Department of Forest Sciences, University of Helsinki, P.O. Box 27, 00014, Helsinki, Finland,
Ambio. 2014 Mar;43(2):218-33. doi: 10.1007/s13280-013-0439-x. Epub 2013 Sep 13.
The long-term impacts of current forest management methods on surface water quality in Fennoscandia are largely unexplored. We studied the long-term effects of clear-cutting and site preparation on runoff and the export of total nitrogen (total N), total organic nitrogen (TON), ammonium (NH(4)-N), nitrate (NO(3)-N), total phosphorus (total P), phosphate (PO(4)-P), total organic carbon, and suspended solids (SS) in three paired-catchments in Eastern Finland. Clear-cutting and soil preparation were carried out on 34 % (C34), 11 % (C11), and 8 % (C8) of the area of the treated catchments and wide buffer zones were left along the streams. Clear-cutting and soil preparation increased annual runoff and total N, TON, NO(3)-N, PO(4)-P, and SS loads, except for SS, only in C34. Runoff increased by 16 % and the annual exports of total N, TON, NO(3)-N, and PO(4)-P by 18, 12, 270, and 12 %, respectively, during the 14-year period after clear-cutting. SS export increased by 291 % in C34, 134 % in C11, and 16 % in C8 during the 14, 6, and 11-year periods after clear-cutting. In the C11 catchment, NO(3)-N export decreased by 12 %. The results indicate that while current forest management practices can increase the export of N, P and SS from boreal catchments for many years (>10 years), the increases are only significant when the area of clear cutting exceeds 30 % of catchment area.
目前森林管理方法对芬诺斯堪的亚地表水质的长期影响在很大程度上尚未得到探索。我们研究了皆伐和整地对径流量和总氮(总 N)、总有机氮(TON)、铵(NH 4 -N)、硝酸盐(NO 3 -N)、总磷(总 P)、磷酸盐(PO 4 -P)、总有机碳和悬浮固体(SS)的长期影响,在芬兰东部的三个配对集水区进行了研究。在处理集水区的 34%(C34)、11%(C11)和 8%(C8)的区域进行了皆伐和土壤准备,并且在溪流沿线留下了宽缓冲区。除 SS 外,皆伐和土壤准备仅在 C34 中增加了年径流量和总 N、TON、NO 3 -N、PO 4 -P 和 SS 负荷。在皆伐后的 14 年期间,径流量增加了 16%,总 N、TON、NO 3 -N 和 PO 4 -P 的年排放量分别增加了 18%、12%、270%和 12%。在 C34 中,SS 排放量增加了 291%,在 C11 中增加了 134%,在 C8 中增加了 16%,在皆伐后的 14、6 和 11 年期间。在 C11 集水区,NO 3 -N 排放量减少了 12%。结果表明,虽然目前的森林管理实践可以在多年(>10 年)内增加北方集水区 N、P 和 SS 的排放量,但只有当采伐面积超过集水区面积的 30%时,增加才会显著。