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1.
Biological soil disinfestation is an effective method to control soil-borne disease by flooding and incorporating with organic amendments, but field conditions and resources sometimes limited its practical application. A laboratory experiment was conducted to develop practice guidelines on controlling Fusarium wilt, a widespread banana disease caused by Fusarium oxysporum f. sp. cubense (FOC). FOC infested soil incorporated with rice or maize straw at rates of 1.5 tons/ha and 3.0 tons/ha was incubated under flooded or water-saturated (100% water holding capacity) conditions at 30°C for 30 days. Results showed that FOC populations in the soils incorporated with either rice or maize straw rapidly reduced more than 90% in the first 15 days and then fluctuated till the end of incubation, while flooding alone without organic amendment reduced FOC populations slightly. The rapid and dramatic decrease of redox potential (down to − 350 mV) in straw-amended treatments implied that both anaerobic condition and strongly reductive soil condition would contribute to pathogen inactivation. Water-saturation combined with straw amendments had the comparable effects on reduction of FOC, indicating that flooding was not indispensable for inactivating FOC. There was no significant difference in the reduction of FOC observed in the straw amendments at between 1.5 and 3 tons/ha. Therefore, incorporating soil with straw (rice or maize straw) at a rate of 3.0 tons/ha under 100% water holding capacity or 1.5 tons/ha under flooding, would effectively alleviate banana Fusarium wilt caused by FOC after 15-day treating under 30°C.  相似文献   
2.
碳源对工业污染场地土壤中HCHs和DDTs降解的促进作用   总被引:1,自引:0,他引:1  
我国对有机氯农药的大量需求使得在农药生产、加工和分装等过程中造成了许多城镇中存在有机氯农药污染场地,限制了土地的后续开发利用.本研究选取3种类型的碳源组成有机修复剂A、B、C,添加到受有机氯工业污染场地土壤中进行微生物降解试验,并对比了3种修复剂的效果.试验过程中,反应体系水分含量为50%,添加零价金属调节氧化还原电位,采用好氧/厌氧交替循环方式进行生物降解.实验结果表明:3种修复剂对HCHs和DDTs的降解都有显著促进作用.与DDTs相比,HCHs较易降解.90 d内,添加修复剂(A、B、C)的处理中∑HCH的浓度分别从73.37~85.71 mg·kg-1降解到了15.88~38.21 mg·kg-1.与未添加修复剂的对照相比较,∑HCH的降解率提高了19%~52%,90 d内,ΣHCH的降解率最高可达81%.添加修复剂(A、B、C)的处理中ΣDDT的浓度分别从91.68~119.79 mg·kg-1降解到了45.1~60.7 mg·kg-1,相对未添加修复剂的对照试验,∑DDT的降解率提高了39%~45%,30 d内∑DDT的降解率最高可达到51%,但30 d后降解效率无明显增加.就不同类型碳源的促进作用来看,C/N最高,而含水率最低的修复剂B的效果最好,而C/N比最低而含水率最高的修复剂A效果最差.  相似文献   
3.
刘洪涛  陈同斌  郑国砥  高定  雷梅 《生态环境》2010,19(4):1000-1003
针对目前国内肥料生产和施用现状,分别从能耗、成本和污染物排放等三个方面对有机肥和化肥进行比较分析。化肥生产呈现高能耗和高污染排放,而有机肥则表现为低能耗、无污染的特点,同时还可消纳废弃物,减轻污染负荷。从投入成本上分析,化肥相对于有机肥具有一定优势,其单位面积和折纯养分投入分别是有机肥的53%和26%。有机肥相对于化肥,其污染物排放负荷很低。从节能减排和降低投入的角度,提出支持基于废弃物资源化的有机肥产业化发展。  相似文献   
4.
