探索造林池塘的环境状况,支持印度尼西亚贝劳地区红树林管理的可持续性

A. Mustafa, Tarunamulia Tarunamulia, E. Ratnawati, M. Paena, K. Kamariah, A. Athirah, R. Asaf, Suwardi Tahe, E. A. Hendrajat, I. Taukhid, A. Asaad, Basir Basir, M. Ilman
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引用次数: 0

摘要

印度尼西亚东加里曼丹省 Berau 地区已将红树林管理与水产养殖结合起来,并称之为造林鱼塘系统。为评估造林鱼塘周围红树林的地形特征,进行了一项详细调查,旨在提高 Berau 地区这些红树林区域的生产力和可持续管理水平。此次调查的重点是各种土地特征,如地形、潮汐模式、水质、土壤特性、气候和红树林植被状况。通过计算不同生长阶段(树木、树苗和幼苗)的重要价值指数(IVI),对红树林植被的健康状况进行了评估。研究结果表明,贝劳县造林鱼塘附近的红树林有 13 属 10 科 14 种生物。在所有生长阶段,Rhizophora mucronata 的 IVI 分数最高:乔木为 75.17%,树苗为 93.14%,幼苗为 66.98%,后者与 Rhizophora apiculata 相同。土壤质量是限制造林池塘土地利用的关键因素,特别是由于潜在酸度高(pH 值低)和氮(N)含量低。为提高土壤质量,建议采用土壤管理方法,如修复(通过干燥、浸没、冲洗或石灰化)和施肥补氮。此外,鉴于红树林植被密度稀疏(1,012 棵/公顷),建议努力促进红树林的自然再生,防止森林砍伐和退化。考虑到红树林的独特性,建议实施 komplangan 模式--一种将红树林恢复池塘与生长池塘分开的造林渔业方法--以提高生产力,确保贝劳沿海地区的可持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring Environmental Condition of Silvofishery Pond to Support the Sustainability of Mangrove Management in Berau Regency, Indonesia
The integration of mangrove management with aquaculture, termed the silvofishery pond system, has been implemented in Berau Regency, East Kalimantan Province, Indonesia. A detailed survey was conducted to assess the features of mangrove terrain surrounding silvofishery ponds, aiming to enhance the productive and sustainable management of these mangrove areas in Berau Regency. This survey focused on various land characteristics such as topography, tidal patterns, water quality, soil properties, climate, and the state of mangrove vegetation. The health of mangrove vegetation was assessed by calculating the Important Value Index (IVI) across different growth stages: trees, saplings, and seedlings. The findings reveal that the mangrove adjacent to the silvofishery ponds in Berau Regency are home to 14 species from 13 genera and 10 families. Rhizophora mucronata displayed the highest IVI scores across all growth stages: 75.17% for trees, 93.14% for saplings, and 66.98% for seedlings, the latter shared with Rhizophora apiculata. Soil quality emerged as a critical limiting factor for land use in silvofishery ponds, particularly due to high potential acidity (low pH) and low nitrogen (N) content. To enhance soil quality, it is recommended that soil management practices such as remediation (via drying, submerging, flushing, or liming) and N supplementation through fertilization be employed. Furthermore, given the sparse mangrove vegetation density at the tree level (1,012 trees/ha), efforts to promote natural mangrove regeneration and prevent deforestation and degradation are advised. Considering the unique characteristics of the mangroves, the implementation of the komplangan model—a silvofishery approach that segregates mangroves restoration pond from grow-out ponds—is recommended to boost productivity and ensure sustainability in the coastal region of Berau
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