Item talk:Q249841
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{
"USGS Publications Warehouse": { "@context": "https://schema.org", "@type": "Article", "additionalType": "Journal Article", "name": "Small-scale, hydrogen-oxidizing-denitrifying bioreactor for treatment of nitrate-contaminated drinking water", "identifier": [ { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse IndexID", "value": "70031268", "url": "https://pubs.usgs.gov/publication/70031268" }, { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse Internal ID", "value": 70031268 }, { "@type": "PropertyValue", "propertyID": "DOI", "value": "10.1016/j.watres.2005.03.024", "url": "https://doi.org/10.1016/j.watres.2005.03.024" }, { "@type": "PropertyValue", "propertyID": "ISSN", "value": "00431354" } ], "journal": { "@type": "Periodical", "name": "Water Research", "volumeNumber": "39", "issueNumber": "10" }, "inLanguage": "en", "isPartOf": [ { "@type": "CreativeWorkSeries", "name": "Water Research" } ], "datePublished": "2005", "dateModified": "2018-11-05", "abstract": "Nitrate removal by hydrogen-coupled denitrification was examined using flow-through, packed-bed bioreactors to develop a small-scale, cost effective system for treating nitrate-contaminated drinking-water supplies. Nitrate removal was accomplished using a Rhodocyclus sp., strain HOD 5, isolated from a sole-source drinking-water aquifer. The autotrophic capacity of the purple non-sulfur photosynthetic bacterium made it particularly adept for this purpose. Initial tests used a commercial bioreactor filled with glass beads and countercurrent, non-sterile flow of an autotrophic, air-saturated, growth medium and hydrogen gas. Complete removal of 2 mM nitrate was achieved for more than 300 days of operation at a 2-h retention time. A low-cost hydrogen generator/bioreactor system was then constructed from readily available materials as a water treatment approach using the Rhodocyclus strain. After initial tests with the growth medium, the constructed system was tested using nitrate-amended drinking water obtained from fractured granite and sandstone aquifers, with moderate and low TDS loads, respectively. Incomplete nitrate removal was evident in both water types, with high-nitrite concentrations in the bioreactor output, due to a pH increase, which inhibited nitrite reduction. This was rectified by including carbon dioxide in the hydrogen stream. Additionally, complete nitrate removal was accomplished with wastewater-impacted surface water, with a concurrent decrease in dissolved organic carbon. The results of this study using three chemically distinct water supplies demonstrate that hydrogen-coupled denitrification can serve as the basis for small-scale remediation and that pilot-scale testing might be the next logical step.", "description": "10 p.", "publisher": { "@type": "Organization", "name": "Elsevier" }, "author": [ { "@type": "Person", "name": "Buckwalter, S.P.", "givenName": "S.P.", "familyName": "Buckwalter" }, { "@type": "Person", "name": "Miller, D.N.", "givenName": "D.N.", "familyName": "Miller" }, { "@type": "Person", "name": "Repert, D.A.", "givenName": "D.A.", "familyName": "Repert" }, { "@type": "Person", "name": "Smith, R. L.", "givenName": "R. L.", "familyName": "Smith", "affiliation": [ { "@type": "Organization", "name": "U.S. Geological Survey", "url": "https://www.usgs.gov/" } ] } ], "funder": [ { "@type": "Organization", "name": "Toxic Substances Hydrology Program", "url": null } ] }, "OpenAlex": { "abstract_inverted_index": { "Nitrate": [ 0, 23 ], "removal": [ 1, 24, 80, 152, 189 ], "by": [ 2, 178 ], "hydrogen-coupled": [ 3, 217 ], "denitrification": [ 4, 218 ], "was": [ 