The karst landscape area is a natural resource with great potential. In it there is a diversity of biodiversity, hydrological systems that are important for the source of life and aesthetic value that is very charming. Currently, the potentials that exist in the karst landscape area are getting serious threats, one of which is due to mining activities. Mining activities in karst areas cause environmental degradation in the area both physically and non-physically. Therefore, this study was made to provide output in the form of a management strategy in the karst landscape area using the SWOT analysis method. From the results of the SWOT analysis, there are several strategies, namely the S-O Strategy, the S-T Strategy, the W-O Strategy and the W-T Strategy. The results of the SWOT analysis for the SO strategy include the development of special interest tours such as cruising tours and educational tours in karst landscape areas, increasing collaboration between local governments and village governments to make this area a tourist destination, Creating a special website for karst landscape tourism., making programs to maintain the sustainability and uniqueness of the karst landscape area. Then for the strategy (ST) the results of the analysis are optimizing the role of the community in protecting the karst landscape area so that environmental damage does not occur such as illegal mining activities, highlighting the uniqueness of this karst landscape area so that it can become a reliable tourist area, increasing public understanding of the importance of benefits. socio-cultural resilience. Furthermore, the strategy (WO) includes optimizing the quality of human resources by providing counseling to the public about the importance of preserving the karst landscape area, optimizing tourism promotion through print media, the internet and parties who take part in the development of tourism in landscape areas. karst, Conducting activities or events with the theme of awareness to preserve the environment in the karst landscape area. Finally, the W-T Strategy whose output is to coordinate and collaborate with related parties to overcome environmental problems that occur in the karst landscape area, improve the quality of human resources so that they are able to maintain their natural sustainability, increase the existence of the karst landscape area with more aggressive promotions.

1.
A.
Pambudi
, “
Kerusakan Lingkungan Sebagai Dampak Penambangan Batu Kapur Di Bentang Alam Karst Kabupaten Gunungkidul
,”
Pranata Huk.
, Vol.
15
, no.
2
, pp.
212
220
,
2020
, doi: .
2.
E. S.
Astuti
et al, “
A groundwater tracing investigation to determine Kalisirah Karst Springs catchment area, Kebumen Regency, Central Java
,”
IOP Conf. Ser. Earth Environ. Sci.
, Vol.
451
, no.
1
,
2020
, doi: .
3.
M.
Parise
et al,
Hazards in Karst and Managing Water Resources Quality.
2015
.
4.
E.
Hamilton-Smith
, “
Current initiatives in the protection of Karst biodiversity
,”
Nat. Croat.
, Vol.
10
, no.
3
, pp.
229
242
,
2001
.
5.
F. A.
Ikhsan
,
S.
Astutik
,
S.
Kantun
, and
B.
Apriyanto
, “
The hazard of change landscape and hydrogeology zone south karst mountain impact natural and human activity in Region Jember
,”
IOP Conf. Ser. Earth Environ. Sci.
, Vol.
243
, no.
1
,
2019
, doi: .
6.
C.
Jiang
et al, “
Occurrence and environmental impact of coal mine goaf water in karst areas in China
,”
J. Clean. Prod.
, Vol.
275
, no.
388
, p.
123813
,
2020
, doi: .
7.
X.
He
,
J.
Wu
, and
W.
Guo
, “
Karst Spring Protection for the Sustainable and Healthy Living: The Examples of Niangziguan Spring and Shuishentang Spring in Shanxi, China
,”
Expo. Heal.
, Vol.
11
, no.
2
, pp.
153
165
,
2019
, doi: .
8.
S. L.
Li
,
C. Q.
Liu
,
J. A.
Chen
, and
S. J.
Wang
, “
Karst ecosystem and environment: Characteristics, evolution processes, and sustainable development
,”
Agric. Ecosyst. Environ.
, Vol.
306
, no.
October 2020
, p.
107173
,
2021
, doi: .
9.
X.
Li
,
P.
Wu
,
Z.
Han
,
X.
Zha
,
H.
Ye
, and
Y.
Qin
, “
Effects of mining activities on evolution of water quality of karst waters in Midwestern Guizhou, China: evidences from hydrochemistry and isotopic composition
,”
Environ. Sci. Pollut. Res.
, Vol.
25
, no.
2
, pp.
1220
1230
,
2018
, doi: .
