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221.
The Role of Soil Surface Crusting in Desertification and Strategies to Reduce Crusting 总被引:1,自引:0,他引:1
Soil crusting decreases infiltration, increases erosion, and impedes vegetation establishment, so reducing the impact of crusting
is of major importance in combating desertification. Although surface crusting has been the subject of considerable research
over the past 50 years or more, the practical management of soil crusts remains a challenge for many dryland communities.
Crusting occurs in two steps, an initial aggregate breakdown period that occurs under rainfall and a subsequent hardening
phase during drying. Several factors influence crust development, but the single most important one is soil aggregate stability.
Strategies to reduce crusting can be based either on protecting the surface from raindrop impact or improving aggregate stability,
or a combination of both. However, crust control is labor and/or capital intensive and must be thought out clearly in terms
of the benefits to be achieved. 相似文献
222.
Passive leaching by rainfall and snowmelt is a popular method to treat piles of spent mushroom substrate (SMS) before its reuse. During this field weathering process, leachate percolates into the underlying soils. A field study was conducted to examine the chemistry of SMS leachate and effects of infiltration. Two SMS piles were deposited (90 and 150 cm in height) over a Typic Hapludult and weathered for 24 mo. Leachate was collected biweekly using passive capillary samplers. The SMS leachate contained high concentrations of dissolved organic carbon (DOC; 0.8-11.0 g L(-1)), dissolved organic nitrogen (DON; 0.1-2 g L(-1)), and inorganic salts. The pH, electrical conductivity, and acid neutralizing capacity were 6.6 to 9.0, 21 to 66 ds m(-1), and 10 to 75 mmolc L(-1), respectively. Inorganic chemistry of the leachate was dominated by K+, Cl-, and SO24-. Leachate DOC was predominantly low molecular weight (<1000 Da) organic acids. During 2 yr of weathering, the 90-cm SMS pile released (per cubic meter of SMS) 3.0 kg of DOC, 1.6 kg of dissolved N, and 26.6 kg of inorganic salts. The 150-cm pile released (per cubic meter of SMS) 2.8 kg of DOC, 0.7 kg of dissolved N, and 13.6 kg of inorganic salts. The 150 cm pile retained more water and exhibited lower net nitrification compared with the 90-cm pile. The top 90 cm of soil retained 20 to 89% of the leachate solutes. Weathering of SMS in piles of 90 cm depth or greater may adversely affect ground water quality. 相似文献
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Vegetative filter strips (VFS) are commonly used best management practices for removing contaminants from runoff. Additional research is warranted to determine their efficiency and the most appropriate metrics for predicting fecal bacteria reductions. The objective of this research was to determine VFS effectiveness in removing from runoff relative to inflow rate, infiltration capacity, and flow concentration. This research also investigated the presence of in runoff from clean water runon after diluted manure runon events. A laboratory-scale VFS soil box (200 cm long, 100 cm wide, 7.5% slope) was packed with a sandy loam soil. Ten constant-flow VFS experiments were conducted with and without vegetation (8-10 cm ryegrass [ L.]) at low (20-40 cm s), medium (40-60 cm s), and high (85-120 cm s) flow rates and for a full (100 cm) or concentrated (40 cm) VFS flow width to simulate a channelizing flow condition. Two runon events were investigated for each experimental condition: (i) diluted liquid swine manure runon and (ii) clean water runon 48 h afterward. was used as an indicator of fecal contamination and was quantified by the most probable number (MPN) technique. No concentration reductions were observed based on peak outflow concentrations, and only small concentration reductions were observed based on outflow event mean concentrations. The mass reductions ranged from 22 to 71% and were strongly correlated to infiltration or runoff reduction ( = 0.88), which was dependent on the degree of flow concentration. Little to no effect of sedimentation on transport was observed, hypothesized to be due to minimum attachment to sediment particles because the bacteria originated from manure sources. Therefore, the design of VFS for bacteria removal should be based on the infiltration capacity in the VFS and should prevent concentrated flow, which limits total infiltration. The event mean concentrations in clean water runon experiments were between 10 and 100 MPN per 100 mL; therefore, under these conditions, VFS served as a source of residual from previous runon events. 相似文献
228.
铜绿微囊藻胞内物消毒副产物生成:氯化和溴化比较 总被引:1,自引:3,他引:1
为了研究蓝藻水华期间释放的有机物给原水水质及给水处理过程带来的影响,选取优势藻种铜绿微囊藻的胞内物质(IOM)作为前驱体,分析了其结构特征.此外,分别研究了IOM在pH 6.5、7.1及8.4条件下与氯及溴反应后性质的变化及消毒副产物的生成,并进行了相关性分析.结果表明,IOM中以相对分子质量较大的组分(>30×103)为主,其溶解性有机碳(DOC)含量占总量的68.8%.三维荧光光谱(EEM)的结果表明IOM的成分主要以芳香蛋白类物质为主,其单位DOC的荧光强度为92.6 AU·L·mg-1.与氯或溴反应后,芳香蛋白类EEM峰值下降了76.6%~93.3%,且其降低值与三卤甲烷(THMs,R2=0.81)和卤乙酸(HAAs,R2=0.77)的生成量正相关.IOM与氯或溴反应生成的THMs和HAAs浓度均随着pH的增加而增加.溴相比氯与IOM反应可以生成更多的THMs和HAAs,且HAAs的卤代程度更高,但是氯及溴与IOM反应能力的差异随着pH的升高而逐渐减小,即k OBr·IOM/k OCl·IOM相似文献
229.