2010•Journal of the Indian Society of Soil ScienceOpen access

Long-Term Effect of Crop Residues and Zinc Fertilizer on Crop Yield, Nutrient Uptake and Fertility Build-up under Rice-Wheat Cropping System in Calciorthents

R.K. Prasad, Vipin Kumar, Bishun Deo Prasad, A.P. Singh

Open full text 26 citations

Abstract

The effect of crop residues and zinc fertilizer on grain yield and nutrient uptake by rice and wheat was studied after 12 years of crop cycles in a Calciorthent. Long-term application of crop residues along with zinc increased soil organic carbon (from 4.5 to 6.8 g kg−1), grain yield (3.40 to 4.35 t ha−1 rice and 3.0 to 3.92 t ha−1 wheat) and nutrient uptake by rice (191 to 405 g Zn, 68 to 98 g Cu, 2159 to 2717 g Fe and 663 to 1038 g Mn ha−1) and wheat (142 to 256 g Zn, 53 to 84 g Cu, 1235 to 1679 g Fe and 411 to 659 g Mn ha−1). The highest grain yield in both the crops was recorded in the treatment receiving 10 kg Zn ha−1 along with 100% incorporation of the straw produced by both the crops. The treatment consisting of 5 kg Zn ha−1 + 100% of crop residues was the next promising treatment in enhancing the crop yields. The combined use of crop residues and zinc fertilizer significantly increased the availability of N, P, K and micronutrients in soil over zinc-application alone. The application of 50% crop residues along with 5–10 kg Zn ha−1 was adequate in sustaining crop productivity and maintaining soil health.

About this research paper

What this paper is about

The effect of crop residues and zinc fertilizer on grain yield and nutrient uptake by rice and wheat was studied after 12 years of crop cycles in a Calciorthent. Long-term application of crop residues along with zinc increased soil organic carbon (from 4.5 to 6.8 g kg−1), grain yield (3.40 to 4.35 t ha−1 rice and 3.0 to 3.92 t ha−1 wheat) and nutrient uptake by rice (191 to 405 g Zn, 68 to 98 g Cu, 2159 to 2717 g Fe and 663 to 1038 g Mn ha−1) and wheat (142 to 256 g Zn, 53 to 84 g Cu, 1235 to 1679 g Fe and 411 to 659 g Mn ha−1). The highest grain yield in both the crops was recorded in the treatment receiving 10 kg Zn ha−1 along with 100% incorporation of the straw produced by both the crops. The treatment consisting of 5 kg Zn ha−1 + 100% of crop residues was the next promising treatment in enhancing the crop yields. The combined use of crop residues and zinc fertilizer significantly increased the availability of N, P, K and micronutrients in soil over zinc-application alone. The application of 50% crop residues along with 5–10 kg Zn ha−1 was adequate in sustaining crop productivity and maintaining soil health.

Why it matters

OpenAlex reports 26 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The effect of crop residues and zinc fertilizer on grain yield and nutrient uptake by rice and wheat was studied after 12 years of crop cycles in a Calciorthent. Long-term application of crop residues along with zinc increased soil organic carbon (from 4.5 to 6.8 g kg−1), grain yield (3.40 to 4.35 t ha−1 rice and 3.0 to 3.92 t ha−1 wheat) and nutrient uptake by rice (191 to 405 g Zn, 68 to 98 g Cu, 2159 to 2717 g Fe and 663 to 1038 g Mn ha−1) and wheat (142 to 256 g Zn, 53 to 84 g Cu, 1235 to 1679 g Fe and 411 to 659 g Mn ha−1). The highest grain yield in both the crops was recorded in the treatment receiving 10 kg Zn ha−1 along with 100% incorporation of the straw produced by both the crops. The treatment consisting of 5 kg Zn ha−1 + 100% of crop residues was the next promising treatment in enhancing the crop yields. The combined use of crop residues and zinc fertilizer significantly increased the availability of N, P, K and micronutrients in soil over zinc-application alone. The application of 50% crop residues along with 5–10 kg Zn ha−1 was adequate in sustaining crop productivity and maintaining soil health.

Key concepts: Agronomy, Crop, Nutrient, Zinc, Straw, Crop residue, Fertilizer, Cropping system

Related papers

Back to paper searchBrowse research topicsOriginal source
Long-Term Effect of Crop Residues and Zinc Fertilizer on Crop Yield, Nutrient Uptake and Fertility Build-up under Rice-Wheat Cropping System in Calciorthents — Research Paper | ScholarLens