EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITY

By 2050 most parts of India will be water stressed zones as most of the water resources are under heavy stress due to increasing nutrient contamination in their waters. In this scenario, studying the changes occurring in the freshwater nutrient contamination levels over a temporal scale is extremely...

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Main Authors: T. T. Kondraju, K. S. Rajan
Format: Article
Language:English
Published: Copernicus Publications 2019-03-01
Series:ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences
Online Access:https://www.isprs-ann-photogramm-remote-sens-spatial-inf-sci.net/IV-3-W1/17/2019/isprs-annals-IV-3-W1-17-2019.pdf
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spelling doaj-8af26d8963614b20960420965b0654632020-11-25T01:23:59ZengCopernicus PublicationsISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences2194-90422194-90502019-03-01IV-3-W1172310.5194/isprs-annals-IV-3-W1-17-2019EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITYT. T. Kondraju0K. S. Rajan1Lab for Spatial Informatics, IIIT—Hyderabad, 500032, IndiaLab for Spatial Informatics, IIIT—Hyderabad, 500032, IndiaBy 2050 most parts of India will be water stressed zones as most of the water resources are under heavy stress due to increasing nutrient contamination in their waters. In this scenario, studying the changes occurring in the freshwater nutrient contamination levels over a temporal scale is extremely important. This study focuses on monitoring the changes occurring in the nutrient contamination levels over a decade in a large reservoir known as Nagarjuna Sagar (NS) using remote sensing data. In this study, Landsat (5 & 8) data for the year 2005, 2009, 2015 and Sentinel (2A and 2B) data for the years 2016 and 2018 is used to study nutrient contamination in NS. The spatial spread of chlorophyll - a (chl-a) area is used as a proxy to estimate the extent of nutrient contamination in NS. In this study, only October images of NS are used as they exhibit the maximum spatial spread of Chl-a and hence help assess the contamination levels over the period 2005&ndash;2018. The analysis shows that during this period, chl-a spatial spread area has increased from 21&thinsp;Km<sup>2</sup> to 205&thinsp;Km<sup>2</sup>, indicating a decrease in water quality in the reservoir. The study shows that this is accompanied by an increase in the agricultural land use area by 1000&thinsp;Km<sup>2</sup> in addition to a steep increase in the use of agricultural inputs, primarily fertilisers like urea, P and K. Thus, while the combined effect of excessive usage of fertilizers with agricultural intensification has increased crop yields, it has also contributed to damaging the freshwater resources.https://www.isprs-ann-photogramm-remote-sens-spatial-inf-sci.net/IV-3-W1/17/2019/isprs-annals-IV-3-W1-17-2019.pdf
collection DOAJ
language English
format Article
sources DOAJ
author T. T. Kondraju
K. S. Rajan
spellingShingle T. T. Kondraju
K. S. Rajan
EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITY
ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences
author_facet T. T. Kondraju
K. S. Rajan
author_sort T. T. Kondraju
title EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITY
title_short EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITY
title_full EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITY
title_fullStr EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITY
title_full_unstemmed EXCESSIVE FERTILIZER USAGE DRIVES AGRICULTURE GROWTH BUT DEPLETES WATER QUALITY
title_sort excessive fertilizer usage drives agriculture growth but depletes water quality
publisher Copernicus Publications
series ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences
issn 2194-9042
2194-9050
publishDate 2019-03-01
description By 2050 most parts of India will be water stressed zones as most of the water resources are under heavy stress due to increasing nutrient contamination in their waters. In this scenario, studying the changes occurring in the freshwater nutrient contamination levels over a temporal scale is extremely important. This study focuses on monitoring the changes occurring in the nutrient contamination levels over a decade in a large reservoir known as Nagarjuna Sagar (NS) using remote sensing data. In this study, Landsat (5 & 8) data for the year 2005, 2009, 2015 and Sentinel (2A and 2B) data for the years 2016 and 2018 is used to study nutrient contamination in NS. The spatial spread of chlorophyll - a (chl-a) area is used as a proxy to estimate the extent of nutrient contamination in NS. In this study, only October images of NS are used as they exhibit the maximum spatial spread of Chl-a and hence help assess the contamination levels over the period 2005&ndash;2018. The analysis shows that during this period, chl-a spatial spread area has increased from 21&thinsp;Km<sup>2</sup> to 205&thinsp;Km<sup>2</sup>, indicating a decrease in water quality in the reservoir. The study shows that this is accompanied by an increase in the agricultural land use area by 1000&thinsp;Km<sup>2</sup> in addition to a steep increase in the use of agricultural inputs, primarily fertilisers like urea, P and K. Thus, while the combined effect of excessive usage of fertilizers with agricultural intensification has increased crop yields, it has also contributed to damaging the freshwater resources.
url https://www.isprs-ann-photogramm-remote-sens-spatial-inf-sci.net/IV-3-W1/17/2019/isprs-annals-IV-3-W1-17-2019.pdf
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