca Raton, Fla.: Brown Walker Press. [details]
    • Reijnders, L. (2012). Positive and negative impacts of agricultural production of liquid biofuels. In R. E. Hester, & R. M. Harrison (Eds.), Environmental impacts of modern agriculture (pp. 150-167). (Issues in environmental sience and technology; No. 34). Cambridge: Royal Soc. of Chemistry. https://doi.org/10.1039/9781849734974-00150 [details]
    • van Broekhuizen, P., van Broekhuizen, F., Cornelissen, R., & Reijnders, L. (2012). Workplace exposure to nanoparticles and the application of provisional nanoreference values in times of uncertain risks. Journal of Nanoparticle Research, 14(4), 770. https://doi.org/10.1007/s11051-012-0770-3 [details]
    • van Broekhuizen, P., van Veelen, W., Steekstra, W. H., Schulte, P., & Reijnders, L. (2012). Exposure limits for nanoparticles: report of an international workshop on nano reference values. The annals of occupational hygiene, 56(5), 515-524. https://doi.org/10.1093/annhyg/mes043 [details]

    2011

    2010

    2009

    2008

    2009

    1998

    • Fraanje, P. J. (1998). Renewable resources for building materials. Amsterdam: IVAM Environmental Research. [details]
    This list of publications is extracted from the UvA-Current Research Information System. Questions? Ask the library or the Pure staff of your faculty / institute. Log in to Pure to edit your publications. Log in to Personal Page Publication Selection tool to manage the visibility of your publications on this list.
  • Ancillary activities
    No known ancillary activities