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DAFTAR PUSTAKA

Afrianita, R., Edwin, T., Alawiyah, A., Lingkungan, J. T., Teknik, F., & Andalas, U. (2016). Analisis Intrusi Air Laut Dengan Pengukuran Total Dissolved Solids ( Tds ) Air Sumur Gali Di Kecamatan Padang Utara. 8(November 2015).

Al-Raad, A. A., Hanafiah, M. M., Naje, A. S., Ajeel, M. A., Basheer, A. O., Aljayashi, T. A., & Toriman, M. E. (2019). Treatment Of Saline Water Using Electrocoagulation With Combined Electrical Connection Of Electrodes.

Processes, 7(5). Https://Doi.Org/10.3390/Pr7050242

Amelia, L. R., Priatmoko, S., & Prasetya, T. (2019). Pengaruh Jenis Elektrolit Support Pada Penurunan Logam Cr Dalam Limbah Dengan Menggunakan Metode Elektrokoagulasi. Indonesian Journal Of Chemical Science, 8(2), 68–

75.

Ansar, J. Dan M. (2018). Pengolahan Limbah Cair Dengan Elektrokoagulasi Dalam Menurunkan Kadar Fosfat(Po4) Pada Limbah Laundry. 18(2).

Apriyani, N. (2017). Penurunan Kadar Surfaktan Dan Sulfat Dalam Limbah Laundry. Media Ilmiah Teknik Lingkungan, 2(1), 37–44.

Https://Doi.Org/10.33084/Mitl.V2i1.132

Aritonang, A. P., Syech, R., Tambunan, W., Bina, K., & Pekanbaru, W. (N.D.).

Kualitas Air Sungai Siak Menggunakan Metode Jembatan Wheatstone. 1(2), 1–9.

Bayo, J., López-Castellanos, J., & Olmos, S. (2020). Membrane Bioreactor And Rapid Sand Filtration For The Removal Of Microplastics In An Urban Wastewater Treatment Plant. Marine Pollution Bulletin, 156(April), 111211.

Https://Doi.Org/10.1016/J.Marpolbul.2020.111211

Bayo, J., Olmos, S., & López-Castellanos, J. (2020). Removal Of Microplastics From Wastewater. Handbook Of Microplastics In The Environment, 1–20.

Https://Doi.Org/10.1007/978-3-030-10618-8_33-1

Browne, M. A., Crump, P., Niven, S. J., Teuten, E., Tonkin, A., Galloway, T., &

Thompson, R. (2011). Accumulation Of Microplastic On Shorelines Woldwide: Sources And Sinks. Environmental Science And Technology, 45(21), 9175–9179. Https://Doi.Org/10.1021/Es201811s

(2)

64 Budiany, R., Yayok, S., & Mohamad, M. (2014). Proses Elektrokoagulasi Pengolahan Limbah Laundry. Envirotek : Jurnal Ilmiah Teknik Lingkungan, 6(1), 15–22.

Casteloes, K. S., Mendis, G. P., Avins, H. K., Howarter, J. A., & Whelton, A. J.

(2017). The Interaction Of Surfactants With Plastic And Copper Plumbing Materials During Decontamination. Journal Of Hazardous Materials, 325, 8–

16. Https://Doi.Org/10.1016/J.Jhazmat.2016.11.067

Chaturvedi, S., & Dave, P. N. (2012). Removal Of Iron For Safe Drinking Water.

Des, 303, 1–11. Https://Doi.Org/10.1016/J.Desal.2012.07.003

Cocca, M., F, D. F., Gullo, M. P., Gentile, G., E, D. P., Gelabert, L., M, B.-A., Escudero, R., Villalba, R., Mossotti, R., Montarsolo, A., Gavignano, S., Tonin, C., & Avella, M. (2017). Microplastics From Synthetic Clothes : Environmental Impact And Mitigation Strategies. September, 1–3.

Cole, M., Lindeque, P., Halsband, C., & Galloway, T. S. (2011). Microplastics As Contaminants In The Marine Environment: A Review. Marine Pollution

Bulletin, 62(12), 2588–2597.

