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31.
32.
低温和近中温猪粪液厌氧处理的装置比较研究 总被引:4,自引:0,他引:4
作了UBF、UASB和厌氧上折流反应器处理猪粪过筛液运行性能的实验室比较。结果表明:它们的运行指标基本一致。综合比较,UBF略优于UASB,UASB略优于上折流反应器。在发酵温度10℃段,负荷1.9~2.3gCOD/(L·d),装置产气率平均0.32~0.51L/(L·d),COD平均去除率82.2%~91.0%;15℃段,负荷2.5~2.6gCOD/(L·d),装置产气率0.57~0.59L/(L·d);25℃段,负荷5.5~5.7gCOD/(L·d),装置产气率1.93~2.01L/(L·d)。 相似文献
33.
Use of poor-quality groundwater has become inevitable for irrigation to compensate rapidly increasing water demands in many arid and semiarid regions. Salinity and sodicity are the principal soil and water quality concerns in such areas. Many saline–sodic and sodic soils have saline or saline–sodic subsurface drainage waters. Amelioration of these soils needs a source of calcium (Ca2+) that can replace the excess exchangeable sodium (Na+). Most of these soils, however, contain calcite (CaCO3) of extremely low solubility. The native calcite does not supply adequate levels of Ca2+ for soil amelioration as do other chemical amendments. Phytoremediation may help ameliorate such soils through cultivation of certain crops tolerant to ambient soil salinity and sodicity. This amelioration strategy works through plant root action to help dissolve CaCO3 to supply adequate Ca2+ without the application of an amendment. During a 3-year field experiment conducted under irrigated conditions, we evaluated phytoremediation against soil application of gypsum and farm manure, and water treatment with sulphuric acid on a calcareous saline–sodic soil (pHs=8.0–8.4, ECe=24–32 dS m−1, SAR=57–78, CaCO3=45–50 g kg−1 for the top 0.15 m depth; Calcic Haplosalids). A saline–sodic water (EC=2.9–3.4 dS m−1, SAR=12.0–19.4, RSC=4.6–10.0 mmolc l−1, SARadj=15.6–18.4) was used to irrigate the rice (Oryza sativa L.) and wheat (Triticum aestivum L.) crops grown in rotation. Active desalinisation and desodication processes were observed in all the treatments. After the final wheat crop, the 1.2 m soil profile ECe was 7±0.5 dS m−1 and SAR was 15±2 with non-significant treatment differences, indicating comparable soil amelioration effect of phytoremediation with other treatments. Better crop yields were obtained from the manure-treated plots, owing to its annual addition to the soil that possibly improved soil fertility. Phytoremediation needed minimum capital input because no initial investment was made to purchase the amendments. 相似文献
34.
奶牛养殖场粪污处理沼气工程技术与模式 总被引:9,自引:3,他引:9
本文综述了国内外奶牛养殖场沼气工程技术应用现状,分析了奶牛粪沼气发酵潜力和三种主要沼气发酵工艺的技术特点. 相似文献
35.
稻草、玉米芯调理牛粪堆肥成型育苗基质试验 总被引:7,自引:0,他引:7
以稻草和玉米芯为调理料,分别与主体原料牛粪按质量比1∶4混合堆沤腐熟后获得牛粪稻草基质和牛粪玉米芯基质,以这2种基质为原料进行压缩成型试验,探讨了土壤添加量、原料含水率、成型压力以及成型温度等操作因素对基质块成型品质的影响及作用规律。结果表明:牛粪稻草和牛粪玉米芯2种基质块的抗跌碎能力基本持平,其中牛粪稻草基质块的容重较大,吸水性和保水能力更强;添加土壤对2种基质块的抗破碎能力均有一定的提高,但不添加土壤2基质块也具有良好的抗破碎能力,能满足育苗过程对其机械强度的要求;适宜的原料含水率、成型压力和成型温度范围为10%~15%、10~15 k N和80~120℃。 相似文献
36.
37.
为了探讨鸡粪沼液复合微生物有机肥在樱桃番茄上的田间应用效果,在滴灌施肥的条件下,设置化肥和液体复合微生物有机肥两个处理进行对比应用,结果表明施用液体复合微生物有机肥的处理其单果重可提高39.69%,含糖量可提高11.94%,茎粗可提高8.76%,Vc含量可提高5.72%,产量可提高30.95%,节约成本1.32%,可有效促进作物生长,提高果实着色均匀度,提高作物抗病性。同时,土壤速效氮提高6.87%,土壤速效磷46.23%,土壤速效钾提高16.86%,有机质含量提高12.64%,为作物提供了良好的生长环境。说明液体复合微生物有机肥对作物产量、品质以及土壤改良均有显著的提升作用,具有一定的应用前景。 相似文献
38.
《Communications in Soil Science and Plant Analysis》2012,43(18):2256-2264
Olive oil pomace (OLP) contains organic matter and nutrients that could be recycled by composting and supplying it to crops, solving the problem of disposal. The effects of two OLP composts (C1 and C2) were assessed on two leguminous forage crops commonly cropped in the local livestock farms. In particular, C1 was applied on proteic pea and C2 on clover, compared with a mineral fertilizer (Min) and a commercial organic–mineral fertilizer (Org-min). The influence of composts on some soil chemical properties was also investigated. The application of C1 significantly increased proteic pea dry weight at the end of the cycle by 27.2% and 52.0% and grain yield by 23.2% and 43.6%, in comparison with Org-min and Min, respectively. The clover dry weight during the entire cycle was lower in C2, in comparison with the other treatments, while no significant difference was found between C2 and the Org-min treatment both in yield and plant height. Soil nitrate decreased from the beginning to the end of the trial in C1 and C2 plots by 22.8% and 50.9%, respectively. Soil phosphorous content significantly increased in Min by 32.4 and 41.7% compared to C1 and C2, respectively. These results showed that the substitution of commercial fertilizers with compost could be an environmentally sustainable solution. The high presence of heavy metals in compost should not affect soil application at least in this short-term trial. 相似文献
39.
《Communications in Soil Science and Plant Analysis》2012,43(13-14):2031-2055
Abstract Aquasorb PR3005A, a hydrophilic polymer (a salt copolymer polyacrylamide), and garden waste compost were added to a loamy sand and a loam soil in pots to assess their impact upon soil physical properties at two different evaporation potentials. Compost was mulched and incorporated, the Aquasorb was incorporated, and their effect on temperature and amelioration of soil water content and evaporation was investigated. Mulching with compost reduced evaporation and increased soil temperature. Maize (Zea mays var. single cross 704) was sown in the same pots later, and growth indicator factors (plant height, fresh and dry weight, root weight, and leaf area) were compared. It was concluded that compost mulch application is beneficial to soil water retention whereas compost incorporation did not show these benefits. Compost mulch advances seedling emergence and enhances early growth through hydrologic soil amelioration. High rates of Aquasorb were also beneficial in advancing the emergence and early growth of maize seeded in loamy sand. The hydration capacity of Aquasorb is reduced as the electrolyte concentration and electrical conductivity are increased. Increased electrolyte concentration in soil solution, through drying, may result in gel dehydration and water release at potentials greater than field capacity, which may be lost to drainage. Furthermore, it is concluded that pot experiments with amendments fail to simulate field conditions. 相似文献
40.