{"id":1282,"date":"2018-05-02T08:40:45","date_gmt":"2018-05-02T08:40:45","guid":{"rendered":"https:\/\/ampri.res.in\/en\/?page_id=1282"},"modified":"2026-07-17T03:47:54","modified_gmt":"2026-07-17T03:47:54","slug":"radiation-shielding-cement-free-concreate","status":"publish","type":"page","link":"https:\/\/ampri.res.in\/en\/?page_id=1282","title":{"rendered":"Energy and Environmental Solutions Division (EESD)"},"content":{"rendered":"<div class=\"wpb-content-wrapper\">[vc_row][vc_column][vc_single_image image=&#8221;11785&#8243; img_size=&#8221;Full&#8221; alignment=&#8221;center&#8221; css=&#8221;&#8221;][\/vc_column][\/vc_row][vc_row][vc_column][vc_separator color=&#8221;orange&#8221; css=&#8221;&#8221;][vc_btn title=&#8221;Staff @ EES Division&#8221; style=&#8221;classic&#8221; shape=&#8221;round&#8221; color=&#8221;sky&#8221; align=&#8221;right&#8221; css=&#8221;&#8221; link=&#8221;url:https%3A%2F%2Fampri.res.in%2Fen%2F%3Fpage_id%3D11741|title:EESD%20Staff&#8221;][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;]\n<p style=\"text-align: justify;\"><span style=\"color: #000000; font-size: 12pt;\">The Division pursues interdisciplinary R&amp;D to convert industrial and different E-wastes into value-added materials and technologies for healthcare, strategic, and environmental applications. Key focus areas include transforming red mud into radiation shielding materials and fly ash into multiple functional materials under Waste to Wealth initiative, secured landfill and leachate studies, environmental pollution &amp; monitoring studies and solar waste recycling. In environmental monitoring, the Division develops SODAR systems for air pollution management and SERS approaches for pollutants detection. Advanced materials research targets 2D nanomaterials for electrochemical biosensors, carbon-based microbial fuel cells for simultaneous wastewater treatment and energy generation, and electrocatalysts for HER, OER, ORR and CO2 bio-electro reduction to value-added products like formic acid and methane. In biomedical innovation, the Division works on electrochemical immunosensors for early diagnostics of breast, ovarian, oral cancers and infectious diseases; microfluidic platforms for antimicrobial susceptibility testing; and 3D bioprinting for biomedical patches.\u00a0<\/span><\/p>\n<table style=\"border-collapse: collapse; width: 100%;\">\n<tbody>\n<tr>\n<td style=\"width: 100%; border: 1px solid transparent;\"><span style=\"color: #000000; font-size: 12pt;\"><img decoding=\"async\" class=\"aligncenter\" src=\"https:\/\/ampri.res.in\/en\/wp-content\/uploads\/2026\/07\/EESD-P2.png\" alt=\"EESD\" width=\"60%\" \/><\/span><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p style=\"text-align: justify;\"><span style=\"color: #000000; font-size: 12pt;\">Through sustainable design, validation, and scalable deployment, the Division delivers indigenous, eco-friendly solutions with cost-effective impact across industrial, societal and healthcare sectors.<\/span><\/p>\n[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;]\n<table style=\"border-collapse: collapse; width: 100%; height: 24px;\">\n<tbody>\n<tr style=\"height: 24px;\">\n<td style=\"width: 100%; height: 24px; background-color: #baeef7;\"><strong><span style=\"font-size: 14pt;\">\u0936\u094b\u0927 \u0915\u094d\u0937\u0947\u0924\u094d\u0930 \/Research Area:<\/span><\/strong><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n[\/vc_column_text][vc_column_text css=&#8221;&#8221;]\n<ul style=\"list-style-type: disc;\">\n<li><span style=\"color: #000000;\">Development of advanced radiation shielding materials<\/span><\/li>\n<li><span style=\"color: #000000;\">\u00a0Flexible and transparent radiation shielding polymer composites<\/span><\/li>\n<li><span style=\"color: #000000;\">Industrial waste utilization: Waste to Materials<\/span><\/li>\n<li><span style=\"color: #000000;\">Coal ash (pond ash &amp; flyash) aggregates and zeolites<\/span><\/li>\n<li><span style=\"color: #000000;\">Development of advanced geopolymer\/polymer based coating materials<\/span><\/li>\n<li><span style=\"color: #000000;\">Synthesis of efficient electrocatalysts for energy generation\\<\/span><\/li>\n<li><span style=\"color: #000000;\">Design, development and upgradation of SODAR (Sound Detection and Ranging) system for air quality management<\/span><\/li>\n<li><span style=\"color: #000000;\">Noise mapping, remote sensing, satellite data retrieval<\/span><\/li>\n<li><span style=\"color: #000000;\">Building material design\/development and acoustical characterization for noise mitigation<\/span><\/li>\n<li><span style=\"color: #000000;\">Solar waste recycling<\/span><\/li>\n<li><span