5, 25, 85, 104, 130, 153, 176, 190 ], "examined": [ 6 ], "using": [ 7, 27, 116, 132, 209 ], "flow-through,": [ 8 ], "packed-bed": [ 9 ], "bioreactors": [ 10 ], "to": [ 11, 167 ], "develop": [ 12 ], "a": [ 13, 28, 36, 59, 95, 112, 168, 197 ], "small-scale,": [ 14 ], "cost": [ 15 ], "effective": [ 16 ], "system": [ 17, 103, 129 ], "for": [ 18, 53, 87, 224 ], "treating": [ 19 ], "nitrate-contaminated": [ 20 ], "drinking-water": [ 21, 38 ], "supplies.": [ 22 ], "accomplished": [ 26, 191 ], "Rhodocyclus": [ 29, 118 ], "sp.,": [ 30 ], "strain": [ 31 ], "HOD": [ 32 ], "5,": [ 33 ], "isolated": [ 34 ], "from": [ 35, 107, 137 ], "sole-source": [ 37 ], "aquifer.": [ 39 ], "The": [ 40, 204 ], "autotrophic": [ 41 ], "capacity": [ 42 ], "of": [ 43, 70, 81, 92, 206 ], "the": [ 44, 117, 124, 127, 163, 183, 222, 233 ], "purple": [ 45 ], "non-sulfur": [ 46 ], "photosynthetic": [ 47 ], "bacterium": [ 48 ], "made": [ 49 ], "it": [ 50 ], "particularly": [ 51 ], "adept": [ 52 ], "this": [ 54, 207 ], "purpose.": [ 55 ], "Initial": [ 56 ], "tests": [ 57, 122 ], "used": [ 58 ], "commercial": [ 60 ], "bioreactor": [ 61, 164 ], "filled": [ 62 ], "with": [ 63, 123, 143, 159, 192, 196 ], "glass": [ 64 ], "beads": [ 65 ], "and": [ 66, 76, 140, 145, 227 ], "countercurrent,": [ 67 ], "non-sterile": [ 68 ], "flow": [ 69 ], "an": [ 71 ], "autotrophic,": [ 72 ], "air-saturated,": [ 73 ], "growth": [ 74, 125 ], "medium": [ 75 ], "hydrogen": [ 77, 101, 184 ], "gas.": [ 78 ], "Complete": [ 79 ], "2": [ 82 ], "mM": [ 83 ], "nitrate": [ 84, 151, 188 ], "achieved": [ 86 ], "more": [ 88 ], "than": [ 89 ], "300": [ 90 ], "days": [ 91 ], "operation": [ 93 ], "at": [ 94 ], "2-h": [ 96 ], "retention": [ 97 ], "time.": [ 98 ], "A": [ 99 ], "low-cost": [ 100 ], "generator/bioreactor": [ 102 ], "then": [ 105 ], "constructed": [ 106, 128 ], "readily": [ 108 ], "available": [ 109 ], "materials": [ 110 ], "as": [ 111, 221 ], "water": [ 113, 135, 157, 213 ], "treatment": [ 114 ], "approach": [ 115 ], "strain.": [ 119 ], "After": [ 120 ], "initial": [ 121 ], "medium,": [ 126 ], "tested": [ 131 ], "nitrate-amended": [ 133 ], "drinking": [ 134 ], "obtained": [ 136 ], "fractured": [ 138 ], "granite": [ 139 ], "sandstone": [ 141 ], "aquifers,": [ 142 ], "moderate": [ 144 ], "low": [ 146 ], "TDS": [ 147 ], "loads,": [ 148 ], "respectively.": [ 149 ], "Incomplete": [ 150 ], "evident": [ 154 ], "in": [ 155, 162, 182, 200 ], "both": [ 156 ], "types,": [ 158 ], "high-nitrite": [ 160 ], "concentrations": [ 161 ], "output,": [ 165 ], "due": [ 166 ], "pH": [ 169 ], "increase,": [ 170 ], "which": [ 171 ], "inhibited": [ 172 ], "nitrite": [ 173 ], "reduction.": [ 174 ], "This": [ 175 ], "rectified": [ 177 ], "including": [ 179 ], "carbon": [ 180 ], "dioxide": [ 181 ], "stream.": [ 185 ], "Additionally,": [ 186 ], "complete": [ 187 ], "wastewater-impacted": [ 193 ], "surface": [ 194 ], "water,": [ 195 ], "concurrent": [ 198 ], "decrease": [ 199 ], "dissolved": [ 201 ], "organic": [ 202 ], "carbon.": [ 203 ], "results": [ 205 ], "study": [ 208 ], "three": [ 210 ], "chemically": [ 211 ], "distinct": [ 212 ], "supplies": [ 214 ], "demonstrate": [ 215 ], "that": [ 216, 228 ], "can": [ 219 ], "serve": [ 220 ], "basis": [ 223 ], "small-scale": [ 225 ], "remediation": [ 226 ], "pilot-scale": [ 229 ], "testing": [ 230 ], "might": [ 231 ], "be": [ 232 ], "next": [ 234 ], "logical": [ 235 ], "step.": [ 236 ] }, "apc_list": { "value": 4350, "currency": "USD", "value_usd": 4350, "provenance": "doaj" }, "apc_paid": null, "authorships": [ { "author_position": "first", "author": { "id": "https://openalex.org/A5054633029", "display_name": "Richard L. 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