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HMD厌氧消化技术在餐厨废水处理中的应用 被引量:1
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作者 屈阳 李小虎 +3 位作者 金慧宁 杭建强 秦志超 毛金锋 《水处理技术》 CAS CSCD 北大核心 2024年第5期141-144,共4页
以某餐厨废水处理工程为例,阐述“高混合反应器(HMD)厌氧消化+离心脱水+气浮”工艺设计参数和处理效果,并对2022年10~12月工艺运行情况进行分析。运行结果表明:“HMD厌氧消化+离心脱水+气浮”处理工艺动植物油脂去除率94.1%,厌氧段COD... 以某餐厨废水处理工程为例,阐述“高混合反应器(HMD)厌氧消化+离心脱水+气浮”工艺设计参数和处理效果,并对2022年10~12月工艺运行情况进行分析。运行结果表明:“HMD厌氧消化+离心脱水+气浮”处理工艺动植物油脂去除率94.1%,厌氧段COD和VS的平均去除率分别为81.1%和79.4%,出水pH、COD、SS和油脂满足设计要求;厌氧段容积负荷高达7.6 kgVS/(m~3·d)。工艺运行成本30.4元/m~3水(不含人工费)。该工艺适用于用地紧张且对厌氧处理效率要求较高的地区。 展开更多
关键词 高混合反应器 餐厨 厌氧 去除率 容积负荷
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Effect of mixed moderately thermophilic adaptation on leachability and mechanism of high arsenic gold concentrate in an airlift bioreactor 被引量:6
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作者 余润兰 吴发登 +5 位作者 陈安 石丽娟 曾伟民 顾帼华 覃文庆 邱冠周 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期66-73,共8页
A refractory gold concentrate with 19% arsenic was treated by a mixed moderately thermophiles in an airlift bioreactor through an adaptation protocol. The moderately thermophiles could respond well to 20%(w/v) pulp de... A refractory gold concentrate with 19% arsenic was treated by a mixed moderately thermophiles in an airlift bioreactor through an adaptation protocol. The moderately thermophiles could respond well to 20%(w/v) pulp density with less than 10% loss of productivity, and resist arsenic up to 15 g/L. There were a lot of jarosite, arsenolite and sulfur, but not scorodite and ferric arsenate in the bioleached residue. Jarosite passivation and lower sulfur-oxidizing activity of the cells due to the toxicity of the high concentrations of soluble arsenic and iron ions at low p H value should mainly response for the incomplete extraction at high pulp density. The initial bacterial community did not change in nature except for new found P aeruginosa ANSC, but sulfur-oxidizing microorganisms have been dominant microorganisms after a long time of adaptation. Pseudomonas aeruginosa originating from the gold concentrate should be closely relative to the metabolism of the organic matters contained in the refractory gold concentrate. 展开更多
关键词 moderately thermophilic bacteria bioleaching high arsenic gold concentrate adaptation
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