e-ISSN 2231-8526
ISSN 0128-7680
J
Pertanika Journal of Science & Technology, Volume J, Issue J, January J
Keywords: J
Published on: J
J
AlShrouf, A. (2017). Hydroponics, aeroponic and aquaponic as compared with conventional farming. American Scientific Research Journal for Engineering, Technology, and Sciences, 27(1), 247-255.
Anwar, S., Nawaz, M. F., Gul, S., Rizwan, M., Ali, S., & Kareem, A. (2016). Uptake and distribution of minerals and heavy metals in commonly grown leafy vegetable species irrigated with sewage water. Environmental Monitoring and Assessment, 188(9), 541-550. https://doi.org/10.1007/s10661-016-5560-4.
Bai, L., Liu, X.-L., Hu, J., Li, J., Wang, Z.-L., Han, G., Li, S.-L., & Liu, C-Q. (2018). Heavy metal accumulation in common aquatic plants in rivers and lakes in the Taihu Basin. International Journal of Environmental Research and Public Health, 15(12), 2857. https://doi.org/10.3390/ijerph15122857
Barazani, O., Dudai, N., Khadka, U. R., & Golan-Goldhirsh, A. (2004). Cadmium accumulation in Allium schoenoprasum L. grown in an aqueous medium. Chemosphere, 57(9), 1213-1218. https://doi.org/10.1016/j.chemosphere.2004.08.037
Cobb, G. P., Sands, K., Waters, M., Wixson, B. G., & Dorward-King, E. (2000). Accumulation of heavy metals by vegetables grown in mine wastes. Environmental Toxicology and Chemistry, 19(3), 600-607. https://doi.org/10.1002/etc.5620190311
Deng, D. M., Shu, W. S., & Zhang, J. (2007). Zinc and cadmium accumulation and tolerance in populations of Sedum alfredii. Environmental Pollution, 147(2), 381-386. https://doi.org/10.1016/j.envpol.2006.05.024
Dulama, I. D., Popescu, I. V., Stihi, C., Radulescu, C., Cimpoca, G. V., Toma, L. G., Stirbescu, R., & Nitescu, O. (2012). Studies on accumulation of heavy metals in Acacia leaf by EDXRF. Romanian Report on Physics, 64(4), 1063–1071.
Eissa, M. A., & Negim, O. E. (2018). Heavy metals uptake and translocation by lettuce and spinach grown on a metal-contaminated soil. Journal of Soil Science and Plant Nutrition, 18(4), 1097-1107. https://doi.org/10.4067/S0718-95162018005003101
Feigl, G., Kumar, D., Lehotai, N., Tugyi, N., Molnár, A., Ordög, A., Szepesi, A., Gémes, K., Laskay, G., Erdei, L., & Kolbert, Z. (2013). Physiological and morphological responses of the root system of Indian mustard (Brassica juncea L. Czern.) and rapeseed (Brassica napus L.) to copper stress. Ecotoxicology and Environmental Safety, 94, 179–189. https://doi.org/10.1016/j.ecoenv.2013.04.029
Foy, C. D. (1984). Plant adaptation to mineral stress problem in soils. In D. Evered & G. M. Collins (Eds.), Origins and development of adaptation (Vol. 102, pp. 20-39). Ciba Foundation. https://doi.org/10.1002/9780470720837.ch3
Gupta, N., Yadav, K. K., Kumar, V., Cabral-Pinto, M. M. S., Alam, M., Kumar, S., & Prasad, S. (2021). Appraisal of contamination of heavy metals and health risk in agricultural soil of Jhansi City, India. Environmental Toxicology and Pharmacology, 88, 103740. https://doi.org/10.1016/j.etap.2021.103740
Jiang, W., Liu, D., & Hou, W. (2001). Hyperaccumulation of cadmium by roots, bulbs and shoots of garlic (Allium sativum L.). Bioresource Technology, 76(1), 9-13. https://doi.org/10.1016/S0960-8524(00)00086-9
Kabata-Pendias, A. (2011). Trace elements in soils and plants (4th ed.). CRC Press.
Majid, S. N., Khwakaram, A., Rasul, G. A. M., & Ahmed, Z. H. G. (2014). Bioaccumulation, enrichment and translocation factors of some heavy metals in Typha angustifolia and Phragmites australis species growing along Qalyasan Stream in Sulaimani City/IKR. Journal of Zankoy Sulaimani-Part A, 16(4), 93-109.