Https://Doi.Org/10.1016/J.Marpolbul.2011.09.025

Dave, H., Ledwani, L., Chandwani, N., & Kikani, P. (2013). Surface Modification Of Polyester Fabric By Non- Thermal Plasma Treatment And Its Effect On Coloration Using Natural Dye Surface Modification Of Polyester Fabric By Non- Thermal Plasma Treatment And Its Effect On Coloration Using Natural Dye. July.

David, W., & Djamaris, A. R. A. (2018). Metode Statistik Metode Statistik.

De Falco, F., Gullo, M. P., Gentile, G., Di Pace, E., Cocca, M., Gelabert, L., Brouta- Agnésa, M., Rovira, A., Escudero, R., Villalba, R., Mossotti, R., Montarsolo, A., Gavignano, S., Tonin, C., & Avella, M. (2018). Evaluation Of Microplastic Release Caused By Textile Washing Processes Of Synthetic Fabrics.

Environmental Pollution, 236, 916–925.

Https://Doi.Org/10.1016/J.Envpol.2017.10.057

(3)

65 Delforno, T. P., Moura, A. G. L., Okada, D. Y., & Varesche, M. B. A. (2014). Effect Of Biomass Adaptation To The Degradation Of Anionic Surfactants In Laundry Wastewater Using Egsb Reactors. Bioresource Technology, 154, 114–121. Https://Doi.Org/10.1016/J.Biortech.2013.11.102

Díaz-Alejo, L. A., Díaz-Alejo, L. A., Menchaca-Campos, E. C., Chavarín, J. U., &

García-Sánchez, M. A. (2013). Effects Of The Addition Of Ortho- And Para- Nh2 Substituted Tetraphenylporphyrins On The Structure Of Nylon 66 Effects Of The Addition Of Ortho - And Para -Nh 2 Substituted Tetraphenylporphyrins

On The Structure Of Nylon 66. July 2014.

Https://Doi.Org/10.1155/2013/323854

Enerhall, C., & Stenmark, E. (2012). Disc Filters To Reduce Wastewater Pathogen Levels In Raw Water Sources.

Gouin, T., Avalos, J., Brunning, I., Brzuska, K., Graaf, J. De, Kaumanns, J., Koning, T., Meyberg, M., Rettinger, K., Schlatter, H., Thomas, J., Welie, R.

Van, & Wolf, T. (2015). Use Of Micro-Plastic Beads In Cosmetic Products In Europe And Their Estimated Emissions To The North Sea Environment. Sofw Journal, 141(January), 40–46.

Hashim, K. S., Alkhaddar, R., Shaw, A., Kot, P., Al-Jumeily, D., Alwash, R., &

Aljefery, M. H. (N.D.). Electrocoagulation As An Eco-Friendly River Water Treatment Method. Springer Singapore. Https://Doi.Org/10.1007/978-981-13- 8181-2

Hashim, K. S., Shaw, A., & Phipps, D. (2017). Iron Removal , Energy Consumption And Operating Cost Of Electrocoagulation Of Drinking Water Using A New

Fl Ow Column Reactor. 189, 98–108.

Https://Doi.Org/10.1016/J.Jenvman.2016.12.035

Heffron, J., & Heffron, J. (2015). Removal Of Trace Heavy Metals From Drinking Water By Electrocoagulation Removal Of Trace Heavy Metals From Drinking Water By Electrocoagulation.

(4)

66 Hidayaturrahman, H., & Lee, T. G. (2019). A Study On Characteristics Of Microplastic In Wastewater Of South Korea: Identification, Quantification, And Fate Of Microplastics During Treatment Process. Marine Pollution

Bulletin, 146(June), 696–702.

Https://Doi.Org/10.1016/J.Marpolbul.2019.06.071

Hudori, H., & Soewondo, P. (2009). Pengolahan Deterjen Menggunakan Teknologi Elektrokoagulasi Dengan Elektroda Aluminium. Jurnal Sains &Teknologi Lingkungan, 1(2), 117–125. Https://Doi.Org/10.20885/Jstl.Vol1.Iss2.Art3 Huppertsberg, S., & Knepper, T. P. (2020). Methodsx Validation Of An Ft-Ir

Microscopy Method For The Determination Of Microplastic Particles In Surface Waters. 7. Https://Doi.Org/10.1016/J.Mex.2020.100874

Imhof, H. K., Laforsch, C., Wiesheu, A. C., Schmid, J., Anger, P. M., Niessner, R.,

& Ivleva, N. P. (2016). Pigments And Plastic In Limnetic Ecosystems: A Qualitative And Quantitative Study On Microparticles Of Different Size

Classes. Water Research, 98, 64–74.

