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Bioaccumulation of heavy metals in hot pepper grown in biochar and animal manure-amended soil

09.23.26 | KeAi Communications Co., Ltd.

Heavy metals are non-biodegradable and persist in the environment longer, contaminating the food chain. Phytoremediation has emerged as a reliable, eco-friendly, cost-effective and sustainable approach that utilizes plants to remediate soil or water contaminants.

A study published in Environmental Pollution and Management assessed the ability of hot pepper ( Capsicum annuum cv. Georgia Flame) grown under seven soil amendments: vermicompost, inorganic fertilizer, sewage sludge, organic fertilizer, chicken manure, horse manure and biochar on heavy metals remediation. The research was conducted in an RCBD split-plot design and heavy metal concentrations were analyzed using an inductively coupled plasma-optical emission Spectrometry (ICP-OES).

The results revealed that the average concentration of K (105.69 mgKg −1 ) and Mg (12.8 mgKg −1 ) were the highest in hot pepper fruits. However, Zn (0.16 mgKg −1 ) was found in the maximum amount among all heavy metals, whereas Cr (0.002 mgKg −1 ) was found in the minimum amount.

Notably, biochar with amendments enhanced the bioaccumulation of heavy metals, suggesting that it is an essential amendment for heavy metal remediation. The average bioaccumulation factor (BAF) of Pb (0.72), Mn (0.07) and Cr (0.16) were less than 1, indicating no effect on soil metal remediation.

Conversely, Cd (5.69), Mg (22.76), Zn (10.07), Ni (117.2) and Cu (46.37) exhibited a BAF value exceeding 1, suggesting that hot peppers have the potential to remediate these particular soil metals. Nonetheless, although Cd, Ni, Mg, Cu and Zn showed a BAF value greater than 1, their accumulation in the fruits remained within the permissible limit. Hence, the authors noted that hot pepper is a potential crop for remediating heavy metals.

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Contact the author:

Basanta Neupane

School of Agriculture and Natural Resources, College of Agriculture, Health, and Natural Resources, Kentucky State University, Frankfort, KY 40601, USA

Email: basanta.neupane@kysu.edu

The publisher KeAi was established by Elsevier and China Science Publishing & Media Ltd to unfold quality research globally. In 2013, our focus shifted to open access publishing. We now proudly publish more than 300 world-class, open access, English language journals, spanning all scientific disciplines. Many of these are titles we publish in partnership with prestigious societies and academic institutions, such as the National Natural Science Foundation of China (NSFC).

Environmental Pollution and Management

10.1016/j.epm.2025.09.006

Experimental study

Not applicable

Bioaccumulation of heavy metals in hot pepper grown in biochar and animal manure-amended soil

The authors declare the following financial interests/personal relationships which may be considered as potential competing interests: George F. Antonious reports financial support was provided by US Department of Agriculture. If there are other authors, they declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

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Contact Information

Ye He
KeAi Communications Co., Ltd.
cassie.he@keaipublishing.com

How to Cite This Article

APA:
KeAi Communications Co., Ltd.. (2026, September 23). Bioaccumulation of heavy metals in hot pepper grown in biochar and animal manure-amended soil. Brightsurf News. https://www.brightsurf.com/news/LN242JM1/bioaccumulation-of-heavy-metals-in-hot-pepper-grown-in-biochar-and-animal-manure-amended-soil.html
MLA:
"Bioaccumulation of heavy metals in hot pepper grown in biochar and animal manure-amended soil." Brightsurf News, Sep. 23 2026, https://www.brightsurf.com/news/LN242JM1/bioaccumulation-of-heavy-metals-in-hot-pepper-grown-in-biochar-and-animal-manure-amended-soil.html.