Remedial Approaches to Arrest Arsenic in Soil–Plant System to Prevent Its Entry in Rice Grain—a Review
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-4764-1_17
Reference156 articles.
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2. Alam, M. Z., Carpenter-Boggs, L., Hoque, M. A., & Ahammed, G. J. (2020). Effect of soil amendments on antioxidant activity and photosynthetic pigments in pea crops grown in arsenic contaminated soil. Heliyon, 6(11).
3. Ali, B., Wang, B., Ali, S., Ghani, M. A., Hayat, M. T., Yang, C., Xu, L., & Zhou, W. J. (2013). 5-Aminolevulinic acid ameliorates the growth, photosynthetic gas exchange capacity, and ultrastructural changes under cadmium stress in Brassica napus L. Journal of Plant Growth Regulation, 32(3), 604–614.
4. Armendariz, A. L., Talano, M. A., Oller, A. L. W., Medina, M. I., & Agostini, E. (2015). Effect of arsenic on tolerance mechanisms of two plant growth-promoting bacteria used as biological inoculants. Journal of Environmental Sciences, 33, 203–210.
5. Asmel, N. K., Yusoff, A. R. M., Krishna, L. S., Majid, Z. A., & Salmiati, S. (2017). High concentration arsenic removal from aqueous solution using nano-iron ion enrich material (NIIEM) super adsorbent. Chemical Engineering Journal, 317, 343–355.
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