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91.
污水磷回收新产物——蓝铁矿 总被引:2,自引:2,他引:0
渐行渐近的磷危机使磷回收从理论已经走向实践.磷回收产物形式很多,但经济、具有高附加值的产物才能驱动企业自愿实施.在污水处理生物污泥中新近发现的蓝铁矿(Vivianite,Fe_3(PO_4)_2·8H_2O)沉淀物因潜在的特殊用途以及经济价值而备受关注.自然界,蓝铁矿广泛存在于地表水体沉积物中,是一种非常稳定(K_(sp)=10~(-36))的磷铁化合物.决定蓝铁矿生成的条件除富铁、富磷之内在因素外,还需要环境中存在合适的还原性条件(ORP-300 mV)以及中性上下的pH条件(6~9).实践中,污水或污水处理过程中有时刚好存在蓝铁矿形成的内、外在条件,荷兰污水处理厂在生物污泥中便检测发现有蓝铁矿物质的存在.为推动蓝铁矿基础及其应用研究,本文综述蓝铁矿化学性质、经济价值及回收潜力;分析pH、ORP、微生物、硫化物等环境影响因素;辨析其在生物污泥中的生成路径;提出从污泥中分离、提纯蓝铁矿的研发思路. 相似文献
92.
退耕植茶对川西低山丘陵区土壤活性有机碳组分的影响 总被引:2,自引:0,他引:2
为探讨退耕植茶对土壤活性有机碳组分的影响,选取退耕2~3年(RT 2~3)、9~10年(RT 9~10)和16~17年(RT 16~17)的茶园为研究对象,以邻近撂荒地为对照(CK),测定其土壤颗粒有机碳(POC)、微生物量碳(MBC)、水溶性有机碳(WSOC)、可矿化有机碳(MOC)含量,并分析其分配比例随退耕植茶年限推移的变化.结果表明,POC、MBC和WSOC对退耕植茶的响应较为一致,与对照相比,退耕植茶初期(RT 2~3),各组分含量均降低,但随着植茶时间的推移,各组分含量逐渐增加,在植茶9~10或16~17年后显著高于撂荒地;退耕植茶后MOC含量显著降低,总体表现为CKRT 16~17RT 9~10RT 2~3,0~10 cm土层,RT 2~3、RT 9~10和RT 16~17土壤MOC含量分别较对照显著下降35.25%、23.89%和16.87%,10~20 cm土层中分别下降32.31%、13.09%和23.22%,20~40 cm土层中分别下降36.43%、28.79%和30.76%.植茶后,土壤活性有机碳在总有机碳中的比例整体现为0~10 cm高于20~40 cm,相较于表层土壤,深层土壤碳库的稳定性更强.退耕植茶有利于土壤肥力的保持,对提升土壤有机质水平起到积极作用,且随植茶时间的推移,土壤对碳的固持作用增强,土壤质量得到提升. 相似文献
93.
针对生物质固体废物量大面广,具有污染和资源利用双重特性,厌氧发酵能源化可促进其污染控制,且过程中部分有机成分在微生物作用下转化成腐殖质(HS).通过分析厌氧发酵过程中HS转化规律、HS结构特征与氧化还原性能、腐殖质还原菌与产甲烷菌活性、产CH4效率之间的响应关系和作用机制研究进展,总结凝练出生物质厌氧发酵系统内HS对CH4的调控原理,为减少厌氧发酵系统内HS对产CH4途径的抑制作用,提高发酵效率的技术研究提供理论支撑. 相似文献
94.
95.
生物质粉尘是生物质气化燃气中主要的杂质之一,其清除效果对生物质气化发电机组的安全运行有着重要的影响。以湿式电除尘装置作为试验平台,研究了生物质粉尘的特性和不同影响因素下湿式电除尘器的除尘效率,并对干法、湿法除尘效率进行对比。研究结果表明:生物质粉尘主要含C、O、Mg、Al、Si、K、Ca、Fe等元素,中位径为26.05μm。在相同条件下,除尘效率随着水压的增大而逐渐增大,当增加到0.4 MPa以后,无较大变化,除尘效率随着电场风速、焦油浓度的增加而减少,在洗涤水中添加少量的碱液有利于除尘。采用极配型式为RS二刺芒刺线配480C型板,当水压为0.4 MPa、电场风速为1.0 m/s,除尘效率可达99.21%。 相似文献
96.
The Piratininga Lagoon is a coastal, choked, and brackish ecosystem in SE Brazil, where uncontrolled discharge of domestic sewage led to eutrophication, increasing massive proliferation of benthic macroalgae, and decrease of the lagoon mean depth. In 1992, a dam was constructed by the local Municipality at its tidal channel aiming at stabilising its water level. Main physico-chemical parameters, together with macroalgae biomass, nutrient concentrations in the water column, particulate organic carbon, and chlorophyll a were recorded monthly at 4 sampling stations within the Piratininga lagoon from April 1994 to April 1995. The data, compared with “before-lock” existing studies, show that nutrients and chlorophyll a concentrations significantly increased after the lock construction. Based on the functioning of the ecosystem, we propose to harvest the algal mats before their decomposition period in order to partly remove the nutrient stocks from the lagoon and the future ecosystem modelling to predict the impact of natural and anthropogenic eutrophication. 相似文献
97.
