Impact of Fe-modified Lantana camara Biochar on the Nutrient Dynamic, Microbial Population and Enzymes in Flooded Rice Ecosystem

Shubham Jaiswal *

Department of Soil Science and Agricultural Chemistry, Institute of Agricultural Sciences, Banaras Hindu University, India.

Satish Kumar Singh

Department of Soil Science and Agricultural Chemistry, Institute of Agricultural Sciences, Banaras Hindu University, India.

Sarbasree Goswami

Department of Soil Science and Agricultural Chemistry, Institute of Agricultural Sciences, Banaras Hindu University, India.

Kajal Singh

Department of Soil Science and Agricultural Chemistry, Institute of Agricultural Sciences, Banaras Hindu University, India.

Purushottam Dev

Department of Soil Science and Agricultural Chemistry, Institute of Agricultural Sciences, Banaras Hindu University, India.

Himanshu Pandey

Department of Soil Science and Agricultural Chemistry, Institute of Agricultural Sciences, Banaras Hindu University, India.

*Author to whom correspondence should be addressed.


Abstract

The conversion of invasive weed biomass into functionalised soil amendments presents a promising strategy for sustainable agricultural management. This study evaluated the effects of pristine Lantana biochar (BC, pyrolysed at 500°C to 600°C) and iron-modified Lantana biochar (FBC) on soil physicochemical properties, nutrient dynamics, and biological activity in a rice pot culture system. Eight treatments were assessed: absolute control (T1), RDF; recommended dose of fertilisers (T2), and graded applications of BC (T3-T5) and FBC (T6-T8) at 5, 7.5, and 10 t ha-1. Chemical modification significantly altered the biochar, reducing its pH (10.42 to 5.41) and potassium content (0.93% to 0.07%) while increasing ash content and fixed carbon. In the soil, FBC application, particularly at 10 t ha-1 (T8), significantly outperformed pristine biochar by maximising soil organic carbon (OC%;0.68%) and cation exchange capacity (36.09 cmol (+) kg-1), while effectively reducing electrical conductivity   (0.66 dSm-1). Furthermore, T8 significantly enhanced the availability of nitrogen, phosphorus, and sulphur, though available potassium was highest under high-dose pristine biochar (T5;10 t ha-1) due to leaching losses during FBC synthesis. Biologically, FBC at 10 t ha-1 induced a massive proliferation of actinomycetes and bacterial populations and significantly stimulated dehydrogenase, alkaline phosphatase, and urease activities compared to both the control and BC treatments. The results demonstrate that engineered Fe-modified Lantana biochar is a superior soil amendment for enhancing carbon sequestration, nutrient retention, and microbial health in flooded rice ecosystems, although it necessitates supplemental potassium management.

Keywords: Fe-modified biochar, Lantana camara, flooded rice, nutrient dynamics, soil microbial population, soil enzyme activity, cation exchange capacity, soil organic carbon


How to Cite

Jaiswal, Shubham, Satish Kumar Singh, Sarbasree Goswami, Kajal Singh, Purushottam Dev, and Himanshu Pandey. 2026. “Impact of Fe-Modified Lantana Camara Biochar on the Nutrient Dynamic, Microbial Population and Enzymes in Flooded Rice Ecosystem”. International Journal of Environment and Climate Change 16 (9):703-11. https://doi.org/10.9734/ijecc/2026/v16i95688.

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