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21.
微生物强化处理与堆制强化处理含油污泥对比试验 总被引:16,自引:0,他引:16
为探索含油污泥的高效处理方法,对含油量为12.68%的污泥进行微生物菌剂强化处理和堆制强化处理现场试验.在第1、15、30d分别向微生物强化处理单元投加微生物菌剂和营养液;同时向堆制强化单元投加10kg畜禽粪便来提供共降解物质,强化堆制处理过程.结果表明,微生物强化处理单元含油量持续下降,56d后下降至6.42%,去除率达到47%;强化堆制单元处理效果较好,56d后含油量下降至6.98%,去除率达到31%;对照单元含油量则变化很小,56d后含油量为10.15%.对照单元的pH基本保持不变,最高为8.28,最低为7.93,微生物强化处理单元pH最低达到7.33,一般稳定在7.8左右,菌剂的添加对pH影响明显.堆制强化处理单元温度随着农家肥的添加而剧烈升高,最高达到54℃.试验进行过程中监测了样品中微生物总数的变化情况.通过气谱-质谱分析,可以明显地看出2种方法处理后,含油污泥中石油成分的差异,对碳原子数小于21的烃类有着良好的去除效果. 相似文献
22.
接种白腐真菌堆肥处理含Pb垃圾 总被引:7,自引:0,他引:7
选取未污染土壤、家庭厨余、稻草、麸皮加入Pb(NO3)2溶液配成模拟含高浓度Pb垃圾,采用接种白腐菌堆制处理和不接菌堆制处理2种方法分别进行室内模拟堆制.通过监测理化因子(pH、挥发性固体、水溶性有机碳/有机氮、木质素、粗纤维)与生化因子(呼吸量、微生物生物量碳)以及生物毒性分析因子(种子发芽指数、重金属含量)随时间的变化,系统地研究了重金属对垃圾堆肥过程的影响和白腐菌堆肥处理重金属污染垃圾的可行性.结果表明,接种白腐菌处理Pb污染垃圾的堆肥过程能顺利进行,较好地减弱了Pb的迁移性从而降低其生物有效性,降低了堆肥潜在的重金属危害性.此堆肥工艺下,堆肥成品pH为7.9,水溶性C/N达4.01,挥发性固体含量降至36.1%,木质素余量22.4 g,粗纤维余量30.1 g;且堆肥中Pb主要以残留态存在,约为63.38%,水溶交换态Pb含量则降至0%,种子发芽指数高达121%. 相似文献
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利用污泥熟肥作为高含水率污泥堆肥调理剂 总被引:2,自引:0,他引:2
采用静态强制通风好氧堆肥的方法,以木屑作为对比,考察了利用污泥熟肥作为调理剂对污泥堆肥过程的影响。结果表明,与以木屑作为调理剂的污泥堆体(对照组)相比,以污泥熟肥作为调理剂的污泥堆体(实验组)升温快,高温阶段(>50℃)持续时间长达10 d,满足粪便无害化卫生标准的要求,而对照组仅持续了2 d;实验组腐熟的堆肥含水率从60%降到39%,下降了21%,pH维持在7.5~8.5范围内,微生物活性较强,而对照组含水率仅下降15%,pH始终低于7.5;实验组种子发芽指数(GI)在第14天就回升到80%以上,基本上去除了植物毒性,而对照组GI在第22天才回升到50%。总体而言,污泥熟肥能显著改善堆肥中微生物的微环境,促进有机物的降解,缩短堆肥腐熟时间,是一种优质的调理剂。 相似文献
27.
针对我国生活垃圾的特点,提出了厨余等有机生活垃圾单独收集,在产生源头进行好氧堆肥处理。研制了好氧堆肥设备,由加热装置、通风装置、冷凝水收集和回灌装置,以及与该生物堆肥设备配套的生物过滤除臭装置、自控系统和数据采集软件几部分构成。自控系统由氧气、温度、湿度三路传感器以及2个控制器构成,并与加热装置、通风装置连接,能满足物料加热、供氧和散热的要求。本研究通过为期30 d的试运行实验表明,物料快速升温并稳定保持在高温阶段(50~60℃),物料中的氧气浓度保持在14%~16%范围内。在堆肥实验结束时,物料的含水率降至36.4%,有机质含量降至49%,另外,通过好氧速率指标也可判定物料达到腐熟。 相似文献
28.
