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去除地下水中铁锰的复合微生物材料制备 被引量:5
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作者 游亚平 陈丽芳 +1 位作者 周志华 李敏 《安全与环境学报》 CAS CSCD 北大核心 2011年第6期53-56,共4页
利用谷类副产品麸皮与前期分离得到的铁锰去除效果良好的假单胞菌4-05混合,以羧甲基纤维素钠为黏合剂,制备球状复合微生物颗粒材料,用于富含铁锰离子的地下水的生物治理,通过批量试验优化制备工艺。结果表明,羧甲基纤维素钠质量分数为1... 利用谷类副产品麸皮与前期分离得到的铁锰去除效果良好的假单胞菌4-05混合,以羧甲基纤维素钠为黏合剂,制备球状复合微生物颗粒材料,用于富含铁锰离子的地下水的生物治理,通过批量试验优化制备工艺。结果表明,羧甲基纤维素钠质量分数为14%,粒径为2.5 cm的复合微生物颗粒材料,对Fe^(2+)(初始质量浓度为80mg/L)和Mn^(2+)(初始质量浓度为2.5 mg/L)的去除率分别为95.90%和62.35%。 展开更多
关键词 环境科学技术其他学科 地下水 复合微生物材料 假单胞菌 麸皮 羧甲基纤维素钠(CMC) 除铁除锰
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生物炭-微生物复合材料修复Cr(Ⅵ)污染土壤条件优化及促生效果 被引量:3
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作者 姜庆宏 宋玉艳 +3 位作者 韩剑宏 张连科 张铁军 王维大 《环境污染与防治》 CAS CSCD 北大核心 2020年第8期964-970,共7页
生物炭和微生物在改善Cr(Ⅵ)污染土壤质量方面得到了广泛的应用,而以生物炭-微生物制备的复合材料(BC-MT)在Cr(Ⅵ)污染土壤修复中的促生效果鲜见报道。以玉米秸秆生物炭为载体吸附铬还原菌——藤黄微球菌(Micrococcus luteus)制备BC-MT... 生物炭和微生物在改善Cr(Ⅵ)污染土壤质量方面得到了广泛的应用,而以生物炭-微生物制备的复合材料(BC-MT)在Cr(Ⅵ)污染土壤修复中的促生效果鲜见报道。以玉米秸秆生物炭为载体吸附铬还原菌——藤黄微球菌(Micrococcus luteus)制备BC-MT,综合考察了BC-MT修复Cr(Ⅵ)污染土壤最佳条件及促生效果。结果表明:藤黄微球菌能成功附着在生物炭上,BC-MT对Cr(Ⅵ)污染土壤修复效果显著,在BC-MT投加量3%(质量分数,下同)、氮源投加量10g/kg、土壤含水率14%的条件下,修复25d,Cr(Ⅵ)去除率为64.35%,可提取态铬从27.01mg/L降至7.72mg/L。在3%BC-MT作用下,植物生长12周后地上、地下部分总铬含量分别降低了65.15%、49.76%,Cr(Ⅵ)分别降低了94.11%、87.74%,植物株高增加了17.7cm,生物量(以干重计)增加了132mg,叶绿素增加了4.65mg/g,可溶性糖增加了1.69mg/g。由此可见,BC-MT不但能有效降低土壤Cr(Ⅵ)含量,而且促生效果显著,具有广阔的应用价值。 展开更多
关键词 Cr(Ⅵ)污染 生物炭-微生物复合材料 促生效果
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New Type Bio-composites Containing Nitrogenous Fertilizers of Prolonged Action and Nitrogen-Fixing Microorganisms
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作者 Givi Papava Eldar Gugava +3 位作者 Zaur Lomtatidze Ilia Gorozia Marina Gurgenishvili Ia Chitrekashvili 《Journal of Chemistry and Chemical Engineering》 2014年第6期580-586,共7页
Technology was developed for obtaining ecologically pure composites containing nitrogenous fertilizers of prolonged action and nitrogen-fixing microorganisms in order to increase productivity of cereal crops. As a res... Technology was developed for obtaining ecologically pure composites containing nitrogenous fertilizers of prolonged action and nitrogen-fixing microorganisms in order to increase productivity of cereal crops. As a result of application of this composite nitrogenous fertilizer hectare norm decreases by 40%-55%, while productivity increases by 15%-30%, compared to those of the control. 展开更多
关键词 Prolonged action nitrogen-fixing microorganisms bio-composite technology fertilizer.
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The Study of Resistance of Cement Composites against Microbial Attack
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作者 Estokova Adriana Ondrejka Harbulakova Vlasta +2 位作者 Luptakova Alena Prascakova Maria Stevulova Nadezda 《Journal of Civil Engineering and Architecture》 2011年第6期555-561,共7页
The start and the course of bio-corrosion are conditioned by many factors which include biological effects like the influence of vegetation and microorganisms causing the deterioration of materials. The influence of b... The start and the course of bio-corrosion are conditioned by many factors which include biological effects like the influence of vegetation and microorganisms causing the deterioration of materials. The influence of bacteria causing the deterioration of concrete has been linked to the generation of biogenic sulphuric and nitric acids which originate in corrosion process by dissolution of calcium containing minerals from the concrete matrices. This paper primarily focuses on the investigation of influence of sulphur-oxidising bacteria Acidithiobacillus thiooxidans and sulphate-reducing bacteria Desulfovibrio desulfuricans at the resistance degree of cement composites. Various concrete composites with 5% addition of black coal fly ash as cement replacement as well as the reference samples without coal fly ash addition were studied in the experiments environments of sewage system proceeded during 90 days. The The laboratory experiments as well as experiments in situ in real corrosion was manifested by surface changes and weight changes of cement composites samples as well as changes in pH values of leachates. Considerable surface changes were detected in all investigated samples by microscopic methods. Crystals precipitated on concrete samples surface were identified by EDX as mixture of gypsum and ettringite. The roughness increases of surface of cement microscopy. composites were determined by confocal laser scanning 展开更多
关键词 Concrete MIC BACTERIA BIOCORROSION biodeterioration.
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