Https://Doi.Org/10.1016/J.Watres.2016.03.015

Janpoor, F., Torabian, A., & Khatibikamal, V. (2011). Treatment Of Laundry Waste-Water By Electrocoagulation. Journal Of Chemical Technology And Biotechnology, 86(8), 1113–1120. Https://Doi.Org/10.1002/Jctb.2625

Jiang, J. Q. (2018). Occurrence Of Microplastics And Its Pollution In The Environment: A Review. Sustainable Production And Consumption, 13(November), 16–23. Https://Doi.Org/10.1016/J.Spc.2017.11.003

Kausar, A., Division, N., & Physics, F. (2019). Advances In Carbon Fiber Reinforced Polyamide-Based. 19(4). Https://Doi.Org/10.2478/Adms-2019- 0023

Kim, H. C., Shang, X., Huang, J. H., & Dempsey, B. A. (2014). Treating Laundry Waste Water: Cationic Polymers For Removal Of Contaminants And Decreased Fouling In Microfiltration. Journal Of Membrane Science, 456, 167–174. Https://Doi.Org/10.1016/J.Memsci.2014.01.028

(5)

67 Kobya, M., Akyol, A., Demirbas, E., & Oncel, M. S. (2014). Removal Of Arsenic From Drinking Water By Batch And Continuous Electrocoagulation Processes Using Hybrid Al-Fe Plate Electrodes. 33(1), 131–140.

Https://Doi.Org/10.1002/Ep

Kurniawan, C., Waluyo, T. B., & Perdamean Sebayang. (2011). Analisis Ukuran Partikel Menggunakan Free Software Image-J. Seminar Nasional Fisika, Juli 2011, 1–9. Https://Www.Researchgate.Net/Publication/215445822

Lestari, N. D., & Agung, T. (2014). Penurunan Tss Dan Warna Limbah Batik.

Envirotek: Jurnal Ilmiah Teknik Lingkungan, 6(1), 37–44.

Li, J., Liu, H., & Chen, J. P. (2018). Microplastics In Freshwater Systems : A Review On Occurrence , Environmental Effects , And Methods For Microplastics Detection. Water Research, 137, 362–374.

Https://Doi.Org/10.1016/J.Watres.2017.12.056

Lu, J., Tang, Q., Wang, Z. R., Xu, C., & Lin, S. L. (2016). A Study On Continuous And Batch Electrocoagulation Process For Fluoride Removal. Desalination

And Water Treatment, 57(58), 28417–28425.

Https://Doi.Org/10.1080/19443994.2016.1186567

Lumban Tobing, S. J. B., Hendrawan, I. G., & Faiqoh, E. (2020). Karakteristik Mikroplastik Pada Ikan Laut Konsumsi Yang Didaratkan Di Bali. Journal Of

Marine Research And Technology, 3(2), 102.

Https://Doi.Org/10.24843/Jmrt.2020.V03.I02.P07

Mahapati, W. O. S. W. (2019). Penurunan Mikroplastik Menggunakan Filter Cloth Berdasarkan Karakteristik Mikroplastik.Institut Teknologi Bandung

Materi, J., Jmpf, F., Toifur, M., Tanjungsari, S. M. K. N., Baron, J., Kemadang, K., Pendidikan, M., Universitas, F., Dahlan, A., & Pramuka, J. (2019). Penentuan Konduktivitas Air Baku Proses Desalinasi Di Baron Teknopark Dengan Metode Regresi Linier. 9, 127–131.