研究了微生物调控对牛粪堆肥生物特性的影响.结果表明:(1)与对照相比,接菌(添加HM菌剂)处理可使牛粪堆肥提前2d进入高温期,高温持续时间延长2d.即接菌处理的堆肥温度在第4天达到50.5℃,并保持50℃以上的温度14 d;而对照在第6天达到50.0℃,并保持50℃以上的温度12 d.(2)2种处理堆肥的pH总体呈先升高后降低的趋势,接菌处理的堆肥pH上升幅度不大,比对照低0.1~0.5个pH单位.(3)接菌处理有利于提高牛粪堆肥的纤维素酶、蔗糖酶、脲酶活性水平和峰值.(4)脲酶活性与其他因素之间呈显著负相关(p<0.01),而温度、pH、蔗糖酶活性和纤维素酶活性之间呈显著正相关(p<0.01). 相似文献
29.
《Journal of environmental science and health. Part. B》2013,48(5-6):757-764
Abstract A laboratory pot experiment was conducted to study the effect of amending soil with four different sources of organic matter on the degradation rate of α and β endosulfan isomers. Poultry by-product meal, poultry manure, dairy manure, and municipal solid waste compost were cured, dried, ground (<1 mm) and thoroughly mixed with a calcareous soil at a rate of 2% and placed in plastic pots. Endosulfan was added at the rate of 20 mg kg?1. The moisture level was kept near field capacity and the pots were kept at room temperature. Soil sub-samples, 100 g each, were collected from every pot at days 1, 8, 15, 22, 29, 43, and 57 for the measurement of endosulfan isomers. Endosulfan residues were extracted from the soil samples with acetone. The supernatant was filtered through anhydrous sodium sulphate, 5 mL aliquot was diluted to 25 mL with hexane, mixed well, and then two sub-samples from the filtrates were analyzed for α and β endosulfan isomers by gas chromatography. The results indicated that the half-life (T ½) of α-endosulfan in the poultry by-product meal treatment was 15 days compared to about 22 days in the other treatments. The T ½ of β-endosulfan was 22 days in the poultry by-product meal treatment and followed a bi-phasic pattern, 57 days in the municipal solid waste compost treatment and the extrapolated T ½ was about 115 days for the other three treatments. 相似文献
30.
The impact of sewage sludge compost on tree peony growth and soil microbiological,and biochemical properties 总被引:1,自引:0,他引:1
In order to assess the suitability of sludge compost application for tree peony (Paeonia suffruticosa)–soil ecosystems, we determined soil microbial biomass C (Cmic), basal respiration (Rmic), enzyme activities, and tree peony growth parameters at 0–75% sludge compost amendment dosage. Soil Cmic, Rmic, Cmic as a percent of soil organic C, enzyme (invertase, urease, proteinase, phosphatase, polyphenoloxidase) activities, and plant height, flower diameter, and flower numbers per plant of tree peony significantly increased after sludge compost amendment; however, with the increasing sludge compost amendment dosage, a decreasing trend above 45% sludge compost amendment became apparent although soil organic C, total Kjeldahl N, and total P always increased with the sludge compost amendment. Soil metabolic quotient first showed a decreasing trend with the increasing sludge compost application in the range of 15–45%, and then an increasing trend from compost application of 45–75%, with the minimum found at compost application of 45%. As for the diseased plants, 50% of tree peony under the treatment without sludge compost amendment suffered from yellow leaf disease of tree peony, while no any disease was observed under the treatments with sludge compost application of 30–75%, which showed sludge compost application had significant suppressive effect on the yellow leaf disease of tree peony. This result convincingly demonstrated that ?45% sludge compost application dosage can take advantage of beneficial effect on tree peony growth and tree peony–soil ecosystems. 相似文献