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Evaluation of selenium-enriched microalgae produced on domestic wastewater as biostimulant and biofertilizer for growth of selenium-enriched crops

https://doi.org/10.1007/s10811-021-02523-y
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31/31 checkable references clean · checked 2026-07-23

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

11 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 31 checked references that resolve
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Renewable Sources of Plant Biostimulation: Microalgae as a Sustainable Means to Improve Crop Performance
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Relationship between selenium removal efficiency and production of lipid and hydrogen by Chlorella vulgaris
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Biofertilizer and biostimulant properties of the microalga Acutodesmus dimorphus
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Metal-metabolomics of microalga Chlorella sorokiniana growing in selenium- and iodine-enriched media
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Effect of algal extracts of Phormidium species on growth and development of rice seedlings
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Microalgae recycling improves biomass recovery from wastewater treatment high rate algal ponds
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Effect of liquid seaweed extracts on growth of tomato seedlings (Solanum lycopersicum L.)
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A Critical Assessment of Chromium in the Environment
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Effect of seaweed liquid extract on growth and yield of Triticum aestivum var. Pusa Gold
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Production of selenium-enriched microalgae as potential feed supplement in high-rate algae ponds treating domestic wastewater
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DETERMINATION OF AMMONIA IN NATURAL WATERS BY THE PHENOLHYPOCHLORITE METHOD 1 1 This research was fully supported by U.S. Atomic Energy Commission Contract No. ATS (11‐1) GEN 10, P.A. 20.
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The 11 references without a DOI — listed, not checked
no DOI — not checkedAPHA-AWWA-WEF (2012) Standard methods for the examination of water and wastewater, 22nd edn. Washington DC: American Public Health Association
no DOI — not checkedDiaz GA, Rocha RHC, Araújo JL, Lima JF, Guedes WA (2016) Growth, yield, and postharvest quality in eggplant produced under different foliar fertilizer (Spirulina platensis) treatments. Semina: Ciências Agrárias 37:3893
no DOI — not checkedEllis RH, Roberts EH (1981) The quantification of aging and survival in orthodox seeds. Seed Sci Technol 9:373–410
no DOI — not checkedFaheed FA, Abd-El Fattah Z (2008) Effect of Chlorella vulgaris as biofertilizer on growth parameters and metabolic aspects of lettuce plant. J Ag Social Sci 4:165–169
no DOI — not checkedGerhardt MB, Green FB, Newman RD, Lundquist TJ, Tresan RB, Oswald WJ (1991) Removal of selenium using a novel algal-bacterial process. Res J Water Pollut Contr Fed 63:799–805
no DOI — not checkedGrzesik M, Romanowska-Duda Z (2014) Improvements in germination, growth, and metabolic activity of corn seedlings by grain conditioning and root application with cyanobacteria and microalgae. Polish J Environ Stud 23:1147–1153
no DOI — not checkedHaug A, Graham RD, Christophersen OA, Lyons GH (2007) How to use the world’s scarce selenium resources efficiently to increase the selenium concentration in food. Microb Ecol Health Dis 19:209–228
no DOI — not checkedKaveh H, Nemati H, Farsi M, Jartoodeh SV (2011) How salinity affect germination and emergence of tomato lines. J Biol Environ Sci 5:159–163
no DOI — not checkedOrchard T (1977) Estimating the parameters of plant seedling emergence. Seed Sci Technol 5:61–69
no DOI — not checkedRonga D, Biazzi E, Parati K, Carminati D, Carminati E, Tava A (2019) Microalgal biostimulants and biofertilisers in crop productions. Agronomy (basel) 9:1–22
no DOI — not checkedWu Z, Bañuelos GS, Lin Z-Q, Liu Y, Yuan L, Yin X, Li M (2015) Biofortification and phytoremediation of selenium in China. Front Plant Sci 6:136
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