style=\"color: #000000;\">Development of SERS sensors for Environmental monitoring<\/span><\/li>\n<li><span style=\"color: #000000;\">Pollutants\u2019 detection techniques<\/span><\/li>\n<li><span style=\"color: #000000;\">Point-of-Care (POC) diagnostics &amp; healthcare monitoring<\/span><\/li>\n<li><span style=\"color: #000000;\">Microfluidics based devices for antimicrobial susceptibility testing in clinical samples<\/span><\/li>\n<li><span style=\"color: #000000;\">Electrochemical characterization and analysis of nanomaterials and biosensors<\/span><\/li>\n<li><span style=\"color: #000000;\">Fluorescence-based biosensors and biomedical applications<\/span><\/li>\n<li><span style=\"color: #000000;\">3D Bioprinter based Biomaterials for biomedical applications<\/span><\/li>\n<li><span style=\"color: #000000;\">Development of low-cost soot-derived carbon nano-onion electrodes<\/span><\/li>\n<li><span style=\"color: #000000;\">Waste-to-wealth technologies for clean energy and wastewater treatment<\/span><\/li>\n<li><span style=\"color: #000000;\">CO\u2082 Bio-electroreduction to value-added products<\/span><\/li>\n<li><span style=\"color: #000000;\">Microbial Fuel Cells (MFC\/MEC)<\/span><\/li>\n<li><span style=\"color: #000000;\">Electrocatalysis (HER, OER, ORR)<\/span><\/li>\n<li><span style=\"color: #000000;\">Urea and Hydrazine oxidation<\/span><\/li>\n<li><span style=\"color: #000000;\">Graphitic nanomaterials and MXenes <\/span><\/li>\n<\/ul>\n[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;]\n<table style=\"border-collapse: collapse; width: 100%; height: 24px;\">\n<tbody>\n<tr style=\"height: 24px;\">\n<td style=\"width: 100%; height: 24px; background-color: #baeef7;\"><span style=\"font-size: 12pt;\"><strong>\u0932\u0915\u094d\u0937\u094d\u092f \/ \u0909\u0926\u094d\u0926\u0947\u0936\u094d\u092f\u00a0 \/ Goals \/ Objectives:<\/strong><\/span><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p style=\"padding-left: 40px; text-align: justify;\"><span style=\"color: #000000;\">Develop indigenous, eco-friendly materials and sensors through sustainable design, validation and scalable deployment, targeting industrial, societal and biomedical applications with cost-effective impact.<\/span><\/p>\n[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;]\n<table style=\"border-collapse: collapse; width: 100%; height: 24px;\">\n<tbody>\n<tr style=\"height: 24px;\">\n<td style=\"width: 100%; height: 24px; background-color: #baeef7;\"><strong><span style=\"font-size: 14pt;\">\u0909\u0932\u094d\u0932\u0947\u0916\u0928\u0940\u092f \u0909\u092a\u0932\u092c\u094d\u0927\u093f\u092f\u093e\u0902 \/ Notable Achievements:<\/span><\/strong><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_tta_tabs shape=&#8221;round&#8221; color=&#8221;blue&#8221; spacing=&#8221;2&#8243; active_section=&#8221;1&#8243;][vc_tta_section title=&#8221;Know-How\/ Technology&#8221; tab_id=&#8221;1779271849336-30ad1936-9909&#8243;][vc_column_text css=&#8221;&#8221;]\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\"><strong>Know-How\/ Technology:<\/strong><\/span><\/p>\n<ul style=\"list-style-type: disc;\">\n<li><span style=\"color: #000000;\"> Lead free X-ray shielding red mud tiles<\/span><\/li>\n<li><span style=\"color: #000000;\">\u00a0Gamma and neutron shielding bricks.<\/span><\/li>\n<li><span style=\"color: #000000;\">Indigenous SODAR (Sound Detection and Ranging) system<\/span><\/li>\n<li><span style=\"color: #000000;\">Acoustical Lightweight Interior Dry Wall Panel for High Sound Insulation<br \/>\n<\/span><\/li>\n<\/ul>\n[\/vc_column_text][\/vc_tta_section][vc_tta_section title=&#8221;Patents Granted&#8221; tab_id=&#8221;PatentGranted&#8221;][vc_column_text css=&#8221;&#8221;]\n<table width=\"633\">\n<tbody>\n<tr>\n<td style=\"background-color: #51c4e0;\" width=\"66\"><span style=\"color: #000000;\"><strong>S. No.<\/strong><\/span><\/td>\n<td style=\"background-color: #51c4e0;\" width=\"170\"><span style=\"color: #000000;\"><strong>Title<\/strong><\/span><\/td>\n<td style=\"background-color: #51c4e0;\" width=\"179\"><span style=\"color: #000000;\"><strong>Inventors<\/strong><\/span><\/td>\n<td style=\"background-color: #51c4e0;\" width=\"136\"><span style=\"color: #000000;\"><strong>Patent No. \/ Application No.<\/strong><\/span><\/td>\n<td style=\"background-color: #51c4e0;\" width=\"82\"><span style=\"color: #000000;\"><strong>Country<\/strong><\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">1.