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首页> 外文期刊>Environmental Geology >Implementation of geochemical modeling in post-mining land uses, the case of the abandoned open pit lake of the Kirki high sulfidation epithermal system, Thrace, NE Greece
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Implementation of geochemical modeling in post-mining land uses, the case of the abandoned open pit lake of the Kirki high sulfidation epithermal system, Thrace, NE Greece

机译:挖掘土地用途地球化学建模的实施,克里奇高硫化术术,Thrace,Ne Greece的废弃露天湖的案例

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Open pit exploitation of the Kirki high sulfidation epithermal deposit (Thrace, NE Greece) resulted in the formation of an acidic pit lake by infilling of the open cast by rain and draining waters after mine closure. Three case-specific PHREEQC geochemical models were developed including "Direct Precipitation", "Evaporation", and "Mixing with Rain water" to simulate the environmental conditions through the year, and to investigate the behavior of the acidic and rich in heavy metals waters of the pit lake. Scanning Electron Microscopy examination revealed the predominance of jarosite species and goethite in the mineral precipitate, followed by lower amounts of hematite, schwertmannite and anglesite. According to PHREEQC modeling, jarosite species formation is favored during both dry and wet periods, while the presence of schwertmannite, goethite, hematite and anglesite depicts the fluctuation of the physicochemical conditions through the year. These phases play a key role in controlling the As and Pb dissolved concentrations, mainly through adsorption and co-precipitation; whereas, the soluble metals Zn, Cd and Mn remain dissolved. The current status of the Kirki open pit system is the most stable for the environment; therefore, a case-specific remediation plan focused on both the protection of the environment and the preservation of the Kirki open pit is proposed. The socio-economic benefits of such an approach could include increased tourist numbers due to case-oriented tourism, enhancement of local economy, education; whereas, this approach is also cost effective relative to other proposed remediation measures.
机译:开坑利用Kirki高硫化术术术沉积(Thrace,Ne希腊)导致矿井闭合后雨水和排水水流的开放铸造的酸性坑湖。开发了三种特定的Pheeqc地球化学模型,包括“直接降水”,“蒸发”和“与雨水混合”,以模拟今年的环境条件,并调查酸性和富含重金属水域的行为坑湖。扫描电子显微镜检查显示珠宝沉淀物中杂珠和霉菌的优势,然后含有较少量的赤铁矿,Schwertmannite和Anglesite。根据Phreeqc建模,在干燥和潮湿的时期,Jarosite物种形成是有利的,而Schwertmannite,Geethite,赤铁矿和角度的存在描述了物理化学条件在今年的波动。这些阶段主要通过吸附和共沉淀来控制AS和PB溶解浓度的关键作用;然而,可溶性金属Zn,Cd和Mn保持溶解。 Kirki Open Pit系统的当前状态是环境最稳定的;因此,提出了针对环境保护的具体情况特定的修复计划,并提出了基尔基露天坑的保存。这种方法的社会经济效益可能包括由于面向病人的旅游业而增加的旅游人数,加强当地经济,教育;鉴于,这种方法也与其他提出的修复措施有效。

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