Biopolymer based stabilization of Indian desert soil against wind-induced erosion

M Dagliya, N Satyam, A Garg - Acta Geophysica, 2023 - Springer
Wind-induced soil erosion is a major global misfortune, which obliterates nearly one-third of
worldwide soil. The windswept sand particles cover large areas including highways, and …

[PDF][PDF] Biopolymer based stabilization of Indian desert soil against wind‑induced erosion

M Dagliya, N Satyam, A Garg - researchgate.net
Wind-induced soil erosion is a major global misfortune, which obliterates nearly one-third of
worldwide soil. The windswept sand particles cover large areas including highways, and …

Biopolymer based stabilization of Indian desert soil against wind induced erosion

M Dagliya, N Satyam, A Garg - Acta Geophysica, 2023 - yadda.icm.edu.pl
Wind-induced soil erosion is a major global misfortune, which obliterates nearly one-third of
worldwide soil. The windswept sand particles cover large areas including highways, and …

Biopolymer based stabilization of Indian desert soil against wind-induced erosion.

M Dagliya, N Satyam, A Garg - Acta Geophysica, 2023 - search.ebscohost.com
Wind-induced soil erosion is a major global misfortune, which obliterates nearly one-third of
worldwide soil. The windswept sand particles cover large areas including highways, and …

Biopolymer based stabilization of Indian desert soil against wind-induced erosion

M Dagliya, N Satyam, A Garg - Acta Geophysica, 2022 - ui.adsabs.harvard.edu
Wind-induced soil erosion is a major global misfortune, which obliterates nearly one-third of
worldwide soil. The windswept sand particles cover large areas including highways, and …

Biopolymer based stabilization of Indian desert soil against wind-induced erosion

M Dagliya, N Satyam, A Garg - Acta Geophysica, 2023 - ui.adsabs.harvard.edu
Wind-induced soil erosion is a major global misfortune, which obliterates nearly one-third of
worldwide soil. The windswept sand particles cover large areas including highways, and …