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">A monostatic SODAR (Sound Detection and Ranging) System for air quality management and method thereof<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Kirti Soni, M. Singh, N. Kumar, Md. Akram Khan<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">Application number: 202611033603<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">India<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">2.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">Reduced Graphene Oxide\/Poly(Vinylidene Fluoride-Co-Hexafluoropropylene) Sponge: Preparation And Application Thereof<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Pradip Kumar, Shilpee Chauhan, Shiv Singh<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">Application number:<\/span><\/p>\n<p><span style=\"color: #000000;\">202511086178<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">India<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">3.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">Lead free red mud based X-ray shielding tiles<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Shabi Thankaraj Salammal, Sanghi Sunil Kumar, Deepti Mishra, Rini Paulose, Varsha Agrawal, Rahul Arya, Akshay Singh Tomar, Rathore S K S, Avanish Kumar Srivastava<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">428365<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">India<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">4.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">High dense red mud\u00a0shields\u00a0for X and \u03b3- rays attenuation<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Shabi Thankaraj Salammal, Deepti Mishra, Sunil Kumar Sanghi, Rini Paulose, Varsha Agrawal, Rahul Arya, Sriram Sathaiah, Rathore S K S, Avanish Kumar Srivastava.<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">WO 2022\/054094A1<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">India, Australia, China, Brazil, Guinea, Europe and USA<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">5.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">Advanced Inorganic &#8211; Organic Geopolymeric Corrosion Protective Coating Material for Mild Steel<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Deepti Mishra, Rainy Gupta, Akshay Singh Tomar, Sunil Kumar Sanghi, Thankaraj Salammal Shabi, Mohd.Akram Khan, Archana Singh, V. Sorna Gowri, S.K.S Rathore, Avanish Kumar Srivastava<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">566172<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">India<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">6.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">A Nano Phosphatic Hybrid Geopolymeric Corrosion Resistant Coating Material and a Method of Preparation thereof\u201d<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Sudhir Sitaram Amritphale, Deepti Mishra, Archana Singh, Avneesh Anshul, Satyabrata Das<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">US\u00a09,938,414 B2<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">USA<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">7.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">Process for the preparation of geopolymeric functional materials in a solid form<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Sudhir Sitaram Amritphale, Manish Mudgal, Ramesh Kumar Chouhan, Deepti Mishra, Navin Chandra<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">US9266783B2<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">USA<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">8.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">Composition for advanced hybrid geopolymeric functional materials and a process for\u00a0\u00a0 the preparation thereof<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">S.S. Amritphale, Deepti Mishra, R.K. Chouhan, Manish Mudgal, Mohd. Akram Khan, Swati Lahiri, S.S. Amritphale, Navin Chandra, B.K. Mishra<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">US 9,120,701 B2<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">USA<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">9.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">A Packed Bed Microbial Fuel Cell (MFC) to Treat Wastewater in Continuous Mode\u201d<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Komal Pandey, Priyanka Gupta, Nishith Verma and Shiv Singh<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">429748<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">India<\/span><\/td>\n<\/tr>\n<tr>\n<td width=\"66\"><span style=\"color: #000000;\">10.