我国主要蔬菜和粮油作物的砷含量与砷富集能力比较   总被引:19,自引:0,他引:19  
根据国内外文献报道,对蔬菜和粮油作物中砷的累积特点和富集能力进行总结和分析.结果表明.清洁区和污染区蔬菜的砷含量变幅分别为0.001-1.07 mg·kg-1和0.001-8.51 mg·kg-1(鲜重),均值分别为0.035 mg·kg-1和0.068 mg·kg-1不同种类蔬菜的砷含量由大到小,依次为:叶菜类>根茎类>茄果类>鲜豆类;清洁区和污染区粮油作物的砷含量变幅分别为0.001-2.20 mg·kg-1和0.007-6.83 mg·kg-1(干重),均值分别为0.081 mg·kg-1和0.294 mg·kg-1,其中水稻的砷含量显著高于小麦和玉米.从富集系数来看,叶莱类蔬菜的砷富集系数最高,芹菜、蕹菜、茼蒿、芥菜等蔬菜的抗砷污染能力较弱.粮食作物玉米的抗砷污染能力较强.与蔬菜砷限量标准(GB4810-1994)相比,我国砷污染区的蔬菜中有32.2%的样本砷含量超标,其中叶菜类和根茎类的超标率分别为47.9%和12.8%.与粮食砷限量标准(GB4810-1994)比较,我国污染区粮油作物的样本砷超标率为34.8%,其中水稻的超标率高达42.9%.玉米和小麦的超标率均高于20%.  相似文献   
5.
磷肥对砷污染土壤的植物修复效率的影响:田间实例研究   总被引:63,自引:8,他引:63  
通过田间试验研究施用磷肥对砷超富集植物蜈蚣草(PterisvittataL.)生长和砷污染土壤修复效率的影响.结果表明,适量施用磷肥促进蜈蚣草的生长,显著提高其生物量,但过量施用磷肥对植物产量无贡献.随着磷肥施用量的增加,蜈蚣草地上部砷含量呈先增加后减少的趋势,理论上在施磷量为340kg·hm-2时,砷含量可达最高(1622mg·kg-1).磷的含量与施磷量呈极显著的正相关关系.施磷量为200kg·hm-2的砷累积量最高,是不施磷处理砷累积量的2 4倍及600kg·hm-2施磷量砷累积量的1 2倍.种植蜈蚣草7个月后,土壤总砷均有不同程度的下降,施磷量为200kg·hm-2的土壤中砷含量下降5 0mg·kg-1,土壤修复效率最高(7 84%).对照和600kg·hm-2施磷量处理的土壤修复效率分别为2 31%和6 63%.理论上达到最大土壤修复效率所需施磷量为369kg·hm-2.施用磷肥可以维持土壤有效态砷含量在蜈蚣草种植前后变化不大,保证蜈蚣草下个生育期对砷的吸收.这些结果说明施用磷肥是蜈蚣草等砷超富集植物在现场修复中的必要手段,优化施磷技术可大大提高砷污染土壤的修复效率.  相似文献   
6.
北京市菜地土壤和蔬菜镉含量及其健康风险分析   总被引:81,自引:3,他引:81  
通过对北京市蔬菜和菜地土壤镉含量状况进行大规模调查,研究了蔬菜和土壤镉含量及其健康风险,并筛选出抗镉污染能力强的蔬菜品种.根据蔬菜的消费量同时兼顾品种多样性的原则,在北京市规模化蔬菜栽培基地(采集蔬菜及土壤样品)和蔬菜批发市场(蔬菜样品)共采集97种蔬菜363个样品和54个土壤样品.研究发现:北京市菜地土壤镉积累明显,其范围为0.091~0.971 mg·kg-1,其算术均值和Box-Cox均值分别为0.229和0.187 mg·kg-1,其中有两个样点土壤镉含量(0.971和0.886 mg·kg-1)超过<土壤环境质量标准>(GB15618-1995)中的二级标准(0.6 mg·kg-1);北京市蔬菜镉含量范围、算术均值和Box-Cox均值分别为0.1~101.4、12.8和10.0μg·kg-1;叶菜类和根茎类蔬菜的镉平均含量显著高于瓜果类和特菜;北京市本地产蔬菜与市售外地产蔬菜的镉含量没有显著差异;裸露地蔬菜镉含量显著高于设施蔬菜;小白菜、辣椒、茄子、萝卜和大白菜镉富集系数较高,其抗镉污染能力较弱,而冬瓜、黄瓜、叶甜菜、大葱、云架豆、甘蓝、西红柿等镉富集系数较低,其抗镉污染能力较强.北京市居民每人从蔬菜中摄入镉的量为12 2μg·d-1,蔬菜镉对北京市部分人群存在一定的潜在健康风险.  相似文献   
7.