Mauludy, M. S., Yunanto, A., & Yona, D. (2019). Microplastic Abundances In The Sediment Of Coastal Beaches In Badung, Bali. Jurnal Perikanan Universitas Gadjah Mada, 21(2), 73. Https://Doi.Org/10.22146/Jfs.45871

(6)

68 Moussa, D. T., El-Naas, M. H., Nasser, M., & Al-Marri, M. J. (2017). A Comprehensive Review Of Electrocoagulation For Water Treatment:

Potentials And Challenges. Journal Of Environmental Management, 186, 24–

41. Https://Doi.Org/10.1016/J.Jenvman.2016.10.032

Mujiburohman, A. M. Y. Dan M. (2020). Pengaruh Suhu Dan Ph Elektrokoagulasi Terhadap Penurunan Kadar Tss Dan Cod Pada Limbah Cair Laundry. 309–

313.

Napper, I. E., & Thompson, R. C. (2016). Release Of Synthetic Microplastic Plastic Fibres From Domestic Washing Machines: Effects Of Fabric Type And Washing Conditions. Marine Pollution Bulletin, 112(1–2), 39–45.

Https://Doi.Org/10.1016/J.Marpolbul.2016.09.025

Nascimento, C. O. C., Veit, M. T., Palácio, S. M., Gonçalves, G. C., & Fagundes-

Klen, M. R. (2019). Combined Application Of

Coagulation/Flocculation/Sedimentation And Membrane Separation For The Treatment Of Laundry Wastewater. International Journal Of Chemical Engineering, 2019. Https://Doi.Org/10.1155/2019/8324710

Oladejo, A. (2017). Analysis Of Microplastics And Their Removal From Water. 48.

Https://Core.Ac.Uk/Download/Pdf/84798523.Pdf

Perren, W., Wojtasik, A., & Cai, Q. (2018). Removal Of Microbeads From Wastewater Using Electrocoagulation. Acs Omega, 3(3), 3357–3364.

Https://Doi.Org/10.1021/Acsomega.7b02037

Picó, Y., & Barceló, D. (2019). Analysis And Prevention Of Microplastics Pollution In Water: Current Perspectives And Future Directions. Acs Omega, 4(4), 6709–6719. Https://Doi.Org/10.1021/Acsomega.9b00222

Reddithota, D., Yerramilli, A., & Krupadam, R. J. (2007). Electrocoagulation: A Cleaner Method For Treatment Of Cr(Vi) From Electroplating Industrial Effluents. Indian Journal Of Chemical Technology, 14(3), 240–245.

Ridlo, A., Ario, R., Al Ayyub, A. M., Supriyantini, E., & Sedjati, S. (2020).

Mikroplastik Pada Kedalaman Sedimen Yang Berbeda Di Pantai Ayah Kebumen Jawa Tengah. Jurnal Kelautan Tropis, 23(3), 325–332.

Https://Doi.Org/10.14710/Jkt.V23i3.7424

(7)

69 Rusdi, H., Wonorahardjo, S., Utomo, Y., & Wijaya, A. (2020). Optimasi Ph Dan Konsentrasi Elektrolit Dalam Elektrokoagulasi Limbah Surfaktan. Jc-T (Journal Cis-Trans): Jurnal Kimia Dan Terapannya, 4(1), 21–28.

Https://Doi.Org/10.17977/Um0260v4i12020p021

Salam, H., Pratiwi, Y., Sunarsih, S., Lingkungan, J. T., & Terapan, F. S. (N.D.).

Penurunan Minyak Dan Tss Pada Air Limbah Balai Yasa Dengan Menggunakan Elektrokoagulasi. 1–7.

Sang, W., Chen, Z., Mei, L., Hao, S., Zhan, C., Zhang, W. Bin, Li, M., & Liu, J.

(2021). The Abundance And Characteristics Of Microplastics In Rainwater Pipelines In Wuhan, China. Science Of The Total Environment, 755, 142606.

Https://Doi.Org/10.1016/J.Scitotenv.2020.142606

Saputra, A. I. (2018). Penurunan Tss Air Limbah Laboratorium Rumah Sakit Menggunakan Metode Elektrokoagulasi. Politeknik Kesehatan Kementerian Kesehatan Bengkulu, Jurusan Kesehatan Lingkungan, 6(2), 6–13.