<\/span><\/td>\n<td width=\"170\"><span style=\"color: #000000;\">Nickel Oxide Anchored Graphitic Carbon Nanofiber for Embedded Sensing, Fabrication and Application Thereof<\/span><\/td>\n<td width=\"179\"><span style=\"color: #000000;\">Shiv Singh, Smriti Mishra, Pradip Kumar, Sheelendra Pratap Singh, Baban Kumar Bansod, Dehi Pada Mondal, Mohammed Akram Khan<\/span><\/td>\n<td width=\"136\"><span style=\"color: #000000;\">202411053210<\/span><\/td>\n<td width=\"82\"><span style=\"color: #000000;\">India<\/span><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n[\/vc_column_text][\/vc_tta_section][\/vc_tta_tabs][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;]\n<table style=\"border-collapse: collapse; width: 100%; height: 24px;\">\n<tbody>\n<tr style=\"height: 24px;\">\n<td style=\"width: 100%; height: 24px; background-color: #baeef7;\"><strong><span style=\"font-size: 14pt;\"><span style=\"font-size: 14pt; color: #333399;\">Collaborations<\/span>:<\/span><\/strong><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_tta_tabs shape=&#8221;round&#8221; color=&#8221;blue&#8221; spacing=&#8221;2&#8243; active_section=&#8221;1&#8243;][vc_tta_section title=&#8221;Collaborations&#8221; tab_id=&#8221;Collaborations&#8221;][vc_column_text css=&#8221;&#8221;]<span style=\"color: #000000;\"><strong><span style=\"font-size: 14pt;\">Industrial collaborations\/ Technology partners\/ Stakeholders:<\/span><\/strong><\/span>[\/vc_column_text][vc_single_image image=&#8221;11787&#8243; img_size=&#8221;Full&#8221; alignment=&#8221;center&#8221; css=&#8221;&#8221;][\/vc_tta_section][\/vc_tta_tabs][\/vc_column][\/vc_row][vc_row][vc_column][vc_separator color=&#8221;orange&#8221; css=&#8221;&#8221;][\/vc_column][\/vc_row]\n<\/div>","protected":false},"excerpt":{"rendered":"<p>[vc_row][vc_column][vc_single_image image=&#8221;11785&#8243; img_size=&#8221;Full&#8221; alignment=&#8221;center&#8221; css=&#8221;&#8221;][\/vc_column][\/vc_row][vc_row][vc_column][vc_separator color=&#8221;orange&#8221; css=&#8221;&#8221;][vc_btn title=&#8221;Staff @ EES Division&#8221; style=&#8221;classic&#8221; shape=&#8221;round&#8221; color=&#8221;sky&#8221; align=&#8221;right&#8221; css=&#8221;&#8221; link=&#8221;url:https%3A%2F%2Fampri.res.in%2Fen%2F%3Fpage_id%3D11741|title:EESD%20Staff&#8221;][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;] The Division pursues interdisciplinary R&amp;D to convert industrial and different E-wastes into value-added materials and technologies for healthcare, strategic, and environmental applications. Key focus areas include transforming red mud into radiation shielding materials and fly ash into multiple functional materials under Waste to Wealth initiative, secured landfill and leachate studies, environmental pollution &amp; monitoring studies and solar waste recycling. In environmental monitoring, the Division develops SODAR systems for air pollution management and SERS approaches for pollutants detection. Advanced materials research targets 2D nanomaterials for electrochemical biosensors, carbon-based microbial fuel cells for simultaneous wastewater treatment and energy generation, and electrocatalysts for HER, OER, ORR and CO2 bio-electro reduction to value-added products like formic acid and methane. In biomedical innovation, the Division works on electrochemical immunosensors for early diagnostics of breast, ovarian, oral cancers and infectious diseases; microfluidic platforms for antimicrobial susceptibility testing; and 3D bioprinting for biomedical patches.\u00a0 Through sustainable design, validation, and scalable deployment, the Division delivers indigenous, eco-friendly solutions with cost-effective impact across industrial, societal and healthcare sectors. [\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;] \u0936\u094b\u0927 \u0915\u094d\u0937\u0947\u0924\u094d\u0930 \/Research Area: [\/vc_column_text][vc_column_text css=&#8221;&#8221;] Development of advanced radiation shielding materials \u00a0Flexible and transparent radiation shielding polymer composites Industrial waste utilization: Waste to Materials Coal ash (pond ash &amp; flyash) aggregates and zeolites Development of advanced geopolymer\/polymer based coating materials Synthesis of efficient electrocatalysts for energy generation\\ Design, development and upgradation of SODAR (Sound Detection and Ranging) system for air [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-1282","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=\/wp\/v2\/pages\/1282","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=1282"}],"version-history":[{"count":8,"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=\/wp\/v2\/pages\/1282\/revisions"}],"predecessor-version":[{"id":11795,"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=\/wp\/v2\/pages\/1282\/revisions\/11795"}],"wp:attachment":[{"href":"https:\/\/ampri.res.in\/en\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=1282"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}