Effects of bed materials on the performance of an anaerobic sequencing batch biofilm reactor treating domestic sewage 总被引:1,自引:1,他引:0
The objective of this study was to determine the best performance of an anaerobic sequencing batch biofilm reactor (AnSBBR) based on the use of four different bed materials as support for biomass immobilization. The bed materials utilized were polyurethane foam (PU), vegetal carbon (VC), synthetic pumice (SP), and recycled low-density polyethylene (PE). The AnSBBR, with a total volume of 7.2L, was operated in 8-h batch cycles over 10 months, and fed with domestic sewage with an average influent chemical oxygen demand (COD) of 358+/-110mg/L. The average effluent COD values were 121+/-31, 208+/-54, 233+/-52, and 227+/-51mg/L, for PU, VC, SP, and PE, respectively. A modified first-order kinetic model was adjusted to temporal profiles of COD during a batch cycle, and the apparent kinetic constants were 0.52+/-0.05, 0.37+/-0.05, 0.80+/-0.04, and 0.30+/-0.02h(-1) for PU, VC, SP, and PE, respectively. Specific substrate utilization rates of 1.08, 0.11, and 0.86mg COD/mgVS day were obtained for PU, VC, and PE, respectively. Although SP yielded the highest kinetic coefficient, PU was considered the best support, since SP presented loss of chemical constituents during the reactor's operational phase. In addition, findings on the microbial community were associated with the reactor's performance data. Although PE did not show a satisfactory performance, an interesting microbial diversity was found on its surface. Based on the morphology and denaturing gradient gel electrophoresis (DGGE) results, PE showed the best capacity for promoting the attachment of methanogenic organisms, and is therefore a material that merits further analysis. PU was considered the most suitable material showing the best performance in terms of efficiency of solids and COD removal. 相似文献
98.
Johan Bergholm Hooshang Majdi Tryggve Persson 《Water, Air, & Soil Pollution: Focus》2007,7(1-3):225-234
A nitrogen (N) budget was constructed for a period of 6 years (1988–1993) in a Norway spruce stand with current deposition
of 19 kg N and 22 kg S ha−1 year−1. The stand was fertilized annually by addition of 100 kg N and 114 kg S ha−1 (NS). Above and below ground biomass, litterfall, fine- root litter production, soil solution and net mineralization were
measured to estimate pools, fluxes and accumulation of nitrogen. The average needle litterfall in control (C) and NS plots
in 1993 was 2.2 and 2.5 ton ha−1 year−1, respectively. The fine root litter production prior to treatment (1987) was 4.4 ton ha−1 year−1 and after treatment (1993) it was 4.5 and 3.9 ton ha−1 year−1 in C and NS plots, respectively. Net N mineralization in the soil profile down to 50 cm was estimated to be 86 and 115 kg
ha−1 year−1 in C and NS plots, respectively in 1992. During the treatment period the uptake of N in the needle biomass in C and NS plots
was 29 and 77 kg ha−1 year−1, respectively. No N was accumulated in needles of C plot where the NS plots accumulated 34 kg ha−1 year−1. Of the annually added inorganic N to NS plots 47% was accumulated in the above and below ground biomass and 37% in the soil.
N fluxes via fine-root litter production in the C plots were much higher (54 kg ha−1 year−1) than that via litterfall (29 kg ha−1 year−1). The corresponding values in the NS plots were 65 and 43 kg ha−1 year−1, respectively. Most of the net N mineralization occurred in the FH layer and upper mineral soil. It is concluded that fine
root litter and litterfall play an important role in the cycling of N. Despite a high N uptake the losses of N in litterfall
and fine root litter resulted in an incorporation of N in soil organic matter. 相似文献
99.
FUENSANTA CARAVACA DINO FIGUEROA ANTONIO ROLDÁn CONCEPCIÓN AZCÓN-AGUILAR 《Environmental management》2003,31(3):0412-0420
The reestablisment of autochthonous plant species is an essential strategy for recovering degraded areas under semiarid conditions.
A field experiment was carried out to assess the short-term effect of two reafforestation methods involving mycorrhizal inoculation
and compost addition on soil quality parameters and Rhamnus lycioides seedling growth. The nutrient content (NPK) and enzymatic activities (dehydrogenase, urease, protease-BAA, acid phosphatase
and β-glucosidase) increased and bulk density decreased in the rhizosphere soil with the organic amendment. Biomass C of rhizosphere
soil increased by at least 240% with respect to the control soil after mycorrhizal inoculation and the combination of compost
addition + mycorrhizal inoculation. Both mycorrhizal inoculation and composted organic residue addition increased R. lycioides seedling growth in the same proportion. In the short term, we conclude that the application of both reafforestation methods
not only enhances the establishment of R. lycioides seedlings, but also improves soil quality. 相似文献
100.