Biotesting as a Method of Evaluating Waste Hazard in Metallic Mineral Mining; IOP Conference Series: Materials Science and Engineering; Vol. 127 : Urgent Problems of Modern Mechanical Engineering

書誌詳細
Parent link:IOP Conference Series: Materials Science and Engineering
Vol. 127 : Urgent Problems of Modern Mechanical Engineering.— 2016.— [012026, 7 p.]
団体著者: Национальный исследовательский Томский политехнический университет (ТПУ) Юргинский технологический институт (филиал) (ЮТИ) Кафедра безопасности жизнедеятельности, экологии и физического воспитания (БЖДЭФВ)
その他の著者: Lugovaya Y. R., Orlova K. N. Kseniya Nikolaevna, Litovkin S. V. Sergey Valerievich, Malchik A. G. Aleksandra Gennadievna, Gaydamak M. A.
要約:Title screen
As the result of identifying content of each chemical element it has been revealed that metallic mineral wastes have a considerable amount of valuable useful metals. Thus, large-tonnage inorganic wastes are considered to be an additional raw source of metal production. This paper highlights the necessity of supplementary biotesting metallic mineral wastes in order to bring into correlation with corresponding hazard classes and facilitate efficient recycling of these wastes in future. It has been found out that determined in this way waste class can be dumped or used after recycling. It has been also indicated that mill tailings are to be stored according to contained metals without messing up dissimilar metal-containing wastes. After winning metals these wastes are similar to the group of inorganic non-metallic wastes and can be used in building material production, for filling mined-out spaces, in road construction etc.
Режим доступа: по договору с организацией-держателем ресурса
言語:英語
出版事項: 2016
主題:
オンライン・アクセス:http://dx.doi.org/10.1088/1757-899X/127/1/012026
http://earchive.tpu.ru/handle/11683/34884
フォーマット: MixedMaterials 電子媒体 図書の章
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=648230

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330 |a As the result of identifying content of each chemical element it has been revealed that metallic mineral wastes have a considerable amount of valuable useful metals. Thus, large-tonnage inorganic wastes are considered to be an additional raw source of metal production. This paper highlights the necessity of supplementary biotesting metallic mineral wastes in order to bring into correlation with corresponding hazard classes and facilitate efficient recycling of these wastes in future. It has been found out that determined in this way waste class can be dumped or used after recycling. It has been also indicated that mill tailings are to be stored according to contained metals without messing up dissimilar metal-containing wastes. After winning metals these wastes are similar to the group of inorganic non-metallic wastes and can be used in building material production, for filling mined-out spaces, in road construction etc. 
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