Schuhen, K., & Sturm, M. T. (2020). Microplastic Pollution And Reduction Strategies. In Handbook Of Microplastics In The Environment.

Https://Doi.Org/10.1007/978-3-030-10618-8_53-2

Silva, A. B., Bastos, A. S., Justino, C. I. L., Da Costa, J. P., Duarte, A. C., & Rocha- Santos, T. A. P. (2018). Microplastics In The Environment: Challenges In Analytical Chemistry - A Review. Analytica Chimica Acta, 1017, 1–19.

Https://Doi.Org/10.1016/J.Aca.2018.02.043

Suardiningsih, D. (2013). Perbedaan Kain Katun Dengan Poliester Pada Busana Kuliah Ditinjau Dari Aspek Kenyamanan. 1–170.

Suarsa, I. W. (2016). Analisis Gugus Fungsi Pada Bensin Dengan. 1–36.

Syamsul Bahri, Amri Aji, F. Y. (2018). Pengaruh Waktu Dan Kuat Arus Pada Pengolahan Air Payau Menjadi Air Bersih Dengan Proses Elektrokoagulasi.

Jurnal Teknologi Kimia Unimal, 2(November), 85–100.

Http://Ojs.Unimal.Ac.Id/Index.Php/Jtk

Talvitie, J., Mikola, A., Koistinen, A., & Setälä, O. (2017). Solutions To Microplastic Pollution – Removal Of Microplastics From Wastewater Effluent With Advanced Wastewater Treatment Technologies. Water Research, 123, 401–407. Https://Doi.Org/10.1016/J.Watres.2017.07.005

(8)

70 Tambang, J. B., Gusman, M., Pertambangan, T., Teknik, F., & Padang, U. N.

(N.D.). Analisis Pengaruh Parameter Konduktivitas , Resistivitas Dan Tds Terhadap Salinitas Air Tanah Dangkal Pada Kondisi Air Laut Pasang Dan Air Laut Surut Di Daerah Pesisir Pantai Kota. 3(4), 1751–1760.

Van Cauwenberghe, L., Vanreusel, A., Mees, J., & Janssen, C. R. (2013).

Microplastic Pollution In Deep-Sea Sediments. Environmental Pollution, 182, 495–499. Https://Doi.Org/10.1016/J.Envpol.2013.08.013

Wayne W. Daniel. (1989). Applied Nonparametric Statistk. Second Edition.

Widianarko, B., & Hantoro, I. (2018). Mikroplastik Mikroplastik Dalam Seafood Seafood Dari Pantai Utara Jawa. Www.Unika.Ac.Id

Wiyanto, E., Harsono, B., Makmur, A., Pangputra, R., Kurniawan, M. S., Elektro, J. T., Sipil, T., Industri, T., Teknik, F., Universitas, K., & Krida, K. (2014).

Penerapan Elektrokoagulasi Dalam Proses Penjernihan Limbah Cair. 12, 19–

36.

Xia, Y., Xiang, X., Dong, K., Gong, Y., & Li, Z. (2020). Science Of The Total Environment Surfactant Stealth Effect Of Microplastics In Traditional Coagulation Process Observed Via 3-D Fl Uorescence Imaging. Science Of

The Total Environment, 729, 138783.

Https://Doi.Org/10.1016/J.Scitotenv.2020.138783

Yunitasari, Y., & Andesgur, Vnaini;Shinta, E. (2017). Metode Elektrokoagulasi Untuk Mengolah Limbah Cair Batik Di Unit Kegiatan Masyarakat Rumah Batik Andalan Pt. Riau Andalan Pulp And Paper (Rapp). 4(1), 1–9.

Zelviani, S. R. I. (2010). Menentukan Tegangan Permukaan Optimal Dengan Surfaktan Linear Alkylbenzene Sulfonate (Las) Yang Terkandung Dalam Detergen. 1–85.

Ziajahromi, S., Neale, P. A., & Leusch, F. D. L. (2016). Wastewater Treatment Plant Effluent As A Source Of Microplastics: Review Of The Fate, Chemical Interactions And Potential Risks To Aquatic Organisms. Water Science And Technology, 74(10), 2253–2269. Https://Doi.Org/10.2166/Wst.2016.414

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