城市污泥堆肥过程中气温对堆体温度影响的模拟   总被引:8,自引:1,他引:7  
在静态垛堆肥过程中,气温的变化会对堆体温度造成影响,这对堆肥过程中的堆体温度控制具有重要意义.但迄今为止,对此问题仍缺乏研究.本文引入小波分析方法对气温和堆体温度数据进行去噪和压缩处理,提取出气温波动引起的堆体温度波动信号,然后对气温波动信号和堆体温度波动信号进行分周期拟合,获得一一对应的振幅和相位差.结果表明,对于强制通风静态垛堆肥,气温波动对堆体下层(75cm)的影响最大,最大值为0.186℃,最小值为0.132℃,平均值为0.159℃;对中层(50cm)的影响最小,但随着堆肥进程的持续有增大的趋势;对上层(25cm)影响的最大值为0.105℃,最小值为0.065℃,平均值为0.085℃.从相位差上看,堆体中层(50cm)的相位差始终最大,在堆肥的降温期呈现明显减小的趋势;上层(25cm)的相位差随着堆肥进程的持续有明显增大的趋势;下层(75cm)的相位差在整个堆肥进程中呈缓慢升高的趋势.通过影响强度和相位差综合分析发现,堆体上层物料和下层物料在热量散失过程中可能存在两种不同的热交换机制,即上层物料以稳态热传导和自然对流为主,而下层物料则以非稳态热对流为主.  相似文献   
8.
污泥堆肥含水率监测方法的选择与探讨   总被引:2,自引:0,他引:2  
城市污泥的堆肥过程中,快速、准确的含水率测定方法有助于掌握堆体腐熟程度和水分脱除进程,并据此进行工艺的优化和反馈调控.本文介绍了污泥堆肥的含水率监测方法及其优缺点.由于堆肥物料性质与堆肥环境的特殊性和复杂性,缺乏可直接应用的测定仪器,应根据物料性质、工况条件等选择合适的含水率测定技术,并对相关仪器进行改进.对于污泥堆肥的工程化应用而言,实时在线监测的原位含水率测定方法更适合指导工艺的调控和优化、提高堆肥效率.  相似文献   
9.
A method was proposed to identify the main influence factors of soil heavy metals. The influence degree of different environmental factors was ranked. Parent material, soil type, land use and industrial activity were main factors. Interactions between some factors obviously affected soil heavy metal distribution. Identifying the factors that influence the heavy metal contents of soil could reveal the sources of soil heavy metal pollution. In this study, a categorical regression was used to identify the factors that influence soil heavy metals. First, environmental factors were associated with soil heavy metal data, and then, the degree of influence of different factors on the soil heavy metal contents in Beijing was analyzed using a categorical regression. The results showed that the soil parent material, soil type, land use type, and industrial activity were the main influencing factors, which suggested that these four factors were important sources of soil heavy metals in Beijing. In addition, population density had a certain influence on the soil Pb and Zn contents. The distribution of soil As, Cd, Pb, and Zn was markedly influenced by interactions, such as traffic activity and land use type, industrial activity and population density. The spatial distribution of soil heavy metal hotspots corresponded well with the influencing factors, such as industrial activity, population density, and soil parent material. In this study, the main factors affecting soil heavy metals were identified, and the degree of their influence was ranked. A categorical regression represents a suitable method for identifying the factors that influence soil heavy metal contents and could be used to study the genetic process of regional soil heavy metal pollution.  相似文献   
10.
Co-composting of chicken manure, straw and dry grasses was investigated in a forced aeration system to estimate the effect of aeration rates on NH3, CH4 and N2O emissions and compost quality. Continuous measurements of gas emissions were carried out and detailed gas emission patterns were obtained using an intermittent-aeration of 30 min on/30 min off at rates of 0.01 (A1), 0.1 (A2) and 0.2 (A3) m3 min−1 m−3. Concentrations of CH4 and N2O at the low aeration rate (A1) were significantly greater than those at the other two rates, but there was no significant difference between the A2 and A3 treatments. CH4 and N2O emissions for this mixture could be controlled when the composting process was aerobic and ammonia emissions were reduced at a lower aeration rate. Comparison of CH4, N2O, NH3 emissions and compost quality showed that the aeration rate of the A2 treatment was superior to the other two aeration rates.  相似文献   
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