Mohtadi, A., Ghaderian, S. M., & Schat, H. (2012). A comparison of lead accumulation and tolerance among heavy metal hyperaccumulating and non-hyperaccumulating metallophytes. Plant and Soil, 352(1-2), 267–276. https://doi.org/10.1007/s11104-011-0994-5
Mourato, M. P., Moreira, I. N., Leitão, L., Pinto, F. R., Sales, J. R., & Martins, L. L. (2015). Effect of heavy metals in plants of the genus Brassica. International Journal of Molecular Sciences, 16(8), 17975-17998. https://doi.org/10.3390/ijms160817975.
Radulescu, C., Stihi, C., Busuioc, G., Gheboianu, A. I., & Popescu, I. V. (2010). Studies concerning heavy metals bioaccumulation of wild edible mushrooms from industrial area by using spectrometric techniques. Bulletin of Environmental Contamination and Toxicology, 84(5), 641–647. https://doi.org/10.1007/s00128-010-9976-1
Radulescu, C., Stihi, C., Popescu, I. V., Ionita, I., Dulama, I. D., Chilian, A., Bancuta, O. R., Chelarescu, E. D., & Let, D. (2013). Assessment of heavy metals level in some perennial medicinal plants by Flame Atomic Absorption Spectrometry. Romanian Reports in Physics, 65(1), 246–260.
Rezapour, S., Moghaddam, S. S., Nouri, A., & Aqdam, K. K. (2022). Urbanization influences the distribution, enrichment, and ecological health risk of heavy metals in croplands. Scientific Reports, 12(1), 3868-3884. https://doi.org/10.1038/s41598-022-07789-x
Sharma, N., Acharya, S., Kumar, K., & Chaurasia, O. P. (2018). Hydroponics as an advanced technique for vegetable production: An overview. Journal of Soil and Water Conservation, 17(4), 364-371. https://doi.org/10.5958/2455-7145.2018.00056.5
Soudek, P., Kotyza, J., Lenikusova, I., Petrová, S., Benešová, D., & Vanek, T. (2009). Accumulation of heavy metals in hydroponically cultivated garlic (Allium sativum L.), onion (Allium cepa L.), leek (Allium porrum L.) and chive (Allium schoenoprasum L.). Journal of Food, Agriculture and Environment, 7(3), 761-769.
Souri, M. K., Hatamian, M., & Tesfamariam, T. (2019). Plant growth stage influences heavy metal accumulation in leafy vegetables of garden cress and sweet basil. Chemical and Biological Technologies in Agriculture, 6, 25. https://doi.org/10.1186/s40538-019-0170-3
Takarina, N. D., & Pin, T. G. (2017). Bioconcentration factor (BCF) and translocation factor (TF) of heavy metals in mangrove trees of Blanakan Fish Farm. Makara Journal of Science, 21(2), 77-81. https://doi.org/10.7454/mss.v21i2.7308
Tom, M., Fletcher, T. D., & Mccarthy, D. T. (2014). Heavy metal contamination of vegetables irrigated by urban stormwater: A matter of time? PLOS One, 9(11), e112441. https://doi.org/10.1371/journal.pone.0112441
Tyler, G., Balsberg Påhlsson, A. M., Bengtsson, G., Bååth, E., & Tranvik, L. (1989). Heavy metal ecology of terrestrial plants, microorganisms and invertebrates. Water, Air, and Soil Pollution, 47, 189-215. https://doi.org/10.1007/BF00279327
Wang, L., Chen, X., Guo, W., Li, Y., Yan, H., & Xue, X. (2017). Yield and nutritional quality of water spinach (Ipomoea aquatica) as influenced by hydroponic nutrient solutions with different pH adjustments. International Journal of Agriculture and Biology, 19(4), 635-642. https://doi.org/10.17957/IJAB/15.0311
Zhou, H., Yang, W.-T., Zhou, X., Liu, L., Gu, J.-F., Wang, W.-L., Zou, J.-L., Tian, T., Peng, P.-Q., & Liao, B.-H. (2016). Accumulation of heavy metals in vegetable species planted in contaminated soils and the health risk assessment. International Journal of Environmental Research and Public Health, 3(3), 289-301. https://doi.org/10.3390/ijerph13030289
ISSN 0128-7680
e-ISSN 2231-8526