10.
M.
Veress
, “
Karst Types and Their Karstification
,”
J. Earth Sci.
, Vol.
31
, no.
3
, pp.
621
634
,
2020
, doi: .
11.
P.
Equipment
,
S.
Province
,
S.
Province
, and
G.
Province
, “
郑晓泉 1 ,王金锋 2 ,李彦雄 3 (1
,” pp.
166
175
,
2013
.
12.
K. C.
Wang
, “
A process view of SWOT analysis
,”
Int. Soc. Syst. Sci. - 51st Annu. Meet. Int. Soc. Syst. Sci. ISSS 2007
, pp.
484
495
,
2007
.
13.
J. W.
Bull
, “
Strengths, Weaknesses, Opportunities and Threats: A SWOT analysis of the ecosystem services framework
,”
Ecosyst. Serv.
, Vol.
17
, pp.
99
111
,
2016
, doi: .
14.
J.
Guo
, “
Geomorphological indicators of karst environmental disturbance in the mountainous region of Jinan City, North China
,”
IOP Conference Series: Materials Science and Engineering
, Vol.
780
, no.
4. 2020
, doi: .
15.
B.
Ziemba
,
The Pick6
, Vol.
2015
, no.
75
.
2015
.
16.
F.
Gutiérrez
,
M.
Parise
,
J.
De Waele
, and
H.
Jourde
, “
A review on natural and human-induced geohazards and impacts in karst
,”
Earth-Science Rev.
, Vol.
138
, pp.
61
88
,
2014
, doi: .
17.
A.
Nekkoub
,
F.
Baali
,
R.
Hadji
, and
Y.
Hamed
, “
The EPIK multi-attribute method for intrinsic vulnerability assessment of karstic aquifer under semi-arid climatic conditions, case of Cheria Plateau, NE Algeria
,”
Arab. J. Geosci.
, Vol.
13
, no.
15
,
2020
, doi: .
18.
W.
Wu
, “
The impact of natural weathering and mining on heavy metal accumulation in the karst areas of the Pearl River Basin, China
,”
Sci. Total Environ.
, Vol.
734
,
2020
, doi: .
19.
C. M.
Stephens
,
U.
Lall
,
F. M.
Johnson
, and
L. A.
Marshall
, “
Landscape changes and their hydrologic effects: Interactions and feedbacks across scales
,”
Earth-Science Rev.
, Vol.
212
, no.
September 2020
, p.
103466
,
2021
, doi: .
20.
X. Z.
Wu
, “
Quantifying the non-normality of shear strength of geomaterials
,”
Eur. J. Environ. Civ. Eng.
, Vol.
24
, no.
6
, pp.
740
766
,
2020
, doi: .
21.
L. M.
Rabelo
,
M.
Souza-Silva
, and
R. L.
Ferreira
,
Priority caves for biodiversity conservation in a key karst area of Brazil: comparing the applicability of cave conservation indices
, Vol.
27
, no.
9
.
Springer Netherlands
,
2018
.
22.
H. Y.
Gao
, “
Evaluation of the impact of karst depression-type impoundments on the underlying karst water systems in the Gejiu mining district, southern Yunnan, China
,”
Bull. Eng. Geol. Environ.
, Vol.
78
, no.
7
, pp.
4673
4688
,
2019
, doi: .
23.
F.
Calò
and
M.
Parise
, “
Waste management and problems of groundwater pollution in karst environments in the context of a post-conflict scenario: The case of Mostar (Bosnia Herzegovina
),”
Habitat Int.
, Vol.
33
, no.
1
, pp.
63
72
,
2009
, doi: .
24.
E. K.
Valentin
, “
Away with SWOT analysis: Use Defensive/Offensive Evaluation instead
,”
J. Appl. Bus. Res.
, Vol.
21
, no.
2
, pp.
91
104
,
2005
, [Online]. Available: https://api.elsevier.com/content/abstract/scopus_id/27844447630.
25.
R.
Juniah
,
R.
Dalimi
,
M.
Suparmoko
,
S. S.
Moersidik
, and
H.
Waristian
, “
Environmental value losses as impacts of natural resources utilization of in coal open mining
,”
MATEC Web Conf.
, Vol.
101
, pp.
4
8
,
2017
, doi: .
This content is only available via PDF.
You do not currently have access to this content.